Recherche par propriété

Cette page fournit une simple interface de navigation pour trouver des entités décrites par une propriété et une valeur nommée. D’autres interfaces de recherche disponibles comprennent la page recherche de propriété, et le constructeur de requêtes ask.

Recherche par propriété

Une liste de toutes les pages qui ont la propriété « Step Content » avec la valeur « You can check all steps on video briefly or follow below steps. • Mount plastic pulley wheel onto DC motor shaft and glue on it. ». Puisqu’il n’y a que quelques résultats, les valeurs proches sont également affichées.

Affichage de 101 résultats à partir du n°1.

Voir (200 précédentes | 200 suivantes) (20 | 50 | 100 | 250 | 500).


    

Liste de résultats

  • Plastic-Waste Pavement  + (Refer to the pictures available in the galRefer to the pictures available in the gallery. Proceed as follows to build you own Plastic-Waste Pavement. == Required Conditions == *Team: **One is enough (more is very much appreciated) *Required skills: **None *Duration: **30 minutes (per unit) *Preliminary requirements: **NA(per unit) *Preliminary requirements: **NA)
  • Humanure Dry Toilets, low-tech tricks  + (Refer to the pictures available in the galRefer to the pictures available in the gallery. Proceed as follows to build you own Humanure Dry Toilets. = Required Conditions = *Team: **Two *Required skills: **Basic carpentry skills to properly use the tools *Duration: **Two hours *Preliminary requirements: **NA (except acquire the necessary parts and consumables)quire the necessary parts and consumables))
  • Candlestick in copper and wood  + (Sawing the wood pieces in: * 1 x 10 cm long * 1 x 15 cm long * 1 x 20 cm long * 5 x 5 cm long)
  • Candlestick in copper and wood  + (Sawing the wood pieces in: * 1 x 10 cm long * 1 x 15 cm long * 1 x 20 cm long * 5 x 5 cm long)
  • Candlestick in copper and wood  + (Sawing the wood pieces in: * 1 x 10 cm long * 1 x 15 cm long * 1 x 20 cm long * 5 x 5 cm long)
  • MANGEOIRE à oiseaux en bois de PALETTES, sans clous ni vis !  + (Scier la palette de sorte à récupérer un éScier la palette de sorte à récupérer un élément (deux cubes avec les planches les englobant) qui vous servira comme « élément de base » auquel vous rajouterez quelques planches récupérées de la même palette pour les imbriquer sur «  l’élément de base ». Regarder la vidéo pour suivre la construction pas à pas. Pour visualiser comment les éléments s’imbriquent entre eux referez-vous à la coupe à travers la mangeoire, jointe ci-dessous dans l’étape 2. Faire attention à choisir une palette non traitée chimiquement. Vous trouverez des instructions ici : https://www.bricolage-facile.net/les-palettes-sont-elles-toxiques/cile.net/les-palettes-sont-elles-toxiques/)
  • Paracocktail - Eleanor  + (Se rendre sur le site paracktail, en bas de page : https://hackpad.com/Paracocktailemoji_2614-U7CYk0n7UM9 vous y trouverez le lien pour télécharger le lien arduino, ainsi qu'un tutoriel vidéo.)
  • Paracocktail - Eleanor  + (Se rendre sur le site paracktail, en bas de page : https://hackpad.com/Paracocktailemoji_2614-U7CYk0n7UM9 vous y trouverez le lien pour télécharger le lien arduino, ainsi qu'un tutoriel vidéo.)
  • Mighty maker level belt  + (Set up a temporary circuit using a bread bSet up a temporary circuit using a bread board and solderless jumper cables. Set up your circuit as shown in the diagram Things to note: - There is a transistor for each of the Red, Blue and Green inputs of the RGB strip - Each transistor has 3 pins, one for GROUND, one for SIGNAL INPUT and one for SIGNAL OUTPUT - The signal input pin of each transistor is connected to a pin on the Arduino which will be controlled by the Arduino code - this will tell it whether this colour should illuminate or not. - The signal output pin of each transistor is connected to the corresponding connection on the RGB strip. - The Vin pin from the Arduino is connected to the 12V+ connection point on the RGB strip. This means that the power source is coming the computer when it is connected rather than a battery.hen it is connected rather than a battery.)
  • Conductive paint + Makey Makey  + (To check whether your conductive paint is To check whether your conductive paint is indeed conductive, we can run a test with the aid of a voltmeter. Paint a straight line on a sheet of paper. Then place the two ends of the voltmeter (the red one and the black one) each at one end of the line. Place the cursor of the voltmeter in a position to read the value of resistance and a number should display on your voltmeter.a number should display on your voltmeter.)
  • Conductive paint + Makey Makey  + (Simply mix the glue with the graphite powdSimply mix the glue with the graphite powder in equal parts. You can add more glue than graphite powder if you believe you don’t have enough powder. When done, add water as needed to reach the desired consistency. Your mixture needs to have roughly the same consistency as real paint. Watch [https://www.youtube.com/watch?v=phEke_LZJlk this] video for extra help.?v=phEke_LZJlk this] video for extra help.)
  • Water probe  + (Solder a strip of male headers (about 10 pSolder a strip of male headers (about 10 pins) onto the PCB. Beware that one pin needs to go into GND on the arduino board, another one into A5 and a third one into A0. Grab the 10kOhm resistor. Solder one end onto the header pin which goes into GND on the arduino board, the other end of the resistor onto the header pin which end on A0 in the arduino board. This way the resistor will basically create a bridge between GND and A0 on the arduino board. Grab two pieces of solid core wire (about 30cm long each)  and strip both ends of each piece. Solder one end of the first wire onto the header pin which ends in A5; solder one end of the second piece of wire onto the header pin which ends in A0 on the arduino board. Connect the other ends of the pieces of solid core wire to the binding post. One end goes into the red part of the post, the other end goes into the black part of the binding post. Now cut two pieces of solid core wire (about 10 cm long each), and strip both ends of each wire. Connect one end of each piece of wire to the metal ends of the binding post. Use the bolts to secure the solid core wire in place. Curl the other ends. Lastly, try placing the PCB on the arduino board, and make sure that one pin goes into GND, another into A0 and a third pin into A5., another into A0 and a third pin into A5.)
  • SoundCloud VS Spotify in 2021  + (SoundCloud has over 175 million listeners.SoundCloud has over 175 million listeners. SoundCloud's boost of users is possibly from a large number of independent music makers who want to build their music career. Spotify boasts of 365 million users. Spotify has the broadest reach and its users spread over the world. And this will definitely make it more and more popular.  efinitely make it more and more popular.  )
  • Refreshing Oxalis Kvas  + (Step 3: Boil then some water and pour it into the pot with herbs.)
  • How to create a 3D sculpture  + (Steps: # Download an install [https://appsSteps: # Download an install [https://apps.autodesk.com/FUSION/en/Detail/Index?id=8699194120463301363&os=Win64&appLang=en Slicer for Fusion 360]. # We prepared a smaller and easier to process 3d model. Import the [https://drive.google.com/open?id=1uPw3ygtbECCSpNSOifi8TfQXnzldtmON Einstein simplified model] or: ## Download the 3D model [https://www.thingiverse.com/thing:631037 Einstein bust from Thingiverse] . Just the file “EinsteinBustTongue.stl” is needed. The file is quite big, it will probably need a powerful computer ## Import the 3d model  EinsteinBustTongue.stl in Slicer # Set the units to mm # Set the desired size for the model. We suggest minimum 10cm height # Choose the desired sheet format in Manufacturing Settings # Choose the Construction Technique Stacked slices # In manufacturing settings click on the small gear icon in order to see the advanced options at the bottom of the screen: # Set the material thickness to the one you wish to use. Slot offset is usually 0.010 for most laser cutters. # Set the dowels, choose “cross”: setting two dowels makes the puzzle easier, as the slices will be unable to rotate and their orientation will be defined by the dowels.d their orientation will be defined by the dowels.)
  • How to create a 3D sculpture  + (Steps: # Download an install [https://appsSteps: # Download an install [https://apps.autodesk.com/FUSION/en/Detail/Index?id=8699194120463301363&os=Win64&appLang=en Slicer for Fusion 360]. # We prepared a smaller and easier to process 3d model. Import the [https://drive.google.com/open?id=1uPw3ygtbECCSpNSOifi8TfQXnzldtmON Einstein simplified model] or: ## Download the 3D model [https://www.thingiverse.com/thing:631037 Einstein bust from Thingiverse] . Just the file “EinsteinBustTongue.stl” is needed. The file is quite big, it will probably need a powerful computer ## Import the 3d model  EinsteinBustTongue.stl in Slicer # Set the units to mm # Set the desired size for the model. We suggest minimum 10cm height # Choose the desired sheet format in Manufacturing Settings # Choose the Construction Technique Stacked slices # In manufacturing settings click on the small gear icon in order to see the advanced options at the bottom of the screen: # Set the material thickness to the one you wish to use. Slot offset is usually 0.010 for most laser cutters. # Set the dowels, choose “cross”: setting two dowels makes the puzzle easier, as the slices will be unable to rotate and their orientation will be defined by the dowels.d their orientation will be defined by the dowels.)
  • SunZilla - Guide 4: Solar box  + (To physically anchor the the boxes togetheTo physically anchor the the boxes together, the joins need to be added. The joins hold the boxes in place on a wooden foot structure. This structure can be CNC-milled with the provided .DMX source file, which you can download below. You can also old-school wood-craft them, following the .PDF technical drawing, also downloadable below. After milling the foot structure, put the boxes in their places and drill 4 holes through the outside bottom rim of each box and the underlying wooden structure. Using these holes, the different parts are connected by a bent bicycle spoke. The shape of the spoke can be seen in the following figure. The shape of the spoke can be seen in the following figure bellow. The height of the “mouth” of the bent spoke depends on the thickness of the wooden foot (see diagram). It should 2-4 mm less than the added thickness of the box and the wooden foot. To bend the spoke, start from one side of the spoke and do one bending after the other by holding the spoke with pliers and bending then the longer end of the spoke with your hand in the shape you like.poke with your hand in the shape you like.)
  • PiKon telescope  + (The PiKon telescope is a robust design butThe PiKon telescope is a robust design but there are two issues that need care if you are to get the most out of your project. '''Dust and the Camera Sensor''' PiKon benefits from a very simple design that has just one optical component. The lens of the Raspberry Pi Camera is removed to allow imaging by the Optical Mirror. This means that the Raspberry Pi Camera sensor is exposed to dust and dirt. Adding sensor protection would add two optical surfaces to the design, so the sensor is left exposed. This is not a problem provided care is taken to avoid dust and dirt getting on the sensor. '''Care of the Mirror''' As with all reflecting telescopes, care must be taken to avoid damaging the mirror. When assembling or modifying the telescope be careful not to let components drop down the Telescope Tube onto the Mirror.p down the Telescope Tube onto the Mirror.)
  • Seeed MR60BHA1 Presence, Breathing, and Heartbeat Sensing  + (The [https://www.seeedstudio.com/60GHz-mmWThe [https://www.seeedstudio.com/60GHz-mmWave-Radar-Sensor-Breathing-and-Heartbeat-Module-p-5305.html?queryID=504dcf6317754ee7930d15192a311c71&objectID=5305&indexName=bazaar_retailer_products MR60BHA1] 60GHz mmWave Module is a versatile sensor that utilizes Frequency Modulation Continuous Wave (FMCW) detection to accurately measure breathing rate and heart rate, ensuring a completely private and secure environment, free from external interference. Equipped with a built-in standard algorithm and onboard antenna, the unit delivers simultaneous signal output with exceptional precision. It serves as an ideal solution for developing high-accuracy, self-regulating, privacy-protected, and secure biotic radar systems in consumer electronics, healthcare, and industrial applications. Block Diagram Beyond heart rate and respiration detection, the radar sensor can detect human presence in the operating area, enabling the creation of an automated device and appliance control system that conserves energy during unoccupied periods. Additionally, the system incorporates an IR temperature sensor to measure body temperature, allowing for illness and stress detection. Upon detecting significant vital variations, the buzzer activates as an alert. Simultaneously, all details are displayed on an LCD display and a mobile phone app via the ESP32 Wi-Fi module. The project involved various components, which can be identified in the Below provided image.ich can be identified in the Below provided image.)
  • Escooterfix - Relace mainboard any Xiaomi Mi electric scooter  + (The battery connects to the ESC via a '''yellow XT30 plug''', carefully pull this out)
  • Buzzing Bee Circuit  + (The battery holder can be found on TinkerCThe battery holder can be found on TinkerCAD as 'Battery Holder - Buzzing Bee' at the link This CAD will need to be saved as a .stl file Open the .stl file in the printer software for your printer After centring and adjusting the settings as needed, slice the print and transfer the new created file to the printer. PRINT!
    created file to the printer. PRINT! <br/>)
  • DIY Custom NeoPixel Rings From Scratch!  + (The next step in making your printed circuThe next step in making your printed circuit board is making your connections between your LEDs. NeoPixels each have one data-input pad and one data-output pad. First create a long chain starting with the pixel closest to where you plan on placing your interface pins, going from one pixel's data-out pin to the next pixel's data-in pin. After that you'll need to route power and ground. The easiest method I have come up with to do this is to use a combination of circles and semi-circles, four in total, alternating between power and ground as you move outward from the origin. This makes it easy to create a small "jumper" connection as apposed to manually wiring every since LED together, twice. The two pairs of circles/semi-circles can then be tied together whichever way is most convenient. Finally, a copper pour is added. This essentially just causes all extra space to be filled by "ground", which has multiple advantages including being easier to manufacture at home. You will also want to install one roughly .1uf capacitor between power and ground between each set of two LEDs. The manufacture recommends one per LED however its likely one per two will do and they are time consuming to solder. These are not necessary for the functionality of the device, they simply improve the lifespan of the LEDs, so they can be ignored if needed.he LEDs, so they can be ignored if needed.)
  • DIY Custom NeoPixel Rings From Scratch!  + (The next step in making your printed circuThe next step in making your printed circuit board is making your connections between your LEDs. NeoPixels each have one data-input pad and one data-output pad. First create a long chain starting with the pixel closest to where you plan on placing your interface pins, going from one pixel's data-out pin to the next pixel's data-in pin. After that you'll need to route power and ground. The easiest method I have come up with to do this is to use a combination of circles and semi-circles, four in total, alternating between power and ground as you move outward from the origin. This makes it easy to create a small "jumper" connection as apposed to manually wiring every since LED together, twice. The two pairs of circles/semi-circles can then be tied together whichever way is most convenient. Finally, a copper pour is added. This essentially just causes all extra space to be filled by "ground", which has multiple advantages including being easier to manufacture at home. You will also want to install one roughly .1uf capacitor between power and ground between each set of two LEDs. The manufacture recommends one per LED however its likely one per two will do and they are time consuming to solder. These are not necessary for the functionality of the device, they simply improve the lifespan of the LEDs, so they can be ignored if needed.he LEDs, so they can be ignored if needed.)
  • How to Combine Clips in iMovie  + (The first thing to do is running iMovie on your Mac computer. Then you need to click on "File" and choose "New Project" to begin a new project. After that, you can name the project and adjust some settings according to your desires.)
  • Arduino to ThingSpeak via SIM800 No Wi-Fi  + (The legacy project documents that were oriThe legacy project documents that were originally designed with the SIM800 module may necessitate slight adjustments. This project will prove invaluable to those who continue to rely on 2G and GPRS technology. It offers essential support and guidance for individuals who intend to persist with these communication methods. Sending data from an Arduino microcontroller to the ThingSpeak platform using a GPRS module, specifically the SIM800, is a fundamental concept. The crucial aspect is that this communication method operates independently of Wi-Fi, constituting an IoT connectivity solution that relies on GPRS for data transmission. 1 / 2 In this project, LM35 temperature sensor data is being transmitted to the ThingSpeak platform through an Arduino Nano and a SIM800 module. The SIM800 module is leveraged to establish a GPRS connection, facilitating the transmission of data to ThingSpeak at specified intervals. To ensure a reliable connection between ThingSpeak and the hardware, users must configure the SIM800 module to establish a connection with their mobile network. This configuration encompasses setting the Access Point Name (APN) specific to their mobile carrier. It's important to note that the specific AT commands for this configuration may vary based on the user's chosen mobile network provider. For this project, I utilized the services of the network provider '''Airtel''' to establish the connection. Communication between the hardware components, specifically the SIM800 module, Arduino Nano, and ThingSpeak platform, relies entirely on AT commands. To ensure successful project implementation and effectively troubleshoot any issues that may arise, users must possess a basic understanding of SIM800 AT commands. This knowledge is crucial for configuring, managing, and diagnosing the communication process and resolving potential challenges during the project.g potential challenges during the project.)
  • Straw connectors  + (The objects we have prototyped are severalThe objects we have prototyped are several different 3D printed straw connectors, allowing the construction of different shapes. They are easily done and cost-effective: it takes about 5 minutes of printing to achieve one item. It is possible to modify the design in order to adapt it to different straw diameters, and to different numbers of connected straws. These 3D printed straw connectors can be printed by designers, amateurs, teachers, educators, parents and even children, under appropriate supervision. The straw connectors designs can be downloaded from [https://www.thingiverse.com/thing:11255 here]..thingiverse.com/thing:11255 <u>here</u>].)
  • Straw connectors  + (The objects we have prototyped are severalThe objects we have prototyped are several different 3D printed straw connectors, allowing the construction of different shapes. They are easily done and cost-effective: it takes about 5 minutes of printing to achieve one item. It is possible to modify the design in order to adapt it to different straw diameters, and to different numbers of connected straws. These 3D printed straw connectors can be printed by designers, amateurs, teachers, educators, parents and even children, under appropriate supervision. The straw connectors designs can be downloaded from [https://www.thingiverse.com/thing:11255 here]..thingiverse.com/thing:11255 <u>here</u>].)
  • OpenKnit: digital fabrication tool to create your own clothes  + (You'll need to thread: two 20x20x800 mm bars: 6 mm tool on both sides. two 30x30x800 mm bars: 8 mm tool on both sides. two 30x30x162 mm bars: 8 mm tool on ONE side, plus one 8 mm hole on the top (see image).)
  • Replace LED Lights for Free Via Victoria Government Program  + (The process starts as soon as you make a request for a replacement under VEU program. You can contact replacement provider like Ecofin Solutions to address your enquiry.)
  • Ultimate Guide to Fix Tidal Not Playing Songs  + (The tidal app for music streaming is now aThe tidal app for music streaming is now available on Windows, iOS, and Android devices. You can get its app from its official website or from app stores. Well, some people have complained that they keep meeting issue of Tidal songs not playing and it is said the versions downloaded from '''Microsoft Store''' performs much better. You can take the below instructions as references. 1# Search for '''Microsoft Store''' from your '''Quick Start menu''' to launch the Microsoft Store on your computer. 2# Type in '''Tidal''' in the search bar and find the Tidal app in the appearing results. 3# In the detail page, tap '''Get''' to install the Tidal desktop on your computer.nstall the Tidal desktop on your computer.)
  • How to Play Spotify on Yoto Player  + (There is a companion Yoto app available onThere is a companion Yoto app available on mobile phones that can help us to upload our audio files including compatible Spotify downloads to Yoto cards for offline listening for free. As we know, Spotify songs are protected in a special OGG Vorbis format. In this case, you'd better download Spotify to MP3, AAC, and M4A files that are supported by Yoto. And [https://www.audfun.com/spotify-music-converter.html AudFun Spotify Music Converter] is a great shot. The '''AudFun Music Converter for Spotify''' is dedicated to downloading and converting Spotify songs, albums, playlists, audiobooks, and [https://www.audfun.com/spotify/download-spotify-podcasts-to-mp3.html Spotify podcasts to MP3], AAC, WAV, FLAC, M4A, and M4B '''without Spotify Premium'''. Also, it retains 100% original audio quality and full ID3 tags, which enables you to play Spotify music on Yoto Mini Player or Yoto Original Player without any metadata info loss.nal Player without any metadata info loss.)
  • FabCat House  + (Follow the steps to assembly the object, it shouldn't take you long. If the thickness of the planks is right, you shouldn't need to use any glue.)
  • FabCat House  + (Follow the steps to assembly the object, it shouldn't take you long. If the thickness of the planks is right, you shouldn't need to use any glue.)
  • Grown your own fabric with bacteria  + (This first step lasts about 1h.)
  • E-Textile Monster  + (This is where you need to decide what shapThis is where you need to decide what shape you want your monster to be and what components it will include. You need to make sure there is room for each of your components and the battery pack as well as decide where you want to squeeze the monster for the components to turn on. TIP: do not make your monster too big making your circuit components too spread out! Otherwise you will spend a long time sewing to connect the components together sewing to connect the components together)
  • Node Red with MQTT on Raspberry Pi  + (This project works without much additional hardware. The one and only requirement is you just need a Raspberry Pi.)
  • 8bits & Chocolate - decorative candy dispenser  + (For the modules assembly I suggest that you refer to the PDF files. You'll find the pieces numbering and how to assemle them (with a few additional hints))
  • Design a 3D object in Tinkercad  + (This video takes the educator through the This video takes the educator through the basics of Tinkercad. You will learn about designing simple solids (ex. cubes, tetrahedrons), and combining them together to produce a complex object https://openclassrooms.com/courses/imprimante-3d/modelisez-un-objet-en-3d#/id/video_Player_0/modelisez-un-objet-en-3d#/id/video_Player_0</u>)
  • How to Play Tidal on Galaxy Watch  + (To begin using Tidal on your Galaxy Watch,To begin using Tidal on your Galaxy Watch, you'll need to download and install the Tidal app. Follow these steps to get started: '''Step 1: Open the Galaxy Wearable App''' First, open the Galaxy Wearable app on your smartphone. This app allows you to manage and install applications on your Galaxy Watch. '''Step 2: Find and Install the Tidal App''' In the Galaxy Wearable app, navigate to the "Galaxy Store" section. Search for the Tidal app using the search bar and select it from the search results. Tap on "Install" to begin the installation process. '''Step 3: Sign in to your Tidal Account''' Once the Tidal app is installed on your Galaxy Watch, open it, and sign in using your Tidal account credentials. If you don't have a Tidal account yet, you can create one directly from the app.
    n create one directly from the app. <br/>)
  • Snap circuits activities for 12+  + (To begin with, kids will need to build or To begin with, kids will need to build or assemble a miniature house. They can build one using cardboard, or you can laser cut them in advance, using for example a 3mm thick MDF board. [https://drive.google.com/open?id=1JGQVbJy4yhH1qOw0H3IVO0c7uRhI1ZIY Here]’s the design of a miniature house, ready for laser cut. the design of a miniature house, ready for laser cut.)
  • Showerloop - Guide 4: Make the backplate  + (To fit inside the existing frame I had to bevel my 20mm plywood to half way. By clamping a straight piece of material onto the edge I could simply push against it with the router while moving laterally to get a clean and straight cut.)
  • Showerloop - Guide 4: Make the backplate  + (To fit inside the existing frame I had to bevel my 20mm plywood to half way. By clamping a straight piece of material onto the edge I could simply push against it with the router while moving laterally to get a clean and straight cut.)
  • Timelapes with Raspberry Pi Camera  + (To install the camera use the ribbon cable and press the side of the connector and pull up.)
  • How to Make Beautiful but Easy Handmade Valentine's Day Card  + (To make this beautiful card I used half-inTo make this beautiful card I used half-inch ribbon to make roses. I fold it like a triangle shape then twist it two or three times to make the center. Then our next step is to start twisting but you still have to roll the ribbon, then you have to do it every so often when you're going to twist the ribbon.ten when you're going to twist the ribbon.)
  • Robot dog  + (Une carte microcontrôleur sur laquelle on Une carte microcontrôleur sur laquelle on va connecter les 12 servo-moteurs (2 par patte), et un petit module WIFI ESP 8266 composent l'essentiel de ce robot. Vous trouverez dans la partie Fichiers (à coté de Outils et Matériaux) un lien vidéo pour l'assemblage.atériaux) un lien vidéo pour l'assemblage.)
  • Robot hexapode  + (Une carte microcontrôleur sur laquelle on Une carte microcontrôleur sur laquelle on va connecter les 12 servo-moteurs (2 par patte), et un petit module WIFI ESP 8266 composent l'essentiel de ce robot. Vous trouverez dans la partie Fichiers (à coté de Outils et Matériaux) un lien vidéo pour l'assemblage.
    x) un lien vidéo pour l'assemblage. <br/>)
  • How to Use Spotify as an Alarm on iPhone, Android, and Smart Speakers  + (Unfortunately, the default Clock app on iPUnfortunately, the default Clock app on iPhones does not integration with Spotify. However, you can use third-party alarm apps such as Music Alarm Clock for Spotify+ or Kello Alarm Clock to set Spotify songs as your alarm. Here's how: '''Step 1.''' Install and launch the Music Alarm Clock for Spotify+ app or Kello Alarm Clock app on your iPhone. '''Step 2.''' Sign in with your Spotify account on those alarm app and open the app settings. '''Step 3.''' Create a new alarm by tapping the Add button and setting a specific alarm time. '''Step 4.''' Select the alarm sound and choose Spotify as the source. Browse and add your preferred Spotify songs or playlists as the alarm sound. '''Step 5.''' Save the settings, and your alarm will wake you with Spotify songs.ur alarm will wake you with Spotify songs.)
  • Team Ace - Unilag  + (Upon sign up to the ACE app, the user is asked to provide information detailing their location, estimates of gas, fuel, electricity per month. These values are used to approximate the tonnes of carbon and other CFCs emitted by the user. <br/>)
  • Team Ace - Unilag  + (Upon sign up to the ACE app, the user is asked to provide information detailing their location, estimates of gas, fuel, electricity per month. These values are used to approximate the tonnes of carbon and other CFCs emitted by the user. <br/>)
