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Une liste de toutes les pages qui ont la propriété « Introduction » avec la valeur « Une machine CNC est une machine-outil à commande numérique : ''computer numerical control.'' ». Puisqu’il n’y a que quelques résultats, les valeurs proches sont également affichées.

Affichage de 51 résultats à partir du n°1.

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  • Création de stickers autocollants  + (L’intérêt de cet atelier réside dans sa siL’intérêt de cet atelier réside dans sa simplicité de mise en place et d’exécution : il s’agit de dessiner ou de décalquer un motif sur un logiciel de dessin vectoriel puis de le découper sur une planche de papier adhésif. Il permet ainsi d’aborder le plus directement possible à la fois la création graphique et la fabrication numérique, à travers l’une de ses applications les plus faciles à appréhender. '''Objectifs''' : - Initier les participants aux outils numériques de dessin vectoriel. - Initier les participants à la fabrication numérique via la découpeuse vinyle. - Développer leur créativité et leur imagination. - Ramener chez soi un objet fun personnalisé. '''Matériel''' : Papier autocollant, environ 10 cm/ participant et Papier transfert, même surface. '''Logiciels''' : Adobe Illustrator ou InkScape. Logiciel de la machine, ici Silhouette Studio. '''Machine''' : Cameo et Tablette graphique.
    ''' : Cameo et Tablette graphique. <br/>)
  • Mosquitto MQTT - IoT Platform Series  + (MQTT stands for Message-Queue-Telemetry-TrMQTT stands for Message-Queue-Telemetry-Transport, is a '''publish/subscribe''' protocol for '''machine-to-machine''' communication. This simple protocol, is easy to implement for any client. Termed as the '''Pub''' and '''Sub,''' both are used for same purpose but with different methods.r same purpose but with different methods.)
  • What is machine vision  + (Machine vision is a technology in the fielMachine vision is a technology in the field of artificial intelligence aimed at obtaining and analyzing images through the use of specialized cameras and equipment in an industrial environment. The data obtained can be used to solve a wide range of work tasks, machine vision technologies allow us to abandon less efficient human labor. Machine vision technology allows industrial equipment to "see" and interact with objects, which in turn helps to improve the quality of manufactured products, reduce production costs, and simplify tasks. == Benefits of Machine Vision == Machine vision improves company efficiency, productivity and saves money. The introduction of machine vision systems in production significantly increases its competitiveness, which is due to a number of obvious advantages of robotic labor: # Computer vision is ideal for routine, repetitive tasks where a person can easily lose focus and make mistakes; # In areas that require high precision, such as pharmaceuticals and mechanical engineering, machine vision guarantees the absolute accuracy of tasks; # A significant advantage of machine vision over human labor is the ability of a computer to detect millions of shades and gradations of colors in images that are inaccessible to the human eye; # [https://www.seosakti.com/machine-vision-how-to-teach-a-locomotive-to-help-the-driver/ Machine vision] is able to simultaneously perceive a huge variety of objects, which not only reduces the time to complete tasks, but also expands the functionality of the possibilities. == Machine vision tasks == Typical tasks that are solved using machine vision systems: # compliance with product quality; # detection and search of objects, measurement of sizes; # tool management (machine, robot, etc.); # testing and calibration; # management of production processes in real time; # collection, recognition and identification of information, comparison with a given template; # equipment monitoring; # image recovery; # barcode reading; # sorting/counting objects; # Color analysis. Before turning to practical examples, let's define the most important components. Typically, vision systems are divided into two independent subsystems: # Acquisition of images; # Image processing. Each of them, in turn, includes a different set of components depending on the requirements of a particular application. == Components of a machine vision system == With image processing, everything is more or less clear: # calculator (one or another processor, graphics coprocessor, DSP or FPGA); # mathematical algorithms that work on this calculator. In practice, certain platforms and software are used “as is”, and rarely anything changes in the algorithms themselves. The task of the developer is to choose the types of algorithms and their sequence. And here a tool that allows you to easily and conveniently operate with images becomes of great importance. And here the most important thing begins. But for this they (images) must first be obtained. An image, an array of pixel values, or a cloud of points, in the case of multidimensional representations, can be obtained in various ways, and the developer plays a decisive role in this: # video camera; # thermal imaging camera; # laser 3D scanner; # TOF camera; # and many others. And in each case, the choice is not limited to one type of device. A video camera can be a matrix camera, or it can be linear, color or monochrome, with different resolutions and matrix sizes. Sometimes you have to sacrifice resolution in favor of pixel size, and sometimes a small pixel is preferable (for observing small objects). Depending on the type of camera and the object being examined, you may also need: # Input-output equipment; # Lighting system; # Camera lenses. It is equally useless to use a good, expensive camera with a mediocre, cheap lens, and vice versa. The lens can be ordinary, or it can be telecentric or special for "peeping" into the pipe or, conversely, coverage of 360 °. The light can be shadow, direct, angled, coaxial, white or monochromatic, pulsed or structured. Of course, various combinations of all of the above options are possible. == Selection of machine vision components == The choice of the wrong technical solution for obtaining an image is very difficult to compensate with the most complex mathematical algorithms. Unfortunately, our own experience plays an important role in making a mistake: it is not difficult for a person to receive (see) and process a picture without all these "wisdom". This happens, as it seems to us, instantly and requires much less effort than solving a quadratic equation, with which the computer copes faster than us. From which we draw a simple but incorrect conclusion: obtaining and processing images for a computer is not a very difficult task, because it is so “smart”. But that's not the case at all. Despite the obvious progress in computing power, digital cameras and algorithms, modern machine vision systems are not able to “easily” solve tasks that seem trifling to a person. We tend to underestimate the capabilities of our brain and vision. This is the source of a number of failures and disappointments from attempts to use machine vision systems in industrial applications. Equipment manufacturers often fail to draw the attention of their consumers to the fact that even the most advanced camera with the latest software is a necessary but not sufficient component of success. A perfect camera has not made anyone a professional photographer overnight. Despite a number of "helpers" (auto exposure, auto focus), knowledge and considerable experience are needed to choose the time and point of shooting, lighting, aperture and focus point to get a good picture. In this case, as a rule, the goal is not to obtain a repeatable picture of an object with detail, regardless of its color, external illumination or rotation, to avoid shadows, uneven lighting, hide or emphasize defects in shape or surface - i.e. facilitate subsequent processing as much as possible, increase the reliability and reliability of the algorithms. But these are only a small fraction of the issues without which the operation of machine vision systems will not be effective. From the foregoing, a disappointing conclusion follows: for all the seeming triviality of the task of visual control, the construction of a working machine vision system requires the involvement of professionals at the earliest stages, from the selection of equipment to its installation, training of algorithms and subsequent maintenance. Do not trust sellers who convince you that this "wonder camera" will solve all your problems. Practical experience and knowledge gained in the creation of vision systems that work in production are important as in no other applied engineering field due to the initial high degree of uncertainty of the conditions and the object of study. Corresponding to this (literally and figuratively) is the value of both engineers and companies with such experience. Is this not a reason for young professionals to think about the area of application of their efforts? == Application of machine vision: examples == Even in seemingly simple issues of visual control of juice jars on a conveyor or medicine ampoules, a number of issues may arise that require a systematic approach and certain experience. For example, it is genuinely surprising that the control of an excise stamp glued vertically and horizontally on a round bottle requires different technical solutions. For a more detailed illustration, let's consider the problem a little more complicated. For example, the integration of technical vision into the system of electrical testing of film capacitors in their mass production. The test subject is selected from our practice, but can be easily replaced with smaller or larger items from any production area, be it the food industry or the automotive industry. So, # Visual control of the surface, shape; # Control of machines and feed mechanisms, in this project these are industrial robots; # Accounting (identification, sorting, marking, etc.) In the example under consideration, capacitors are rectangular objects with face sizes from 3 to 20 mm of two types: output - and a surface-mounted version, i.e. without legs - conclusions. The hatcher, in turn, is divided into two types of body: in fact, corpus and pupated. The corpus one has strictly orthogonal parallelepiped shapes, the pupated one has a certain rounded shape, similar to a rectangular lollipop with oval edges. All of them differ in the size of the case, its color, and the output ones also differ in diameter, length of the outputs and the distance between them. In addition, the conclusions can be located on different sides or on one side. The supply of capacitors for testing is carried out in bulk, i.e. bunch out of the box. The list of object manipulations looks like this: # Take an object from the "heap"; # Check its type (in form and marking); # Assess the condition of the case for visible damage, scratches, chips; # Move to electrical testing station; # Carry out electrical tests; # Move from the electrical test station to the appropriate tray depending on the test result (Rejection and sorting by rating). The installation should work with all types of capacitors without significant readjustment, and preferably without it at all. Let's consider the most complex variant with pupated capacitors (that is, having a body shape other than rectangular in two sections). To capture the capacitor from the “heap”, a picture is used from a camera located above the “luminous” section of the vibrating table that feeds. The algorithm selects a “free” capacitor in the image and passes its coordinates to a robot equipped with a pneumatic suction cup for capture. In the absence of a free capacitor, a “shake” command is sent to the feed table controller, after which a new picture is analyzed. The procedure is repeated until the object to be captured appears in the field of view. The robot moves the captured object to the first control zone, where, in addition to evaluating the shape of the body, length and location of the leads, its compliance with the type specified by the program is determined. Pneumatic grip allows you to manipulate objects of different shapes and sizes, but this results in a large spread in the actual position of the product in the grip. In addition, the terminals of the capacitor can be shifted in one direction or another. To determine the positioning error, a machine vision system is used that evaluates the actual position of the product in the grip in the coordinates of the robot. To estimate displacements in the third dimension, the triangulation principle is used with additional laser illumination. Thus, in the next operation, the required accuracy of element placement in the mechanical grip is achieved. In some cases, a decision is made that it is impossible to manipulate this sample, and it is sent to marriage or to a container for "manual" processing. A mechanical gripper with a pneumatic drive aligns the leads for subsequent placement of the device in the connector of the electrical testing station and transfers the product for subsequent manipulations to the second robot. Identical bolts are located at different distances from the camera. The detail on the left is a cylinder extended along the axis of the lens. To increase the reliability of the control of a rounded case, telecentric lenses are used, which allow not only to more accurately estimate the geometric dimensions, but also to increase the depth of field of the image, which makes it possible to work with objects of different sizes. To obtain certain characteristics, various types of LED illumination are used: background, diffuse direct light, laser triangulation. The motion system works in close cooperation with the test station and machine vision subsystems. The electrical testing process is the longest stage - therefore, in order to increase the productivity of the installation, it is important that only products that successfully pass all other tests arrive here. At all stages of control, rejection of the product is provided. Depending on the test results, capacitors can be sorted by rating or other performance characteristics. == The choice of equipment and tools for the development of machine vision systems == The installation consists of several subsystems from different manufacturers: # Feeder, vibrating table Anyfeed (Switzerland), controlled via serial link; # Image capture systems are equipped with ace digital cameras (Basler AG, Germany) with different lenses depending on the selected resolution and subject. An Ethernet interface with built-in power circuits (PoE) provides the required flexibility - cameras are connected via a single cable using a network hub; # Telecentric lenses ([https://www.dzoptics.com/en/ DZOptics], China) are used at several control posts, in other cases - ordinary lenses of the middle price range; # General synchronization and control of mechanisms and robots is carried out using a set of discrete sensors and an industrial controller cRIO (National Instruments Corp., USA); # The electrical testing station was built on the basis of the PXI industrial measuring platform and modular instruments from National Instruments Corp., USA. A single tool for developing machine vision systems allows not only to reduce the cost of creation (one team of developers works or several - they “speak” the same language), but also significantly increases the reliability of the application software, since it does not require the integration of several different programs, developed in different languages. == Machine Vision Development: Conclusions == The successful development and implementation of machine vision in the production process is a rather complex engineering task, despite its apparent simplicity. But this should not become an obstacle to the development of modern technologies, because. The relevance of machine vision is growing rapidly. If you decide to build a vision system yourself, then be prepared for the fact that success will not come immediately. It is generally an iterative process consisting of numerous experiments with cameras, lights, and image processing algorithms. There are a large number of development tools on the market that allow you to solve typical problems without programming, but they all take time to master. In addition, each object of study needs its own, individual approach to finding the optimal technical solution. The easiest way to reduce the number of problems at the initial stage is to describe your task to the supplier of the components of the future system. Professional advice will help you avoid obvious mistakes. If you are offered a “wonder camera” that easily solves any problem, ask to demonstrate it on your sample and make sure that it is really “easy and simple”. If you are not confident in your abilities or if you have more important things to do, entrust the solution to people who have practical experience in working with vision systems and their integration into machines and production processes. #into machines and production processes. #)
  • PMI PfMP Dumps - Confirmed Success In Actual PfMP Exam  + (Most aspiring professionals are getting ceMost aspiring professionals are getting certified these days. You can say that it has become a trend but more than that it is a necessity. Because if you don’t have the necessary knowledge and skills you might as well be useless. And in a world you need to fight for your bread having a job is a must. This brings us back to gaining knowledge that you can prove you have with PMI Portfolio Management Professional Certification. Passing the PMI Portfolio Management Professional Exam is a requirement to get certified because it is a validation that you have accomplished the knowledge and skills to handle your job task. If you are worried you won’t be able to do that alone, you don’t have to. Testmayor is your aid in getting past these potential threats to your career. 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  • Node Red Controlled Neo Pixel on Raspberry Pi 4  + (NeoPixel LEDs are a popular type of addresNeoPixel LEDs are a popular type of addressable RGB LEDs that can create amazing effects and animations. They are easy to control with a microcontroller like Arduino, but what if you want to use them with a Raspberry Pi? In this article, we’ll show you how to use Node-RED, a graphical programming tool, to control NeoPixel LEDs with a Raspberry Pi.control NeoPixel LEDs with a Raspberry Pi.)