  • Glowing LED Butterfly  + (Use TinkerCad to design the component thatUse TinkerCad to design the component that will be 3D printed. This is a great opportunity to develop your computer aided design (CAD) skills! What to think about.. - Needs to have holes for the light to go through - Needs to be big enough to hide the Arduino and PCB - Needs to be able to sit on the top of the 9V battery Pre-made butterfly design can be found through this linkrfly design can be found through this link)
  • SolarOSE - Guide 1: Support structure of the mirror field  + (Use the grinder to cut at the length of 2130 mm the two main squared tubes and at the length of 1430 mm the 2 square tubes for the support.)
  • SolarOSE - Guide 1: Support structure of the mirror field  + (Use the grinder to cut at the length of 2130 mm the two main squared tubes and at the length of 1430 mm the 2 square tubes for the support.)
  • Escooterfix - Replace front LED lamp Xiaomi Mi electric scooter  + (Using your nails or a plastic spudger, carefully lift the two plastic covers from the top of the stem. They are held on with foam tape so a hairdryer on a cool setting can warm the adhesive and aide the release if you are having difficulty.)
  • Replace dashboard and bluetooth card Xiaomi electric scooter  + (Using your nails or a plastic spudger, carefully lift the two plastic covers from the top of the stem. They are held on with foam tape so a hairdryer on a cool setting can warm the adhesive and aide the release if you are having difficulty.)
  • Jardinière en caisse de vin  + (Utiliser de la lasure incolore et un gros Utiliser de la lasure incolore et un gros pinceau. 3 couches sont nécessaires avec un temps de repos moyen de 2h (veillez à bien vérifier que votre caisse soit parfaitement sèche avant de poser une nouvelle couche). Vous pouvez utiliser des bouchons de bouteilles de lait pour poser votre caisse et permettre au dessous de sécher. caisse et permettre au dessous de sécher.)
  • Jardinière en caisse de vin  + (Utiliser de la lasure incolore et un gros Utiliser de la lasure incolore et un gros pinceau. 3 couches sont nécessaires avec un temps de repos moyen de 2h (veillez à bien vérifier que votre caisse soit parfaitement sèche avant de poser une nouvelle couche). Vous pouvez utiliser des bouchons de bouteilles de lait pour poser votre caisse et permettre au dessous de sécher. caisse et permettre au dessous de sécher.)
  • Jerry DIT : ordinateur fabriqué avec des composants de réemploi  + (Vous aurez besoin : Papier + Ciseaux + ScoVous aurez besoin : Papier + Ciseaux + Scotch + Stylo Définir l'emplacement de chaque composant. Repérer la taille du plus grand composant et marquer la ligne de découpe du couvercle. Rappelez vous que '''2 marques''' valent mieux qu'une ;)
    Les parois des jerrycans sont souvent arrondies et laissent moins de place pour les composants à l'intérieur. Pensez que les cables occupent également de l'espace.
    'intérieur. Pensez que les cables occupent également de l'espace.</div> </div>)
  • Jerry DIT : ordinateur fabriqué avec des composants de réemploi  + (Vous aurez besoin : Feuille de papier + crVous aurez besoin : Feuille de papier + crayon ou feutre Créer un gabari pour chaque composants. Marquer les dimensions des composants sur la feuille en faisant des points à chaque extrémités. Placer ensuite les gabaris au bidon avec du scotch pour repérer les emplacements des trous à percer.pérer les emplacements des trous à percer.)
  • Créer un film en stop motion avec des objets de récupération  + (Vous devez sélectionner des objets qui seront les héros de votre film, à savoir des personnages et des éléments de décors.)
  • No-Sew Sock Snowman with Rice in Minutes  + (We need to fill the sock with rice to shape the snowman and it will have a little weight so it won't tip over easily. Then tie it with wool thread.)
  • Nutridome I SDG 11 I South Africa  + (This is a PVC pipe that has been drilled wThis is a PVC pipe that has been drilled with holes we were going to use disposable plastic cups but we found some plastic growing cups in the store room and we used those. for this demonstration we are using an ordinary aquarium pump and pipes for the water flow. The bucket is just a normal bucket. The dome was made from 25mm PVC electrical wiring pipes. The dome was inspiration for the idea as we saw it at the Centre and realised its potential. the PVC pipes are held together with cable ties, glue and connectors. The shading is normal garden shade and plastic sheeting can be placed over the structure to create more controlled environments. This will be when you have put the hydroponic system with lighting inside the dome we just wanted to illustrate the look for the final product of the dome.he look for the final product of the dome.)
  • ESP32 with WebSerial: A Comprehensive Guide  + (WebSerial is a web standard that allows weWebSerial is a web standard that allows websites to communicate with serial devices. It bridges the web and the physical world, enabling web applications to interact with hardware devices. This opens up a world of possibilities for IoT projects, allowing real-time interaction between web applications and physical devices.een web applications and physical devices.)
  • Empty room activity v12  + (What you need[https://docs.google.com/docuWhat you need[https://docs.google.com/document/d/1HVWFDdyiLj6ORTMYcQF-VPyJCPGuPzeTj_FaKip4pS4/edit#heading=h.kft4zwyruhwh ?] 1 - A remote control device #Deedu; 2 - Environments Nodered and Blynq; 3 - A box whose purpose is to abstract the concept of the home environment. How to create the environment Here we have to describe how the miniature house is created, the environment to be simulated and the things you need to do it: How to build the box[https://docs.google.com/document/d/1HVWFDdyiLj6ORTMYcQF-VPyJCPGuPzeTj_FaKip4pS4/edit#heading=h.rocl9tvc6md5 ?] * We take a box of shoes that we no longer use; * With the help of a pair of scissors with a rounded tip, let's cut one of the shorter sides of the box. From here we could observe inside the box itself what will be simulated; * Let's cut the other minor side in the same way. From this we will insert the small fan; * By inserting the device inside the box, we created our miniature room and we are ready for the experiment. How to build the device? For the construction of the device, consult the guide at the following link: [LINK PINTEREST]. https://studio.youtube.com/video/Kr0x0o6c8DM/edit https://www.youtube.com/watch?v=UEqjpMs15jo To close everything in a wrapper, it may be useful to 3D print the suitable box whose source can be downloaded at the following link. https://www.thingiverse.com/thing:4062244 === How to put precisely the[https://docs.google.com/document/d/1HVWFDdyiLj6ORTMYcQF-VPyJCPGuPzeTj_FaKip4pS4/edit#heading=h.sci31hnwrn1 Blynk app]? === To set up the software system via Blynk, follow the guide: https://www.instructables.com/id/Digital-Environmental-Education-Domotics/ How to put precisely the server Nodered on Raspberry? To set up the Nodere software system, follow the guide: [LINK PINTEREST]. on Raspberry? To set up the Nodere software system, follow the guide: [LINK PINTEREST].)
  • Brightness control activity v12  + (What you need[https://docs.google.com/docuWhat you need[https://docs.google.com/document/d/1HVWFDdyiLj6ORTMYcQF-VPyJCPGuPzeTj_FaKip4pS4/edit#heading=h.kft4zwyruhwh ?] 1 - A remote control device #Deedu; 2 - Environments Nodered and Blynq; 3 - A box whose purpose is to abstract the concept of the home environment. How to create the environment Here we have to describe how the miniature house is created, the environment to be simulated and the things you need to do it: How to build the box[https://docs.google.com/document/d/1HVWFDdyiLj6ORTMYcQF-VPyJCPGuPzeTj_FaKip4pS4/edit#heading=h.rocl9tvc6md5 ?] * We take a box of shoes that we no longer use; * With the help of a pair of scissors with a rounded tip, let's cut one of the shorter sides of the box. From here we could observe inside the box itself what will be simulated; * Let's cut the other minor side in the same way. From this we will insert the small fan; * By inserting the device inside the box, we created our miniature room and we are ready for the experiment. room and we are ready for the experiment.)
  • How to Add Subtitles to YouTube Video  + (With [https://www.joyoshare.com/video-joinWith [https://www.joyoshare.com/video-joiner/ Joyoshare Video Joiner] downloaded and installed on your desktop, double-click to launch it. At the bottom left, click the "Open File" to browse your local file and select the target YouTube video. You can also drag your video to its interface quickly and simply.video to its interface quickly and simply.)
  • SolarOSE - Guide 5: CPC Reflector  + (With a cutter, cut a 340x680 mm rectangle With a cutter, cut a 340x680 mm rectangle of mirror sheet. Mind to protect the reflective surface of the mirror during the operation and to work on the back side. One needs to run the cutter several times to bite the metal and to fold back and forth in order to detach it.fold back and forth in order to detach it.)
  • SolarOSE - Guide 5: CPC Reflector  + (With a cutter, cut a 340x680 mm rectangle With a cutter, cut a 340x680 mm rectangle of mirror sheet. Mind to protect the reflective surface of the mirror during the operation and to work on the back side. One needs to run the cutter several times to bite the metal and to fold back and forth in order to detach it.fold back and forth in order to detach it.)
  • How to Play Spotify While Playing Roblox  + (With a few simple steps, you can now enjoy your favorite tunes from Spotify while immersing yourself in the world of Roblox, whether on mobile or PC.)
  • Cardboard Cable Car Model With Recycled Materials, Working Model 250rpm Electric Motor and Basic Slide Switch ON-OFF-ON (School Science Project)  +
  • Node-Red Telegram Bot with Temperature Logger Part-2  + (You must check out [https://www.pcbway.comYou must check out [https://www.pcbway.com/ PCBWAY] for ordering PCBs online for cheap! You get 10 good-quality PCBs manufactured and shipped to your doorstep for cheap. You will also get a discount on shipping on your first order. Upload your Gerber files onto [https://www.pcbway.com/ PCBWAY] to get them manufactured with good quality and quick turnaround time. PCBWay now could provide a complete product solution, from design to enclosure production. Check out their online Gerber viewer function. With reward points, you can get free stuff from their gift shop. Also, check out this useful blog on PCBWay Plugin for KiCad from [https://www.pcbway.com/blog/News/PCBWay_Plug_In_for_KiCad_3ea6219c.html here.] Using this plugin, you can directly order PCBs in just one click after completing your design in KiCad.ick after completing your design in KiCad.)
  • Node Red with Raspberry Pi  + (You must check out [https://www.pcbway.comYou must check out [https://www.pcbway.com/ PCBWAY] for ordering PCBs online for cheap! You get 10 good-quality PCBs manufactured and shipped to your doorstep for cheap. You will also get a discount on shipping on your first order. Upload your Gerber files onto [https://www.pcbway.com/ PCBWAY] to get them manufactured with good quality and quick turnaround time. PCBWay now could provide a complete product solution, from design to enclosure production. Check out their online Gerber viewer function. With reward points, you can get free stuff from their gift shop.u can get free stuff from their gift shop.)
  • Node Red Controlled Web LED on ESP32 with Raspberry Pi 4  + (You must check out [https://www.pcbway.comYou must check out [https://www.pcbway.com/ PCBWAY] for ordering PCBs online for cheap! You get 10 good-quality PCBs manufactured and shipped to your doorstep for cheap. You will also get a discount on shipping on your first order. Upload your Gerber files onto [https://www.pcbway.com/ PCBWAY] to get them manufactured with good quality and quick turnaround time. PCBWay now could provide a complete product solution, from design to enclosure production. Check out their online Gerber viewer function. With reward points, you can get free stuff from their gift shopou can get free stuff from their gift shop)
  • Ethernet-Enhanced LoRa Gateway Minimizing Delay  + (You must check out [https://www.pcbway.comYou must check out [https://www.pcbway.com/ PCBWAY] for ordering PCBs online for cheap! You get 10 good-quality PCBs manufactured and shipped to your doorstep for cheap. You will also get a discount on shipping on your first order. Upload your Gerber files onto [https://www.pcbway.com/ PCBWAY] to get them manufactured with good quality and quick turnaround time. PCBWay now could provide a complete product solution, from design to enclosure production. Check out their online Gerber viewer function. With reward points, you can get free stuff from their gift shop. Also, check out this useful blog on PCBWay Plugin for KiCad from [https://www.pcbway.com/blog/News/PCBWay_Plug_In_for_KiCad_3ea6219c.html here.] Using this plugin, you can directly order PCBs in just one click after completing your design in KiCad.ick after completing your design in KiCad.)
  • DHT11 with ESPNOW  + (You must check out [https://www.pcbway.comYou must check out [https://www.pcbway.com/ PCBWAY] for ordering PCBs online for cheap! You get 10 good-quality PCBs manufactured and shipped to your doorstep for cheap. You will also get a discount on shipping on your first order. Upload your Gerber files onto [https://www.pcbway.com/ PCBWAY] toget them manufactured with good quality and quick turnaround time. PCBWay now could provide a complete product solution, from design to enclosure production. Check out their online Gerber viewer function. With reward points, you can get free stuff from their gift shop.u can get free stuff from their gift shop.)
  • M5Stick C Captive Portal  + (You must check out [https://www.pcbway.comYou must check out [https://www.pcbway.com/ PCBWAY] for ordering PCBs online for cheap! You get 10 good-quality PCBs manufactured and shipped to your doorstep for cheap. You will also get a discount on shipping on your first order. Upload your Gerber files onto [https://www.pcbway.com/ PCBWAY] to get them manufactured with good quality and quick turnaround time. PCBWay now could provide a complete product solution, from design to enclosure production. Check out their online Gerber viewer function. With reward points, you can get free stuff from their gift shop.u can get free stuff from their gift shop.)
  • Node Red Controlled Neo Pixel on Raspberry Pi 4  + (You must check out [https://www.pcbway.comYou must check out [https://www.pcbway.com/ PCBWAY] for ordering PCBs online for cheap! You get 10 good-quality PCBs manufactured and shipped to your doorstep for cheap. You will also get a discount on shipping on your first order. Upload your Gerber files onto [https://www.pcbway.com/ PCBWAY] to get them manufactured with good quality and quick turnaround time. PCBWay now could provide a complete product solution, from design to enclosure production. Check out their online Gerber viewer function. With reward points, you can get free stuff from their gift shop.u can get free stuff from their gift shop.)
  • Water Quality Monitoring System Based on IOT  + (You must check out [https://www.pcbway.comYou must check out [https://www.pcbway.com/ PCBWAY] for ordering PCBs online for cheap! You get 10 good-quality PCBs manufactured and shipped to your doorstep for cheap. You will also get a discount on shipping on your first order. Upload your Gerber files onto [https://www.pcbway.com/ PCBWAY] to get them manufactured with good quality and quick turnaround time. PCBWay now could provide a complete product solution, from design to enclosure production. Check out their online Gerber viewer function. With reward points, you can get free stuff from their gift shop.u can get free stuff from their gift shop.)
  • Line Follower Robot - King of Maze  + (You must check out [https://www.pcbway.comYou must check out [https://www.pcbway.com/ PCBWAY] for ordering PCBs online for cheap! You get 10 good-quality PCBs manufactured and shipped to your doorstep for cheap. You will also get a discount on shipping on your first order. Upload your Gerber files onto [https://www.pcbway.com/ PCBWAY] to get them manufactured with good quality and quick turnaround time. PCBWay now could provide a complete product solution, from design to enclosure production. Check out their online Gerber viewer function. With reward points, you can get free stuff from their gift shop.u can get free stuff from their gift shop.)
  • Temperature Control Neo Pixels with Arduino Nano  + (You must check out [https://www.pcbway.comYou must check out [https://www.pcbway.com/ PCBWAY] for ordering PCBs online for cheap! You get 10 good-quality PCBs manufactured and shipped to your doorstep for cheap. You will also get a discount on shipping on your first order. Upload your Gerber files onto [https://www.pcbway.com/ PCBWAY] to get them manufactured with good quality and quick turnaround time. PCBWay now could provide a complete product solution, from design to enclosure production. Check out their online Gerber viewer function. With reward points, you can get free stuff from their gift shop. Also, check out this useful blog on PCBWay Plugin for KiCad from [https://www.pcbway.com/blog/News/PCBWay_Plug_In_for_KiCad_3ea6219c.html here]. Using this plugin, you can directly order PCBs in just one click after completing your design in KiCad.ick after completing your design in KiCad.)
  • Getting Started with TivaWare Launchpad - Basics  + (You must check out [https://www.pcbway.comYou must check out [https://www.pcbway.com/ PCBWAY] to order PCBs online for cheap! You get 10 good-quality PCBs manufactured and shipped to your doorstep for cheap. You will also get a discount on shipping on your first order. Upload your Gerber files onto [https://www.pcbway.com/ PCBWAY] to get them manufactured with good quality and quick turnaround time. PCBWay now could provide a complete product solution, from design to enclosure production. Check out their online Gerber viewer function. With reward points, you can get free stuff from their gift shop.u can get free stuff from their gift shop.)
  • Neo Pixels Ring with Arduino Nano  + (You must check out [https://www.pcbway.comYou must check out [https://www.pcbway.com/ PCBWAY] for ordering PCBs online for cheap! You get 10 good-quality PCBs manufactured and shipped to your doorstep for cheap. You will also get a discount on shipping on your first order. Upload your Gerber files onto [https://www.pcbway.com/ PCBWAY t]o get them manufactured with good quality and quick turnaround time. PCBWay now could provide a complete product solution, from design to enclosure production. Check out their online Gerber viewer function. With reward points, you can get free stuff from their gift shop. Also, check out this useful blog on PCBWay Plugin for KiCad from [https://www.pcbway.com/blog/News/PCBWay_Plug_In_for_KiCad_3ea6219c.html here. U]sing this plugin, you can directly order PCBs in just one click after completing your design in KiCad.ick after completing your design in KiCad.)
  • AWS IoT Core IoT Platform Series - 6  + (You must check out [https://www.pcbway.comYou must check out [https://www.pcbway.com/ PCBWAY f]or ordering PCBs online for cheap! You get 10 good-quality PCBs manufactured and shipped to your doorstep for cheap. You will also get a discount on shipping on your first order. Upload your Gerber files onto [https://www.pcbway.com/ PCBWAY t]o get them manufactured with good quality and quick turnaround time. PCBWay now could provide a complete product solution, from design to enclosure production. Check out their online Gerber viewer function. With reward points, you can get free stuff from their gift shop.u can get free stuff from their gift shop.)
  • Getting Started with ESP-NOW  + (You must check out [https://www.pcbway.comYou must check out [https://www.pcbway.com/ PCBWAY] for ordering PCBs online for cheap! You get 10 good-quality PCBs manufactured and shipped to your doorstep for cheap. You will also get a discount on shipping on your first order. Upload your Gerber files onto [https://www.pcbway.com/ PCBWAY] to get them manufactured with good quality and quick turnaround time. PCBWay now could provide a complete product solution, from design to enclosure production. Check out their online Gerber viewer function. With reward points, you can get free stuff from their gift shop.u can get free stuff from their gift shop.)
  • Appliances Control with ESPNOW  + (You must check out [https://www.pcbway.comYou must check out [https://www.pcbway.com/ PCBWAY] for ordering PCBs online for cheap! You get 10 good-quality PCBs manufactured and shipped to your doorstep for cheap. You will also get a discount on shipping on your first order. Upload your Gerber files onto [https://www.pcbway.com/ PCBWAY] to get them manufactured with good quality and quick turnaround time. PCBWay now could provide a complete product solution, from design to enclosure production. Check out their online Gerber viewer function. With reward points, you can get free stuff from their gift shop.u can get free stuff from their gift shop.)
  • ESP32 DHT22 IFTTT  + (You will need a Python IDE such as Thonny for this project. You can use any IDE, but for this project, we are using Thonny. To install and use Thonny: *Go to https://thonny.org/ *Download *Install and then open)
  • Marble Machine No 1 Motor Assembly Instructions  + (The parts can be glued together in one go The parts can be glued together in one go and the parts held in place with rubber bands  The bottom '''should not '''be glued but can be used to hold parts aligned while the glue dries. The bottom is left loose for access to switch and batteries. If you don't want the text to be visible, simply turn the part so it face inwards. When viewed from the front the holes for the motor mount (circled in red) should face left as shown in the picture below.d face left as shown in the picture below.)
  • Analogic Drawing Pad  + (You will need to draw 10 pulleys in total.You will need to draw 10 pulleys in total. To draw the pulleys, just place them on the board and draw their contour. Place de pulleys marked with “1” at 2cm from the sides of the board, and 5cm from the bottom of the board (the bottom of the board is the longest side). bottom of the board is the longest side).)
  • Analogic Drawing Pad  + (You will need to draw 10 pulleys in total.You will need to draw 10 pulleys in total. To draw the pulleys, just place them on the board and draw their contour. Place de pulleys marked with “1” at 2cm from the sides of the board, and 5cm from the bottom of the board (the bottom of the board is the longest side). bottom of the board is the longest side).)
  • Energy saving house with ESP32  + (You will need to use Arduino IDE to code aYou will need to use Arduino IDE to code and upload the firmware onto your ESP32 board. Download the software by visiting [https://www.arduino.cc/en/Main/Software? Arduino IDE] > Scroll down until you see the “Download the Arduino IDE” section and choose the version based upon your operating system (e.g. If you have Windows 7, choose “Windows Installer” / if you have Windows 10, choose “Windows app”) > On the next page choose “Just download” and run the installation files. “Just download” and run the installation files.)
  • Pet that lights up upon interaction  + (You will need to use Arduino IDE to code aYou will need to use Arduino IDE to code and upload the firmware onto your ESP32 board. Download the software by visiting [https://www.arduino.cc/en/Main/Software? Arduino IDE] > Scroll down until you see the “Download the Arduino IDE” section and choose the version based upon your operating system (e.g. If you have Windows 7, choose “Windows Installer” / if you have Windows 10, choose “Windows app”) > On the next page choose “Just download” and run the installation files. “Just download” and run the installation files.)
  • Pet that lights up upon interaction  + (You will need to use Arduino IDE to code aYou will need to use Arduino IDE to code and upload the firmware onto your ESP32 board. Download the software by visiting [https://www.arduino.cc/en/Main/Software? Arduino IDE] > Scroll down until you see the “Download the Arduino IDE” section and choose the version based upon your operating system (e.g. If you have Windows 7, choose “Windows Installer” / if you have Windows 10, choose “Windows app”) > On the next page choose “Just download” and run the installation files. “Just download” and run the installation files.)
  • Energy saving house with ESP32  + (You will need to use Arduino IDE to code aYou will need to use Arduino IDE to code and upload the firmware onto your ESP32 board. Download the software by visiting [https://www.arduino.cc/en/Main/Software? Arduino IDE] > Scroll down until you see the “Download the Arduino IDE” section and choose the version based upon your operating system (e.g. If you have Windows 7, choose “Windows Installer” / if you have Windows 10, choose “Windows app”) > On the next page choose “Just download” and run the installation files. “Just download” and run the installation files.)
  • Simple Train Blocking System  + (You'll need to cut the rails or isolate thYou'll need to cut the rails or isolate them to make sure each block is independent. The last track is the security track and is isolated from the rest. The sticker on the plaque is right on the security track. What you see before is the main track (stop zone) and what you see after is the stop zone of the next block. after is the stop zone of the next block.)
  • Adjustable Temperature Control Cheap T12 Soldering Iron  + ([https://www.youtube.com/watch?v=N4z2Y4gvmio Youtube Test Video])
  • Etage jardinière  + (fichiers -         La jardinière dans laquelle on placera la plante -         Le 4<sup>ème</sup> étage, dans lequel on installera le servo-moteur)
  • Etage jardinière  + (fichiers -         La jardinière dans laquelle on placera la plante -         Le 4<sup>ème</sup> étage, dans lequel on installera le servo-moteur)
  • Malinette  + (http://files.wikifab.org/f/fb/Malinette_boite-malinette-laser.svg)
  • Malinette  + (http://files.wikifab.org/f/fb/Malinette_boite-malinette-laser.svg)
  • Concentrateur Solaire  + (https://www.youtube.com/edit?video_id=uUmUF-qjH24&video_referrer=watch)
  • Concentrateur Solaire  + (https://www.youtube.com/edit?video_id=uUmUF-qjH24&video_referrer=watch)
  • Montaje 3DSteel V2 - Tutorial 4 - Puesta a Punto  + ( # Encendemos la impresora. # Comprobamos que no muestre ningún mensaje de error y que la información tenga sentido. )
  • ASKotec Tutorials - DIY Simple analog synth  + ( # Take your time and look at the schematic. Start with + and run through the different ways till you end back to - pole # The second image shows you the pins you are going to use # Go and mark all pins on your board )
  • ASKotec Tutorials - DIY Simple analog synth  + ( # Take your time and look at the schematic. Start with + and run through the different ways till you end back to - pole # The second image shows you the pins you are going to use # Go and mark all pins on your board )
  • Montaje 3DSteel - Tutorial 4 - Puesta a Punto  + ( #Encendemos la impresora. #Comprobamos que no muestre ningún mensaje de error y que la información tenga sentido. )
  • Tree planting preparation (Sadhana Forest method)  + ( #Install the tube on the planting zone, # #Install the tube on the planting zone, #Dig dirt from uphill part of the planting zone, #Add the dirt around the tube to form a mound (looks like a volcano), #Add humanure, urine-activated charcoal and soil (e.g. topsoil from other grown trees) in the tube; opsoil from other grown trees) in the tube; )
  • Tree planting preparation (Sadhana Forest method)  + ( #Install the tube on the planting zone, # #Install the tube on the planting zone, #Dig dirt from uphill part of the planting zone, #Add the dirt around the tube to form a mound (looks like a volcano), #Add humanure, urine-activated charcoal and soil (e.g. topsoil from other grown trees) in the tube; opsoil from other grown trees) in the tube; )
  • Potato Tower  + ( #If necessary, collect the stones (see '' #If necessary, collect the stones (see ''"Gather construction material"''), #Collect the potato eyes, #Collect the soil, #If available, collect the compost or other organic fertilizer solution you want to use for your potatoes, #If necessary and possible, already collect mulching material (corn stalks, rice hulls, hay, straw, dry leaves, BRF …); rice hulls, hay, straw, dry leaves, BRF …); )
  • Potato Tower  + ( #If necessary, collect the stones (see '' #If necessary, collect the stones (see ''"Gather construction material"''), #Collect the potato eyes, #Collect the soil, #If available, collect the compost or other organic fertilizer solution you want to use for your potatoes, #If necessary and possible, already collect mulching material (corn stalks, rice hulls, hay, straw, dry leaves, BRF …); rice hulls, hay, straw, dry leaves, BRF …); )
  • Commande et instrumentation de trottinette électrique 500W avec Arduino méga  + (<nowiki>'''2. Bibliographie :'''<'''2. Bibliographie :'''

    Lien download :

    '''sketch_escooter_feed_back_reel_V1.ino''' 

    https://drive.google.com/file/d/0B_fB3GAsM02FSlRTWHdyRkhuUW8/view?usp=sharing

    '''escooter_ampli_SIMULINK.mdl'''

    https://drive.google.com/file/d/0B_fB3GAsM02FOW9OdmlhdDhJZGc/view?usp=sharing

    '''escooter feed back ISIS.DSN'''

    https://drive.google.com/file/d/0B_fB3GAsM02FOXdRWFN5OWRMQkE/view?usp=sharing

    En anglais

    https://forum.arduino.cc/index.php?topic=477397.0

    article : « Etude de trottinettes électriques 100W et 500W (Arduino), Revue 3EI 2017 »

    En attente

    '''3. Programme en boucle ouverte''' 

    Pour tester la programmation, nous simulons le programme dans ISIS, comme on peut le voir sur la figure suivante. De plus, nous avons un afficheur LCD pour afficher des données (rapport cyclique correspondant à la PWM à 32Khz, le courant moteur, la tension moteur, l'action sur les boutons poussoirs. En effet, 4 boutons poussoirs sont utilisés.

    BP1 pour incrémenter manuellement le rapport cyclique, BP2 le  décrémenter. BP3 mettre le rapport cyclique à 0, correspondant au contact frein. 

    La vitesse du moteur est pratiquement proportionnelle au rapport cyclique

    https://i58.servimg.com/u/f58/17/56/35/17/a211.jpg

    Nous avons réalisé notre propre amplificateur de courant qui s'appelle un hacheur abaisseur mais il est possible d'acheter un shield

    Il existe de nombreuses cartes pour Arduino pour commander des moteurs DC surtout de faibles puissances et aussi de grandes puissances comme on peut l'observer sur les liens suivants. 

    http://www.robotpower.com/products/MegaMotoPlus_info.html

    http://www.robotshop.com/en/dc-motor-driver-2-15a.html

    https://www.pololu.com/file/0J51/vnh3sp30.pdf

    https://i58.servimg.com/u/f58/17/56/35/17/a310.jpg

    mais, tous ces hacheurs shields mesurent le courant en interne mais il n'y a pas de limitation de courant. 

    Pour avoir une limitation de courant il faut une boucle de courant analogique en utilisant des AOP ou CI spécialisée ou une boucle de courant numérique rapide.

    Mais quel doit être la valeur du courant de limitation ?

    Le choix de la valeur du courant est normalement pour le Service de fonctionnement 1 heure pour pouvoir effectuée des montées relativement longue sans atteindre la température critique du moteur.

    Dans notre cas, le courant de limitation devra etre de 

    Imoteur limitation=Puissance/Ubatterie=500W/24 V=20A

    De plus, le transistor de puissance du hacheur ne peut supporter que 50A dans notre cas.

    Mais en boucle ouverte, il n'a pas de régulation de courant, pour ne pas avoir de dépassement du courant maximum, une rampe du rapport cyclique sera utilisé.

    Une routine d'interruption de 0.1 seconde sera utilisé pour faire la mesure de la tension est du courant (échantillon de mesure, sample ). Ce temps de sampler est arbitraire, mais ne permet pas d'être plus rapide que le temps de montée du courant car la constante de temps électrique du moteur étant de  L/R= 1.5ms.

    Le fonctionnement en boucle ouverte avec une rampe de 25.5s (8bit et routine d'interruption de 0.1s) permet de bien comprendre la problématique du fonctionnement d'une commande à moteur DC.

    l'affichage se fera seulement tous les 0.2s pour avoir une stabilité des chiffres à l’écran. De plus, un filtrage numérique, se fera sur le courant et la tension sur 4 valeurs donc sur 0.4s.

    '''Algo boucle ouverte'''

    Routine d'interruption toutes les 0.1S

    Lire tension et courant

    Boucle loop (scrutation des boutons poussoirs) 

    Si BP1=1 alors incrementer PWM

    Si BP2=1 alors décrementer PWM

    Si BP3=1 alors PWM=0

    Affichage des variables tous les 0.2s

    '''code'''

    {{

    // include the library code:

    #include

    #include

    #include

    #define SERIAL_PORT_LOG_ENABLE 1

    #define Led     13       // 13 pour la led jaune sur la carte

    #define BP1     30       // 30 BP1

    #define BP2     31       // 31 BP2           

    #define BP3     32       // 32 BP3

    #define LEDV    33       // 33 led

    #define LEDJ    34       // 34 led

    #define LEDR    35       // 35 led

    #define relay   36       // 36 relay

    #define PWM10    10      //11   timer2    

    LiquidCrystal lcd(27, 28, 25, 24, 23, 22); // RS=12, Enable=11, D4=5, D5=4, D6= 3, D7=2, BPpoussoir=26

    // Configuration des variables

    unsigned   int UmoteurF = 0;  // variable to store the value coming from the sensor

    unsigned   int Umoteur = 0;

    unsigned   int Umoteur2 = 0;

    unsigned   int Umoteur3 = 0;

    unsigned   int Umoteur4 = 0;

    unsigned   int ImoteurF = 0;  

    unsigned   int Imoteur = 0;

    unsigned   int Imoteur2 = 0;

    unsigned   int Imoteur3 = 0;

    unsigned   int Imoteur4 = 0;

    byte Rcy=0 ;    //rapport cyclique  8bit

    unsigned    int temps;

    // the setup function runs once when you press reset or power the board

    void setup() {

    pinMode(Led, OUTPUT);   //led carte arduino

    pinMode(LEDV, OUTPUT);

    pinMode(LEDR, OUTPUT);

    pinMode(LEDJ, OUTPUT);

    pinMode (PWM10,OUTPUT);     // broche (10) en sortie  timer2

    //  digitalWrite(LEDV,LOW);

    Timer1.initialize(100000);         // initialize timer1, and set a 0,1 second period =>  100 000

    Timer1.attachInterrupt(callback);  // attaches callback() as a timer overflow interrupt

    lcd.begin(20, 4);  

    Serial1.begin(9600); 

    TCCR2B = (TCCR2B & 0b11111000)
    r power the board<br /><br />void setup() {<br /><br />pinMode(Led, OUTPUT);   //led carte arduino<br /><br />pinMode(LEDV, OUTPUT);<br /><br />pinMode(LEDR, OUTPUT);<br /><br />pinMode(LEDJ, OUTPUT);<br /><br />pinMode (PWM10,OUTPUT);     // broche (10) en sortie  timer2<br /><br />//  digitalWrite(LEDV,LOW);<br /><br />Timer1.initialize(100000);         // initialize timer1, and set a 0,1 second period =>  100 000<br /><br />Timer1.attachInterrupt(callback);  // attaches callback() as a timer overflow interrupt<br /><br />lcd.begin(20, 4);  <br /><br />Serial1.begin(9600); <br /><br />TCCR2B = (TCCR2B & 0b11111000)</nowiki>)
  • Commande et instrumentation de trottinette électrique 500W avec Arduino méga  + (<nowiki>'''2. Bibliographie :'''<'''2. Bibliographie :'''

    Lien download :

    '''sketch_escooter_feed_back_reel_V1.ino''' 

    https://drive.google.com/file/d/0B_fB3GAsM02FSlRTWHdyRkhuUW8/view?usp=sharing

    '''escooter_ampli_SIMULINK.mdl'''

    https://drive.google.com/file/d/0B_fB3GAsM02FOW9OdmlhdDhJZGc/view?usp=sharing

    '''escooter feed back ISIS.DSN'''

    https://drive.google.com/file/d/0B_fB3GAsM02FOXdRWFN5OWRMQkE/view?usp=sharing

    En anglais

    https://forum.arduino.cc/index.php?topic=477397.0

    article : « Etude de trottinettes électriques 100W et 500W (Arduino), Revue 3EI 2017 »

    En attente

    '''3. Programme en boucle ouverte''' 

    Pour tester la programmation, nous simulons le programme dans ISIS, comme on peut le voir sur la figure suivante. De plus, nous avons un afficheur LCD pour afficher des données (rapport cyclique correspondant à la PWM à 32Khz, le courant moteur, la tension moteur, l'action sur les boutons poussoirs. En effet, 4 boutons poussoirs sont utilisés.

    BP1 pour incrémenter manuellement le rapport cyclique, BP2 le  décrémenter. BP3 mettre le rapport cyclique à 0, correspondant au contact frein. 

    La vitesse du moteur est pratiquement proportionnelle au rapport cyclique

    https://i58.servimg.com/u/f58/17/56/35/17/a211.jpg

    Nous avons réalisé notre propre amplificateur de courant qui s'appelle un hacheur abaisseur mais il est possible d'acheter un shield

    Il existe de nombreuses cartes pour Arduino pour commander des moteurs DC surtout de faibles puissances et aussi de grandes puissances comme on peut l'observer sur les liens suivants. 

    http://www.robotpower.com/products/MegaMotoPlus_info.html

    http://www.robotshop.com/en/dc-motor-driver-2-15a.html

    https://www.pololu.com/file/0J51/vnh3sp30.pdf

    https://i58.servimg.com/u/f58/17/56/35/17/a310.jpg

    mais, tous ces hacheurs shields mesurent le courant en interne mais il n'y a pas de limitation de courant. 

    Pour avoir une limitation de courant il faut une boucle de courant analogique en utilisant des AOP ou CI spécialisée ou une boucle de courant numérique rapide.

    Mais quel doit être la valeur du courant de limitation ?

    Le choix de la valeur du courant est normalement pour le Service de fonctionnement 1 heure pour pouvoir effectuée des montées relativement longue sans atteindre la température critique du moteur.

    Dans notre cas, le courant de limitation devra etre de 

    Imoteur limitation=Puissance/Ubatterie=500W/24 V=20A

    De plus, le transistor de puissance du hacheur ne peut supporter que 50A dans notre cas.