  • Plotter convertie en machine à dessiner  + (Nous avons modifié un plotter de dessin CaNous avons modifié un plotter de dessin Cameo en enlevant l'embout de la lame qui sert a découper le vinyle, par un stylo ou crayon et ainsi pouvoir reproduire un dessin. L'avantage de cette méthode c'est que l'on peut reproduire un dessin fait à la main au stylo de manière numérique avec une bonne précision. Cette petite modification peut s'appliquer à n'importe quelle autre plotter à condition que l'on puisse remplacer l'embout avec la lame.on puisse remplacer l'embout avec la lame.)
  • Fabrication de médailles  + (Nous proposons un atelier fabrication de médailles au Pointcarré réalisable avec des novices en fabrication numérique. Il montre le passage du dessin sur papier à l'objet physique en passant par le dessin numérique.)
  • Fabrication de médailles  + (Nous proposons un atelier fabrication de médailles au Pointcarré réalisable avec des novices en fabrication numérique. Il montre le passage du dessin sur papier à l'objet physique en passant par le dessin numérique.)
  • Faucheuse guidée par GPS RTK  + (On va décrire ici une faucheuse robot capaOn va décrire ici une faucheuse robot capable de couper l'herbe de façon entièrement automatique sur un parcours déterminé à l'avance. Grâce au guidage par GPS RTK le parcours est reproduit à chaque tonte avec une précision meilleure que 10 centimètres (mon expérience) . Le pilotage est basé sur une carte Aduino Mega, complétée par quelques shields de commande moteurs, d'accéléromètres et boussole ainsi que d'une carte mémoire. C'est une réalisation non professionnelle, mais qui m'a permis de me rendre compte des problèmes rencontrés en robotique agricole. Cette toute jeune discipline est en train de se développer rapidement, aiguillonnée par les nouvelles lois sur la réduction des désherbants et pesticides. Voici par exemple un lien vers le dernier salon de robotique agricole de Toulouse (https://www.fira-agtech.com/). Certaines entreprises comme Naio technologies fabriquent déjà des robots opérationnels (https://www.naio-technologies.com/). En comparaison, ma réalisation est bien modeste mais elle permet tout de même de comprendre l'intérêt et les défis de façon ludique. ....Et puis elle fonctionne vraiment ! ...... et peut donc être utilisée pour couper l'herbe autour de sa maison, tout en préservant son temps libre... Même si je ne décris pas la réalisation jusque dans les derniers détails, les indications que je donne sont précieuses pour celui qui voudrait se lancer. N'hésitez pas à poser des questions ou à faire des suggestions, ce qui me permettra de compléter ma présentation au bénéfice de tous. Je serais vraiment ravi que ce type de projet puisse donner le goût de l'ingénierie à des bien plus jeunes que moi.... afin d'être prêts pour la grande robolution qui nous attend.... D'ailleurs ce type de projet conviendrait parfaitement à un groupe de jeunes motivés dans un club ou un fablab, pour s'exercer à travailler en groupe projet, avec architectes mécanique, électrique, software chapeautés par un ingénieur système, comme dans l'industrie. '''La video d'introduction:''' Dans la première partie, on voit la machine se déplacer en ligne droite entre deux points du fichier de fauchage. Les inégalités de terrain obligent à de petites corrections de trajectoire. Au bout de la ligne droite, deux types de virages sont possibles: autour du centre de rotation situé au milieu des deux roues arrière ou bien autour d'une roue de façon à réaliser des bandes de fauchage contiguës. Bien que tournant à 1200 tr/min, les 3 lames de cutter des disques de coupe sont bien visibles grâce à l'effet stroboscopique. Ce qui frappe également, ce sont les grandes roues et la lenteur de déplacement. Les grandes roues sont nécessaires pour se déplacer sur des terrains comportant des irrégularités importantes (les 3 roues sont motorisées). La lenteur de déplacement est liée au besoin de couple important nécessaire pour se déplacer sur des prés pentus.aire pour se déplacer sur des prés pentus.)
  • Domoticz sur raspberry et arduino - commandes en 433Mhz  + (Principe général : Domoticz est installéPrincipe général : Domoticz est installé sur le raspberry, cela permet d'avoir un interface de gestion et de visualisation des données, accessible via WIFI, sur son téléphone ou son PC (le raspberry étant connecté par cable réseau à la box internet de la maison. L'arduino est connecté au raspberry via un cable usb, cela permet l'alimentation de l'arduino, ainsi que l'échange des données entre le raspberry et l'arduino. L'arduino est connecté à un capteur de température et d'humidité pour collecter les données. Il est aussi connecté à un emetteur et un récepteur radio 433Mh pour pouvoir commander des modules à distance. Enfin, j'ai utilisé des prises commandés via une télécommande 433Mhz, ces prise peuvent donc aussi être commandé par l'arduino, en utilisant l'interface Domoticz et me permette de commander des lumières, mais on pourrai aussi y mettre d'autre choses, comme des radiateurs electriques. choses, comme des radiateurs electriques.)
  • Calcul des paramètres de coupe pour la fraiseuse numérique  + (Quel que soit la pièce à réaliser à la fraQuel que soit la pièce à réaliser à la fraiseuse, il faut déterminer les paramètres de coupe de la machine. Un bon réglage de ces paramètres est important : si la fraise se déplace trop lentement, le bois peut « bruler » et laisser un mauvais état de surface. Si elle se déplace au contraire trop rapidement elle provoque l’arrachement des fibres du bois, ce qui rendra la pièce inutilisable, et pouvant aller jusqu’à la casse de la fraise. Ces paramètres sont au nombre de 4 dans notre cas : La vitesse d’avance (m/min) : Ce paramètre gère la vitesse de déplacement de la broche dans le matériau à usiner horizontalement. La vitesse de pénétration (m/min) : Ce paramètre gère la vitesse de déplacement de la broche dans le matériau à usiner verticalement. La vitesse de rotation de la broche (tour/min): Ce paramètre correspond à la vitesse à laquelle la fraise va tourner. La profondeur de passe (mm) : La profondeur maximale de pénétration la fraise dans le matériau en une passe. Exemple : Pour une profondeur de passe réglée à 3 mm, une découpe de 10mm de profondeur se fera en 3 passes de 3 mm puis une passe de 1 mm. Ces paramètre sont à calculer au cas par cas, et dépendent du diamètre de la fraise, de son type, de son nombre de dents (ou « flutes »), ainsi que du matériau utilisé.ètre de la fraise, de son type, de son nombre de dents (ou « flutes »), ainsi que du matériau utilisé.)
  • Calcul des paramètres de coupe pour la fraiseuse numérique  + (Quel que soit la pièce à réaliser à la fraQuel que soit la pièce à réaliser à la fraiseuse, il faut déterminer les paramètres de coupe de la machine. Un bon réglage de ces paramètres est important : si la fraise se déplace trop lentement, le bois peut « bruler » et laisser un mauvais état de surface. Si elle se déplace au contraire trop rapidement elle provoque l’arrachement des fibres du bois, ce qui rendra la pièce inutilisable, et pouvant aller jusqu’à la casse de la fraise. Ces paramètres sont au nombre de 4 dans notre cas : La vitesse d’avance (m/min) : Ce paramètre gère la vitesse de déplacement de la broche dans le matériau à usiner horizontalement. La vitesse de pénétration (m/min) : Ce paramètre gère la vitesse de déplacement de la broche dans le matériau à usiner verticalement. La vitesse de rotation de la broche (tour/min): Ce paramètre correspond à la vitesse à laquelle la fraise va tourner. La profondeur de passe (mm) : La profondeur maximale de pénétration la fraise dans le matériau en une passe. Exemple : Pour une profondeur de passe réglée à 3 mm, une découpe de 10mm de profondeur se fera en 3 passes de 3 mm puis une passe de 1 mm. Ces paramètre sont à calculer au cas par cas, et dépendent du diamètre de la fraise, de son type, de son nombre de dents (ou « flutes »), ainsi que du matériau utilisé.ètre de la fraise, de son type, de son nombre de dents (ou « flutes »), ainsi que du matériau utilisé.)
  • 123Tourelle  + (Réalisation d'une Bentolux dans le cadre dRéalisation d'une Bentolux dans le cadre de la formation IMT, à Alès - Initiation à la Fabrication Numérique. Il s'agit de réaliser une Bento qui aura plusieurs fonctionnalités : *Un '''mode "Normal"''' avec affichage de la température et de la pression atmosphérique *Un '''mode "Détection"''' qui indiquera sur les 10 dernières secondes (via la LED Ring) si un mouvement a été détecté et affichera un message si un certain niveau sonore est dépassé *Un '''mode "Jeu"''', basé sur le principe du jeu "1, 2, 3 Soleil", dans lequel il faudra non pas toucher la personne qui dit "1, 2, 3, Soleil !" mais faire "exploser" la tourelle via un détonateur (qu'il faudra préalablement activer par branchement de 2 fils) pendant une phase de mouvement (lorsque la tourelle est retournée). Ceci, sans se faire repérer pendant les phases d'immobilité (tourelle face au joueur). '''4 niveaux de jeu''', de difficultés croissantes, sont codés (utilisation de 1 à 3 capteurs de mouvements, tourelle plus rapide, angles de rotation différents et aléatoires, phases de mouvement plus ou moins raccourcies, pertes plus ou moins importantes de boucliers ou d'énergie). A chaque fois que le joueur se fait repérer, il perd des "boucliers" (1 à 3, selon le mode de jeu et le nombre de capteurs l'ayant détecté) et une perte d'énergie (plus ou moins aléatoire et selon le niveau et de plus en plus importante à mesure que le nombre de boucliers diminue). Le joueur gagne s'il faire exploser la tourelle pendant une phase de mouvement. Il perd s'il n'a plus de bouclier (sauf niveau 1) ou plus d'énergie (dans tous les modes).) ou plus d'énergie (dans tous les modes).)
  • Sèti - Mobilier multifonction  + (Son coût est indicatif, il correspond enviSon coût est indicatif, il correspond environ au prix d'une plaque de médium de 244 x 122 cm en épaisseur 18mm. A ce coût faudra ajouter le temps machine + opérateur du Fablab (environ 180€). La durée de 2,5h est aussi indicative, elle inclue le temps de découpe à la commande numérique et le temps de montage. Pour la découpe, vous devrez utiliser le fichier "[https://drive.google.com/file/d/0BytYGomP9LvYWmN2ZkpKMFVCUFU/view?usp=sharing fb0010_a_plat_neutre].ai", fichier récupérable dans l'onglet Fichier ci-dessous.upérable dans l'onglet Fichier ci-dessous.)
  • Sèti - Mobilier multifonction  + (Son coût est indicatif, il correspond enviSon coût est indicatif, il correspond environ au prix d'une plaque de médium de 244 x 122 cm en épaisseur 18mm. A ce coût faudra ajouter le temps machine + opérateur du Fablab (environ 180€). La durée de 2,5h est aussi indicative, elle inclue le temps de découpe à la commande numérique et le temps de montage. Pour la découpe, vous devrez utiliser le fichier "[https://drive.google.com/file/d/0BytYGomP9LvYWmN2ZkpKMFVCUFU/view?usp=sharing fb0010_a_plat_neutre].ai", fichier récupérable dans l'onglet Fichier ci-dessous.upérable dans l'onglet Fichier ci-dessous.)
  • Spotify Music Tips  + (Spotify offers both an ad-supported free vSpotify offers both an ad-supported free version and a premium subscription (US$9.99 monthly) with unlimited streaming of its 82 million-plus songs. '''However, for Spotify users with Spotify Free accounts, they will run into trouble if they’re not connected to the Internet'''. They can’t download/save songs to a local computer or play it on their music player, not to mention saving Spotify music to an SD card. '''With Spotify Premium''', although Spotify allows you to sync songs to a recognized SD card, '''for some reason it downloads to the Internal Storage instead of an external SD card'''. How to stop the above annoying things to save Spotify music to the external SD card for listening to music in smartphones or your car stereo? You're lucky. [https://www.sidify.com/sp-win/music-converter.html '''Sidify Music Converter'''] will certainly help you achieve that.'''] will certainly help you achieve that.)
  • How to Play Spotify on Squeezebox  + (Squeezebox is a family of network music plSqueezebox is a family of network music players, which launched by Slim Devices. Many people still use it. Some users are wondering how to use Spotify on Squeezebox. That’s what we will talk about today. Let me introduce the best way to enjoy Spotify on Squeezebox. TunesKit [https://www.tuneskit.com/music-converter/ Spotify Music Converter] is a professional and wonderful Spotify converter, with which all Spotify users can download and convert all songs, playlists, albums, and artists from Spotify to Squeezebox supported audio formats like MP3, AAC, WAV, and more lossless at the 5X speed. The following is the detailed step-by-step guide that shows you how to download and convert Spotify music to MP3 or other common audio formats. Before launching TunesKit Spotify Music Converter, you should make sure that you have installed this software on your personal computer which can be Windows or Mac.on your personal computer which can be Windows or Mac.)
  • Advantages of stretch jeans  + (Stretch jeans such as [https://www.gingttoStretch jeans such as [https://www.gingtto.com/collections/mens-stretch-jeans men's stretch jeans] have revolutionized the denim industry by offering a perfect blend of comfort, style, and versatility. Unlike traditional denim jeans, stretch jeans incorporate a small percentage of elastane or spandex into their fabric composition, providing enhanced flexibility and a snug fit. This article explores the advantages of stretch jeans, highlighting why they have become a wardrobe staple for fashion-forward individuals of all ages. '''Comfortable Fit:''' One of the primary advantages of stretch jeans is their exceptional comfort. The addition of elastane or spandex fibers allows the fabric to stretch and move with the body, offering a comfortable and unrestricted feel throughout the day. Whether sitting, standing, or engaging in physical activities, stretch jeans provide a flexible fit that molds to the body's contours without feeling constricting or restrictive. '''Enhanced Mobility:''' Stretch jeans offer improved mobility and freedom of movement compared to traditional denim jeans. The elasticity of the fabric allows for greater flexibility, making it easier to bend, squat, or reach without feeling restricted. This advantage is particularly beneficial for individuals with active lifestyles who require clothing that can keep up with their movements, whether running errands, attending social events, or engaging in outdoor activities. '''Flattering Silhouette:''' Another notable advantage of stretch jeans is their ability to create a flattering silhouette for various body types. The stretchy fabric gently hugs the curves and contours of the body, providing a sleek and streamlined appearance. Stretch jeans can help smooth out any lumps or bumps, creating a more polished and flattering look. Additionally, the flexibility of the fabric ensures that the jeans maintain their shape and fit snugly without sagging or bagging over time. '''Versatile Style Options:''' Stretch jeans come in a wide range of styles, washes, and finishes, offering versatile options to suit different preferences and occasions. From skinny jeans and bootcut jeans to high-rise and boyfriend jeans, there is a style of stretch jeans to complement every wardrobe. Whether dressing up for a night out or keeping it casual for a weekend brunch, stretch jeans provide endless styling possibilities that can effortlessly transition from day to night. '''Easy Care and Maintenance:''' Stretch jeans are known for their durability and easy care requirements, making them a practical choice for everyday wear. Most stretch jeans can be machine washed and dried without losing their shape or elasticity. Additionally, the stretchy fabric is resistant to wrinkles and creases, ensuring that the jeans maintain a crisp and polished appearance with minimal effort. This convenience makes stretch jeans a go-to option for individuals with busy lifestyles who value low-maintenance clothing options. '''Long-lasting Performance:''' Despite their stretchy nature, stretch jeans are designed to withstand regular wear and maintain their shape and integrity over time. The combination of high-quality denim and elastane or spandex fibers ensures long-lasting durability and performance. Stretch jeans are less prone to stretching out or becoming misshapen, even after multiple washes and wears, providing excellent value for money in the long run. '''Conclusion:''' In conclusion, the advantages of stretch jeans are undeniable, offering a winning combination of comfort, style, and versatility. Whether you're seeking a pair of jeans for everyday wear or special occasions, stretch jeans provide the perfect balance of form and function. With their comfortable fit, enhanced mobility, flattering silhouette, versatile style options, easy care and maintenance, and long-lasting performance, stretch jeans have rightfully earned their place as a wardrobe essential for fashion-conscious individuals seeking both style and comfort.ndividuals seeking both style and comfort.)
  • Node-Red Telegram Bot with Temperature Logger Part-2  + (Telegram is a popular messaging app that oTelegram is a popular messaging app that offers end-to-end encryption, cloud-based storage, and a variety of features for communication. One of these features is the ability to create and interact with bots, which are automated programs that can perform tasks or provide information. In this blog post, I will show you how to use Telegram bots to control your home automation system with Node-RED, a visual programming tool that allows you to connect and orchestrate devices, services, and APIs.d orchestrate devices, services, and APIs.)
  • OpenKnit: digital fabrication tool to create your own clothes  + (The OpenKnit machine is an open-source, loThe OpenKnit machine is an open-source, low cost, digital fabrication tool. The machine affords the user the opportunity to create his own clothing from digital files. Designing, producing and wearing clothes can now happen in the very same place, allowing the user to make decisions regarding creativity and responsibility. This wikifab has been developed for the OpenKnit machine workshop organized by Gerard Rubio, Waag Society and TU/E within the CRISP Smart Textile Services project. We would like to thank the people at WeMake maker space for reviewing and adjusting this instructable. All additional comments and suggestions on both the design of the machine and the Instructable are very welcome!ine and the Instructable are very welcome!)