    Mais en boucle ouverte, il n'a pas de régulation de courant, pour ne pas avoir de dépassement du courant maximum, une rampe du rapport cyclique sera utilisé.

    Une routine d'interruption de 0.1 seconde sera utilisé pour faire la mesure de la tension est du courant (échantillon de mesure, sample ). Ce temps de sampler est arbitraire, mais ne permet pas d'être plus rapide que le temps de montée du courant car la constante de temps électrique du moteur étant de  L/R= 1.5ms.

    Le fonctionnement en boucle ouverte avec une rampe de 25.5s (8bit et routine d'interruption de 0.1s) permet de bien comprendre la problématique du fonctionnement d'une commande à moteur DC.

    l'affichage se fera seulement tous les 0.2s pour avoir une stabilité des chiffres à l’écran. De plus, un filtrage numérique, se fera sur le courant et la tension sur 4 valeurs donc sur 0.4s.

    '''Algo boucle ouverte'''

    Routine d'interruption toutes les 0.1S

    Lire tension et courant

    Boucle loop (scrutation des boutons poussoirs) 

    Si BP1=1 alors incrementer PWM

    Si BP2=1 alors décrementer PWM

    Si BP3=1 alors PWM=0

    Affichage des variables tous les 0.2s

    '''code'''

    {{

    // include the library code:

    #include

    #include

    #include

    #define SERIAL_PORT_LOG_ENABLE 1

    #define Led     13       // 13 pour la led jaune sur la carte

    #define BP1     30       // 30 BP1

    #define BP2     31       // 31 BP2           

    #define BP3     32       // 32 BP3

    #define LEDV    33       // 33 led

    #define LEDJ    34       // 34 led

    #define LEDR    35       // 35 led

    #define relay   36       // 36 relay

    #define PWM10    10      //11   timer2    

    LiquidCrystal lcd(27, 28, 25, 24, 23, 22); // RS=12, Enable=11, D4=5, D5=4, D6= 3, D7=2, BPpoussoir=26

    // Configuration des variables

    unsigned   int UmoteurF = 0;  // variable to store the value coming from the sensor

    unsigned   int Umoteur = 0;

    unsigned   int Umoteur2 = 0;

    unsigned   int Umoteur3 = 0;

    unsigned   int Umoteur4 = 0;

    unsigned   int ImoteurF = 0;  

    unsigned   int Imoteur = 0;

    unsigned   int Imoteur2 = 0;

    unsigned   int Imoteur3 = 0;

    unsigned   int Imoteur4 = 0;

    byte Rcy=0 ;    //rapport cyclique  8bit

    unsigned    int temps;

    // the setup function runs once when you press reset or power the board

    void setup() {

    pinMode(Led, OUTPUT);   //led carte arduino

    pinMode(LEDV, OUTPUT);

    pinMode(LEDR, OUTPUT);

    pinMode(LEDJ, OUTPUT);

    pinMode (PWM10,OUTPUT);     // broche (10) en sortie  timer2

    //  digitalWrite(LEDV,LOW);

    Timer1.initialize(100000);         // initialize timer1, and set a 0,1 second period =>  100 000

    Timer1.attachInterrupt(callback);  // attaches callback() as a timer overflow interrupt

    lcd.begin(20, 4);  

    Serial1.begin(9600); 

    TCCR2B = (TCCR2B & 0b11111000)
    r power the board<br /><br />void setup() {<br /><br />pinMode(Led, OUTPUT);   //led carte arduino<br /><br />pinMode(LEDV, OUTPUT);<br /><br />pinMode(LEDR, OUTPUT);<br /><br />pinMode(LEDJ, OUTPUT);<br /><br />pinMode (PWM10,OUTPUT);     // broche (10) en sortie  timer2<br /><br />//  digitalWrite(LEDV,LOW);<br /><br />Timer1.initialize(100000);         // initialize timer1, and set a 0,1 second period =>  100 000<br /><br />Timer1.attachInterrupt(callback);  // attaches callback() as a timer overflow interrupt<br /><br />lcd.begin(20, 4);  <br /><br />Serial1.begin(9600); <br /><br />TCCR2B = (TCCR2B & 0b11111000)</nowiki>)
  • Bentolux - Module qualité de l'air ambiant  + ( *Decoupe au laser des parois de la boite (DOC1) *Assemblage de la boite (DOC2) *Branchement des composants (DOC3) *Programmation du code pour faire interagir les élements (ecran LCD, capteur Temp/Hum, anneau OLED) (DOC4) <br/> )
  • PP Sheetpress  + (====Tools==== same as above ====Parts========Tools==== same as above ====Parts==== 36 corner brackets ====Steps==== # Prepare your parts. Each "cell" will require 4 brackets, 16 M8Bolts, and 16 washers # Starting with the 4 corners of the ''entire assembly'', attach the corner brackets and tighten the bolts only to finger-tight. # Next attach the 920 beam ends to the outer perimeter. # Next, attach the inner beams in place. Ensure that all beams are equally spaced. (remember that the 2 interior beams are shorter though)
    interior beams are shorter though) <br/>)
  • Cheap and Cute Digital PhotoFrame Without SD Card on ESP8266and1-8inch TFT  + (<nowiki>1.8 TFT Panel ST7735 https:/1.8 TFT Panel ST7735 https://www.aliexpress.com/item/32913848470.html

    1.8 TFT Panel ST7735 https://www.banggood.com/1_441_82_02_22_42_8-Inch-TFT-LCD-Display-Module-Colorful-Screen-Module-SPI-Interface-p-1494883.html

    ESP8266 WEMOS D1 https://www.aliexpress.com/item/33036965281.html

    3D Printed Case https://www.thingiverse.com/thing:4097143

    Some Wires & Soldering Iron.
    m/thing:4097143<br /><br />Some Wires & Soldering Iron.</nowiki>)
  • Virtual Fence - Anti Theft Device  + (<nowiki>A Fence is a physical boundaA Fence is a physical boundary, which is used to restrict kids and dogs from exiting the border Boundaries provide a layer of security, which also restricts entry from outside. But these boundaries need to be maintained heavily. And once an object has moved out or stolen, then the theft cannot be further located.

    This brings us to a solution, which is geofencing a physical device attached to our belonging. This belonging would be a mere part of the IoT - Internet of ''''Things'.'''


    The above pictorial is a sample of Geofence in a public area. Best part? Since it is on a virtual map, having a virtual fence would have no effect on whether you own the area. This area could be your Home, Office, favorite Coffee Shop, or even parlor.

    But before we get started -
    e Coffee Shop, or even parlor.<br /><br />But before we get started -</nowiki>)
  • How to Delete Tidal Account Permanently without Subscription  + (<nowiki>If you are using Apple produIf you are using Apple products such as iOS devices, you will find a Delete Account option on your iOS Tidal app. Just follow the steps below to close Tidal account permanently.


    Step 1. Open the Tidal app on your iPhone.

    Step 2. Tap the top-right '''gear''' icon from the '''My Collection''' section to go to Tidal '''Settings'''.

    Step 3. Scroll down and choose ''''Manage account''''.

    Step 4. On the new screen, tap the bottom ''''Delete account'''' option.


    gt;Step 4. On the new screen, tap the bottom ''''Delete account'''' option.<br /><br /><br/></nowiki>)
  • How to Set Tidal Sleep Timer  + (<nowiki>If you are using an Android If you are using an Android phone, you need to install a professional Sleep Timer app from the Google Play store on your Android device and then create a sleep timer according to your needs. Now, look at the steps below.

    '''Step 1.''' Download ''''Sleep Timer (Turn music off)'''' on your Android from Google Play.

    '''Step 2.''' Launch the app and tap on the three vertical dots in the top right corner of the home screen.

    '''Step 3.''' On the '''Setting''' menu, click ''''Player to launch on start'''' and select ''''Tidal'''' from the app list.

    '''Step 4.''' Go back to the '''Settings''' menu and then choose ''''On sleep'''' > ''''Perform action'''' to personalize details of the sleep timer for Tidal music.
    ''' > ''''Perform action'''' to personalize details of the sleep timer for Tidal music.</nowiki>)
  • Copier Youtube  + (En France, vous êtes soumis à une taxe qui vous autorise à réaliser des copies Pour un usage privé, vous bénéficiez d'une exception qui vous permet de faire cette copie sans que cela ne soit illégal!!! http://www.procirep.fr/Bases-juridiques.html)
  • Copier Youtube  + (En France, vous êtes soumis à une taxe qui vous autorise à réaliser des copies Pour un usage privé, vous bénéficiez d'une exception qui vous permet de faire cette copie sans que cela ne soit illégal!!! http://www.procirep.fr/Bases-juridiques.html)
  • Qubitro Device Data - IoT Platform Series  + (<nowiki>To get started with Qubitro,To get started with Qubitro, we will first need to create an account. Go to the Qubitro website (https://www.qubitro.com/) and click on the "Sign Up" button. You will be prompted to enter ''Full Name'', ''Email Address,Country'', and ''password'' to create your account.


    Once, we have created the account, we can log in from '''https://portal.qubitro.com/login.''' However, we shall automatically be logged in to our account.
    shall automatically be logged in to our account.</nowiki>)
  • Water probe 9-11 activities  + (<nowiki>To have a functioning water To have a functioning water probe, you ll need to upload a specific program onto the arduino uno board.

    Here is the sketch you need to upload:

    /*

    Water Conductivity Monitor

    Sketch for an Arduino gadget that measures the electrical

    conductivity of water.

    This example code is based on example code that is in the public domain.

    */

    const float ArduinoVoltage = 5.00; // CHANGE THIS FOR 3.3v Arduinos

    const float ArduinoResolution = ArduinoVoltage / 1024;

    const float resistorValue = 10000.0;

    int threshold = 3;

    int inputPin = A0;

    int ouputPin = A5;

    void setup()

    {

    Serial.begin(9600);

    pinMode(ouputPin, OUTPUT);

    pinMode(inputPin, INPUT);

    }

    void loop()

    {

    int analogValue=0;

    int oldAnalogValue=1000;

    float returnVoltage=0.0;

    float resistance=0.0;

    double Siemens;

    float TDS=0.0;

    while(((oldAnalogValue-analogValue)>threshold)
    ><br />int oldAnalogValue=1000;<br /><br />float returnVoltage=0.0;<br /><br />float resistance=0.0;<br /><br />double Siemens;<br /><br />float TDS=0.0;<br /><br />while(((oldAnalogValue-analogValue)>threshold)</nowiki>)
  • Automated Gardening Plant with arduino Uno under the DEEDU project  + (<nowiki>You will need<br /><You will need

    electronic control and command part (listed below)

    water tank

    a plant in a pot

    a box for electronic (https://www.thingiverse.com/thing:4106140)

    3d printed light sensor support (https://www.thingiverse.com/thing:3986667)

    3d printed sprinkler (https://www.thingiverse.com/thing:3986672)

    For the Command & Control part the material used are the following:

    - 1 Arduino UNO link

    - 1 moisture sensor link

    - 1 CO2 Gas sensor Mq7 link

    - 1 Lcd screen 2x16 (+i2c)) link

    - 1 LDR light sensor (photoresistor) link

    - 2 push buttons link

    - 1 Temp + humidity sensor DHT11 link

    - 1 5V water pump link

    - 1 5v relay link

    - 3 1k resistor link

    - 1 Breadbord or prototyping PCB link

    -2 5v power supply link
    link<br /><br />- 1 5V water pump link<br /><br />- 1 5v relay link<br /><br />- 3 1k resistor link<br /><br />- 1 Breadbord or prototyping PCB link<br /><br />-2 5v power supply link</nowiki>)
  • 3D CNC milling avec CAM Fusion 360  + (<section class="step"><br />Be

    Before beginning CAM programming, you need to consider the part and the best approach to machining. These decisions depend on the shape of the model, the material, and the constraints of the CNC machine you are using. In this lesson, you will learn how these factors impact your machining strategy with respect to workholding, registration (making sure the CNC knows where the part is), and CAM settings.

    3D Toolpathing

    If you completed the CAD and CAM Class, you worked with 2D toolpaths, in which the end mill stays at a fixed depth (Z-level) throughout a machining pass, moving only in X and Y while cutting. This type of machining is ideal for prismatic parts - parts in which all machined faces lie normal to the machine tool spindle.

    When programming non-prismatic parts, such as molds or organic shapes like the the parts below, 2D operations are insufficient. You need to use 3D CAM operations, in which the end mill moves dynamically in X, Y, and Z.

    Workholding

    Workholding is the strategy for holding your part rigidly during the machining process. When programming with 3D toolpaths, workholding is an important initial consideration. This is especially true of parts that require machining on both sides, when the part will be flipped between setups.

    When programming for prismatic parts, you may have noticed that 2D and 2.5D CAM only requires a CAD model of the part that you want to machine, without any extra features for workholding attachment or registration. This is because the part takes the shape of a rectangular prism, which can be held easily inside a vise or fixed to a spoiler board.

    But what do you do when your shape is more organic or irregular, and also must be flipped to machine on both sides? In this case, you need to model additional material that will hold your part inside a vise, against a spoiler board, or flat against the bottom of the machine. It's very hard to program the CAM without having these features incorporated into your model.

    In other words, 3D flip machining requires that you model the stock you want left behind, as well as tabs to prevent your part from coming loose inside the machine. These tabs will be cut off and sanded down after machining, usually with a bandsaw and disk sander.

    Note: Another, more advanced, technique for workholding for irregular shapes in metal is a soft jaw system. You would machine your own custom aluminum jaws to use with a Lang or Kurt vise, and these custom jaws would hold your part after the flip. No tabs needed.

    For your serving spoon, you will have two tabs--one on each end--and a rectangular prism of stock that will hold the spoon flat after the flip. When modeling, it's a good idea to make your stock and tabs another body, separate from your part.

    Registration

    Because the spoon will be machined from both sides (flip machining), you need a way to ensure that the CNC machine can locate the part accurately after it has been moved. This is called registration.

    If you have used the Haas before, you're familiar with using a probe to locate your part . The DMS, however, like many table routers, does not have a probe. When using the DMS to locate the origin of your Work Coordinate System (Work Home), you will insert a tool into the spindle and jog it to the correct location. It's common to trap a piece of paper between the stock and the tool to ensure that Z is correct. In the DMS machine class you will learn how to enter the codes to set your WCS in this way. As you might imagine, this system is not accurate, because you're just "eyeballing" this location.

    This means that if you have a part that requires flip machining, you need to consider how to get the two sides to line up properly with one another. There are lots of options, and they all have advantages and disadvantages based on the specifics of your part. Some common methods include:

    --Attaching stops to your spoiler board (waste board under your part that can be machined) or machine bed

    --Machining a contour into your spoiler board, then placing your stock exactly inside that contour

    --Drilling holes for dowels that go into the spoiler board beneath your part (most accurate)

    This final technique is the the method you will use for the spoon. While machining the front side of the spoon, you will also drill three holes through the stock and partially into the spoiler board. After you flip your part, you will insert dowels through the holes and into the spoiler board that will align your part perfectly with your first side.

    CAM Settings

    The specifics of the project - machining wood on the DMS router - will also determine some of the choices you make when programming toolpaths.


    
-Tool numbering

    If you are a Pier 9 shop user, you will be using the DMS tool library. When you have simulated and finalized your CAM program, make sure that your tools are labeled in the chronological order that they are used. You will learn later in this class how to edit tool numbers.

    Remember that the chronological tool numbers in your program do not correspond to the numbers in the DMS tool library drawer. For instance, the fifth tool you use in your program might be the 1" Rough Short End Mill, which is labeled #34 in the DMS library. You will see the DMS library number in the comment for each tool, which will appear in your setup sheet (machining plan). You will learn later how to generate setup sheets.

    If you are not using Pier 9's DMS, you'll either be using custom tools, or tools from your own tool library. If using your own library, be sure to label your tools in the chronological order they will be used.

    -Rules for roughing

    Machining in wood or plastic on the DMS is not high speed machining (HSM). This means that you may use Adaptive toolpaths for roughing, but you cannot use the whole length of the cutter.