  • PiKon telescope  + (The PiKon telescope consists of two main aThe PiKon telescope consists of two main assemblies: the Mirror Assembly and the Spider Assembly. The telescope is mounted onto an astronomical dovetail wedge. There is photographic standard 1⁄4” Whitworth thread for mounting on an astronomical or photographic tripod. Images are captured by the Raspberry Pi Camera and Computer. The Raspberry Pi is used in “command mode” and details of syntax are included later. Images can me transferred to PC or Mac from the Pi’s micro-SD card or via a Dropbox (or similar) from the Pi with internet connection.lar) from the Pi with internet connection.)
  • Automated Gardening Plant with arduino Uno under the DEEDU project  + (The automated gardening kit is a system thThe automated gardening kit is a system that allows controlling and automatic watering of a small plant. This system is developed for an educational purpose, the plant shall stay at different pupil's house to be controlled. The user will take notes every weeks from the control panel to create a database to folllow the growth of the connected plant What does it control ? -The moisture of the soil, this value will be directly used to decide whether to water or not -The CO2 concentration -The intensity of the light -The temperature and the humidity of ambient air '''What action can be performed ? ''' -A water pump will get water from a small reservoir to put it on the plant -A screen will display the information needed and 2 buttons to control what info to be displayed
    o control what info to be displayed <br/>)
  • Plastic Extrusion Machine  + (The extrusion machine has quite a specificThe extrusion machine has quite a specific output, a line. This is well suited to make new granulate and 3D printer filament. However use your creativity and you will find other applications for it as well. Change the nozzle for different shapes and sizes, turn it around a mold to make lamps or a handle for a knife. The extrusion machine consists in 6 different elements: the hopper, the barrel, the nozzle, the barrel holder, the framework and the electronics.holder, the framework and the electronics.)
  • Plastic Extrusion Machine  + (The extrusion machine has quite a specificThe extrusion machine has quite a specific output, a line. This is well suited to make new granulate and 3D printer filament. However use your creativity and you will find other applications for it as well. Change the nozzle for different shapes and sizes, turn it around a mold to make lamps or a handle for a knife. The extrusion machine consists in 6 different elements: the hopper, the barrel, the nozzle, the barrel holder, the framework and the electronics.holder, the framework and the electronics.)
  • Glowing LED Butterfly  + (The glowing LED butterfly uses RGB strips The glowing LED butterfly uses RGB strips programmed by Arduino to illuminate the 3D printed body. Here the example presents a butterfly design, but any shape could be used. The glowing of the strip and the colour pattern can be programmed using Arduino. With the integration of a battery and a switch, the creation can be taken home and displayed anywhere. It is a fun and flexible activity which provides a slightly higher level of complexity and can be spread out over multiple sessions by integrating many different skills and techniques including 3D printing, soldering and electronic prototyping. AGES: 11 to 18 years TIME: 5+ hours Activity's Aims and Learning Objectives - Creating something more complex from the beginning, which also involves all stages such as designing and testing before making it more permanent and transportable. - Working with small components that require patience and high levels of concentration - Able to work flexibly and adapt the design or steps taken if something breaks or gets damaged throughout the process. - Creating a functional object using different techniques from different disciplines. - A project with a longer time frame which can help support time management. There are different sections of the activity that can be spread out across different sessions. - Designing 3D printable object using TinkerCAD - Using a 3D printer to create a component - Programming an Arduino and involving it in a circuit - Using Arduino to create a programme which works with RGB strips and can change the lights as they wish - Gain experience with electronic prototyping and testing circuits - Gain experience with soldering and creating permanent circuits - Learn about the different circuit components - Creating something that is appealing to them === Supplies: === For the butterfly (or other design to glow) - Computer with access to TinkerCAD - 3D printer - Felt (or other appropriate material for backing) - Glue gun For programming element - Computer with Arduino software downloaded - Arduino Uno board For Circuits (temporary and permanent) - RGB LED strips - 3 x [100 to 220 ohm resistors] - 3 x [NPN transistors such as TIP120] - Multiple male to male solderless breadboard jumper cables - Breadboard - Wire - Wire strippers - Soldering iron - Solder - 9V battery - 9V battery strap - Small prototyping printed circuit board (PCB) - Header pins (breakaway male) - Switch (in this example we use a slide switch) - heat shrink wrapping tubes (not necessary but are advised!)a slide switch) - heat shrink wrapping tubes (not necessary but are advised!))
  • Menstrual Cup - 3D Cup  + (The idea is to create a model or process tThe idea is to create a model or process to easily print a customizable menstrual cut for those who need it ,and to fight against menstrual precariousness. On the same principle it would be possible to print[http://commeungardon.blogspot.com/2017/03/le-diaphragme-contraceptif.html diaphragmes]. Not everyone has access to the Internet to buy it online, enough money to buy a ready-made one, a vacuum chamber to mold it and buy silicone. My idea is to send the model and the tpu filament for example in fablabs and it would be possible to print it quickly. Anyone can participate in the fablab for example by making a free donation in a box next to the 3D printer, for example. We will therefore be able to apply this principle in developing countries and in all places where there is a person in need. It all started on Thingiverse and with @Totdahl who was able to print the prototype0 and give me feedback on the file. She also posted it on the 3D printing group on Facebook ,which allowed me to get positive as well as negative, disgusted or amused feedback. Unintentionally they all participated in a discussion about the female body and the taboos it still represents today. In the meantime I was able to meet @JessicaCL from Mission Control Lab, one of the creators of [[Www.openfem.org/|openfem.org]] which had as its project to generate open source contraceptive and protection solutions. "cup & diaphragms. As the site is closed and its project abandoned, we are in discussion to find a solution.oned, we are in discussion to find a solution.)
  • CCD-or CMOS-lab-on-a-chip based on discrete converters of different physical and chemical parameters of samples into the optical signals with positional sensitivity for morphometry of non-optical patterns  + (The literature analysis suggestes that a cThe literature analysis suggestes that a complex characterization of physiological activity of a living organism requires dozens or hundreds of chips depending on the task. For example, there are both active and passive chips used in biophysical, molecular metabolomic and genomic studies in fundamental and applied molecular medicine: a.       allergology (Taira, 2009; Lupinek, 2014; Seyfarth, 2014; Zienkiewicz, 2014; Williams, 2016); b.      haematology and transfusiology (Hassan, 2015; Nguyen, 2015; Chen, 2015; Kuan, 2015; Rafeie, 2016; Mielczarek, 2016), including blood-brain barrier research / modeling (Shao, 2016; Bonakdar, 2016; Brown, 2015; Deosarkar, 2015); c.       lymphology (Hanna, 2003; Shimizu, 2007; Moura, 2016) and phlebology (Franco, 2012; Brivo, 2012; Zhou, 2012; Ryu, 2015); d.      cardiology (Tanaka, 2007; Chean, 2010; Grosberg, 2011; Agarwal, 203; Wang, 2014; Rismani, 2015; Jastrzebska, 2016; Marsano, 2016; Zhang, 2016); e.       gastroenterology-on-a-chip (Yang, 2009; Esh, 2012, 2014), including gut-on-a-chip techniques (Bjerketorp, 2008; Kim, 2008, 2016; Tottey, 2013; Lee, 2016); f.       cellular neurophysiology-on-a-chip and neuromorphogenesis-on-a-chip (Millet, 2010; Ling, 2010; Kim, 2014; Huang, 2014; Wei, 2014; Kunze, 2015; Yamada, 2016); g.      endocrinology (Marchesini, 2007; Bovet, 2007; Srivastava, 2014); h.      immunology (Yakovleva, 2002; Yang, 2005; Corgier, 2007; Liu, 2011; Zhang, 2011; Kayo, 2013; Wang, 2015; Ali, 2016); i.        general “splanchnology-on-a-chip” based on N principally equivalent approaches: “organ-on-a-chip” (Wikswo, 2013; Ahmad, 2014; van der Helm, 2016; Mousavi, 2016) / “organ-on-a-chip” (Lee, 2013; Bhise, 2014; Odjik, 2015; Kim, 2015; Caplin, 2015; Sticker, 2015; An, 2015; Zheng, 2016; Cho, 2016), “organoid-on-a-chip” (Skardal, 2016) and “physiome-on-a-chip” (Stokes, 2015), which can be integrated in the frame of concept “body-on-a-chip” (Esh, 2011, 2016; Williamson, 2013; Reif, 2014; Sung, 2014; Kelm, 2014; Ryu, 2015; Perestrelo, 2015); {etc.} The above problem made the study so complicated, that it became quite unfeasible, since the “multi-chip” analysis (see Terminological remark No. 1) turned to be very expensive and the large sample volume required for such a complex analysis could not satisfy the principles of non-destructive diagnostics on a chip (for example, see (Takahashi, 2004; Feng, 2015)) due to many biomaterial sampling points (for example, see (Ando, 1987; Nikolaidis, 2012)) standardized in the protocols for biomedical and veterinary diagnostics. On the other hand, the difference and variety of the sampling and the sample preparation techniques for different microchips and standard diagnostic methods made the problem of analyzing the complex biochemical physiological state of the organism unimplementable and poorly informative. It is quite obvious that for the purpose of compatibility and comparability of the measurement using different analytical devices (see Terminological note No. 2) it is necessary to provide the compatibility and comparability of the sampling and the sample preparation methods. In the ideal case, all the analytical procedures should be performed with a single uniformly calibrated device using the same sample for all the tests without moving the sample from one device to another. To date there are independent calibration methods for chips (Gillot, 2007; Binder, 2008; Karsunke, 2009; Nakamoto, 2010; März, 2010; Song, 2012; Buchegger, 2014), as well as the calibration protocols for other analytical methods (including the imaging ones) using chips (Su, 2016; Garnica-Garza, 2009). Hence, we need an equivalent of cross-calibration in the interpretation close to that given by NIST for cytometry (Hoffman, 2012), although the term was used much earlier in radiology (including tomography) and nuclear medicine (Paans, 1989; Genant, 1994; Tothil, 1995;  Grampp, 2000; Geworski, 2002; Hetland, 2009; Garnica-Garza, 2009), as well as in the number of spectroscopic methods applied for the biomaterial analysis (Kwiatkowska, 2008; Wang, 2012; Poto, 2015; Liu, 2016). In addition, when we deal with the structured samples such as biological tissues, it is also important to obtain information on the spatial distribution of the substance or property analyzed in the image form, for example: o   magnetic field imaging; o   electrochemical parameters and field gradient; o   laser beam transmission outside the visible spectral range; o   distribution of the emitting regions in autoradiography; o   polarization characteristics and the angular fluorescence polarization; o   the local temperature of the sample at different points on a chip{etc.} Moving the sample from one microscope to another makes it difficult to establish the correspondence (colocalization) between the regions of interest (ROI) for different wavelength ranges (or different physical characteristics) allowing to perform the mapping and identification of the components under investigation due to the difference of visualization in different spectral ranges (or different physical “descriptors”). This prevents one from combination of the signal distribution maps from different spectral regions, and hence, makes it impossible to establish the correlations between the presence and distribution of the certain components or physical and chemical properties in the sample / tissue. Since different components of the analyte possess a number of colocalized characteristics in different spectral ranges (Zimmermann, 2005; Gavrilovic, 2009), it is possible to perform either a simultaneous or a sequential mapping and identification of several tissue components based on the physically different properties. For example, some target components can be visualized using non-spectral properties, such as magnetic fields (Gruschke, 2012; Kim, 2015; Hejazian, 2015), labeled atom diffusion (for example, see: Parker, 1981; Galbraith, 1981; Blakely, 1986; Hein, 1986; Nemecz, 1988; Pouteau, 2003), temperature maps (Choudhury, 2012; Rosenthal, 2014;  Karadimitriou, 2014; Meng, 2015; Lo, 2016) or redox maps (including ratiometric those (Herman, 2005;  Hilderbrand, 2008; Zhang, 2015; Chen, 2015; Pan, 2016)) on a chip (Jezierski, 2013; Gashti, 2016). We propose to implement a full range of methods for mapping the biological tissue parameters with or without specific labels using planar transducers / converters of the non-optical signal to the optical one, as will be described below. This will also result in the substitution of a number of independent expensive diagnostic devices with a simple unified complex diagnostic and analytical device. The operator of such a complex lab-on-a-chip will predominantly perform data analysis and processing (a so-called data mining, which is now mainly used not in the active mapping or imaging chips, but in the passive chips for genomic and peptidomic investigations (Lee, 2001; Smith, 2005; Abascal, 2008; Ghanekar, 2008; Usui, 2009;  Nussbeck, 2013)) rather than routine analytical procedures (such as sampling and dropping (Fang, 2002; Du, 2005; Cellar, 2005; Huynh, 2006; Zhang, 2007; Do, 2008; Jang, 2009; Kertesz, 2010; Sun, 2010; Coskun, 2010; Wu, 2012)) due to an automatic machinery. This is in consistence with the modern trends in the development of the information society and the extension of the applicability of the chemoinformatic (“chemobioinformatic” (Basak, 2012)) software for biomedical and pharmaceutical (Weinstein, 2001; Shedden, 2003; Shedden, 2004; Parker, 2004; Ghose, 2006; Kong, 2008;  Speck-Planche, 2014; Capasso, 2015; Gromova, 2016), agrobiological and biotechnological problems (Speck-Planche, 2012; Grädow, 2014). In this regard, the design of the above proposed complex devices for multi-parametric analysis and mapping of the samples is of great importance for analytical practice both for improving the quality and information content of the analysis and for the rational use of the working time of the analyst. The possibility of connecting such devices to the PC and mobile network resources (Lillehoi, 2013; Wu, 2014; Pan, 2014; Koydemir, 2015; Bhavnani, 2016) allows to improve the quality of telemedicine (Fleck, 1999; Bishara, 2011; Balsam, 2015), GIS – coupled analysis / sample analysis in the field conditions with the geodetic reference (Senbanjo, 2012 Gerald, 2014; Ferguson, 2016), quality control on a chip (Shearstone, 2002; Hartman, 2005; Zhang, 2005; Stokes, 2007; Pierzchalski, 2012) in chemical and biotechnological industry using SCADA and similar systems (Gieling, 1996; Ozdemir, 2006; Smith, 2006; Moya, 2009). The implementation of the technology proposed will increase the labor productivity of the analysts and researchers, since the performance of N analyses with a single device equals to the N-times reduction of the amount of the auxiliary routine work compared to the performance of each analysis with an independent device requiring different sampling procedures and sample treatment protocols. Since the first labs-on-a-chip were developed by the author for his own research problems and were tested in the routine research practice, he could easily appreciate the ergonomics and usability of such devices with the maintenance of the quality and increase in the rapidity of the analysis. '''Novel approach''' The contemporary analysis of the literary and the preliminary calculations, suggested using an optical channel for analytical data acquisition with the CMOS and CCD detectors. However, the serial CMOS and CCD allow detection only the optical parameters providing the analyte concentration measurements by absorbance or transmittance or fluorescence of a selectively bound dye. Modern CMOS- and CCD-based labs-on-a-chip fail to perform visualization of a number of characteristic descriptors for many biological and medical samples, such as magnetic fields, temperature profiles, localization of radioisotope sources and selective emission from cells and tissues in autoradiography, etc. Meanwhile, nothing prevents us from using the primary signal converters of the required parameters / variables into the optical signal. There are known: ·         magnetooptical converters and indicator films (Anderson, 1968;  Harms, 1980; Aulich, 1980; Papp, 1980; Arkhangel’skii  , 1986, 1989; Challener, 1987; Mao, 1989; Challener, 1990; Krafft, 2004; Fratello, 2004); ·         radiation-optical (spectro-)colorimetric converters (Apanasenko, 1981; Kulagin, 1983, 1984, 1985, 1987; Bazylev, 1992; Mikhailov, 1996; Kulagin, 2003, 2006; Kulagin, 2007; Sadulenko, 2009) and thin film scintillators (Albul, 1968; Avdeyev, 2001; Garcia-Murillo, 2003; Berdnikov, 2013; Tolstikhin et, 2014; Inami, 2015; Rincón-López, 2016; Park, 2016); ·         thermo-optical effect transducers-converters (Malashko, 1974; Dolgov, 1979; Pálfalvi, 2004; Liberts, 2005; Gunyakov, 2006; Nedosekin, 2007; Loiko, 2012), including thermochromic ones (Soloway, 1955; Chivian, 1972;  Yang, 1979; Mazumder, 1995; Qazi, 2003; Siegel, 2009; Sia, 2009; Shelton, 2010; Qian, 2012; Heo, 2012; Zhou, 2013; Funasako, 2013; Li, 2013; Bond, 2013; Seeboth, 2014; Kim, 2014; Wan, 2015; Liu, 2016;  Zhang, 2016), including infrared-sensitive metamaterials; ·         chemo-optical active interfaces (van Gent, 1990; Wroblewski, 1997), colorimetric or flouorimetric indicator films (Chen, 1997; Nakamura, 2003; Kowada, 2004; Lü, 2006;  Thomas, 2009; Gao, 2011; Kassal, 2014; Mills, 2016; Choi, 2017) and papers (Yeoh, 1996; Ostrovsakaya, 2004; Gaiduk, 2009; Ganesh, 2014); ·         