    When machining wood or plastic, follow the Stepover and Stepdown Rule: The stepover and stepdown should never exceed 50% of the tool diameter.
    lt;br />Machining in wood or plastic on the DMS is not high speed machining (HSM). This means that you may use Adaptive toolpaths for roughing, but you cannot use the whole length of the cutter.<br /><br />When machining wood or plastic, follow the Stepover and Stepdown Rule: The stepover and stepdown should never exceed 50% of the tool diameter.<br /></section>)
  • Bento Red Room  + ('''3D Printing''' * Filament: PVA and ABS'''3D Printing''' * Filament: PVA and ABS * Wood '''Electronic''' * 1 Arduino Uno cards * male-male and male-female prototyping cables * LCD SSD1306 128 x 64 * 1 LED 8mm * 2 ring of 12 LEDs * 1 potentiometer * 1 BME280 weather sensor * 1 switch * 1 x 5V power supply * 220 and 10000 Ohms resistors * 3 x servomotors * Buzzer === Tools === '''Machines''' * 3D printer * Découpeur de laser '''Software''' * Tinkercad, Microsoft 3D builder, Blender * Cura Ultimaker * Arduino '''Prototyping''' * soldering iron * cutting pliers * wire stripper * glueon * cutting pliers * wire stripper * glue)
  • Bento Night Sky  + ('''3D Printing''' *Filament: PVA and ABS '''3D Printing''' *Filament: PVA and ABS *Wood '''Electronic ''' *1 Arduino Uno cards *male-male and male-female prototyping cables *LCD SSD1306 128 x 64 *1 LED 8mm *2 ring of 12 LEDs *1 potentiometer *1 BME280 weather sensor *1 switch *1 x 5V power supply *220 and 10000 Ohms resistors *3 x servomotors *Buzzer ===Tools=== '''Machines''' *3D printer *Découpeur de laser '''Software ''' *Tinkercad, Microsoft 3D builder, Blender *Cura Ultimaker *Arduino '''Prototyping''' *soldering iron *cutting pliers *wire stripper *glue iron *cutting pliers *wire stripper *glue)
  • E-Club  + ('''<u>Le produit</u>''': Il s'''Le produit''': Il s'agit du système d'accroche du club. Nous allons le coller avec de la glue sur le boitier. Le système se referme sur le club à l'aide de vis. '''Problèmes rencontrés''': Ce système d'accroche n'est valable que pour un seul diamètre de club. '''Lien vers le projet sur Fusion360''': http://a360.co/2IF5VpB '''Prix''': 0.04€ + 0.04€ = 0.08€(pour les deux parties de la boite) '''Temps''': 0h10min + 0h14min = 0h24min (pour les deux parties de la boite)ite) <u>'''Temps'''</u>: 0h10min + 0h14min = 0h24min (pour les deux parties de la boite))
  • L'éolienne  + ('''Ce tutoriel montre comment fabriquer un'''Ce tutoriel montre comment fabriquer une petite éolienne à partir de vieux moteurs pas à pas d’imprimantes ou de photocopieurs. Elle permettra par exemple de recharger un téléphone portable.''' '''1 - La rotation des pales''' Sous l’effet du vent, l’hélice, aussi appelée rotor, se met en marche. Ses pales tournent. Le rotor à 4 pales est placé en haut d’un mât pour prendre plus de vent. '''2 - La production d’électricité''' L’hélice entraîne un moteur pas à pas d’imprimante. Grâce à l’énergie fournie par la rotation des pales le moteur pas à pas produit un courant électrique alternatif. '''3 - Le circuit électrique''' Le circuit sert à « traiter » le courant en sortie du moteur, afin qu’il puisse être utilisé pour charger un téléphone, ou un autre appareil à partir d’un port USB. Il est composé : - De redresseurs qui « redressent » la tension à la sortie du moteur afin de récupérer un courant continu. - D’un condensateur permettant de redistribuer l’électricité de façon constante, car le vent fournit une énergie non continue. - D’un régulateur de tension qui limite la tension du courant électrique produit par le moteur au voltage voulu, ici 5V. La rotation de l’éolienne nécessite une vitesse de vent minimale d’environ 10 à 15 km/h pour démarrer.male d’environ 10 à 15 km/h pour démarrer.)
  • L'éolienne  + ('''Ce tutoriel montre comment fabriquer un'''Ce tutoriel montre comment fabriquer une petite éolienne à partir de vieux moteurs pas à pas d’imprimantes ou de photocopieurs. Elle permettra par exemple de recharger un téléphone portable.''' '''1 - La rotation des pales''' Sous l’effet du vent, l’hélice, aussi appelée rotor, se met en marche. Ses pales tournent. Le rotor à 4 pales est placé en haut d’un mât pour prendre plus de vent. '''2 - La production d’électricité''' L’hélice entraîne un moteur pas à pas d’imprimante. Grâce à l’énergie fournie par la rotation des pales le moteur pas à pas produit un courant électrique alternatif. '''3 - Le circuit électrique''' Le circuit sert à « traiter » le courant en sortie du moteur, afin qu’il puisse être utilisé pour charger un téléphone, ou un autre appareil à partir d’un port USB. Il est composé : - De redresseurs qui « redressent » la tension à la sortie du moteur afin de récupérer un courant continu. - D’un condensateur permettant de redistribuer l’électricité de façon constante, car le vent fournit une énergie non continue. - D’un régulateur de tension qui limite la tension du courant électrique produit par le moteur au voltage voulu, ici 5V. La rotation de l’éolienne nécessite une vitesse de vent minimale d’environ 10 à 15 km/h pour démarrer.male d’environ 10 à 15 km/h pour démarrer.)
  • Pet-feeder : distributeur de croquettes Arduino imprimé en 3D  + (Vérifiez que la vis sans fin tourne librement)
  • Pet-feeder : distributeur de croquettes Arduino imprimé en 3D  + ('''Durée:''' 28h 49min '''Composants nécessaires: ''' *Les STLs de votre box *Cura by dagoma ou *Cura 15.04.3 + profil de discovery 200 ou *Votre slicer préféré '''Outils:''' *Votre ordinateur *Une imprimante 3D)
  • Dispositif de sécurité à enregistrement de zone de tir  + (Afin de valider le principe, j'ai réalisé Afin de valider le principe, j'ai réalisé une maquette constituée par un "fusil photographique" auquel j'ai adjoint le système de repérage de la ligne de visée (circuit BNO055 + carte Arduino + buzzer). '''Les photos 1 et 2''' montrent les différents éléments de cette maquette: 1) Un smart phone fixé sur le fusil en bois permet d'enregistrer ce que voit et entend le chasseur lors de l'enregistrement et lors de la phase de chasse. L'objectif du smartphone est situé à l'endroit où se trouve l’œil du chasseur. Cet objectif voit le guidon du fusil en même temps que l'endroit précis visé dans le paysage. 2) Le système de repérage inertiel de la ligne de visée se compose - d'un petit circuit imprimé portant l'unité de mesure inertielle BNO055 - d'une carte de contrôle (Arduino UNO) reliée au BNO055 par un petit câble (alimentation + interface I2C). 3) J'ai également ajouté un buzzer à cette carte. Ce buzzer produit tous les signaux sonores nécessaires pour le suivi de l'enregistrement et de la phase de chasse. '''Nota:''' A l'origine j'aurais souhaité allonger la liaison I2C de façon que seul le petit circuit imprimé du BNO055 se trouve fixé au fusil, la carte de contrôle étant logée dans une poche de veste. Malheureusement la liaison I2C supporte mal l'allongement de la liaison. Pour un développement futur il faudrait donc plutôt utiliser la liaison UART du circuit.lutôt utiliser la liaison UART du circuit.)
  • How to Share Spotify Song on Snapchat  + ('''''Q: Is there a way to share and at the'''''Q: Is there a way to share and at the same time, play Spotify music on Snapchat?''''' '''A:''' Spotify hasn’t rolled out the playing option on Snapchat yet. To do so, you have to download music from Spotify in advance and share the full song file on Snapchat to your friends. But then again, Spotify songs are protected by DRM and users are not allowed to play them on any other platforms.So a third party tool like [https://www.tuneskit.com/music-converter-for-spotify/ TunesKit Spotify Music Converter] is needed to transform Spotify DRM songs into common audio files such as MP3, AAC and M4A. Then you can apply them into any platform without restrictions. '''TunesKit Spotify Music Converter''' is a feature-rich tool designed to convert Spotify Ogg files into 6 types of common audio formats including MP3, FLAC, AAC, WAV, M4A and M4B. With a 5X faster converting speed, it maintains the output files with 100% original audio quality. '''Step 1 Launch TunesKit and Import Spotify Songs''' Open TunesKit Spotify Music Converter. And then drag and drop songs from Spotify into TunesKit’s interface, and they’ll be automatically imported. '''Step 2 Set Up Output Format and Configurations''' Turn to Preference and then enter Convert menu. There're 6 types of output formats you can choose including MP3, M4A, M4B, AAC, WAV and FLAC. You can also customize the output channel, sample rate and bit rate. '''Step 3 Start Converting''' Click the "Convert" button and TunesKit will start operating. When it is all done, click the "Converted" button and you'll get the output file list. '''Step 4 Share and Play Spotify Songs on Snapchat''' Connect your phone with your computer, and then send the converted Spotify song files to your phone. Now you can share these songs to your friends and listen to them together on Snapchat.s and listen to them together on Snapchat.)
  • Bentolux a code  + ('''Matériaux :''' *contreplaqué de peupli'''Matériaux :''' *contreplaqué de peuplier 3mm 800*500mm (pour 2 boîtes) *colle à bois *serre-joint *Filament PLA pour les supports écran OLED et LCD (cf fichier joint) *tapis de découpe (pour garder un plan de travail propre) '''Electronique''' : *Une carte Arduino Uno *4 borniers wago *Un moteur solenoide 6 volts *Un keypad 4x3 *Un écran LCD *Un connecteur de pile 9V *Une diode 1N4004 *Une résistance de 2,2k (ou 1k) *Un transistor TIP102 *Un anneau 12 LED neopixel '''Machines :''' * Découpeuse laser Perez Camp 13/90 * Imprimante 3D Creality ender3 '''Logiciels''' : * Tinkercad * Arduino IDE * Ultimaker Cura* Tinkercad * Arduino IDE * Ultimaker Cura)
  • Turn signal biking jacket  + ('''Plan the aesthetic and electrical layou'''Plan the aesthetic and electrical layout of your piece''' Decide where each component is going to go and figure out how you will sew them together with as few thread crossings as possible. Make a sketch of your design that you can refer to as you work. The photos below show the sketches for my jacket. Stitching for power (+) is shown in red, ground (-) in black, LEDs in green, and switch inputs in purple.EDs in green, and switch inputs in purple.)
  • Turn signal biking jacket  + ('''Plan the aesthetic and electrical layou'''Plan the aesthetic and electrical layout of your piece''' Decide where each component is going to go and figure out how you will sew them together with as few thread crossings as possible. Make a sketch of your design that you can refer to as you work. The photos below show the sketches for my jacket. Stitching for power (+) is shown in red, ground (-) in black, LEDs in green, and switch inputs in purple.EDs in green, and switch inputs in purple.)
  • Drone aile volante  + ( *Commencez par couper les marges avec une *Commencez par couper les marges avec une règle et un cutter, prenez garde à suivre correctement le tracé en pointillé. *Se munir du tube de colle, puis encollez la feuille du coin en haut à gauche (Répartissez de la colle sur toute la surface du verso ) , là positionner sur un carton plein d'au moins 76cm*50.6cm et de 3mm d'épaisseur. Les deux bords en traits pleins doivent être superposés aux bords du carton. *Encoller la seconde section, là positionner à côté de la première en veillant à ce que les repères coïncident. *Poursuivre ceci jusqu'à ce que tout le plan soit reconstitué, puis faire de même pour les quatre autres. Les deux derniers peuvent êtres découpés pour utiliser les chutes de cartons. *Laisser sécher quelques heures. *A l'aide d'un cutter et d'une règle découper les pièces une par une sur les très pleins, évider les parties à évider. Les courbes peuvent êtres découpé à la scie à champ tourné. *Pour terminer poncer les bords des pièces découpés. miner poncer les bords des pièces découpés. )
  • OpenReflex: 3D Printed Camera  + (1- Start by putting the two M3 hexagonal n1- Start by putting the two M3 hexagonal nuts in the holes provided for on the Body. It's a tight fit, so you'll need to push a bit. You can screw a screw from the other side for pull the nut. 2- Install the BackCover on its axis and insert the nut & bolt. The BackCover should fit nicely and rotate freely on its axis. Also set the BackShutter on his groove on the Body. 3- Put the UnwinderP2 and the UnwinderButton in place in the Cover. They should rotate, but not too much. 4- Set the Unwinder and the two FilmGuides in place in the Body. Put the Cover over all of this. You'll have to turn the UnwinderButton to align it with the Unwinder. Note : If the FilmGuide don't rotate on their axis it's not a problem. 5- Once everything is in place, put squared nuts in the columns and screw them in place through the Cover. 6- Algih the BackCover with the Cover and screw them together. Everything should fit in place, the UnwinderButton should make the Unwinder turn with some friction and the BackShutter should slide on its groove. All done ! For the Rewinder and the final light proofing we'll see this later. ;) final light proofing we'll see this later. ;))
  • OpenReflex: 3D Printed Camera  + (1- Start by putting the two M3 hexagonal n1- Start by putting the two M3 hexagonal nuts in the holes provided for on the Body. It's a tight fit, so you'll need to push a bit. You can screw a screw from the other side for pull the nut. 2- Install the BackCover on its axis and insert the nut & bolt. The BackCover should fit nicely and rotate freely on its axis. Also set the BackShutter on his groove on the Body. 3- Put the UnwinderP2 and the UnwinderButton in place in the Cover. They should rotate, but not too much. 4- Set the Unwinder and the two FilmGuides in place in the Body. Put the Cover over all of this. You'll have to turn the UnwinderButton to align it with the Unwinder. Note : If the FilmGuide don't rotate on their axis it's not a problem. 5- Once everything is in place, put squared nuts in the columns and screw them in place through the Cover. 6- Algih the BackCover with the Cover and screw them together. Everything should fit in place, the UnwinderButton should make the Unwinder turn with some friction and the BackShutter should slide on its groove. All done ! For the Rewinder and the final light proofing we'll see this later. ;) final light proofing we'll see this later. ;))
  • SolarOSE : concentrateur solaire thermique linéaire de fresnel  + ('''Sorties:''' Le concentrateur de démonst'''Sorties:''' Le concentrateur de démonstration : * champ de miroirs * récepteur * système électronique * usage de démonstration + déchets et ressources restantes : restes de miroir, restes de métal (chutes d’acier, visserie, plomberie), restes de bois, restes d’isolant, restes de colle, restes de mastic.solant, restes de colle, restes de mastic.)
  • SolarOSE : concentrateur solaire thermique linéaire de fresnel  + ('''Sorties:''' Le concentrateur de démonst'''Sorties:''' Le concentrateur de démonstration : * champ de miroirs * récepteur * système électronique * usage de démonstration + déchets et ressources restantes : restes de miroir, restes de métal (chutes d’acier, visserie, plomberie), restes de bois, restes d’isolant, restes de colle, restes de mastic.solant, restes de colle, restes de mastic.)
  • Wio WM1110: Quick Start Guide for Seamless Integration  + ('''This guide explains the steps to seamle'''This guide explains the steps to seamlessly integrate the WM1110 sensor module with The Things Network (TTN) and ThingSpeak for data transmission and visualization.''' The [https://www.seeedstudio.com/Wio-WM1110-Dev-Kit-p-5677.html?queryID=86ddeaf2f0e1846781c93ee0739996d3&objectID=5677&indexName=bazaar_retailer_products seeed studio Wio-WM1110 Dev Kit] is based on the [https://www.seeedstudio.com/Wio-WM1110-Module-LR1110-and-nRF52840-p-5676.html?queryID=777e87bf936e9951b01169e582eaaa0b&objectID=5676&indexName=bazaar_retailer_products Wio-WM1110] Wireless Module, which integrates both a Semtech LoRa® transceiver and a multi-purpose radio front-end for geolocation functionalities. The LoRa® transceiver enables low-power, high-sensitivity network coverage, while GNSS (GPS/BeiDou) and Wi-Fi scanning work together to offer comprehensive location coverage. Additionally, the Dev Kit provides connectivity options for a variety of peripherals, making it a versatile platform for developing diverse IoT applications. The [https://www.seeedstudio.com/Wio-WM1110-Module-LR1110-and-nRF52840-p-5676.html?queryID=777e87bf936e9951b01169e582eaaa0b&objectID=5676&indexName=bazaar_retailer_products Wio-WM1110] is a powerful fusion positioning module designed for developing low-power, long-range IoT applications. It combines the capabilities of the [https://www.semtech.com/products/wireless-rf/lora-edge/lr1110 Semtech LR1110] LoRa transceiver and the [https://www.nordicsemi.com/products/nrf52840 Nordic nRF52840] microcontroller, offering a comprehensive solution for building connected devices with the following features: * '''Long-range wireless communication:''' Utilizing Semtech's LoRa technology, the Wio-WM1110 enables low-power communication over vast distances, making it ideal for connecting devices in remote locations. * '''Global Navigation Satellite System (GNSS):''' Integrated GNSS support, including GPS and BeiDou, provides accurate location tracking capabilities for your IoT devices. * '''Wi-Fi connectivity:''' In addition to LoRaWAN and GNSS, the Wio-WM1110 also offers Wi-Fi connectivity, providing another option for device communication and internet access. * '''Bluetooth:''' The module further extends its connectivity options by supporting Bluetooth protocols, enabling communication with other Bluetooth-enabled devices. * '''Fusion positioning:''' By combining the data from LoRaWAN, GNSS, Wi-Fi, and Bluetooth, the Wio-WM1110 can achieve highly accurate and reliable positioning, even in challenging environments. * '''Low-power operation:''' The Wio-WM1110 is designed for low-power consumption, allowing your devices to operate for extended periods on battery power. * '''Open-source platform:''' The Wio-WM1110 is based on an open-source platform, providing developers with access to the underlying hardware and software, allowing for greater customization and flexibility. and software, allowing for greater customization and flexibility.)
  • VERBIS - Desktop 8x8 RGB LED Matrix Word Clock  + ('''Wooden photo frame''' You can make you'''Wooden photo frame''' You can make your own frame, there are a dozen of articles about this, even here on Instructables. But a simpler solution would be finding a framing company where you can order a personalized frame with your required dimensions and you can choose from many frame types. This is exactly what I did. I ordered my frames with a specific dimension: the framed photo, in my case object (display) is 80x80mm. I also asked for an accurate dimension, I didn't want the frame to be too big for the 3D printed plastic grid. '''Plexiglass support''' The plexiglass support can be also be made DIY but for an amateur it is not very easy to cut and blend plexiglass. So I ordered several supports from an advertising company that makes all kinds of plexiglass objects. The dimensions I used are: width - 120mm, first part length - 180mm, second part length - 50mm, 15° bending angle. '''Display plexiglass sheet''' The 3mm grey smoked plexiglass sheet can be cut from a bigger sheet, obtaining the required 80x80mm dimension. '''Plastic grid''' The STL file for 3D printing can be downloaded from [https://www.tinkercad.com/things/arRYOVE5Lbk Tinkercad] '''Display Printed Paper Sheet''' The SVG file for the Printed Paper Sheet is attached, and it can be edited with Inkscape. You can make your own display layout based on this SVG file, I used [https://www.wordsearchkit.com/ Word Search Construction Kit] software to generate a words layout for the time display. You can print the file repeatedly on the same sheet of paper to achieve a good, opaque, black background. I got very good results with a cheap inkjet printer and standard white copier paper. I cut off the layout with a pair of scissors. '''Plastic box for electronics''' The files that you can 3d print are also on [https://www.tinkercad.com/things/2vKBHQ1HEI3 Tinkercad]. I used some already purchased jewelry boxes, I only designed a new box base because the boxes were too tall. The files on Tinkercad are based on this type of boxes. '''Detailed instructions''' (follow the images above) * choose (and mark) a side of the frame to be the top of the clock, clean the smoked plexiglass sheet, put it in the frame; * place the printed paper sheet and the 3D printed grid; * drill with 2 mm diameter bit through the plastic grid to make room for the screws in the frame; * screw the plastic grid; * mark on the frame the place for holes and lock the frame to the plexiglass support; * drill the holes with a 2mm diameter bit (enlarge the holes in the support with a 3mm diameter bit, make the coining with a 10mm diameter bit) and screw it all together. The last image shows an almost finished enclosure. image shows an almost finished enclosure.)
  • VERBIS - Desktop 8x8 RGB LED Matrix Word Clock  + ('''Wooden photo frame''' You can make you'''Wooden photo frame''' You can make your own frame, there are a dozen of articles about this, even here on Instructables. But a simpler solution would be finding a framing company where you can order a personalized frame with your required dimensions and you can choose from many frame types. This is exactly what I did. I ordered my frames with a specific dimension: the framed photo, in my case object (display) is 80x80mm. I also asked for an accurate dimension, I didn't want the frame to be too big for the 3D printed plastic grid. '''Plexiglass support''' The plexiglass support can be also be made DIY but for an amateur it is not very easy to cut and blend plexiglass. So I ordered several supports from an advertising company that makes all kinds of plexiglass objects. The dimensions I used are: width - 120mm, first part length - 180mm, second part length - 50mm, 15° bending angle. '''Display plexiglass sheet''' The 3mm grey smoked plexiglass sheet can be cut from a bigger sheet, obtaining the required 80x80mm dimension. '''Plastic grid''' The STL file for 3D printing can be downloaded from [https://www.tinkercad.com/things/arRYOVE5Lbk Tinkercad] '''Display Printed Paper Sheet''' The SVG file for the Printed Paper Sheet is attached, and it can be edited with Inkscape. You can make your own display layout based on this SVG file, I used [https://www.wordsearchkit.com/ Word Search Construction Kit] software to generate a words layout for the time display. You can print the file repeatedly on the same sheet of paper to achieve a good, opaque, black background. I got very good results with a cheap inkjet printer and standard white copier paper. I cut off the layout with a pair of scissors. '''Plastic box for electronics''' The files that you can 3d print are also on [https://www.tinkercad.com/things/2vKBHQ1HEI3 Tinkercad]. I used some already purchased jewelry boxes, I only designed a new box base because the boxes were too tall. The files on Tinkercad are based on this type of boxes. '''Detailed instructions''' (follow the images above) * choose (and mark) a side of the frame to be the top of the clock, clean the smoked plexiglass sheet, put it in the frame; * place the printed paper sheet and the 3D printed grid; * drill with 2 mm diameter bit through the plastic grid to make room for the screws in the frame; * screw the plastic grid; * mark on the frame the place for holes and lock the frame to the plexiglass support; * drill the holes with a 2mm diameter bit (enlarge the holes in the support with a 3mm diameter bit, make the coining with a 10mm diameter bit) and screw it all together. The last image shows an almost finished enclosure. image shows an almost finished enclosure.)
  • NEXT ENGINE 3D SCANNER :How to use it  + ( * '''WEIGHT''' 7.68 KG * '''INPUT POWER'' * '''WEIGHT''' 7.68 KG * '''INPUT POWER''' 100-240 VAC/60W * '''Measurement system''' MultiStripe Laser Triangulation (MLT) *'''Sensor''' Twin 5.0 Mega-pixel CMOS RGB image sensors *'''SIZE''' 276 x 223 x 91mm *'''Field AREA'''  5.1" x 3.8" (Macro) and 13.5" x 10.1" (Wide) *'''Capteur density''' 268K points/in (Macro) and 29K points/in (Wide) *'''Texture Density''' 500DPI ( Macro) and 200DPI (Wide) *'''Dimensional Accuracy''' 100 micorn ( Marco) and 300 micron ( Wide) *'''Acquisition Speed''' 50,000 points/sec *'''CONNECTIVITY''' USB 2.0 *'''OPERATING SYSTEM''' Windows XP/Vista/7/8 (64-bits) *'''MINIMUM REQUIREMENT''': 2 GHz Dual-core, 3GB RAM, 256MB graphics *''' FILE FORMAT''' STL, OBJ, VRML, XYZ, PLY *'''FILE SIZE''' 200MB fot typical model * '''SOFTWARE''' ScanStudio™ (FREEWARE) del * '''SOFTWARE''' ScanStudio™ (FREEWARE) )
  • Openbioréacteur  + ( * 1-Capteurs sans fils (hardware non impl * 1-Capteurs sans fils (hardware non implémenté) * 2-Contrôleur chauffage, contrôleur agitation magnétique * 3-Contrôle des pompes, réception des données capteurs, et émission sur serveur annexe. * 4-Intrants La version que je présente ne comprend ni les capteurs, ni le contrôleur de chauffage, ni le contrôleur d'agitation magnétique. Ceci dans un souci de simplification. ue. Ceci dans un souci de simplification. )
  • Design your personal logo with Tinkercad  + ( * Open a new document in tinkercad * Sel * Open a new document in tinkercad * Select view TOP * Switch to Orthographic view Always use Shift plus Right-click to move the workplace. Use the Mouse-wheel to zoom-in zoom-out. This tutorial aims to give suggestion on how to combine shapes, in order to create a logo using the tools that Tinkercad provides. No technical drawing skill is required. es. No technical drawing skill is required. )
  • Laser cut Spirograph  + ( * Open a new document in tinkercad * Select view TOP * ''Switch to Orthographic view'' ''Always use Shift plus Right-click to move the workplane.'' ''Use the Mouse-wheel to zoom-in zoom-out.'' )
  • Open Documentation training  + ( * arrange your tables to groups * arrange your participants in groups * cycle rules and reflection )
  • Open Documentation training  + ( * arrange your tables to groups * arrange your participants in groups * cycle rules and reflection )
  • Maroquinerie en bache  + ( * bâche PVC récupérée * ciseaux * ficelle * bâche PVC récupérée * ciseaux * ficelle élastique * cutter * poinçon * patrons du modèle choisi (voir "fichiers") imprimé ou découpé dans une forme rigide
    le poinçon que j'utilise est celui de la photo 2, il y a 3 diamètre de tête interchangeable. trouvable sur : http://www.creaclic.ch/fr/accessoires-outils/8953-artemio-perforatrice-3-pointes.html
    .ch/fr/accessoires-outils/8953-artemio-perforatrice-3-pointes.html</div> </div> )
  • Comment usiner une pièce avec une défonceuse cnc en toute securite  + ( * Ouvrir logiciel ArtCAM Pro * cree un nouveau modele * inserer le fichier "dxf " creer avec autocad )
  • FoldaRap 2.5 : imprimante 3D facilement transportable  + ( * pied-avant-gauche: http://reprap.org/wi * pied-avant-gauche: http://reprap.org/wiki/File:Foot-front-left.png * pied-avant-droite: http://reprap.org/wiki/File:Foot-front-rightt.png * pied-arrière-droite: http://reprap.org/wiki/File:Foot-front-left.png * pied-arrière-gauche: http://reprap.org/wiki/File:Foot-front-rightt.png * charnière-intérieur-gauche: http://reprap.org/wiki/File:FR2-5-hinge-inner-left.png * charnière-intérieur-droite: http://reprap.org/wiki/File:FR2-5-hinge-inner-right.png p.org/wiki/File:FR2-5-hinge-inner-right.png )
  • FoldaRap 2.5 : imprimante 3D facilement transportable  + ( * pied-avant-gauche: http://reprap.org/wi * pied-avant-gauche: http://reprap.org/wiki/File:Foot-front-left.png * pied-avant-droite: http://reprap.org/wiki/File:Foot-front-rightt.png * pied-arrière-droite: http://reprap.org/wiki/File:Foot-front-left.png * pied-arrière-gauche: http://reprap.org/wiki/File:Foot-front-rightt.png * charnière-intérieur-gauche: http://reprap.org/wiki/File:FR2-5-hinge-inner-left.png * charnière-intérieur-droite: http://reprap.org/wiki/File:FR2-5-hinge-inner-right.png p.org/wiki/File:FR2-5-hinge-inner-right.png )
  • Mangeoire pour oiseau en plexiglas  + ( * plaques de plexiglas de 6mm d'épais * tourillon en bois de 8mm de diamètre * élastiques ou sangles pour accrocher la mangeoire * papier ponce si votre plexi est transparent )
  • Tree planting (Aranya Agricultural Alternatives method)  + ( #If you use a bottle-irrigation system: # #If you use a bottle-irrigation system: ##Loosen the cap to open the bottle-irrigation system, ##As you add water in the bottle, measure the amount of water added in the bottle-irrigation system: ###If the bottle was empty, increase the frequency of your examinations, ###If the bottle was not empty, reduce the frequency of your examinations; ##Tighten the cap to close the bottle-irrigation system; #If you use a clay-pot-irrigation system: ##Remove the clay plate from the clay pot to open the clay-pot-irrigation system, ##As you add water in the clay pot, measure the amount of water added in the clay-pot-irrigation system: ###If the clay pot was empty, increase the frequency of your examinations, ###If the clay pot was not empty, reduce the frequency of your examinations; ##Install the clay plate on the clay pot to close the clay-pot-irrigation system: #Else: ##If the moisture level is low, add water and increase the frequency of your examinations, ##If the moisture level is high, reduce the frequency of your examinations. reduce the frequency of your examinations. )
  • Tree planting (Aranya Agricultural Alternatives method)  + ( *Define the plantation zone, *Make sure t *Define the plantation zone, *Make sure that your sapling is ready for transplantation, *Make sure that weather conditions will be favorable for the young tree to grow (avoid dry season peak), *If applicable, [[Clay-pot-irrigation system (Aranya Agricultural Alternatives method)|build your clay-pot irrigation system]], *If applicable, [[Tree planting preparation (Sadhana Forest method)|build your bottle-irrigation system]]. Feel free to adapt the procedure to your environment. to adapt the procedure to your environment. )
  • Flexyourte  + ( *Préparer les 72 bambous, *Marquer 48 bam *Préparer les 72 bambous, *Marquer 48 bambous (mur) pour percer les différents trous, *Marquer les 24 bambous (toit) pour percer les trous, *Percer les 72 bambous avec la mèche de votre choix, mèche de 4 mm = drisse ou cordelette de 3 mm, * Commencer par monter le mur et après le toit en passant la drisse avec l'aiguille que vous aurez faîte avec le bout de fil de fer plié en 2, à travers les bambous, faîtes un double nœud puis passer en reliant 2 bambous et refaite un double nœud et serrer bien, Une fois le mur de monter, relier le toit sur chaque croisement du mur avec un morceau d'élastique. Plus d'explication dans cette vidéo : http://www.dailymotion.com/video/x3nhgry_construction-d-une-flex-yourte_creation gry_construction-d-une-flex-yourte_creation )
  • Flexyourte  + ( *Préparer les 72 bambous, *Marquer 48 bam *Préparer les 72 bambous, *Marquer 48 bambous (mur) pour percer les différents trous, *Marquer les 24 bambous (toit) pour percer les trous, *Percer les 72 bambous avec la mèche de votre choix, mèche de 4 mm = drisse ou cordelette de 3 mm, * Commencer par monter le mur et après le toit en passant la drisse avec l'aiguille que vous aurez faîte avec le bout de fil de fer plié en 2, à travers les bambous, faîtes un double nœud puis passer en reliant 2 bambous et refaite un double nœud et serrer bien, Une fois le mur de monter, relier le toit sur chaque croisement du mur avec un morceau d'élastique. Plus d'explication dans cette vidéo : http://www.dailymotion.com/video/x3nhgry_construction-d-une-flex-yourte_creation gry_construction-d-une-flex-yourte_creation )
  • BENTO BOX - SPACE FLAN  + (<nowiki><div class="mw-highlight
    //   Variables qui ne peuvent être modifiées,
    const int buttonPin = 2; // Bouton poussoir
    const int ledPin = 7; // Anneau NeoPixel Ring 12 LED RGB