electroluminescent (Vlasenko, 1966; Shaposhnikov, 1970;  Ramazonov, 1972;  Samokhvalov, 1993; Brigadnov, 1993; Gurin, 1997;  Savikhib, 1997; Zabudskii, 2000; Maltsev, 2011; Rodionov, 2013; Meshkov, 2014; Evsevichev, 2016) and cathode-luminescent indicators / phosphors (Tebrock, 1968; De Mets, 1971; Suzuki, 2009; Obraztsov, 2013; Kaz, 2013; Shi, 2014; Li, 2016) and other position-sensitive target signal converters into the optical signal[1], which allow a direct realization of the “two-level conversion” including a first conversion of the analytical signal into the optical one by the planar converter located above the photosensitive CMOS / CCD detector with the subsequent conversion of the optical signal into the electrical one by the optoelectronic converter (CMOS or CCD). The above converters being placed into the cartridge or cassette system, or the rotating disc (this is a reversible idea from lab-on-a-disc design (Park, 2012; Glass, 2012; Hwang, 2013; Bosco, 2013; Delgado, 2016)) can be replaced by one another in real time allowing to vary the measuring parameters, and hence, providing the sequential mapping and measuring of the above parameters. At the first step the single devices (chips and the corresponding readers) have been developed for the single parameter registration (e.g. a special compact device for magnetic field visualization has been designed using the magnetic film converter (flux detector) and a similar radiographic visualizer has been developed based on the scintillation plates). Later these devices were combined into a single hybrid device with the incomplete set of the primary converters for the purposes of the complex analysis (see Figures 1-3). At the final step we are going to overcome those limitations and to develop a hybrid multi-functional lab-on-a-chip allowing to perform in a single run of the cassette with the cartridges-converters the full position-sensitive mapping of the spatial distribution of the following parameters: I.      spectral / colorimetric, densitometric and fluorescent parameters of the analyte for histochemistry and immunofluorescent analysis; II.      luminosity distribution beyond the optical spectral range for laser diagnostics or the on-chip LDV, LDA, LDF, laser-accisted PIV; III.      magnetic field for selective staining of biological tissues with the magnetic nanoparticles or for the on-chip testing of the pharmaceuticals' targeting in the external field; IV.      distribution of the emitting regions in autoradiography and for the sample analysis with the radioactive contamination; V.      polarization parameters and the fluorescence polarization for those cases when the rotation of the polarization plane is a diagnostic criterion, from simple saccharimetry to the chirality-based analytical methods introduced from molecular biology; VI.      the slide temperature (for the living slices and tissue cultures) for determination of the biothermogenesis intensity or the redox transformation intensity, which is one of the most important diagnostic criteria of the neoplastic processes in biopsy; VII.      pH, Eh, pX, etc. using discrete indicator films by the colorimetric, spectrocolorimetric or fluorescence response signal (see Figure 4). The cartridges-converters can be either built into the chip reader (the most suitable configuration for the ultracompact disposable chips without the recording and processing units) or implemented directly into the autonomic chips in the case of the autonomous reusable devices. In the early prototypes developed by the author the chip was combined with the reader forming a so-called self-reading chip capable of the telemetric data translation through a radiofrequency channel (Notchenko, 2012, 2013).frequency channel (Notchenko, 2012, 2013).)
  • People pedal powered computer charger  + (The project Vélo M2 plays with PPP (peopleThe project Vélo M2 plays with PPP (people pedal power) applications. In Brussels we're having PPP open-air cinéma projections, PPP mobile fablab workshops and PPP music scenes and DJ sets. [[www.velom2.be]] This projects takes people pedal power to a smaller scale. We will be charging a computer or phone. In order to demonstrate the accessibility, we're construction the device in a remote town in Sweden, Torsby.device in a remote town in Sweden, Torsby.)
  • Mighty maker level belt  + (There are two options to this activity wheThere are two options to this activity where the belt can either the mountable by creating a 3D printed component to support it or creating a holder and physical belt out of fabric. This activity allows participants to create something to help them record what they have achieved whilst at the Makerspace. The idea behind the level belt is that the participants are able to code the belt to be a particular colour depending on what level they have reached. Each colour corresponds to improvements in skills that can be developed in the Makerspace environment. This is a project with a slightly higher level of difficulty, where the participant will have to face some problem solving situations and learn how to integrate different components so that they create a finished working product. AGES: 11 to 18 years TIME: 4 to 5 hours (including 3D printing time) Activity's Aims and Learning Objectives: - To create something that they value - To help aid self-evaluation - To encourage a reward system and enable facilitators to provide positive feedback and encouragement - To enable conversations about how makers can improve and encourage self-motivation - To create something that combines different skills, materials and techniques from multiple disciplines. - To allow flexibility in design and encourage personalisation - Build confidence with electronic prototyping - Learn and practise soldering - Experiment with 3D printing and designing for 3D printing - Opportunity to develop Computer Aided Design skills using TinkerCAD - Develop sewing and fabrication skills using more traditional materials - Combining different materials, disciplines and techniques - To learn about different circuit components - Gain confidence with Arduino programming and having the opportunity to experiment - Making something that is meant to be longer lasting - Learn about electronic prototyping - Experiment with electronic soldering - Experiment with 3D printing - Experiment with 3D modeling - Experiment with programming with Arduino === Supplies: === For the programmed RGB strip - Computer with Arduino installed - Arduino Uno board or equivalent - RGB LED strips - 3 x [100 to 220 ohm resistors] - 3 x [NPN transistors such as TIP120] - Multiple male to male solderless breadboard jumper cables - Breadboard - Wire - Wire strippers - Soldering iron - Solder - 9V battery - 9V battery strap - Small prototyping printed circuit board (PCB) - Header pins (breakaway male) - Switch (in this example we use a slide switch) - Heat shrink wrapping tubes (not necessary but are advised!) - Glue gun - Small stickers/tape you can write on to use as labels Creating fabric belt - Thread - Felt - Velcro and/or buttons - Stanley knife For 3D printed mount - 3D printer - Computer with access to TinkerCADknife For 3D printed mount - 3D printer - Computer with access to TinkerCAD)
  • Buzzing Bee Circuit  + (This is a good activity for participants tThis is a good activity for participants to experiment with CAD and 3D printing for the first time, as well as being adaptable and giving more experienced participants the opportunity to develop their CAD skills. AGES: 7 to 13 years old TIME: 1 to 2 hours+ 3D printing time Activity's Aims and Learning Objectives - Using multiple skills, techniques and materials, to create something physical - To be able to link previous knowledge of circuits to the simple circuit used in the activity - Building confidence around creating and experimenting, on and off the computer - To create a simple, working circuit that includes multiple components. - To gain experience with 3D printing and transferring a CAD design to the printer - To experiment with 3D printing - To experiment Computer Aided Design software such as TinkerCAD === Supplies: === - Computer with access to TinkerCAD - 3D printer - Circular battery (lithium coin cell) - Mountable slide switch - Vibrating motoroin cell) - Mountable slide switch - Vibrating motor)
  • MoodBoxByFaBteam  + (This modular box is a 3-tier set. Once on,This modular box is a 3-tier set. Once on, it provides basic weather station information (temperature, humidity, atmospheric pressure) but becomes a "Mood box", here a jukebox actually, when properly activated. === Preamble === This project is a group project (FaB team) carried out during a French hybrid training program called "Fabrication numérique" (CNC machining and fabrication) - class of 2018, July. This final group project involves some of the know-how acquired during the training program and seals the deal. It is complementary with the "Bentolux" project which should be documented and referenced soon on wikifab.org. Instructions for the project were: * create a new tier to the box designed and developed during the course of the training program (3 available tiers: 1 base, 1 in Plexiglas, 1 for LCD screen); * use newly acquired knowledge for this new tier: 3D printing, laser cutting, etc.; * program with Arduino at least one user interaction (free choice). === Overall specifications === After some thought our group decided to create a musical tier - we called it "Mood box" - to complement the weather station using the base-tier and the LCD-tier. Expected behavior is described here below. ==== Starting the box ==== When properly plugged in, the box can be started by using the switch on the front. Starting the box triggers the following events: * figurine set on top spins on its stand; * LED-ring light effect shows through the figurine's translucent stand; * LCD screen displays a welcome message. If no other action is made right away, the box goes in "sleep mode". In "sleep mode", temperature and humidity are displayed with a custom message on LCD screen. These custom messages as well as the color set for both the LED-ring and LCD screen depend on current temperature: * LCD and LED-ring color varies from blue to red when temperature rises; * LED-ring sparkles at a random frequency to add some animation; * custom message is displayed on LCD screen according to the temperature range currently reading.o the temperature range currently reading.)
  • MoodBoxByFaBteam  + (This modular box is a 3-tier set. Once on,This modular box is a 3-tier set. Once on, it provides basic weather station information (temperature, humidity, atmospheric pressure) but becomes a "Mood box", here a jukebox actually, when properly activated. === Preamble === This project is a group project (FaB team) carried out during a French hybrid training program called "Fabrication numérique" (CNC machining and fabrication) - class of 2018, July. This final group project involves some of the know-how acquired during the training program and seals the deal. It is complementary with the "Bentolux" project which should be documented and referenced soon on wikifab.org. Instructions for the project were: * create a new tier to the box designed and developed during the course of the training program (3 available tiers: 1 base, 1 in Plexiglas, 1 for LCD screen); * use newly acquired knowledge for this new tier: 3D printing, laser cutting, etc.; * program with Arduino at least one user interaction (free choice). === Overall specifications === After some thought our group decided to create a musical tier - we called it "Mood box" - to complement the weather station using the base-tier and the LCD-tier. Expected behavior is described here below. ==== Starting the box ==== When properly plugged in, the box can be started by using the switch on the front. Starting the box triggers the following events: * figurine set on top spins on its stand; * LED-ring light effect shows through the figurine's translucent stand; * LCD screen displays a welcome message. If no other action is made right away, the box goes in "sleep mode". In "sleep mode", temperature and humidity are displayed with a custom message on LCD screen. These custom messages as well as the color set for both the LED-ring and LCD screen depend on current temperature: * LCD and LED-ring color varies from blue to red when temperature rises; * LED-ring sparkles at a random frequency to add some animation; * custom message is displayed on LCD screen according to the temperature range currently reading.o the temperature range currently reading.)
  • Fibonacci Clock  + (This tutorial is inspired from the creatioThis tutorial is inspired from the creation of Philippe Chrétien. Here is his website : http://geekoclock.com/ This version is base on an Arduino UNO board. This project use a addressable RGB LEDs strip. It enable to control color and intensity of each LED individually, using only one control pin on the Arduino.using only one control pin on the Arduino.)
  • 2D Drawing to 3D Print  + (This will involve drawing on paper and traThis will involve drawing on paper and transferring the image onto the computer. The activity will involve editing and transferring the image to a file that can successfully read by a printer. The 3D printed drawings can then be used for further activities such as stencils, stamps or creating keyrings. This activity is a great way of introducing 3D printing and Design for Manufacturing. It is accessible to all ages and abilities by not requiring participants to design something on the computer. It allows participants to be less restricted with their creativity as well as showing them how to transfer an image into a file that can be understood by a printer. AGES: 6 to 17 years TIME: 1 to 2 hours Activities Aims and Learning Objectives - Exciting way of bringing creative designs to life - Integration of different disciplines (free hand drawing and 3D printing) - Using a computer to transfer the 2D design into a 3D printable design - To be given an introduction to 3D printers and what files they can understand - To learn about vectorisation of an image - To gain experience using drawing software such as Inkscape - To learn about Design for Manufacture and creating a design that is printable - To gain experience using a 3D printer === Supplies: === - 3D printer - Computer with InkScape software downloaded - Phone with CamScanner downloaded - Paper - Black felt tip marker pens - USB stick or SD card (depending on your 3D printer) - USB stick or SD card (depending on your 3D printer))
  • Manipulate the CubePro Trio  + (To start using this machine, you don't have to be a professional in 3D printing, it's easy to use with it's easy interface. So let's start.)
  • Home Assistance on Raspberry Pi  + (To use most smart home devices, you need tTo use most smart home devices, you need to download an app, create an account, and link them to an online cloud server. This makes them easy to control, but it also means that your usage data, such as when, where, or how you operate your devices, is stored online and may not be private. If you care about privacy, you can try Home Assistant, a software that lets you manage your smart IoT devices and automate your smart home locally —without any cloud connection or integration.thout any cloud connection or integration.)
  • Ma bento avec disc vinyle like impression 3D avec sillon  + (Tout au long de la formation hybride FabriTout au long de la formation hybride Fabrication numérique, programmation Arduino et Impression 3D, nos ateliers à la Fabrique de l'IMT Mines Albi sont rythmés par l'élaboration d'une bento à 3 étages. Je décris ici l'impression numérique by Ultimaker du disque avec sillon. L'exercice étant d'élaborer une interaction entre un capteur (ici un potentiomètre), un actionneur : un moteur pas à pas (Stepper) et un objet imprimé en 3D. Imaginez un remake des boîtes à musique où une danseuse tournait sur son axe, voici la mienne, au thème d'Octobre Rose, c'est aussi la mention écrite en japonais, sur la face en plexi blanc. Le toit est en plexi transparent pour voir le moteur Stepper et optimiser la luminosité de la led aussi branchée au potentiomètre par l'Arduino caché au 1er étage .
    par l'Arduino caché au 1er étage . <br/>)
  • Polargraph - assemblage et utilisation de ce DrawBot  + (UN POLARGRAPH ? Le projet Polargraph fait UN POLARGRAPH ? Le projet Polargraph fait partie des projets de DrawBots - c'est à dire, des robots qui dessinent - qui se basent sur des coordonnées polaires. C'est pas très clair ? C'est normal ! Comme une image vaut mille mots, jetez un oeil à cette vidéo : Le principe en avance rapide : 1 -Prenez une grande feuille de papier et scotchez-la sur un mur. 2- Prenez un crayon et posez la mine sur la feuille de papier. 3 - Attachez deux ficelles sur le crayon. 4 -Fixez deux petits moteurs en haut à droite et à gauche de la feuille. 5- Attachez une ficelle à chacun des moteurs 6 - Selon la rotation des moteurs en haut de la feuille, les ficelles qui y sont attachées feront bouger le crayon dans un certain sens et pourront ainsi créer un dessin. 7 - Pour piloter les moteurs et donc les ficelles et donc le crayon qui donne forme au dessin, on utilise une petite carte électronique à laquelle on transfère un dessin créé au préalable sur ordi. 8 - Et voilà, vous avez votre Polargraph ! Capitche ? Rassurez-vous ! On comprend mieux au fur et à mesure. Le Polargraph est un projet que son créateur, Sandy Noble, a initié et documenté son projet depuis 2011. Il partage ses fichiers en Open-Source et en Open-Hardware et actualise ses avancées sur son blog ou sur le site de tutos Instructables. Pour celles et ceux qui, comme moi, n'avaient pas le courage de sourcer tous les composants, Sandy vend également à bon prix les composants de ses Polargraph en kits. C'est ainsi que j'ai fait l'acquisition d'un Polargraph début 2016 en kit. À ce jour, Sandy est à la version 2.0 de son kit et en vend deux modèles : * Le PolargraphSD v2.0, en grande partie pré-assemblé et qui contient quasiment toutes les pièces pour commencer. Il est vendu pour 230 livres (environ 300 €) * Le Polargraph SD vitamin kit qu'il faut monter soi-même et auquel il faut rajouter quelques pièces à acheter ailleurs. C'est ce dernier que j'ai utilisé et dont je vais décrire le montage ici. Il est vendu pour 120 livres soit environ 160 euros auxquels il faut rajouter environ 60 euros soit environ 220 € de budget) À noter que la documentation de ce projet est beaucoup plus complète sur le site ou le compte GitHub de son créateur. Je reprend ici en grande partie ses tutoriels et vous conseille donc de suivre attentivement les discussions plus récentes autour du Polargraph sur la toile (l'occasion de vous mettre à l'anglais ;-)). Ses tutoriels les plus à jours sont sur le compte GitHub du créateur du Polargraph : https://github.com/euphy/polargraph/wiki/ Un tutoriel existe également sur Instructables mais, si beaucoup d'infos sont bonnes à prendre, son matériel a évolué depuis et la mise à jour du tuto n'a pas suivi : http://www.instructables.com/id/Polargraph-Drawing-Machine/?ALLSTEPStructables.com/id/Polargraph-Drawing-Machine/?ALLSTEPS)
  • Puzzle en bois  + (Un anniversaire ou Noël arrive et c’est laUn anniversaire ou Noël arrive et c’est la panne sèche dans vos neurones pour choisir quel cadeau offrir à neveux, nièces, fils, filles, ami(e)s, cousin(e)s ou proches mordus de puzzles en tout genre ? Alliez tradition et touche perso en créant et offrant un puzzle DIY. Dans ce tuto, vous verrez en illustration deux puzzles que j'ai réalisé pour des enfants de moins de 10 ans. Ils sont donc relativement simples à résoudre (une trentaine de pièces par puzzle). Pas d’inquiétudes : vous pourrez à votre convenance en réaliser un plus ou moins compliqué en personnalisant le nombre de pièces. Les puzzles réalisés ici sont en bois mais il est possible de les fabriquer avec d’autres matières comme certains plastiques par exemple. Pour mener ce tuto de bout en bout, il vous faudra acquérir quelques bases en dessin 2D avec Inkscape et savoir découper et graver avec une machine laser. Rien d'impossible, rassurez-vous ! Et si vous n'êtes pas rassuré(e), demandez un coup de mains !as rassuré(e), demandez un coup de mains !)
  • Puzzle en bois  + (Un anniversaire ou Noël arrive et c’est laUn anniversaire ou Noël arrive et c’est la panne sèche dans vos neurones pour choisir quel cadeau offrir à neveux, nièces, fils, filles, ami(e)s, cousin(e)s ou proches mordus de puzzles en tout genre ? Alliez tradition et touche perso en créant et offrant un puzzle DIY. Dans ce tuto, vous verrez en illustration deux puzzles que j'ai réalisé pour des enfants de moins de 10 ans. Ils sont donc relativement simples à résoudre (une trentaine de pièces par puzzle). Pas d’inquiétudes : vous pourrez à votre convenance en réaliser un plus ou moins compliqué en personnalisant le nombre de pièces. Les puzzles réalisés ici sont en bois mais il est possible de les fabriquer avec d’autres matières comme certains plastiques par exemple. Pour mener ce tuto de bout en bout, il vous faudra acquérir quelques bases en dessin 2D avec Inkscape et savoir découper et graver avec une machine laser. Rien d'impossible, rassurez-vous ! Et si vous n'êtes pas rassuré(e), demandez un coup de mains !as rassuré(e), demandez un coup de mains !)
  • Réparation du Blender spécial soupe  + (Un appareil de cuisine pour réaliser de déUn appareil de cuisine pour réaliser de délicieuses soupes ( 1 ) Après de nombreuses années de bonnes et délicieuses soupes : arrêt brutal ! ! ! Un micro-interrupteur de sécurité commandé par un axe ( 2 ) , coupe l’alimentation lorsque le récipient n’est pas positionné sur le socle ( sécurité ) . La cause de l’arrêt : le micro-interrupteur a fondu ainsi que son support  ( 3 ) . Réalisation du support du micro-interrupteur sur imprimante 3D ( 4 ) . Le support remonté avec un micro-interrupteur neuf, l’essai de fonctionnement est concluant avec l’élaboration d’une délicieuse soupe au potiron-marron. d’une délicieuse soupe au potiron-marron.)
  • Livre de jeux (concours Trotec)  + (Un magnifique livre de jeux, façon grimoirUn magnifique livre de jeux, façon grimoire, à la fois beau et ludique, chaque page est un plateau de jeu (un recto et un verso) comportant 2 tiroirs pour le rangement des accessoires et pions de chaque plateau (recto tiroir du bas et verso tiroir du haut). Possibilité de diminuer ou d'augmenter le nombre de page, modifier les jeux selon vos gouts. Notre but était d'utiliser un maximum de matières proposées par Trotec tout en gardant une cohérence dans le design. Notre but était aussi d'utiliser au maximum leur machine laser, malgré l'obligation d'utiliser une machine laser à hauteur de 50% pour produire notre objet nous sommes à plus de 90% réalisé pour ce livre avec une Trotec speedy 100. Les seuls éléments non fabriqués étant les boutons de tiroirs, les tiges permettant la fixation du système d'articulation des pages, quelques clous tapissiers et les dés.ges, quelques clous tapissiers et les dés.)
  • Livre de jeux (concours Trotec)  + (Un magnifique livre de jeux, façon grimoirUn magnifique livre de jeux, façon grimoire, à la fois beau et ludique, chaque page est un plateau de jeu (un recto et un verso) comportant 2 tiroirs pour le rangement des accessoires et pions de chaque plateau (recto tiroir du bas et verso tiroir du haut). Possibilité de diminuer ou d'augmenter le nombre de page, modifier les jeux selon vos gouts. Notre but était d'utiliser un maximum de matières proposées par Trotec tout en gardant une cohérence dans le design. Notre but était aussi d'utiliser au maximum leur machine laser, malgré l'obligation d'utiliser une machine laser à hauteur de 50% pour produire notre objet nous sommes à plus de 90% réalisé pour ce livre avec une Trotec speedy 100. Les seuls éléments non fabriqués étant les boutons de tiroirs, les tiges permettant la fixation du système d'articulation des pages, quelques clous tapissiers et les dés.ges, quelques clous tapissiers et les dés.)
  • Comment usiner une pièce avec une défonceuse cnc en toute securite  + (Une défonceuse est une machine à commandeUne défonceuse est une machine à commande numérique équiper par une tète de défonceuse qui assure son déplacement sur les trois axes. L'usinage se fait suivant un programme prédéfini. Ceci permet une grande variété d'usinage avec une bonne précision et une vitesse nettement plus importante qu'en usinage manuel. La tête est déplacée à l'aide de moteurs pas à pas ou de servomoteurs par des systèmes de transmissions à vis ou à crémaillère.s de transmissions à vis ou à crémaillère.)
  • Mood Box, Sons et Lumières/fr  + (Vous trouverez dans ce paragraphe le projeVous trouverez dans ce paragraphe le projet décrit un peu plus en détail. === Préambule === Ce projet est un projet de groupe (FaB team) réalisé dans le cadre de la formation hybride "Fabrication Numérique", promotion juillet 2018. Ce projet de fin de parcours met en œuvre une partie des savoir-faire acquis au cours de celle-ci et scelle la formation. Il vient donc en complément du projet "bentolux" qui sera bientôt documenté et référencé sur wikifab.org . Les instructions de base étaient les suivantes : * concevoir un nouvel étage sur une boîte existante conçue au fil de la formation (3 étages possibles à disposition : 1 socle, 1 en plexiglas, 1 pour l'écran LCD) ; * utiliser pour ce nouvel étage les connaissances acquises : impression 3D, découpe laser, etc ; * programmer via Arduino au moins une interaction avec l'utilisateur (à nous de choisir cette dernière). === Spécifications générales === Après réflexion, notre groupe a décidé de créer l'étage musical "Mood Box" qui viendrait compléter la station météo déjà prévue avec l'étage socle et l'étage écran LCD. Le comportement prévu est décrit dans les paragraphes ci-dessous. ==== Démarrage de la boîte ==== Une fois le bloc d'alimentation correctement branché, le démarrage de la boîte est réalisé par le biais de l'interrupteur en façade. Ce démarrage déclenche les événements suivants : * la figurine au sommet de la boîte tourne sur son support ; * cette "danse" est agrémentée d'une animation lumineuse via l'anneau de LEDs situé sous le support de la figurine ; * l'écran LCD affiche un message de bienvenue. S'il n'y a aucune autre action dans la foulée, la boîte passe en mode "veille". Dans ce mode, l'écran LCD affiche la température et le taux d'humidité accompagnés d'un message. Ces messages comme la couleur appliquée à l'anneau de Leds et au fond de l'écran LCD dépendent de la température détectée, à savoir : * la couleur (LCD/Led-ring) varie du bleu au rouge proportionnellement à la température ; * le led-ring scintille à une fréquence aléatoire pour donner de l'animation ; * un message variable par tranche est affiché sur l'écran LCD. ==== Activation de la Mood Box et comportement ==== La Mood Box est activée lorsque l'utilisateur appuie sur la barre de laiton située au sommet de la boîte (cette barre est une extension de la touche capacitive installée à l'intérieur de la boîte). Cette activation est accompagnée d'une animation conjointe de la figurine, de l'anneau de LEDs et de l'écran LCD.
    Si aucun autre appui n'est effectué sur la barre dans les 5 secondes suivant l'activation, la Mood Box est désactivée et le mode veille reprend.
    Un nouvel appui déclenche le mode lecture.
    Pour faciliter l'utilisation de la barre, un affichage itératif de leds permet un comptage visuel direct des "clics" effectués.
    La première fois, la lecture de la musique démarre au tout début de la liste de lecture. Le bouton du potentiomètre est alors actif et permet de régler le volume de la musique jouée. La barre reste quant à elle disponible pour agir sur la musique jouée. Pendant la lecture, si la barre est touchée : *  1 fois : "pause/play", i.e. la musique est mise en pause ou en lecture suivant l'état précédent, avec un affichage spécifique sur l'écran LCD ; *  2 fois : "next", i.e. la lecture passe au titre suivant de la liste de lecture ; *  3 fois : "previous", i.e. la lecture repasse au titre précédent de la liste de lecture ; *  4 fois ou plus : retour au mode "veille", avec une animation conjointe de l'anneau de LEDs, de la figurine et de l'écran LCD. Remarque : chacune des actions pause/play/next/previous génère un changement de rotation de la figurine. Pendant la lecture, l'anneau de LEDs est en mode "arc-en-ciel" et la figurine tourne sur elle-même. ==== Désactivation de la Mood Box ==== Après activation de la Mood Box ou après l'arrêt volontaire de la musique, si aucun appui n'est effectué dans les 5 secondes, le mode veille reprend et la Mood Box est désactivée. Il est à noter que si l'on relance la lecture depuis le mode "veille", celle-ci va reprendre exactement là où on l'avait interrompue.
    ée. Il est à noter que si l'on relance la lecture depuis le mode "veille", celle-ci va reprendre exactement là où on l'avait interrompue.)
  • Création de tréteaux  + (Vous trouverez sur cette page l'ensemble dVous trouverez sur cette page l'ensemble des plans nécessaires afin de réaliser des tréteaux, parfaits pour un espace de coworking. Leur dimension esthétique simple et moderne est associée à une grande robustesse. Ils peuvent par exemple être utilisés pour maintenir une table de travail. Ils nécessiteront l'utilisation d'une fraiseuse CNC et d'une découpeuse laser pour un rendu optimal. Mobilier réalisé à la Fabrique Artistique et Numérique, conçu par le collectif InDialog.umérique, conçu par le collectif InDialog.)
  • Création d'une table individuelle  + (Vous trouverez sur cette page l'ensemble dVous trouverez sur cette page l'ensemble des plans nécessaires afin de réaliser une table individuelle, idéale pour un espace de coworking. Elle peut se mettre sur des tréteaux ou bien être fixée en hauteur, à l'exemple de la rambarde présente à la Fabrique Artistique et Numérique. Elle nécessitera l'utilisation d'une fraiseuse CNC pour un rendu optimal. Mobilier réalisé à la Fabrique Artistique et Numérique, conçu par le collectif InDialog.umérique, conçu par le collectif InDialog.)
  • Création d'une table couteau suisse  + (Vous trouverez sur cette page l'ensemble dVous trouverez sur cette page l'ensemble des plans nécessaires afin de réaliser une table couteau suisse, idéale pour un espace de coworking. Le côté intérieur des panneaux de la table permettent de travailler en groupe, assis. Les côtés extérieurs des panneaux sont constitués de tableaux Velléda, afin d'organiser des sessions de brainstorming. Elle est placée sur des roulettes afin de la déplacer plus facilement. Elle nécessitera l'utilisation d'une fraiseuse CNC pour un rendu optimal. Mobilier réalisé à la Fabrique Artistique et Numérique, conçu par le collectif InDialog.umérique, conçu par le collectif InDialog.)
  • Empty room activity v12  + (What is the game? •    Game is '''rule'''What is the game? •    Game is '''rule'''. ANY game has rules, whether written or not. In order to succeed in the game, the child must learn to respect those given rules. Thanks to the game, therefore, the child will learn to respect the rule in a much broader sense. •    Game is '''socialization''' and '''self-expression'''. Many scholars have shown how free and socialized play has an important and fundamental function in the development of cognitive, creative and relational skills. The games can be individual or team. The former will allow the child to create a '''contact with himself''', '''expressing his inner world''', '''his emotions''' and at the same time also c'''reating contact with the outside world and developing competition''', while the others are useful for socializing and for developing a sense of responsibility. During team play, children feel '''responsible for their actions''' compared to other members of the group. •    Game also becomes '''uncovered'''. Discovery of oneself, one's world and also discovery of the other. •    Game is '''self-control'''. Through play, the child will learn to manage his emotions. Managing your emotions doesn't mean hiding them. An angry child has the right to be angry and to express his mood. But the same child certainly cannot throw objects on the ground or scream at others. The game becomes, therefore, an important moment in which the child can learn to manage his emotions and impulses. •    Game is '''motivatin'''g. •    Game is a '''spontaneous activit'''y. The child does not learn to play, the child spontaneously plays since his birth. •    Game is '''creativity'''. In fact, it helps the development of '''divergent thinking''', or the creative solution of problems. And the list would be endless. These few lines are enough to understand that the game is '''EDUCATIONAL'''.that the game is '''<u>EDUCATIONAL</u>'''.)
  • How to Use a Polishing Machine: A Step-by-Step Guide  + ([http://kindeditor.net/www.polishingmachin[http://kindeditor.net/www.polishingmachine.net/product '''Polishing machines'''] are essential tools for any metalworking, woodworking, or automotive hobbyist or professional. They are designed to smooth and buff rough surfaces, making them shiny and smooth. However, using a polishing machine can be intimidating for beginners, especially if you have no experience in the metalworking or woodworking industry. In this guide, we will provide a step-by-step guide on how to use a polishing machine, including safety tips, tools needed, and polishing techniques.s, tools needed, and polishing techniques.)
  • Easy Way to Add Tidal Music to iTunes Library  + (iTunes allows users to not only access striTunes allows users to not only access streaming music, buy favorite tunes but also upload local files from other sources. It gives users one place to collect and listen to all music – including playlists, podcasts, streaming radio stations, local files, and more. These days, I'm attracted by Tidal songs with HiFi quality. And I have subscribed to its HiFi subscription at 19.99 per month. But to my surprise, I failed to '''download music from Tidal to iTunes'''. Based on this situation, I have done some researches and found the reasons and the solution to achieve this goal. To avoid you encountering the same confusion, I will share with you my successful experience of transferring Tidal music to iTunes library.
    = Why You Can’t Download Music from Tidal to iTunes = Tidal provides over 70 million tracks with standard sound quality and HiFi sound quality for subscribers to enjoy music. Tidal is famous for its lossless audio quality. With a Tidal HiFi account, it's able to get lossless CD-quality and High-Res quality audio files. It could be a charming option for audiophiles. But like other streaming music services, Tidal has its own limitations. Users with any subscription can only play Tidal music on authorized players and its own player, the Tidal app, or Web Player. Because Tidal playlists can be downloaded as local files on mobile devices. (There is no Download option for Mac and Windows computers.) And there is no way to transfer Tidal songs to other players without authorization. Thus, if you'd like to download Tidal music to iTunes, a professional Tidal Music Downloader is necessary. It can not only download Tidal music to a computer but also convert Tidal songs to iTunes supported files. = Tool Required: AudFree Tidal Music Downloader = The tool I found is [https://www.audfree.com/tidable-music-converter/ AudFree Tidal Music Downloader], which hits on No.1 place in this field. It can download and export Tidal songs to common audio files, like MP3, FLAC, WAV, AAC. And it supports a Lossless output setting to encode Tidal songs losslessly. It can preserve the 100% lossless sound quality with ID3 tags. Now, let's see how to use it to download music from Tidal to iTunes library.
    nload music from Tidal to iTunes library. <br/>)
  • Boîte à CNC miniature  + (Une machine CNC est une machine-outil à commande numérique : ''computer numerical control.'')
  • Boîte à CNC miniature  + (Une machine CNC est une machine-outil à commande numérique : ''computer numerical control.'')
  • 2023 Guide to Download Spotify Songs without Premium  + ("Do you have the ability to download music"Do you have the ability to download music to your computer without paying a subscription fee to Spotify?" This is a common question among Spotify users. While the Spotify Free version allows you to listen to music online, downloading songs for offline listening is limited to premium subscribers. However, there are third-party tools and methods that can help you bypass this limitation and download Spotify songs without a premium account. '''Table of Contents''' ·        Introduction ·        Is It Possible to Download Spotify Songs without Premium? ·        Download Music from Spotify without Premium on PC ·        Download Spotify Music without Premium on Android ·        Download Music on Spotify without Premium on iPhone ·        Final Thoughts ·        Frequently Asked Questions (FAQs)·        Frequently Asked Questions (FAQs))
  • Analyseur d'air ambiant  + (<nowiki>Ce projet est réalisé dans lCe projet est réalisé dans le cadre de la formation hybride à la fabrication numérique et au prototypage rapide, effectuée à l'école des Mines-Télécom d'Alès.