    // Bibliothèque urilisée pour écran OLED
    #include

    // =======================
    // Paramètrages écran OLED
    // =======================
    #define nombreDePixelsEnLargeur 128 // Taille de l'écran OLED, en pixel, au niveau de sa largeur
    #define nombreDePixelsEnHauteur 64 // Taille de l'écran OLED, en pixel, au niveau de sa hauteur
    #define brocheResetOLED -1 // Reset de l'OLED partagé avec l'Arduino (d'où la valeur à -1, et non un numéro de pin)
    #define adresseI2CecranOLED 0x3C // Adresse de "mon" écran OLED sur le bus i2c (généralement égal à 0x3C ou 0x3D)
    Adafruit_SSD1306 ecranOLED(nombreDePixelsEnLargeur, nombreDePixelsEnHauteur, &Wire, brocheResetOLED);

    // ================
    // Image à afficher
    // ================
    #define largeurDeLimage 128 // Largeur de l'image à afficher, en pixels
    #define hauteurDeLimage 64 // Hauteur de l'image à afficher, en pixels

    const unsigned char imageAafficher [] PROGMEM = {
    // Logo SPACE FLAN (image BITMAP / LCD Assistant / Editeur de texte / https://passionelectronique.fr/ecran-oled-i2c-arduino/)
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0x07, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xfc, 0x03, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xf0, 0xf0, 0x3f, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xe0, 0xf0, 0x0f, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xc4, 0x73, 0x83, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0x0e, 0x77, 0x03, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xef, 0x06, 0xf7, 0x39, 0xe7, 0xff, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0x06, 0x63, 0xff, 0x30, 0xe0, 0xff, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xfc, 0x26, 0x73, 0xff, 0xe0, 0xe4, 0x3f, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xf8, 0xe6, 0xff, 0xff, 0xe6, 0x67, 0x1f, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xe3, 0xec, 0xff, 0xff, 0xe6, 0x67, 0x87, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xc7, 0xcc, 0xff, 0xff, 0xfe, 0x77, 0xe3, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0x9f, 0xcc, 0xff, 0xff, 0xfe, 0x33, 0xf1, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0x3f, 0xd9, 0xff, 0xff, 0xfe, 0x33, 0xfc, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xfe, 0x7f, 0x99, 0x7f, 0xff, 0xfe, 0x33, 0xfe, 0x7f, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xfc, 0xff, 0x99, 0x7f, 0xff, 0xff, 0x3b, 0xff, 0x3f, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xf9, 0xff, 0x9a, 0x7f, 0xff, 0xf9, 0x19, 0xff, 0x1f, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xf3, 0xff, 0xb2, 0x77, 0xff, 0x79, 0x19, 0xff, 0x9f, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xf3, 0xff, 0x32, 0x67, 0xff, 0x39, 0x1d, 0xff, 0xcf, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xe7, 0xff, 0x32, 0xe7, 0xdf, 0x39, 0x9d, 0xff, 0xef, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xcf, 0xff, 0x74, 0xe7, 0xdf, 0x3d, 0x8c, 0xff, 0xe7, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xcf, 0xfe, 0x64, 0xe7, 0xdf, 0x3d, 0x8c, 0xff, 0xf7, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xdf, 0xfe, 0x64, 0xe7, 0xdf, 0x3c, 0x8e, 0xff, 0xf3, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x9f, 0xfe, 0x64, 0xe7, 0xdf, 0x3c, 0x86, 0x7f, 0xf3, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x9f, 0xfc, 0xed, 0xef, 0xdf, 0xbc, 0xc6, 0x7f, 0xf9, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xbf, 0xfc, 0xc9, 0xcf, 0xdf, 0xbc, 0xc7, 0x3f, 0xf9, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x3f, 0xf1, 0xc9, 0xcf, 0x9f, 0x9e, 0xc7, 0x1f, 0xf9, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x3f, 0xe3, 0xc9, 0xcf, 0x9f, 0x9e, 0xc3, 0x8f, 0xfd, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x7f, 0xc7, 0xdb, 0xcf, 0x9f, 0x9e, 0x63, 0xe7, 0xfd, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x7f, 0x8f, 0x93, 0xcf, 0x9f, 0x9e, 0x63, 0xf3, 0xfd, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x7f, 0x1f, 0x93, 0xcf, 0x9f, 0x9e, 0x63, 0xf9, 0xfd, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x7f, 0x3f, 0x93, 0xdf, 0x9f, 0x9e, 0x63, 0xfc, 0xfd, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x7e, 0x7f, 0xb7, 0xdf, 0x9f, 0x9f, 0x73, 0xfc, 0xfd, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x7c, 0xff, 0xa7, 0x9f, 0x9f, 0x9f, 0x33, 0xfe, 0x7d, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x7c, 0xff, 0x87, 0x9f, 0x9f, 0x9f, 0x33, 0xfe, 0x7d, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x79, 0xff, 0x87, 0x9f, 0x9f, 0x9f, 0x33, 0xff, 0x3d, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x79, 0xff, 0xe7, 0x9f, 0x9f, 0xdf, 0x23, 0xff, 0x3d, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x7b, 0xff, 0xe7, 0x9f, 0x9f, 0xdf, 0x07, 0xff, 0x9d, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x73, 0xff, 0xe7, 0xbf, 0x9f, 0xdf, 0x8f, 0xff, 0x9d, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x33, 0xff, 0xe3, 0x3f, 0x9f, 0xcf, 0x9f, 0xff, 0xc9, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0x87, 0xff, 0xf0, 0x3f, 0x9f, 0xcf, 0x3f, 0xff, 0xc1, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xf8, 0xfc, 0x3f, 0x9f, 0xcc, 0x3e, 0x3f, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xf2, 0x7f, 0x9f, 0x9f, 0xc0, 0x7c, 0x9f, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xf7, 0xff, 0xc0, 0x0f, 0x01, 0xfc, 0xcf, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xf7, 0x8f, 0xe0, 0x00, 0x3f, 0xee, 0x67, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xf7, 0x8f, 0xfd, 0xe0, 0x7f, 0xc3, 0x37, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xf7, 0x27, 0xff, 0xff, 0xff, 0x93, 0xb3, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xf7, 0x64, 0x7f, 0xff, 0xfb, 0x99, 0x99, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xfe, 0xe4, 0x69, 0x3f, 0xff, 0xcb, 0xdd, 0xcc, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xfe, 0x0c, 0x0b, 0x3c, 0x47, 0x89, 0xcc, 0xe6, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0x1c, 0x13, 0x30, 0xc7, 0x9d, 0xec, 0x77, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xfd, 0xf3, 0x73, 0xdf, 0x9c, 0xe0, 0x73, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xf9, 0xe7, 0x67, 0xdf, 0xdc, 0xe3, 0x7f, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xf3, 0xe2, 0x6f, 0xdf, 0xc6, 0xe3, 0x3f, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xf3, 0xe0, 0xcf, 0xdf, 0xc6, 0x7b, 0xbf, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xec, 0x4f, 0xcf, 0xce, 0x79, 0xff, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xcc, 0xcf, 0xc7, 0xcf, 0x7d, 0xff, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xdd, 0xcf, 0xc7, 0xef, 0x0f, 0xff, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xf9, 0xe7, 0xdf, 0xef, 0x0f, 0xff, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xe7, 0xdf, 0xe7, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xf1, 0xc7, 0xe7, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xf9, 0xc7, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff,
    0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff
    };

    // Array of all bitmaps for convenience. (Total bytes used to store images in PROGMEM = 1040)
    const int epd_bitmap_allArray_LEN = 1;

    //******************************** Routine pour afficheur LCD **************************

    #if (SSD1306_LCDHEIGHT != 64)
    #endif


    // ANNEAU RING LED 12 PIXELS
    #include
    #define PIN 7

    // Parameter 1 = number of pixels in strip
    // Parameter 2 = pin number (most are valid)
    // Parameter 3 = pixel type flags, add together as needed:
    // NEO_KHZ800 800 KHz bitstream (most NeoPixel products w/WS2812 LEDs)
    // NEO_KHZ400 400 KHz (classic 'v1' (not v2) FLORA pixels, WS2811 drivers)
    // NEO_GRB Pixels are wired for GRB bitstream (most NeoPixel products)
    // NEO_RGB Pixels are wired for RGB bitstream (v1 FLORA pixels, not v2)
    Adafruit_NeoPixel strip = Adafruit_NeoPixel(12, PIN, NEO_GRB + NEO_KHZ800);


    // Module sonore wtv020m01
    // boolean déclare une variable de type binaire
    boolean buttonWasUp = true;
    boolean ledEnabled = false;

    const int clockPin = 6; // clockpin sur la broche 6
    const int dataPin = 9; // datapin sur la broche 9
    const int resetPin = 3; // resetpin sur la broche 3

    const unsigned int VOLUME_7 = 0xFFF7; //unsigned = variable entière non signée

    const unsigned int PLAY_PAUSE = 0xFFFE;
    const unsigned int STOP = 0xFFFF;


    void setup()
    {

    Serial.begin(9600); //Initialise la communication entre le PC et Arduino


    // Initialisation de l'écran OLED
    if(!ecranOLED.begin(SSD1306_SWITCHCAPVCC, adresseI2CecranOLED))
    while(1); // Arrêt du programme (boucle infinie) en cas d'échec de l'initialisation


    // Affichage d'une image au centre de l'écran
    ecranOLED.clearDisplay(); // Effaçage de la mémoire tampon de l'écran OLED

    ecranOLED.drawBitmap(
    (ecranOLED.width() - largeurDeLimage ) / 2, // Position de l'extrême "gauche" de l'image (pour centrage écran, ici)
    (ecranOLED.height() - hauteurDeLimage) / 2, // Position de l'extrême "haute" de l'image (pour centrage écran, ici)
    imageAafficher,
    largeurDeLimage,
    hauteurDeLimage,
    WHITE); // "couleur" de l'image

    ecranOLED.display(); // Transfert de la mémoire tampon à l'écran OLED, pour affichage



    {
    // LedPin en sortie
    pinMode(ledPin, OUTPUT);
    // Bouton poussoir en entrée
    pinMode(buttonPin, INPUT);
    }

    {
    strip.begin();
    strip.setBrightness(255); //adjust brightness here, maximum à 255
    strip.show(); // Initialize all pixels to 'off'
    }

    pinMode(clockPin, OUTPUT);
    pinMode(dataPin, OUTPUT);
    pinMode(resetPin, OUTPUT);

    digitalWrite(clockPin, HIGH); // aucune différence si je le met en HIGH ou LOW
    digitalWrite(dataPin, LOW);

    // reset the module (si les 2 lignes dessous retirer le son ne s'allume qu'une fraction de secondes)
    digitalWrite(resetPin, HIGH);
    delay(100);

    sendCommand(VOLUME_7); // Empéche le son de se répèter, si enlevé le son est en boucle

    }

    void loop()
    {


    // Programme de lumière LED de 12 secondes
    colorWipe(strip.Color(255, 255, 255), 84); // Blanc
    colorWipe(strip.Color(255, 0, 0), 84); // Rouge
    colorWipe(strip.Color(255, 255, 255), 84); // Blanc
    colorWipe(strip.Color(255, 0, 0), 84); // Rouge
    colorWipe(strip.Color(255, 255, 255), 84); // Blanc
    colorWipe(strip.Color(255, 0, 0), 84); // Rouge
    colorWipe(strip.Color(255, 255, 255), 84); // Blanc
    colorWipe(strip.Color(255, 0, 0), 84); // Rouge
    colorWipe(strip.Color(255, 255, 255), 84); // Blanc
    colorWipe(strip.Color(255, 0, 0), 84); // Rouge
    colorWipe(strip.Color(255, 255, 255), 5); // Blanc
    colorWipe(strip.Color(255, 0, 0), 5); // Rouge
    colorWipe(strip.Color(255, 255, 255), 5); // Blanc
    colorWipe(strip.Color(255, 0, 0), 5); // Rouge
    colorWipe(strip.Color(255, 255, 255), 5); // Blanc
    colorWipe(strip.Color(255, 0, 0), 5); // Rouge
    colorWipe(strip.Color(255, 255, 255), 5); // Blanc
    colorWipe(strip.Color(255, 0, 0), 5); // Rouge
    colorWipe(strip.Color(255, 255, 255), 5); // Blanc
    colorWipe(strip.Color(255, 0, 0), 5); // Rouge
    colorWipe(strip.Color(255, 255, 255), 5); // Blanc
    colorWipe(strip.Color(255, 0, 0), 5); // Rouge
    colorWipe(strip.Color(255, 255, 255), 5); // Blanc
    colorWipe(strip.Color(255, 0, 0), 5); // Rouge
    colorWipe(strip.Color(255, 255, 255), 5); // Blanc
    colorWipe(strip.Color(255, 0, 0), 5); // Rouge
    colorWipe(strip.Color(255, 255, 255), 5); // Blanc
    colorWipe(strip.Color(255, 0, 0), 5); // Rouge
    colorWipe(strip.Color(255, 255, 255), 5); // Blanc
    colorWipe(strip.Color(255, 0, 0), 5); // Rouge
    colorWipe(strip.Color(255, 255, 255), 5); // Blanc
    colorWipe(strip.Color(255, 0, 0), 5); // Rouge
    colorWipe(strip.Color(255, 255, 255), 5); // Blanc
    colorWipe(strip.Color(255, 0, 0), 5); // Rouge
    colorWipe(strip.Color(255, 255, 255), 5); // Blanc
    colorWipe(strip.Color(255, 0, 0), 5); // Rouge
    colorWipe(strip.Color(255, 255, 255), 5); // Blanc
    colorWipe(strip.Color(255, 0, 0), 5); // Rouge
    colorWipe(strip.Color(255, 255, 255), 5); // Blanc
    colorWipe(strip.Color(255, 0, 0), 5); // Rouge
    colorWipe(strip.Color(255, 255, 255), 5); // Blanc
    colorWipe(strip.Color(255, 0, 0), 5); // Rouge


    colorWipe(strip.Color(0, 0, 0), 5); // Eteindre

    while (1);
    }

    // Remplir les points l’un après l’autre avec une couleur (si supprimé, système de points ne fonctionne plus)
    void colorWipe(uint32_t c, uint8_t wait)
    {
    for(uint16_t i=0; i<strip.numPixels(); i++) {
    strip.setPixelColor(i, c);
    strip.show();
    delay(wait);
    }
    }

    uint32_t Wheel(byte WheelPos) // je ne sais pas à quoi ça sert

    {
    // lecture son "0000.wav"
    sendCommand(0x0001);
    }

    void sendCommand(int addr) {
    digitalWrite(clockPin, LOW);
    delay(2);
    for (int i=15; i>=0; i--)
    {
    delayMicroseconds(50);
    if((addr>>i)&0x0001 >0)
    {
    digitalWrite(dataPin, HIGH);
    //Serial.print(1);
    }
    else
    {
    digitalWrite(dataPin, LOW);
    // Serial.print(0);
    }
    delayMicroseconds(50);
    digitalWrite(clockPin, HIGH);
    delayMicroseconds(50);

    if(i>0)
    digitalWrite(dataPin, LOW);
    else
    digitalWrite(dataPin, HIGH);
    delayMicroseconds(50);

    if(i>0)
    digitalWrite(clockPin, LOW);
    else
    digitalWrite(clockPin, HIGH);
    delay(20);
    }