    Au cours de cette formation, nous devons réaliser une Bentolux et choisir un dernier étage. Ce tutoriel décrit le troisième étage que j'ai choisi de fabriquer. Il s'agit d'un analyseur d'air ambiant que j'ai nommé VigiAir.

    VigiAir va analyser le taux des principaux facteurs qui influencent la qualité de l’air de nos habitations : le taux de pollution, le taux de poussières, mais également le taux d’humidité et la température.

    - Avec le capteur [https://wiki.seeedstudio.com/Grove-Air_Quality_Sensor_v1.3/ Grove-Air quality sensor V1.3] : analyse du taux de CO (monoxyde de carbone), du taux de formaldéhyde (polluant dégagé par nos produits ménagés, la peinture, meubles et autres objets de décoration)  

    - Avec le capteur [https://wiki.seeedstudio.com/Grove-Dust_Sensor/ Grove- Dust sensor] : analyse des particules fines (diesel, fumés, poussières diverses) responsables des maladies respiratoires et cardiovasculaires.

    - Avec le capteur Grove [https://wiki.seeedstudio.com/Grove-Temperature_and_Humidity_Sensor_Pro/ Temp & Humi Sensor Pro] : la température et le taux d'humidité qui jouent un rôle important sur le développement des bactéries, virus, allergies, acariens.


    Ces capteurs fiables, simples d'utilisation et à faible coût, vont nous permettre de fabriquer un analyseur d'air ambiant très complet.

    Un Arduino Uno est utilisé pour piloter l'ensemble, les informations seront affichées sur un écran tactile [https://nextion.tech/datasheets/nx4832k035/ Nextion].

    Vous pouvez voir d'autres composants pour la Bentolux sur la photo comme un anneau 12 leds ([https://www.gotronic.fr/art-anneau-neopixel-12-leds-rgb-ada1643-22875.htm NeoPixel Ring Adafruit]) et un [https://www.gotronic.fr/art-afficheur-oled-0-96-i2c-tf052-28511.htm afficheur OLED 0,96'' I2C TF052] mais ce tuto explique uniquement le troisième étage qui est VigiAir.

    Concernant le design de l'objet, il est réalisé ici dans le cadre d'une Bentolux, qui nous permet d'expérimenter l'impression 3D, la découpe laser. Mais chacun peut choisir le design qu'il souhaite, il est possible d'opter pour un design bien plus réduit pour sa VigiAir.


    d'opter pour un design bien plus réduit pour sa VigiAir. <br /><br /><br/></nowiki>)
  • Bentolux - BentoGhooost  + (<nowiki>Ce tuto concerne la fabricatCe tuto concerne la fabrication du troisième étage d'une Bentolux dans le cadre de la formation FabNumAura dispensé par l'EMSE (école des Mines de Saint-Etienne).

    La réalisation de ce projet nous a permis de mettre en oeuvre les notions apprises à distance dans les MOOC de l'IMT Atlantitique mais aussi en présentiel au FabLab de l'EMSE et le FabLab OpenFactory du quartier créatif Manufacture-Plaine Achille de Saint-Etienne.


    funMOOC [https://www.fun-mooc.fr/fr/cours/sinitier-a-la-fabrication-numerique/ S'initier à la fabrication numérique] - [https://www.fun-mooc.fr/fr/cours/programmer-un-objet-avec-arduino/ Programmer un objet Arduino] -[https://www.fun-mooc.fr/fr/cours/imprimer-en-3d/ Imprimer en 3D]

    OpenFactory [https://www.openfactory42.org/ SITE du FabLab]
    -----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------

    '''GENESE'''

    Au commencement, Dieu créa.... (non j'déconne)

    Avant de commencer la formation, je m'étais fabriqué un stand de tir pour airsoft dans mon vide sanitaire avec un système me permettant de relever les cibles tombées à l'aide d'une corde d'un peu moins de 10 mètres.

    Dès que nous avons abordé Arduino dans la formation je me suis dit.... Bon, mon système à corde fonctionne mais ce serait beaucoup plus fun de remonter automatiquement les cibles et pourquoi pas de se créer en plus des séquences de jeu différentes.

    Cette envie est restée dans un coin de ma tête jusqu'au jour où nous devions réfléchir au projet "fil rouge" caractérisé par la création du troisième étages de notre Bentolux.

    Nous devions créer des binômes pour la réalisation de cette étage libre...

    Lors d'une pause café avec mes camarades de formation, je leur partage l'idée d'un troisième étage "stand de tir". Renaud me dit, si tu veux on le fait ensemble.

    A ce moment là de la formation, je ne connaissais pas encore tout le monde et je ne savais pas que Renaud est un adepte de GN (jeu de rôle grandeur nature).

    Pour ces parties de Shadowrun, il utilise des Nerf qu'il customise (entre autres accessoires) avec sa team.

    Autant dire que la perspective de dégommer des cibles au Nerf n'était pas pour lui déplaire.


    C'est ainsi que commença la créative et rocambolesque collaboration de deux quadras adulescents à la chevelure fantomatique.

    -----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------
    '''REPARTITION DES TACHES'''

    Afin d'optimiser le temps qui nous était imparti ([https://fr.wikipedia.org/wiki/Gandalf ;-)]), nous nous sommes répartis les différentes tâches ainsi:


    Renaud

    -Création du "gros oeuvre" sur Inkscape (box entourant les deux premiers étages de la Bentolux).

    -Création des fantômes sur Inkscape (cibles+ceux en plexi des faces de la box).

    -Découpe laser de la box, du deuxième étage et des cibles fantômes en contreplaqué.

    -Découpe laser des fantômes en plexi vert incrusté sur les faces avant et latérales de la box.

    -Assemblage et collage de la box et du deuxième étage de la Bentolux.

    -Collage des fantômes en plexi dans les trous des faces de la box.

    -Rédaction de toutes les étapes de la doc du Wikifab.


    Mayak

    -Création d'une maquette pour se représenter le mécanisme des cibles avec le système de relevage.

    -Création sur Inkscape des pièces constitutives au mécanisme des cibles et celui du remonte-cible actionné par le servomoteur.

    -Assemblage, collage, perçage et ajustement de toutes les pièces avec les microrupteurs et servomoteur.

    -Création dans fusion 360 du bouton du potar (imprimé, installé, mais que nous n'utiliserons finalement pas dans notre version de base actuelle)

    -Montage et câblage des composants électroniques sur la box et l'arduino.

    -prise de vues (photos et vidéos) pour illustrer la doc du Wikifab.


    Pour ce qui est du code nous y avons travaillé ensemble. Pour cette version de base, nous avons du revoir à la baisse nos ambitions par manque de temps, mais nous comptons faire évoluer cette box que ce soit en terme de séquences/modes de jeu ou en nombre de modules additionnels de cibles.

    -----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------

    '''MATOS & OUTILS'''


    -Panneau de CP peuplier 3mm (plus épais pour la plateforme serait mieux)

    -Panneau de Plexiglass vert

    -1 tige fileté de 6mm

    -des écrous et rondelles de 6mm


    -Scie à métaux

    -Pince, serre-joint

    -Equerre,règle, crayon...patience et minutie

    -Perceuse à colone (ou perceuse...)

    -Fer à souder

    -Clé plate de 6mm (deux c'est mieux ou avec une pince à bec pour serrer les écrous entre eux)

    -Colle à bois

    -Colle à chaud (pistolet)

    -Colle forte Super Glue (pour les aimants)


    -1 Arduino Uno

    -1 breadboard

    -des fils électriques (beaucoup)

    -5 leds

    -5 résistances 220 kΩ

    -1 servomoteur

    -3 microrupteurs

    -1 potar (sera utilisé dans la V2)


    -----------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------

    '''NOS PETITES GALERES (génératrices d'astuces et de partages)'''

    Evidement nous avons dû résoudre deux trois petits soucis...

    -la taille de notre box étant relativement importante, le CP de peuplier de 3mm est un peu trop fin et de fait la stabilité du plancher où repose le mécanisme des cibles n'est pas parfaitement plane.

    -il a fallu lester les cibles avec un boulon afin qu'elles actionnent correctement les microrupteurs lors de leur chute.

    -Nous avons préféré utiliser des aimants plutôt que les band "scratch" initiales pour maintenir plus surement les cibles à la verticales.

    -Le potar ne rentrait pas dans le trou du bouton imprimé en PLA (c'était ma première impression), quelques secondes au mini décapeur thermique ont suffit pour régler le soucis.

    J'en oublie surement plein mais du coup j'en profite pour remercier toutes les personnes du FabLab qui nous ont apporté leurs lumières (ou simplement indiqué l'emplacement d'outils) dans les phases obscures de notre projet.

    Maxime, Gael, Thibaud, (les)Michaël... et Hubert évidement qui a su nous faire redescendre sur terre sans jamais nous couper les ailes ;-)

    MERCI à vous tous :-)
    ute.<br /><br />-Nous avons préféré utiliser des aimants plutôt que les band "scratch" initiales pour maintenir plus surement les cibles à la verticales. <br /><br />-Le potar ne rentrait pas dans le trou du bouton imprimé en PLA (c'était ma première impression), quelques secondes au mini décapeur thermique ont suffit pour régler le soucis. <br /><br />J'en oublie surement plein mais du coup j'en profite pour remercier toutes les personnes du FabLab qui nous ont apporté leurs lumières (ou simplement indiqué l'emplacement d'outils) dans les phases obscures de notre projet.<br /><br />Maxime, Gael, Thibaud, (les)Michaël... et Hubert évidement qui a su nous faire redescendre sur terre sans jamais nous couper les ailes ;-)<br /><br />MERCI à vous tous :-)<br/></nowiki>)
  • Commande et instrumentation de trottinette électrique 500W avec Arduino méga  + (<nowiki>Commande de moteur DC 500W aCommande de moteur DC 500W avec un Arduino mega pour limiter le courant de démarrage et faire varier la vitesse de la trottinette. La batterie est en 24V, 10A.h. le tableau suivant résume leur caractéristiques

    '''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)
    />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>Commande de moteur DC 500W aCommande de moteur DC 500W avec un Arduino mega pour limiter le courant de démarrage et faire varier la vitesse de la trottinette. La batterie est en 24V, 10A.h. le tableau suivant résume leur caractéristiques

    '''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)
    />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>)
  • Utilisation CNC Shopbot  + ('''Caractéristique de la machine ?''' Sh'''Caractéristique de la machine ?''' Shopbot 48×48, 3 axes Technologie par enlèvement de matière Taille du plateau d’usinage : 1220 x 1220 x 150mm Usinage : 2D et 3D Matériaux :  contreplaqué, bois massif, Plexiglas, multipli, mdf, liège et mousses de prototypage Fichiers acceptés : '''ai. Eps .dxf . dwg .pdf'''s acceptés : '''ai. Eps .dxf . dwg .pdf''')
  • Découpe laser 60w - Modèle rouge chinois  + ('''Caractéristique machine''' * Découpe o'''Caractéristique machine''' * Découpe ou gravure de matériaux organiques plan par l’action d’un laser * Dimension du plateau : 700 x 500 mm, 60 W * Découpe de carton, papier, bois, cuir, plexiglass,  mdf (épaisseur max. 3mm) * Gravure sur verre, pierre, béton, bois, etc. '''Petit rappel :''' La découpe laser est un procédé de fabrication qui consiste à découper ou à graver de la matière grâce à une grande quantité d’énergie générée par un laser, celle-ci est concentrée sur une très faible surface. Ce procédé permet une découpe précise de forme simple et complexe. Son usinage est net et rapide et offre ainsi d’infime possibilité. Cependant, elle comporte des limites notamment au niveau de l’épaisseur du matériaux, et de la composition de la matière. Les découpes laser grand public ne peuvent pas découper de métal, la machine n’est pas équipé pour cela, et certains matériaux sont interdis car ils dégagent un gaz dangereux comme le PVC, ou le Vinyle.
    * Fichiers acceptés : .ai ; .dxf et .Jpeg pour la gravure
    acceptés : .ai ; .dxf et .Jpeg pour la gravure)
  • Brodeuse numérique, Singer Futura XL550  + ('''Caractéristiques de la machine :''' *C'''Caractéristiques de la machine :''' *C'est une machine qui peut s'utiliser dans un premier temps comme une machine conventionnelle. *Elle peut être gérée par un ordinateur.
    *Dimension de la machine à coudre : 567 x 240 x 317 *Unité de broderie : 504 x 411 x 141 mm *Dimension de la zone de travail : 120 x 130 mm Format de fichier accepté : .JPEG Épaisseur du Fils polyester : 40
    ccepté : .JPEG Épaisseur du Fils polyester : 40)
  • Presse à injection plastique Holymaker  + ('''Caractéristiques machines : ''' *Volum'''Caractéristiques machines : ''' *Volume d'injection : '''16cm3''' *Température de fonctionnement: jusqu'à '''35O °C''' *Puissance: 400W- 220V *Dimensions de la machine assemblée: 160mm (L)x 540mm (l)x 410 mm (H) *Diamètre du piston : 16 mm *Diamètre de l’orifice d’injection : 3 mm en standard *Poids de HoliPress V1.3 seule : 11 Kgard *Poids de HoliPress V1.3 seule : 11 Kg)
  • Presse à chaud  + ('''Caractéristiques machines : ''' *Machine de presse à chaud de double affichage numérique à haute pression de chaleur * Dimension du plateau : 380 x 380 mm)
  • Plante connectée  + ('''Caractéristiques:''' # Ceci est un capt'''Caractéristiques:''' # Ceci est un capteur d’humidité simple qui peut être utilisé pour détecter lorsque qu’un sol est en déficite d’eau (niveau haut) et vice versa (niveau bas). Ce module peut être utilisé pour réaliser des systèmes d’arrosage automatique. # La sensibilité de ce module est ajustable via un potentiomètre numérique (En bleu sur la photo) # Tension de fonctionnement : 3,3V-5V # Module avec 2 sorties: Une analogique et une numérique. La sortie numérique est plus précise. # Le module comprend des perçages pour faciliter la fixation. # Taille du PCB: 3cm * 1.6cm # Indicateur de tension (LED rouge) and Indicateur de sortie numérique (LED verte) # Le comparateur est basé sur un LM393 (très stable)rateur est basé sur un LM393 (très stable))
  • Plante connectée  + ('''Caractéristiques:''' # Ceci est un capt'''Caractéristiques:''' # Ceci est un capteur d’humidité simple qui peut être utilisé pour détecter lorsque qu’un sol est en déficite d’eau (niveau haut) et vice versa (niveau bas). Ce module peut être utilisé pour réaliser des systèmes d’arrosage automatique. # La sensibilité de ce module est ajustable via un potentiomètre numérique (En bleu sur la photo) # Tension de fonctionnement : 3,3V-5V # Module avec 2 sorties: Une analogique et une numérique. La sortie numérique est plus précise. # Le module comprend des perçages pour faciliter la fixation. # Taille du PCB: 3cm * 1.6cm # Indicateur de tension (LED rouge) and Indicateur de sortie numérique (LED verte) # Le comparateur est basé sur un LM393 (très stable)rateur est basé sur un LM393 (très stable))
  • Imprimante 3D - Ultimaker 2  + ('''Il existe 3 techniques d’impression 3D '''Il existe 3 techniques d’impression 3D :''' *'''Dépôt de fil :''' Imprimantes du lab. un système au principe simple, qui date d’il y a 40 ans mais qui a été démocratisé il y a peu. (REPRAP) 2 ingénieurs britanniques. *La machine est composée d'une tête chauffante et d'un moteur qui permet de pousser le fil. Ces imprimantes peuvent faire des formes complexes, infaisables autrement, et des moules. *'''Stéréolithographie :''' système de rayonnement qui polymérise, et durcit la résine. Il permet de faire des objets fins et précis (25 microns/0,025mm par couche) mais la résine liquide est toxique et nécessite plus de mesures de sécurité. *'''Frittage de poudre :''' une poudre propulsée et chauffée au laser.
    :''' une poudre propulsée et chauffée au laser. <br/>)
  • Guirlande de fanions  + ('''Matériel :''' * Du tissu, idéalement du coton * Du biais * Des épingles * Du fil * Une feuille de papier * Un stylo * Des ciseaux de couture * Une machine à coudre)
  • Tejar  + ('''Online Shopping in Pakistan''' top e-co'''Online Shopping in Pakistan''' top e-commerce store that deals in genuine and reliable consumer goods belonging to numerous brands and product categories. The purpose of the online storefront is to provide users a convenient and secure online shopping experience with a wide range of options to choose from. Making quick inroads in the online retail market, we owe our success to the fact that not only are we committed to providing you premium quality products, we also ensure transparency at all times and give top priority to customer satisfaction. By understanding the needs of our audience and serving them in the best manner possible, people’s trust in our brand has strengthened over the years. Right from the moment you place an order on Tejar.pk till it reaches you, our team of diligent professionals works tirelessly to meet your expectations. The website offers a heterogeneous mix of countless products sorted on the basis of ones that are new, gaining popularity or available on discount. If you are brand conscious, you can even shop for items within a specific brand. Furthermore, you can narrow down your search based on the products that fit your budget so that you may make your purchase decision accordingly. [https://www.tejar.pk/apple-ipad-pro-2021 '''ipad pro 2021 price in pakistan'''] With a host of payment methods, paying for what you buy has been made very easy. No matter where you are located in Pakistan, we promise to deliver your purchased product to you within 8-12 working days. As shipping of items worth over Rs. 4,900 is free, buyers don’t have to worry about additional charges for organizing delivery of the ordered items. [https://www.tejar.pk/computers-accessories/computer-components/graphics-cards '''graphic cards price''']
    cs-cards '''graphic cards price'''] <br/>)
  • Marble Machine No 1 Motor Assembly Instructions  + ('''Please note:''' It is recommended that'''Please note:''' It is recommended that you apply varnish or sealer to the finished marble machine, especially if you live in areas with high humidity. Polyurethane varnish is a good choice. If you manage to drop some of the balls on the floor (inevitable!) then '''DO NOT''' be tempted to pick them up with a magnet. This can cause the balls to become magnetised and they will then stick together which will impair the operation of the marble machine. Before you start assembly it is a good idea to study the pictures in these instruction so you know how it goes together. You can dry assemble the lifter initially. This kit contains small parts and is not suitable for small childrenrts and is not suitable for small children)
  • Multi-console Raspberry pi 3/zeroW + Tuto PITFT 2.8/3.5/ect  + ('''Raspberry Pi''' est un mini-ordinateur '''Raspberry Pi''' est un mini-ordinateur sur lequel le système d’exploitation pour moi ça sera Retropie il y en a d'autre comme Recalbox . Des OS , généralement basé sur Linux est installé sur une carte mémoire. Ici, il s’agit de la version Pi 3 et ZeroW qui, outre un gain de puissance par rapport aux versions précédentes ajoute surtout le Wifi et le Bluetooth intégré. Que peut-on faire d’autre avec cette machine ? Plein de trucs de geek (voir Google) .e ? Plein de trucs de geek (voir Google) .)
  • Che cos'è la CGI e perché la utilizziamo sempre più spesso  + ('''[https://www.wegroups.eu/cose-la-cgi CG'''[https://www.wegroups.eu/cose-la-cgi CGI]''' è l' acronimo di (Computer genereted imagery) cioè letteralmente immagini generate al computer,  che è un'applicazione nel campo della computer grafica, o più specificatamente, nel campo della '''[https://www.wegroups.eu/cose-la-grafica-3d/ computer grafica 3D]''' per la resa degli effetti speciali digitali nei film, in televisione, negli '''[https://www.wegroups.eu/spot-pubblicitari-3d spot commerciali 3d],''' nei videogiochi di simulazione e in tutte le applicazioni di grafica visiva. La cgi è importante in quanto noi possiamo generare al computer sia immagini statiche(rendering 3d) che immagini animate (animazioni 3d), ed entrambi, in diversi settori ed usi sono importanti per la rappresentazione virtuale della scena o per esempio per realizzare effetti visivi o creare un film in 3d. Con l' avvento della computer grafica 3d ci è stato uno sviluppo esponenziale in diversi settori merceologici con vantaggi economici ed vantaggi concreti in diversi arti il primo fra tutti l' intrattenimento ed i media in generali che sono (spot, tv, cinema, film). Piano piano vediamo tutte le aree che la Cgi ha influenzato nel corso di questi anni. '''[https://www.wegroups.eu/cose-la-cgi cgi significato]''' '''[https://www.wegroups.eu/cose-la-cgi video cgi]''' '''[https://www.wegroups.eu/cose-la-cgi 3d cgi]''' '''[https://www.wegroups.eu/cose-la-cgi cgi animazione]''' '''[https://www.wegroups.eu/cose-la-cgi cgi film]''' '''[https://www.wegroups.eu/cose-la-cgi cgi cos'è]'''/www.wegroups.eu/cose-la-cgi cgi cos'è]''')
  • SCOTT : petit robot éducatif  + ( * Poids de plastique nécessaire : 196 gra * Poids de plastique nécessaire : 196 grammes (Besoin de filaments ? C’est par ici) * Délais de livraison: 1-2 semaines. * Temps de Montage : 1h * Difficulté de Montage : Facile * Outils : Clé allen, tournevis cruciforme * SCOTT est livré avec 3 programmes prêt à l’emploi * Système d’exploitation: Windows * Couleur d’impression standard pour les pièces: Orange, commentez pour lors de la commande pour obtenir une couleur différente. mmande pour obtenir une couleur différente. )
  • SCOTT : petit robot éducatif  + ( * Poids de plastique nécessaire : 196 gra * Poids de plastique nécessaire : 196 grammes (Besoin de filaments ? C’est par ici) * Délais de livraison: 1-2 semaines. * Temps de Montage : 1h * Difficulté de Montage : Facile * Outils : Clé allen, tournevis cruciforme * SCOTT est livré avec 3 programmes prêt à l’emploi * Système d’exploitation: Windows * Couleur d’impression standard pour les pièces: Orange, commentez pour lors de la commande pour obtenir une couleur différente. mmande pour obtenir une couleur différente. )
  • Utiliser la Handibot  + (/!! Le tuto est en cours, n'hésitez pas à compléter !Une intro simple pour utiliser la Handibot : Fraiseuse à commande numérique de zBis)
  • Utiliser la Handibot  + (/!! Le tuto est en cours, n'hésitez pas à compléter !Une intro simple pour utiliser la Handibot : Fraiseuse à commande numérique de zBis)
  • MeArm  + (/!\ Tutoriel en cours de création /!\ Dan/!\ Tutoriel en cours de création /!\ Dans ce tutoriel je vais vous montrer comment monter et contrôler basiquement votre MeArm. Je ne montrerais pas ici comment faire une interface graphique pour le contrôler. Il sera donc contrôlé directement par des lignes de commande envoyées via le logiciel arduino ou par une telecommande en filairearduino ou par une telecommande en filaire)
  • Robot "ABC" en madera  + (<div class="mw-translate-fuzzy"> Aprenderás a construir un pequeño robot controlado por control remoto. Robot de madera con placa electrónica (arduino uno) y extensión de control para ambos motores. </div>)
  • Robot "ABC" in wood  + (<div class="mw-translate-fuzzy"> You will learn to build a small robot controlled by remote control. This robot is made of wood with an electronic board (arduino uno) and a control extension for both motors. </div>)
  • Tab2Lux  + (<u>'''Matériel :'''</u> <'''Matériel :''' Table (€) : - Pieds pour la table ([https://www.leroymerlin.fr/v3/p/produits/lot-de-4-pieds-de-meuble-cylindrique-fixes-hetre-brut-blanc-beige-naturels-15cm-e160889 14€]) , quantité = 1 - Lot de tourillons ([https://www.leroymerlin.fr/v3/p/produits/lot-de-40-tourillons-diam-8-mm-wolfcraft-e190477 1.81€]), quantité = 1 - Écrou à enfoncer ([https://www.leroymerlin.fr/v3/p/produits/lot-de-8-ecrous-a-enfoncer-acier-chrome-hettich-l-18-mm-e22349 1.70€]), quantité = 1 - Pin brut([https://www.leroymerlin.fr/v3/p/produits/tablette-pin-lamelle-colle-l-200-x-l-50-cm-x-ep-18-mm-e1400119385%7C10.70%E2%82%AC 10.70€]), quantité = 2 - huile de protection ([https://www.castorama.fr/huile-et-protection-meubles-et-boiseries-v33-teck-mat-0-5l/3153894940505_CAFR.prd 15,95€]), quantité = 1 - Roulette 50mm en option ([https://www.castorama.fr/roulette-pivotante-a-tige-filetee-o50-mm/3700001718573_CAFR.prd 4,70€]), quantité = 4 - bouton rotatif([https://www.amazon.fr/ANGEEK-Degrees-Encoder-Arduino-Development/dp/B07S9NG8TH/ref=sr_1_fkmr1_1?__mk_fr_FR=%C3%85M%C3%85%C5%BD%C3%95%C3%91&keywords=Position+360+Degree+Rotary+Encoder&qid=1579097299&sr=8-1-fkmr1 8.44€]), quantité = 1 - Verre 500x300([https://www.vidaxl.fr/e/8718475527008/vidaxl-panneau-pour-etagere-verre-transparent-50-x-30-cm 22,99€]) Partie Hydroponie (€) : - ESP32 TTGO (25€ sur Amazon) - Le bac ([https://www.leroymerlin.fr/v3/p/produits/boite-moover-plastique-l-38-x-p-26-5-x-h-18-5-cm-e1401470994 6.99€]) - Capteur niveau eau ([https://www.gotronic.fr/art-capteur-de-niveau-gravity-sen0204-25154.htm 11,45€]) , quantité = 2 - LEDs ([https://www.amazon.fr/gp/product/B076D3GCH4/ref=ppx_yo_dt_b_asin_title_o00_s00?ie=UTF8&psc=1 15,90€]) - Relais lumière + pompe ([https://www.amazon.fr/gp/product/B07GXC4FGP/ref=ppx_yo_dt_b_asin_title_o00_s00?ie=UTF8&psc=1 5,99€]) - Pots (1.43€ sur Aliexpress) , quantité = 2 - Mousses (2,47€ sur Aliexpress), quantité = 1 Partie audio (162€) : - un Raspberry, une carte SD et une alimentation ([https://www.amazon.fr/Raspberry-Pi-Official-Desktop-Starter/dp/B01CI5879A/ref=sr_1_15?__mk_fr_FR=%C3%85M%C3%85%C5%BD%C3%95%C3%91&crid=1EBX5RP82NHLA&keywords=kit+raspberry+pi+3&qid=1578648637&sprefix=kit+rasp%2Caps%2C170&sr=8-15 70€]) - un DAC ( [https://www.amazon.fr/kuman-Interface-Raspberry-Digital-Pinboard/dp/B07SRBBG44/ref=sr_1_15?__mk_fr_FR=%C3%85M%C3%85%C5%BD%C3%95%C3%91&crid=3OP9RST0YRHZ6&keywords=dac+raspberry+pi+3&qid=1578648705&sprefix=dac+rasp%2Caps%2C167&sr=8-15 27€] en option, la sortie jack du Raspberry peut-être utilisée) - un ampli audio ([https://www.amazon.fr/Hilitand-Amplificateur-Puissance-R%C3%A9cepteur-Num%C3%A9rique/dp/B07DCQNTP5/ref=sr_1_9?__mk_fr_FR=%C3%85M%C3%85%C5%BD%C3%95%C3%91&keywords=ampli+audio&qid=1578648513&sr=8-9 17€] ou [https://www.amazon.fr/KKmoon-dAmplificateur-Num%C3%A9rique-Puissance-Soutien/dp/B01DDFVIEU/ref=pd_sbs_147_5/259-5656307-4702467?_encoding=UTF8&pd_rd_i=B01DDFVIEU&pd_rd_r=b00bf679-d77f-4034-8426-c5dbf0b257a0&pd_rd_w=sgHow&pd_rd_wg=kH54P&pf_rd_p=26d54ac2-ee 27€]) + une alim 12V ( à choisir en fonction de la puissance , 10-15€) - une paire de haut-parleur 170mm ([https://www.amazon.fr/Pioneer-TS-G1720F-Haut-Parleur-Voiture-Voies/dp/B075749M9G/ref=sr_1_2?__mk_fr_FR=%C3%85M%C3%85%C5%BD%C3%95%C3%91&keywords=HP+pioneer&qid=1578648778&sr=8-2 30€]) - une clé WIPI ([https://www.planete-domotique.com/module-wi-fi-usb-wipi-pour-raspberry-pi-element14.html 8€] si bug du Raspberry) - des câbles Machines - découpeuse laser - imprimante 3D - Scie plongeante - Défonceuse - Scie radiale - Scie sauteuse - Perceuse/visseuse Autres outils - fer à souder - Pistolet à colle - pince coupante - pince à dénuder - pied à coulisse - colle à bois - Serre joint Logiciels - Inkscape (conception 2D) - Cura (trancheur pour impression 3D) - Arduino (programmation de la carte Arduino) - Bloc note :) - pince à dénuder - pied à coulisse - colle à bois - Serre joint <u>Logiciels</u> - Inkscape (conception 2D) - Cura (trancheur pour impression 3D) - Arduino (programmation de la carte Arduino) - Bloc note :))