    }
    </span> <span class="mi">5</span><span class="p">);</span> <span class="c1">// Blanc</span><br /> <span class="n">colorWipe</span><span class="p">(</span><span class="n">strip</span><span class="p">.</span><span class="n">Color</span><span class="p">(</span><span class="mi">255</span><span class="p">,</span> <span class="mi">0</span><span class="p">,</span> <span class="mi">0</span><span class="p">),</span> <span class="mi">5</span><span class="p">);</span> <span class="c1">// Rouge</span><br /> <span class="n">colorWipe</span><span class="p">(</span><span class="n">strip</span><span class="p">.</span><span class="n">Color</span><span class="p">(</span><span class="mi">255</span><span class="p">,</span> <span class="mi">255</span><span class="p">,</span> <span class="mi">255</span><span class="p">),</span> <span class="mi">5</span><span class="p">);</span> <span class="c1">// Blanc</span><br /> <span class="n">colorWipe</span><span class="p">(</span><span class="n">strip</span><span class="p">.</span><span class="n">Color</span><span class="p">(</span><span class="mi">255</span><span class="p">,</span> <span class="mi">0</span><span class="p">,</span> <span class="mi">0</span><span class="p">),</span> <span class="mi">5</span><span class="p">);</span> <span class="c1">// Rouge</span><br /> <span class="n">colorWipe</span><span class="p">(</span><span class="n">strip</span><span class="p">.</span><span class="n">Color</span><span class="p">(</span><span class="mi">255</span><span class="p">,</span> <span class="mi">255</span><span class="p">,</span> <span class="mi">255</span><span class="p">),</span> <span class="mi">5</span><span class="p">);</span> <span class="c1">// Blanc</span><br /> <span class="n">colorWipe</span><span class="p">(</span><span class="n">strip</span><span class="p">.</span><span class="n">Color</span><span class="p">(</span><span class="mi">255</span><span class="p">,</span> <span class="mi">0</span><span class="p">,</span> <span class="mi">0</span><span class="p">),</span> <span class="mi">5</span><span class="p">);</span> <span class="c1">// Rouge</span><br /> <span class="n">colorWipe</span><span class="p">(</span><span class="n">strip</span><span class="p">.</span><span class="n">Color</span><span class="p">(</span><span class="mi">255</span><span class="p">,</span> <span class="mi">255</span><span class="p">,</span> <span class="mi">255</span><span class="p">),</span> <span class="mi">5</span><span class="p">);</span> <span class="c1">// Blanc</span><br /> <span class="n">colorWipe</span><span class="p">(</span><span class="n">strip</span><span class="p">.</span><span class="n">Color</span><span class="p">(</span><span class="mi">255</span><span class="p">,</span> <span class="mi">0</span><span class="p">,</span> <span class="mi">0</span><span class="p">),</span> <span class="mi">5</span><span class="p">);</span> <span class="c1">// Rouge</span><br /> <span class="n">colorWipe</span><span class="p">(</span><span class="n">strip</span><span class="p">.</span><span class="n">Color</span><span class="p">(</span><span class="mi">255</span><span class="p">,</span> <span class="mi">255</span><span class="p">,</span> <span class="mi">255</span><span class="p">),</span> <span class="mi">5</span><span class="p">);</span> <span class="c1">// Blanc</span><br /> <span class="n">colorWipe</span><span class="p">(</span><span class="n">strip</span><span class="p">.</span><span class="n">Color</span><span class="p">(</span><span class="mi">255</span><span class="p">,</span> <span class="mi">0</span><span class="p">,</span> <span class="mi">0</span><span class="p">),</span> <span class="mi">5</span><span class="p">);</span> <span class="c1">// Rouge</span><br /> <span class="n">colorWipe</span><span class="p">(</span><span class="n">strip</span><span class="p">.</span><span class="n">Color</span><span class="p">(</span><span class="mi">255</span><span class="p">,</span> <span class="mi">255</span><span class="p">,</span> <span class="mi">255</span><span class="p">),</span> <span class="mi">5</span><span class="p">);</span> <span class="c1">// Blanc</span><br /> <span class="n">colorWipe</span><span class="p">(</span><span class="n">strip</span><span class="p">.</span><span class="n">Color</span><span class="p">(</span><span class="mi">255</span><span class="p">,</span> <span class="mi">0</span><span class="p">,</span> <span class="mi">0</span><span class="p">),</span> <span class="mi">5</span><span class="p">);</span> <span class="c1">// Rouge</span><br /> <span class="n">colorWipe</span><span class="p">(</span><span class="n">strip</span><span class="p">.</span><span class="n">Color</span><span class="p">(</span><span class="mi">255</span><span class="p">,</span> <span class="mi">255</span><span class="p">,</span> <span class="mi">255</span><span class="p">),</span> <span class="mi">5</span><span class="p">);</span> <span class="c1">// Blanc</span><br /> <span class="n">colorWipe</span><span class="p">(</span><span class="n">strip</span><span class="p">.</span><span class="n">Color</span><span class="p">(</span><span class="mi">255</span><span class="p">,</span> <span class="mi">0</span><span class="p">,</span> <span class="mi">0</span><span class="p">),</span> <span class="mi">5</span><span class="p">);</span> <span class="c1">// Rouge</span><br /> <br /><br /> <span class="n">colorWipe</span><span class="p">(</span><span class="n">strip</span><span class="p">.</span><span class="n">Color</span><span class="p">(</span><span class="mi">0</span><span class="p">,</span> <span class="mi">0</span><span class="p">,</span> <span class="mi">0</span><span class="p">),</span> <span class="mi">5</span><span class="p">);</span> <span class="c1">// Eteindre</span><br /> <br /> <span class="k">while</span> <span class="p">(</span><span class="mi">1</span><span class="p">);</span><br /><span class="p">}</span><br /> <br /><span class="c1">// Remplir les points l’un après l’autre avec une couleur (si supprimé, système de points ne fonctionne plus)</span><br /><span class="kr">void</span> <span class="nf">colorWipe</span><span class="p">(</span><span class="kr">uint32_t</span> <span class="n">c</span><span class="p">,</span> <span class="kr">uint8_t</span> <span class="n">wait</span><span class="p">)</span><br /><span class="p">{</span><br /> <span class="k">for</span><span class="p">(</span><span class="kr">uint16_t</span> <span class="n">i</span><span class="o">=</span><span class="mi">0</span><span class="p">;</span> <span class="n">i</span><span class="o"><</span><span class="n">strip</span><span class="p">.</span><span class="n">numPixels</span><span class="p">();</span> <span class="n">i</span><span class="o">++</span><span class="p">)</span> <span class="p">{</span><br /> <span class="n">strip</span><span class="p">.</span><span class="n">setPixelColor</span><span class="p">(</span><span class="n">i</span><span class="p">,</span> <span class="n">c</span><span class="p">);</span><br /> <span class="n">strip</span><span class="p">.</span><span class="n">show</span><span class="p">();</span><br /> <span class="nf">delay</span><span class="p">(</span><span class="n">wait</span><span class="p">);</span><br /> <span class="p">}</span><br /><span class="p">}</span><br /> <br /><span class="kr">uint32_t</span> <span class="nf">Wheel</span><span class="p">(</span><span class="kr">byte</span> <span class="n">WheelPos</span><span class="p">)</span> <span class="c1">// je ne sais pas à quoi ça sert </span><br /><br /> <span class="p">{</span><br /> <span class="c1">// lecture son "0000.wav"</span><br /> <span class="n">sendCommand</span><span class="p">(</span><span class="mh">0x0001</span><span class="p">);</span><br /> <span class="p">}</span><br /><br /><span class="kr">void</span> <span class="nf">sendCommand</span><span class="p">(</span><span class="kr">int</span> <span class="n">addr</span><span class="p">)</span> <span class="p">{</span><br /> <span class="nf">digitalWrite</span><span class="p">(</span><span class="n">clockPin</span><span class="p">,</span> <span class="kr">LOW</span><span class="p">);</span><br /> <span class="nf">delay</span><span class="p">(</span><span class="mi">2</span><span class="p">);</span><br /> <span class="k">for</span> <span class="p">(</span><span class="kr">int</span> <span class="n">i</span><span class="o">=</span><span class="mi">15</span><span class="p">;</span> <span class="n">i</span><span class="o">>=</span><span class="mi">0</span><span class="p">;</span> <span class="n">i</span><span class="o">--</span><span class="p">)</span><br /> <span class="p">{</span> <br /> <span class="nf">delayMicroseconds</span><span class="p">(</span><span class="mi">50</span><span class="p">);</span><br /> <span class="k">if</span><span class="p">((</span><span class="n">addr</span><span class="o">>></span><span class="n">i</span><span class="p">)</span><span class="o">&</span><span class="mh">0x0001</span> <span class="o">></span><span class="mi">0</span><span class="p">)</span><br /> <span class="p">{</span><br /> <span class="nf">digitalWrite</span><span class="p">(</span><span class="n">dataPin</span><span class="p">,</span> <span class="kr">HIGH</span><span class="p">);</span><br /> <span class="c1">//Serial.print(1);</span><br /> <span class="p">}</span><br /> <span class="k">else</span><br /> <span class="p">{</span><br /> <span class="nf">digitalWrite</span><span class="p">(</span><span class="n">dataPin</span><span class="p">,</span> <span class="kr">LOW</span><span class="p">);</span><br /> <span class="c1">// Serial.print(0);</span><br /> <span class="p">}</span><br /> <span class="nf">delayMicroseconds</span><span class="p">(</span><span class="mi">50</span><span class="p">);</span><br /> <span class="nf">digitalWrite</span><span class="p">(</span><span class="n">clockPin</span><span class="p">,</span> <span class="kr">HIGH</span><span class="p">);</span><br /> <span class="nf">delayMicroseconds</span><span class="p">(</span><span class="mi">50</span><span class="p">);</span><br /> <br /> <span class="k">if</span><span class="p">(</span><span class="n">i</span><span class="o">></span><span class="mi">0</span><span class="p">)</span><br /> <span class="nf">digitalWrite</span><span class="p">(</span><span class="n">dataPin</span><span class="p">,</span> <span class="kr">LOW</span><span class="p">);</span><br /> <span class="k">else</span><br /> <span class="nf">digitalWrite</span><span class="p">(</span><span class="n">dataPin</span><span class="p">,</span> <span class="kr">HIGH</span><span class="p">);</span><br /> <span class="nf">delayMicroseconds</span><span class="p">(</span><span class="mi">50</span><span class="p">);</span><br /> <br /> <span class="k">if</span><span class="p">(</span><span class="n">i</span><span class="o">></span><span class="mi">0</span><span class="p">)</span><br /> <span class="nf">digitalWrite</span><span class="p">(</span><span class="n">clockPin</span><span class="p">,</span> <span class="kr">LOW</span><span class="p">);</span><br /> <span class="k">else</span><br /> <span class="nf">digitalWrite</span><span class="p">(</span><span class="n">clockPin</span><span class="p">,</span> <span class="kr">HIGH</span><span class="p">);</span><br /> <span class="nf">delay</span><span class="p">(</span><span class="mi">20</span><span class="p">);</span> <br /> <span class="p">}</span><br /> <br /> <span class="p">}</span><br /></pre></div></nowiki>)
  • Multi-console Raspberry pi 3/zeroW + Tuto PITFT 2.8/3.5/ect  + (- Pour formater la MicroSd rien de plus simple ouvrir SdFormatter -1- Choisir ça MicroSd normalement reconnu auto -2- Puis click sur '''Format''' et voila!! votre MicroSd et bien formater pour recevoir RetroPie.)
  • FlyPi  + (4- Software Installation: How to install useful software on SD card)
  • FlyPi  + (2- Gathering materials & Creating Part2- Gathering materials & Creating Parts: Not all parts are necessary to order for basic functionality. The repository has a detailed bill of materials that can be tailored to specific needs. * Electronic parts can be ordered from this kitspace page (lists have been conveniently compiled in various online market shopping carts): https://kitspace.org/boards/github.com/prometheus-science/flypi/ * 3D print files can be found in the files tab above. I started printing at the local fablab (fabrication laboratory) after ordering the parts I needed to build the microscope. This way I would have the body ready when the electronics arrived.e the body ready when the electronics arrived.)
  • Fix Spotify Songs Disappeared  + (1. The original songs and playlists may be1. The original songs and playlists may be deleted by their artist or creator. This mostly happens to the songs or playlists that are grayed out after you've downloaded them to your device. It's probably because that the artist or the creator of these songs or playlists does not want these tracks on Spotify for some reason. See also: Fix [https://www.tuneskit.com/spotify-music-tips/fix-spotify-greyed-out-songs.html Spotify songs greyed out] 2. Something got wrong with your Internet connection when you check or download these downloaded songs in Spotify. While you are saving any track or playlist offline on Spotify, an Internet connection is required. So you should confirm the network runs well when you are downloading the songs or playlists from Spotify. If it is this reason that causes your problem, you should download the songs again with a good internet connection. 3. Your downloads of songs from Spotify exceed the 10,000 number limit. As Spotify only allows Premium users to download up to 10,000 tracks in total, you should check whether you have hit that limit or not. If so, Spotify will delete the previously downloaded songs automatically if it finds you adding some new tracks. Normally, you'll be noticed by Spotify with a warning message once you reached this limit. 4. You may be out of Spotify Premium. So you need to verify your premium membership.  You are required to log into your account online every 30 days even if you use Spotify Offline mode. Otherwise, the downloaded songs would disappear from your Spotify account. In other cases, the previously downloaded songs could become unavailable on Spotify if you changed the region of your VPN network. That's because some Spotify songs are not allowed in certain countries and regions. To get the music back again, you should change your VPN network settings.ck again, you should change your VPN network settings.)
  • PP Shredder Basic  + (1/2" Socket wrench 11/16" Socket" 6mm Allen/Hex Wrench Locking Pliers Adjustable pliers Metal File Screwdriver <br/>)
  • Biped dancing robot  + (3D .stl files here: http://www.thingiverse.com/thing:1378605 Find a way to 3d print the parts, they are designed for no supports so is very easy to print with 20% infill and 0.2mm resolution.)
  • Biped dancing robot  + (3D .stl files here: http://www.thingiverse.com/thing:1378605 Find a way to 3d print the parts, they are designed for no supports so is very easy to print with 20% infill and 0.2mm resolution.)
  • Spaceship Astrokick  + (3D-Print the several parts of the spaceship. This is going to take several hours per part. If your 3D printer is not big enough to place all the part at once, you can do it in two prints. <br/> *Top part: 10h *Bottom part: 10h *Dome part: 1h)
  • Ludo science  + (<big>'''<u>les sites</u>'''les sites :''' -microbite : [https://microbit.org/ Micro:bit Educational Foundation -les roue : https://www.3dcontentcentral.com/Download-Model.aspx?catalogid=171&id=94421 -la voiture : [https://www.3dcontentcentral.com/Download-Model.aspx?catalogid=171&id=94420 3D ContentCentral - Modèles CAO 3D, dessins 2D et catalogues fournisseurs gratuits] '''les outils :''' -( imprimante 3D pour faire les pièce 3D ) -scie à métaux, scie à bois, ciseaux à bois, visseuse, perceuse, limes, '''les matériaux :''' -planches de bois(1 cm d'hauteur, 80 cm de longueur, 45 cm de largeur), plusieurs planche, vises, tubes( environ , règle , velours. '''''-2 moteur stepping motor 12 V''''' -[https://stfelixlasalle-my.sharepoint.com/:u:/g/personal/clement_guillemard_stfelixlasalle_fr/EVj64fF4j_NHmlAPg8CaOswBfrrGPagfdhf1ctHuomqXmQ poulie/ :] https://stfelixlasalle-my.sharepoint.com/:u:/g/personal/clement_guillemard_stfelixlasalle_fr/EVj64fF4j_NHmlAPg8CaOswBfrrGPagfdhf1ctHuomqXmQ -objet qui peut être utiliser comme courroie - carte mère -programme phytonfelixlasalle_fr/EVj64fF4j_NHmlAPg8CaOswBfrrGPagfdhf1ctHuomqXmQ -objet qui peut être utiliser comme courroie - carte mère -programme phyton)
  • Montaje de P3steel por HTA3D - Tutorial 6 - Electrónica Dual  + (<big>Componente:</big> * 3x CComponente: * 3x Cables para los finales de carrera Montaje: # Introducimos cada uno de los cables de los finales de carrera en su clavija (para los ejes X, Y y Z).
    Sólo tienen una posición para colocarlos.
    v> <div class="icon-instructions-text">Sólo tienen una posición para colocarlos.</div> </div>)
  • Montaje de P3steel por HTA3D - Tutorial 6 - Electrónica Dual  + (<big>Componentes:</big> * 6x CComponentes: * 6x Cables para los motores Montaje: # Introducimos cada uno de los cables de los motores en su conector.
    Sólo tienen una posición para colocarlos.
    v> <div class="icon-instructions-text">Sólo tienen una posición para colocarlos.</div> </div>)
  • Montaje 3DSteel V2- Tutorial 2 - Eje X, eje Z y extrusor  + (<big>Componentes:</big> * Conjunto anterior * Conjunto del X motor * Conjunto del X idler <big>Montaje:</big> # Introducimos las varillas por uno de los extremos a presión. # Introducimos el otro extremo del eje.)
  • Montaje 3DSteel - Tutorial 2 - Eje X, eje Z y extrusor  + (<big>Componentes:</big> *CarrComponentes: *Carro con rodamientos *2 varillas 375 mm Montaje: #Introducimos con cuidado las varillas a través de los rodamientos del carro.
    Hay que tener especial cuidado al introducir las varillas para no dañar los rodamientos lineales LM8UU.

    ial cuidado al introducir las varillas para no dañar los rodamientos lineales LM8UU.</div> </div><br/>)
  • Montaje 3DSteel V2 - Tutorial 3 - Cama caliente, Fuente de alimentación y Electrónica  + (<big>Componentes:</big> * EstComponentes: * Estructura * Conjunto del LCD * 1x tornillo M3x12 Montaje: # Colocamos la pantalla haciendo coincidir el orificio con tuerca con el orificio de la pletina superior del eje Z. # Introducimos un tornillo M3x12 y lo fijamos.
    Debemos fijarlo de manera que permita girar la pantalla, pero que quede bien sujeto.

    Debemos fijarlo de manera que permita girar la pantalla, pero que quede bien sujeto.</div> </div><br/>)
  • Montaje 3DSteel - Tutorial 3 - Cama caliente, Fuente de alimentación y Electrónica  + (<big>Componentes:</big> *EstrComponentes: *Estructura tras Tutorial 2 *Cama caliente preparada *4 tornillos M3x25 avellanados *4 tuercas autoblocantes *4 arandelas DIN 9021 (aleta ancha) *4 muelles *4 tuercas de ajuste manual *1 brida Montaje: #Colocamos por cada esquina de la camaː un tornillo que pasamos por la cama, una tuerca autoblocante, una arandela y un muelle. #Lo pasamos por el orifico del carro y colocamos una tuerca de ajuste manual y fijamos. #Repetimos este proceso en las cuatro esquinas. #Con una brida fijamos el cable a la estructura, utilizando los dos orificios que encontramos en el lateral.
    Colocamos la cama caliente con los cables hacia atrás de la impresora y el aislante térmico hacia abajo.

    Al fijar el cable a la estructura, nos debemos asegurar de dejar el cable con holgura suficiente para que pueda hacer todo su recorrido en el eje Y. No es recomendable dejar demasido cable ya que podría engancharse.

    olgura suficiente para que pueda hacer todo su recorrido en el eje Y. No es recomendable dejar demasido cable ya que podría engancharse.</div> </div> <br/>)
  • Montaje Extrusor HTA3D v2  + (<big>Componentes:</big> * HotComponentes: * Hotend * Conector bowden * Tubo de teflón * Pieza impresa: parte trasera del extrusor Montaje: # Introducimos el conector bowden en su posición # Introducimos el teflón en el conector bowden hasta llegar al final. # Lo situamos sobre la pieza impresa. # Marcamos con un rotulador permanente hasta donde llega. # Cortamos el teflón a 45º para simular la forma del la pieza impresa.rtamos el teflón a 45º para simular la forma del la pieza impresa.)
  • Montaje de P3steel por HTA3D - Tutorial 4 - Extrusor Dual  + (<big>Componentes:</big> * 2x pComponentes: * 2x piezas impresas * 2x rodamiento 608zz * 2x tornillos M8x20 Montaje: # Empezando por uno de los dos tensores, introducimos el rodamiento en su posición. # Introducimos el tornillo a través del rodamiento. # Repetimos estos pasos para el otro tensor.
    1. Correspondiente al extrusor izquierdo. 2. Correspondiente al extrusor derecho.
    t">1. Correspondiente al extrusor izquierdo. 2. Correspondiente al extrusor derecho.</div> </div>)
  • Montaje de P3steel por HTA3D - Tutorial 4 - Extrusor Dual  + (<big>Componentes:</big> * 2x pComponentes: * 2x piezas impresas * 2x rodamiento 608zz * 2x tornillos M8x20 Montaje: # Empezando por uno de los dos tensores, introducimos el rodamiento en su posición. # Introducimos el tornillo a través del rodamiento. # Repetimos estos pasos para el otro tensor.
    1. Correspondiente al extrusor izquierdo. 2. Correspondiente al extrusor derecho.
    t">1. Correspondiente al extrusor izquierdo. 2. Correspondiente al extrusor derecho.</div> </div>)
  • Montaje de P3steel por HTA3D - Tutorial 4 - Extrusor  + (<big>Componentes:</big> *CuerpComponentes: *Cuerpo del extrusor *Hotend *Tubo de teflón Montaje: #Introducimos el tubo de teflón dentro del hotend hasta el fondo. #Introducimos el hotend dentro del extrusor y marcamos con un rotulador permanente hasta donde deberá llegar el tubo de teflón. #Sacamos el hotend y cortamos con un cutter el tubo haciendo un ángulo de 45º, simulando la forma del extrusor.
    El filamento una vez le empuje la polea dentada entrará directamente en el tubo de teflón minimizando posibles rozamientos.
    polea dentada entrará directamente en el tubo de teflón minimizando posibles rozamientos.</div> </div>)
  • Montaje de P3steel por HTA3D - Tutorial 4 - Extrusor  + (<big>Componentes:</big> * VentComponentes: * Ventilador 4020 (de capa) * Ventilador 3010 (hotend) * 1.5 metros aprox. de cable bipolar 1mm''²''(0.75 m para cada uno) * 2 clavijas Montaje: # Empezando por uno de los ventiladores, introducimos un poco de termorretráctil en los extremos de los dos hilos del cable bipolar que vamos a soldar. # Pelamos los dos extremos del cable. # Soldamos uno de los hilos a la clavija (tenemos que tener la precaución de soldar correctamente el cable negativo con el pin de la clavija que conectará con el cable negativo del ventilador y el positivo con el que conectará con el positivo). # Protegemos la soldadura con el termorretráctil y lo calentamos para activarlo. # Repetimos los pasos con el otro ventilador.
    Utilizando estas clavijas, en caso de que tengamos que cambiar unos de los ventiladores, sólo tendremos que desconectarlo, evitando repetir soldaduras.
    Muy importante respetar la polaridad de los ventiladores. Cuando soldemos los cables a la clavija, hay que prestar especial cuidado a la orientación de la misma, para soldar el cable positivo al pin que coonectará con el cable positivo del ventilador y lo mismo con el negativo.
    ntación de la misma, para soldar el cable positivo al pin que coonectará con el cable positivo del ventilador y lo mismo con el negativo.</div> </div>)
  • Montaje de P3steel por HTA3D - Tutorial 6 - Electrónica y sus conexiones  + (<big>Componentes</big> * 3x CaComponentes * 3x Cables para los finales de carrera Montaje: # Introducimos cada uno de los cables de los finales de carrera en su clavija (para los ejes X, Y y Z).
    Nota: Sólo tienen una posición para colocarlos.
    <div class="icon-instructions-text">Nota: Sólo tienen una posición para colocarlos.</div> </div>)
  • Montaje de P3steel por HTA3D - Tutorial 6 - Electrónica y sus conexiones  + (<big>Componentes</big> * 3x CaComponentes * 3x Cables para los finales de carrera Montaje: # Introducimos cada uno de los cables de los finales de carrera en su clavija (para los ejes X, Y y Z).
    Nota: Sólo tienen una posición para colocarlos.
    <div class="icon-instructions-text">Nota: Sólo tienen una posición para colocarlos.</div> </div>)
  • Test12345678  + (<br/> <table class="wikitable" ce
    True to scale sound impression, in some places too loud Discreet sound, blade flapping can be heard
    Cost is 4000 - 6000 € approx fort he turbine Cost is 1500 € approx (motor and controler)
    Additonally required equipment: fuel station (200 €), Kerosene, fuel tanks, valves, tubing Additonally required equipment: charger, power supply, lipo batteries (another 1000 €)
    Kerosene can be difficult to get in some areas Lipo batteries have a risk to burn
    Kerosene smell can be a problem in cars -
    Higher virbation level in the model -
    Thrust influences the flight characteristics -
    Model loses weight during flight (burnt kerosene) and changes sometimes center of gravity -
    More know how required (starting procedure, kerosene supply in the model by fuel tanks,…)
    er of gravity </td><td width="302" valign="top">- </td></tr><tr> <td width="302" valign="top">More know how required (starting procedure, kerosene supply in the model by fuel tanks,…) </td><td width="302" valign="top"> </td></tr><tr> <td width="302" valign="top"> </td><td width="302" valign="top"> </td></tr></table>)
  • Clay-pot-irrigation system (Aranya Agricultural Alternatives method)  + ([[Tree planting (Aranya Agricultural Alternatives method)]])
  • Clay-pot-irrigation system (Aranya Agricultural Alternatives method)  + ([[Tree planting (Aranya Agricultural Alternatives method)]])
  • Bartop Arcade 2 joueurs  + (Boutiques faboulousarcade http://ebay.to/2Boutiques faboulousarcade http://ebay.to/2gKd1zy Cette étape est la plus longue et fastidieuse du tuto. Armez-vous donc de patience, car c'est tout ce dont vous aurez besoin à cette étape. Rien n'est compliqué dans ces branchements mais je vous conseille toutefois de repérer chaque boutons y compris ceux des joysticks (haut, bas, gauche et droite) à l'arrière du panel. Cela vous facilitera grandement la tâche lorsque vous raccorderez le tout. La première étape consiste à relier tous les boutons entre eux à l'aide d'un câble commun. Partez donc du connecteur (commun) d'un des boutons et reliez le au suivant et ainsi de suite. Pour finir, branchez la dernière cosse sur un des ports GROUND de l'interface USB ou du Raspberry Pi. Il y plusieurs solutions pour connecter les boutons et les joysticks sur un Raspberry pi : utiliser une interface USB (souvent vendu avec le kit) ou les ports GPIOs du Raspberry Pi. Dans mon cas, j'ai utilisé l'interface USB et ai raccordé le tout au Raspberry pi. Une fois que tous les boutons et joysticks sont reliés au port GROUND par un câble commun, il suffit de relier chacun des boutons au port correspondant sur le Raspberry ou l'interface USB. Le plus compliqué dans cette étape, c'est de réussir à faire quelque chose de propre. En effet, essayez de ne pas faire passer les câbles trop près des joysticks pour éviter d'en couper un !!! Vidéo pour mieux comprendre : https://www.youtube.com/watch?v=x6Ry4bOWcR8 Pour ceux qui utilisent les ports GPIO du Raspberry, il faut penser à activer les ports GPIO dans le fichier de configuration. Recalbox possède un outil de configuration avancée nommé recalbox.conf qui vous permet de modifier des options qui ne sont pas disponibles dans emulationstation. Pour le modifier, allez dans le dossier de recalbox partagé sur le réseau local. Le fichier recalbox.conf est disponible dans le répertoire nommé system. Dans recalbox.conf, activez le pilote GPIO en réglant controllers.gpio.enabled sur 1 : controllers.gpio.enabled=1 et vous êtes prêt à jouer !gpio.enabled=1 et vous êtes prêt à jouer !)
  • Bartop Arcade 2 joueurs  + (Boutiques faboulousarcade http://ebay.to/2Boutiques faboulousarcade http://ebay.to/2gKd1zy Cette étape est la plus longue et fastidieuse du tuto. Armez-vous donc de patience, car c'est tout ce dont vous aurez besoin à cette étape. Rien n'est compliqué dans ces branchements mais je vous conseille toutefois de repérer chaque boutons y compris ceux des joysticks (haut, bas, gauche et droite) à l'arrière du panel. Cela vous facilitera grandement la tâche lorsque vous raccorderez le tout. La première étape consiste à relier tous les boutons entre eux à l'aide d'un câble commun. Partez donc du connecteur (commun) d'un des boutons et reliez le au suivant et ainsi de suite. Pour finir, branchez la dernière cosse sur un des ports GROUND de l'interface USB ou du Raspberry Pi. Il y plusieurs solutions pour connecter les boutons et les joysticks sur un Raspberry pi : utiliser une interface USB (souvent vendu avec le kit) ou les ports GPIOs du Raspberry Pi. Dans mon cas, j'ai utilisé l'interface USB et ai raccordé le tout au Raspberry pi. Une fois que tous les boutons et joysticks sont reliés au port GROUND par un câble commun, il suffit de relier chacun des boutons au port correspondant sur le Raspberry ou l'interface USB. Le plus compliqué dans cette étape, c'est de réussir à faire quelque chose de propre. En effet, essayez de ne pas faire passer les câbles trop près des joysticks pour éviter d'en couper un !!! Vidéo pour mieux comprendre : https://www.youtube.com/watch?v=x6Ry4bOWcR8 Pour ceux qui utilisent les ports GPIO du Raspberry, il faut penser à activer les ports GPIO dans le fichier de configuration. Recalbox possède un outil de configuration avancée nommé recalbox.conf qui vous permet de modifier des options qui ne sont pas disponibles dans emulationstation. Pour le modifier, allez dans le dossier de recalbox partagé sur le réseau local. Le fichier recalbox.conf est disponible dans le répertoire nommé system. Dans recalbox.conf, activez le pilote GPIO en réglant controllers.gpio.enabled sur 1 : controllers.gpio.enabled=1 et vous êtes prêt à jouer !gpio.enabled=1 et vous êtes prêt à jouer !)
  • Présentoir lumineux pour super héros et monuments découpés en mdf et pmma à partir de dessins d'enfants  + (Je souhaitais ajouter une touche de couleuJe souhaitais ajouter une touche de couleur à la scène avec un arc en ciel découpé en PMMA souple qui serait simplement posé sur le présentoir. Pour cela on utilise un plug in pour inkscape appelé [https://www.thingiverse.com/thing:203940 "living hinges"] Après pas mal de tests, pour du PMMA 3mm les réglages suivants du plug in sont les plus adaptés : cut length : 19 gam length : 2 separation distance : 2. Des bandes de 20 mm x 300 mm sont découpées dans du pmma de 3mm de quatre couleurs (bleu, vert, jaune, orangé) et ajourées (fichier : arcenciel_supersoleil.svg) comme figuré sur l'image 1. On découpe également super soleil dans les trois couleurs rouge, orange, jaune ainsi que la pince qui servira à épingler super soleil à l'arc en ciel, solidarisera ce dernier et permettra à super soleil de coulisser le long de l'arc en ciel (PMMA 10 mm). Chaque bande de l'arc en ciel doit être légèrement plus courte que la précédente. On coupe donc environ la bande jaune de 1 cm, la verte de 2 cm, la bleue de 3 cm. (image 3) On teste ensuite le placement de l'arc en ciel sur le présentoir. Super soleil viendra s'épingler ensuite dessous.soleil viendra s'épingler ensuite dessous.)
  • Présentoir lumineux pour super héros et monuments découpés en mdf et pmma à partir de dessins d'enfants  + (Je souhaitais ajouter une touche de couleuJe souhaitais ajouter une touche de couleur à la scène avec un arc en ciel découpé en PMMA souple qui serait simplement posé sur le présentoir. Pour cela on utilise un plug in pour inkscape appelé [https://www.thingiverse.com/thing:203940 "living hinges"] Après pas mal de tests, pour du PMMA 3mm les réglages suivants du plug in sont les plus adaptés : cut length : 19 gam length : 2 separation distance : 2. Des bandes de 20 mm x 300 mm sont découpées dans du pmma de 3mm de quatre couleurs (bleu, vert, jaune, orangé) et ajourées (fichier : arcenciel_supersoleil.svg) comme figuré sur l'image 1. On découpe également super soleil dans les trois couleurs rouge, orange, jaune ainsi que la pince qui servira à épingler super soleil à l'arc en ciel, solidarisera ce dernier et permettra à super soleil de coulisser le long de l'arc en ciel (PMMA 10 mm). Chaque bande de l'arc en ciel doit être légèrement plus courte que la précédente. On coupe donc environ la bande jaune de 1 cm, la verte de 2 cm, la bleue de 3 cm. (image 3) On teste ensuite le placement de l'arc en ciel sur le présentoir. Super soleil viendra s'épingler ensuite dessous.soleil viendra s'épingler ensuite dessous.)
  • Geiger counter 12+  + (<u>https://world-nuclear.org/nuclearhttps://world-nuclear.org/nuclear-basics/what-is-radiation.aspx Radiation is energy travelling through space. Sunshine is one of the most familiar forms of radiation. It delivers light, heat and suntans. While enjoying and depending on it, we control our exposure to it. Beyond ultraviolet radiation from the sun are higher-energy kinds of radiation which are used in medicine and which we all get in low doses from space, from the air, and from the earth and rocks.rom space, from the air, and from the earth and rocks.)
  • Geiger counter 9-11  + (<u>https://world-nuclear.org/nuclearhttps://world-nuclear.org/nuclear-basics/what-is-radiation.aspx Radiation is energy travelling through space. Sunshine is one of the most familiar forms of radiation. It delivers light, heat and suntans. While enjoying and depending on it, we control our exposure to it. Beyond ultraviolet radiation from the sun are higher-energy kinds of radiation which are used in medicine and which we all get in low doses from space, from the air, and from the earth and rocks.rom space, from the air, and from the earth and rocks.)
  • Thermostat control activity v12  + (== What you need[https://docs.google.com/d== What you need[https://docs.google.com/document/d/1HVWFDdyiLj6ORTMYcQF-VPyJCPGuPzeTj_FaKip4pS4/edit#heading=h.kft4zwyruhwh ?] == * A pair of scissors * An old shoe box * Pastels / glue / colored sheets * A small fan How to create the environment As in the previous activity, the children have a box that will simulate the home environment. The moderator can leave room for children to decorate their boxes and express their creativity. Even in this case, children will have to cut the smaller sides: on one side they will be able to look into the box, on the other they can insert a small fan. The device, inserted in the box, will detect if there is the right temperature. By accessing the fan, the environment will become colder, although there is no need. Thanks to the signaling of the device, children will understand that the fan can be turned off. == How to build the box[https://docs.google.com/document/d/1HVWFDdyiLj6ORTMYcQF-VPyJCPGuPzeTj_FaKip4pS4/edit#heading=h.rocl9tvc6md5 ?] == * We take a box of shoes that we no longer use; * With the help of a pair of scissors with a rounded tip, let's cut one of the shorter sides of the box. From here we could observe inside the box itself what will be simulated; * Let's cut the other minor side in the same way. From this we will insert the small fan; * By inserting the device inside the box, we created our miniature room and we are ready for the experiment. room and we are ready for the experiment.)
  • Implementing Web Server on ESP32  + (=== What is a Web Server? === A web server=== What is a Web Server? === A web server is a software application that serves web pages to users. When a user requests a web page, the web server processes the request and sends the requested page back to the user’s browser. This forms the backbone of data communication on the World Wide Web. === What is ESP32? === The ESP32 is a series of low-cost, low-power systems on a chip microcontroller with integrated Wi-Fi and dual-mode Bluetooth. The ESP32 series employs a Tensilica Xtensa LX6 microprocessor and includes built-in antenna switches, an RF balun, a power amplifier, a low-noise receiver amplifier, filters, and power management modules. It is suitable for a wide variety of applications, from low-power sensor networks to more demanding tasks such as music streaming.e demanding tasks such as music streaming.)
  • PP Extruder Pro  + (==== Tools ==== 1/2" Socket ==== Parts ====== Tools ==== 1/2" Socket ==== Parts ==== 2x 1000mm 4080 extrusion 4x 300mm 4040 extrusion 40x t-nuts 22x M8x20 bolts 22x M8 Washers 12x Corner Brackets
    ==== Steps ==== # Slide 6 t nuts into the top side of the 1000mm extrusion. (repeat for other beam) # For the 300mm beams, 2 pairs of 2 will be identical, one "I" shaped, and one "C" shaped. # For the C-shaped beam, Slide two t-nuts into one rail. Attach the corner brackets at the ends, ensuring the bracket is flush with the beams end. *Always use the side of the bracket with a flat face (non-lipped) first. This ensures you can get a tool onto the 2nd bolt without being blocked. # For the I-Beams, repeat the same steps for the C-beam, but on both sides. # Repeat so you have 2 I-beams and 2-C beams. # *Optional* Add bolts to all remaining bracket holes and loosely attach t-nuts. (as seen in the right two beams in image 3)
    uts. (as seen in the right two beams in image 3))
  • Costruzione del robot ABC  + (<div class="mw-translate-fuzzy"> Iniziamo prendendo la base aggiungendo il supporto con la batteria collegata ai 3 LED verdi. </div> <div class="mw-translate-fuzzy"> Prendere 4 viti M4 e inserirle nei 4 fori e fissare 1 dado su ciascuna vite. </div>)
  • Robot "ABC" en bois  + (Commençons par prendre le dessus (Pièce "004" du fichier : Robot_ABC_V1.svg) en ajoutant le support avec c’est pile relier au 3 LEDs vertes. Prendre 4 vis M4-50 mm les insérer dans les 4 trous puis fixer 1 écrou sur chaque vis.)
  • Bau des ABC-Roboters  + (Commençons par prendre le dessus (Pièce "004" du fichier : Robot_ABC_V1.svg) en ajoutant le support avec c’est pile relier au 3 LEDs vertes. Prendre 4 vis M4-50 mm les insérer dans les 4 trous puis fixer 1 écrou sur chaque vis.)
  • Robot "ABC" en madera  + (Empecemos por tomar el control (Pieza "004" del archivo: Robot_ABC_V1. svg) añadiendo el soporte con su batería conectada a los 3 LEDs verdes. Tomar 4 tornillos M4-50 mm, insertarlos en los 4 agujeros y fijar 1 tuerca en cada tornillo.)
  • Robot "ABC" in wood  + (<div class="mw-translate-fuzzy"> Let's start with the base by adding support with it's stack connected to the 3 green LEDs. </div> <div class="mw-translate-fuzzy"> Take 4 screws M4 insert them in the 4 holes then fix 1 nut on each screws. </div>)
  • Robot "ABC" en bois  + (Commençons par prendre le dessus (Pièce "004" du fichier : Robot_ABC_V1.svg) en ajoutant le support avec c’est pile relier au 3 LEDs vertes. Prendre 4 vis M4-50 mm les insérer dans les 4 trous puis fixer 1 écrou sur chaque vis.)
  • Etabli compact.  + (Afin de pouvoir facilement s'y retrouver, Afin de pouvoir facilement s'y retrouver, notez la position des plaques avec leur noms : * planches de medium : - 15*800*485 -> coté gauche - 15*800*500 -> coté droit - 15*800*570 -> arrière - 15*800*560 -> porte - 15*570*410 (x2) -> intérieur - 15*570*470 : sol * planche de lattes : - 22*500*600 -> surface de travail supérieure - 22*500*800 -> surface de travail latéral
    Ici le montage est fait pour avoir un plan qui s'étend sur la droite (ou alors des deux cotés), mais vous pouvez tout a fait le faire s'étendre sur la gauche. Pensez juste à inverser coté droit et gauche, et mettre les charnières de la porte du bon coté.
    ste à inverser coté droit et gauche, et mettre les charnières de la porte du bon coté.</div> </div>)
  • Etabli compact.  + (Retourner le montage sur le plan de travail supérieur afin de pouvoir le monter facilement. Prendre 6 équerres et 24 vis 15mm et fixer la plaque au reste du montage en plaçant 2 équerres sur chaque arête.)