  • Are you prepared to start your path toward certification as a Google Cloud Digital Leader  + (= '''Are you prepared to start your path t= '''Are you prepared to start your path toward certification as a Google Cloud Digital Leader?''' = Organizations are always looking for methods to remain ahead of the curve, improve operational efficiency, and spur innovation in the ever changing digital world of today. In this process, Google Cloud has become a key actor by providing a range of robust goods and services that are designed to satisfy the various requirements of contemporary businesses. Those who want to take use of Google Cloud's revolutionary capabilities can set out on a certification path to become certified Cloud Digital Leaders. '''Understanding the Role of a Cloud Digital Leader''' A Cloud Digital Leader is a resource of information and experience who is skilled at explaining the features of Google Cloud's main goods and services. This entails having a thorough grasp of how these services convert into real advantages for businesses in a range of sectors. Cloud Digital Leaders are able to bring about significant change in their businesses via the use of data insights, process optimization, and improved security measures. '''The Path to Certification''' The Cloud Digital Leader certification is intended for those who are keen to demonstrate their mastery of the principles of cloud computing and their capacity to leverage Google Cloud products. The certification test assesses applicants in a number of important areas, such as: '''Digital Transformation:''' Acknowledging how Google Cloud can spur digital transformation efforts, enabling businesses to adjust and prosper in the fast-paced commercial world of today. '''Data Transformation:''' Analyzing how Google Cloud's advanced analytics, machine learning, and data management technologies enable companies to harness the full power of their data. '''Artificial Intelligence:''' Examining the field of artificial intelligence, candidates discover how Google Cloud's AI capabilities may spur creativity, mechanize workflows, and provide fresh chances for expansion. '''Infrastructure Modernization:''' Gaining knowledge about serverless computing, microservices architecture, containerization, and other modernizing concepts for applications and infrastructure using Google Cloud. '''Google Cloud Digital Leader Exam Preparation and Training Resources''' Preparing for the Cloud Digital Leader exam involves a structured approach that combines comprehensive training with hands-on experience. Google Cloud offers a dedicated learning path tailored to the exam's requirements, providing access to [https://cloud.google.com/learn/training?hl=en '''online training modules and resources''']'''.''' Additionally, think about making use of Study4Exams [https://www.study4exam.com/google/cloud-digital-leader '''Google Cloud Digital Leader Exam Questions PDF'''], which covers every topic covered in the real exam. These resources are priceless for improving comprehension and test-taking preparedness. '''Renewing Certifications''' Those who get their Cloud Digital Leader certification join a forward-thinking professional community prepared to drive innovation and transformation inside their organizations. It's important to bear in mind that you have to renew your certification every three years to maintain your position as a Cloud Digital Leader. This means retaking the test and passing it in order to ensure that certified professionals keep up to date with Google Cloud technology. '''In summary''' The path to becoming a Cloud Digital Leader is fulfilling and transformational. People may become valuable assets in their businesses and promote innovation, success, and sustainable growth in the digital age by learning and mastering the skills necessary to use Google Cloud.y learning and mastering the skills necessary to use Google Cloud.)
  • Comgrow ROBO 3180 Desktop ROBO CNC Guide  + (= '''TABLE OF CONTENTS''' = '''[https://ww= '''TABLE OF CONTENTS''' = '''[https://www.comgrow.com/blogs/news/comgrow-robo-cnc-router-pre-assembled-machine-guide-page#introduction Introduction]''' '''[https://www.comgrow.com/blogs/news/comgrow-robo-cnc-router-pre-assembled-machine-guide-page#Assembly Assembly]''' '''[https://www.comgrow.com/blogs/news/comgrow-robo-cnc-router-pre-assembled-machine-guide-page#CNC%20Controller%20Software%20Installation CNC Controller Software Installation]''' '''[https://www.comgrow.com/blogs/news/comgrow-robo-cnc-router-pre-assembled-machine-guide-page#Configuration%20&%20Testing Configuration & Testing]''' '''[https://www.comgrow.com/blogs/news/comgrow-robo-cnc-router-pre-assembled-machine-guide-page#Machine%20Operation Machine Operation]''' '''[https://www.comgrow.com/blogs/news/comgrow-robo-cnc-router-pre-assembled-machine-guide-page#Laser%20Guides%20&%20Instructions Laser Guides & Instructions]''' '''[https://www.comgrow.com/blogs/news/comgrow-robo-cnc-router-pre-assembled-machine-guide-page#Troubleshooting Troubleshooting]''' '''[https://www.comgrow.com/blogs/news/comgrow-robo-cnc-router-pre-assembled-machine-guide-page#Other%20Software Other Software]''' '''[https://www.comgrow.com/blogs/news/comgrow-robo-cnc-router-pre-assembled-machine-guide-page#Other%C2%A0Common%C2%A0Questions Other Common Questions]''' = '''INTRODUCTION''' = This guide page is designed for customers to know about [https://www.comgrow.com/products/comgrow-robo-cnc-router-carving-milling-laser-machine?variant=39423701549099 C'''OMGROW ROBO CNC ROUTER PRE ASSEMBLED MACHINE''']. If you need more information or want to share something with us. You can join our '''[https://www.facebook.com/groups/comgrowcnc Facebook group]'''. Our customer service and other experienced group members can help you solve your problems. = '''ASSEMBLY''' = '''[https://drive.google.com/file/d/106tyxF15zf5WsyMofLcz0u417x5-_mqk/view?usp=sharing ROBO CNC User Manual]''': PDF version of CNC Carving Machine User Manual V1.0. More information click '''[https://www.youtube.com/watch?v=rw_JUKiU-gI here]'''. (Note: If the file does not open, please click the download button to download and view it.) '''[https://drive.google.com/file/d/124NEIXFZTD3SzzR73RrWv_C_KGCYiwsu/view?usp=sharing CNC Basic terms]''': PDF version of CNC Basic terms. It helps you understand difficult terminology and allows you to read the user manual more easily. = '''CNC CONTROLLER SOFTWARE INSTALLATION''' = [https://docs.google.com/document/d/12-fBkhRT4CLy3r1NJTa1_vArPSseFrQc/edit?usp=sharing&ouid=103863213601496988146&rtpof=true&sd=true '''GRBL software Instructions (For Windows)'''] [https://drive.google.com/file/d/1QoL0acWEfFt0r3_UUwlo73ofdU0PB7dl/view?usp=sharing '''GRBLControl/Candle 1.17 (For Windows)''']: Link downloads a .zip file containing a full copy of Candle, the software you can use to run your CNC through your computer. Must unzip entire folder to use. (Note: Please click the download button, download and install.) [https://drive.google.com/file/d/1s8n82utbdBnombj0WVERfSMkr6GpSMHM/view?usp=sharing '''CH340SER Driver (For Windows)''']: If windows does not do so automatically when you connect your CNC to the computer for the first time, this downloadable file is the Driver which is needed for your computer to be able to communicate with your CNC. (Note: Please click the download button, download and install.) Software to produce Gcode for CNC engraving toolpath diagrams: fusion360, easel, ArtCAM Software for laser engraving that can be directly connected to ROBO CNC: Lightburn, Laser Grbl, easel CNC engraving software that can be directly linked with ROBO CNC: Candle Grbl, easel = '''CONFIGURATION & TESTING''' = [https://www.youtube.com/watch?v=m1FPoVXEyyU '''Video on How to Set Up your Z-Probe'''] [https://drive.google.com/drive/folders/1ym0EjJdjEsc_bK-wAVz_07Z48nZ8aUer?usp=sharing '''Material Test''']: Originally provided on the SD card that came with your CNC, these are pre-made test cuts users can use to try out their machine or to help troubleshoot issues with other files. [https://drive.google.com/file/d/1_yGkEEyRQjRjHG5KH5Vl3AaITNu-kuhn/view?usp=sharing '''ROBO CNC Beginner's Guide''']:PDF version of Beginner's Guide, you can follow it to test your Comgrow ROBO CNC machine. It suitable for beginners who need to deal with easy but common problem. [https://drive.google.com/file/d/1UIcS1nraBB4cd_V3X71sIazX256oyPry/view?usp=sharing '''ROBO CNC Configuration''']: PDF version of Configuration, Please read it carefully to avoid irreparable mistakes. [https://drive.google.com/file/d/1akPLTCWPM3e4-xPLMaQkB37b0Z8uDMcL/view?usp=sharing '''ROBO CNC tool engraving parameters''']: This is about the different engraving methods of milling cutter engraving and the performance when corresponding to different materials. [https://drive.google.com/file/d/1m-1p5zNX5We8u5__L2K5BiPKBcU5JI_o/view?usp=sharing '''CNC laser engraving parameters''']: This is about the performance of laser with different parameters for different materials. = '''MACHINE OPERATION''' = [https://www.youtube.com/watch?v=m1FPoVXEyyU '''How to use the Z-Probe on the CNC'''] [https://www.youtube.com/watch?v=7PD4cX5GBHE&list=PLrLS8mnrSLIoCAnQkZZgQ-jECVaJQwHcs&index=3 '''Comgrow rotary roller installation guide for CNC router'''] [https://www.youtube.com/watch?v=mgRpvPlU_rc&list=PLrLS8mnrSLIoCAnQkZZgQ-jECVaJQwHcs&index=4&t=32s '''Comgrow ROBO CNC Assembly and 5W/10W Laser Kit Installation'''] = '''LASER GUIDES & INSTRUCTIONS''' = [https://drive.google.com/file/d/1Xtpf7CS4h_QPWNvVgoI2Qu3Ff2t_a-68/view?usp=sharing '''Lsaer Engraver Guide For ROBO CNC'''] '''LaserGRBL Control Software:''' Originally provided on the SD card that came with your CNC, a powerful and affordable GRBL controller meant specifically for lasers. = '''TROUBLESHOOTING''' = [https://docs.google.com/spreadsheets/d/19e80YKQzCLKMTYDZvuDI06vrVScToicU/edit?usp=sharing&ouid=103863213601496988146&rtpof=true&sd=true '''Common error and solutions guide''']: When you encounter machine error during operation, you can check this link for error phenomena and solutions. If this guide does not help you, you can send a message to [https://www.facebook.com/Comgrow '''Facebook Comgrow Official account'''] or join [https://www.facebook.com/groups/comgrowcnc '''Facebook Comgrow Official group'''] and our customer service team will provide you with a solution. (Note: If the file does not open, please click the download button to download and view it.) = '''OTHER SOFTWARE''' = [https://lasergrbl.com/ '''LaserGRBL''']: LaserGRBL is the software currently used by Comgrow ROBO and it is installed on the SD card that comes with the CNC machine. '''[https://www.autodesk.com/products/fusion-360/overview Fusion 360]:''' The modeling logic is based on Boolean operations. Of course there are some normal uses. It works very well for horizontal and vertical things, and the Boolean operations can produce very good high models. However, it is more difficult to make curved surfaces '''[https://carveco.com/carveco-software-range/carveco-maker/ Carveco Maker]:''' It can realize fine 3D relief design, also can calculate tool path output G-Code, output STL to 3D printing manufacturing, covering jewelry and ring design functions '''[https://easel.inventables.com/users/sign_in Easel]:''' It is infographic maker with a simple interface, easy to use, beautiful pictures, and users only need to log in to the official website to start making infographics, where you can share and find materials to your heart's content, some of which are not free, of course. = '''OTHER COMMON QUESTIONS''' = 1. Where can you find professional instructional videos? We have many instructional videos available on our Youtube Comgrow Official Account link. [https://www.youtube.com/c/ComgrowOfficial Youtube Comgrow Official Account] [https://www.facebook.com/Comgrow Facebook Official Account] [https://www.facebook.com/groups/comgrowcnc Facebook Group Link] 2. How to reset ROBO CNC system? After triggering the emergency stop button or limit switch, there is no need to power off and restart. After resetting the emergency stop button, the reset and unlock buttons on the motor software can move the axis. 3. What software to use to edit images? ARTCAM software 4. Is it possible to use the M4 dynamic mode for the laser engraver? M3 and M4 modes can be used. M3 is black and white engraving and constant power output. M4 is grayscale engraving, variable power mode. 5. What is the print size of ROBO CNC? 300X180X45 mm 6. How to install a laser kit on the ROBO? A sheet metal buckle is installed on the 5W laser head kit, which is directly buckled in front of the Z-axis chuck, and then connected to the laser head prepared on the machine. Pay attention to distinguish between the power plug and the PWM plug. Wangcheng can help. 7. After installing the machine, how to start laser printing? Adjust the gear position on the control mainboard, and turn on the laser engraving mode on the software side. Enter $32=1. There are specific video operation tutorials on our social media. laser printing? Adjust the gear position on the control mainboard, and turn on the laser engraving mode on the software side. Enter $32=1. There are specific video operation tutorials on our social media.)
  • Design a 3D object in Tinkercad  + (= Age range = 9-13 = Skill level = Beginn= Age range = 9-13 = Skill level = Beginner = Objectives = * learn the basics of designing 3D objects in view of leading an activity on this topic with youth * master the basics of Tinkercad (an online software for 3D modeling) = Background knowledge and competences = none = Duration of the activity = 20 to 40 minutes = Material and equipment needed = A computer, or a tablet with internet connection
    or a tablet with internet connection <br/>)
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    xam successfully on their first attempt. <br/>)
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By investing in Examskit's comprehensive preparation materials, candidates equip themselves with the essential tools to tackle the Microsoft SC-300 exam successfully on their first attempt.-300 exam successfully on their first attempt.)
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  • Recyclage de plastique : Presse à chaud  + (ATTENTION : ceci est une machine expérimentale et dangereuse, si vous vous brûlez, eh ben vous vous brûlez. Le responsable, c'est vous.)
  • Recyclage de plastique : Presse à chaud  + (ATTENTION : ceci est une machine expérimentale et dangereuse, si vous vous brûlez, eh ben vous vous brûlez. Le responsable, c'est vous.)
  • Conception Mécanique Assistée par Ordinateur (CMAO)  + (Afin de dimensionner correctement chaque éAfin de dimensionner correctement chaque élément d'un système, de visualiser chaque détail, chaque interaction entre les pièces d'un assemblage, de définir exhaustivement les caractéristiques d'un ensemble, il peut être nécessaire de générer une maquette numérique en [[3D]] à partir d'un logiciel de CMAO. La plupart de ces logiciels sont composés d’ateliers : * Un atelier d’esquisse qui permet de dessiner en 2D pour modéliser un profil, un contour. * Un atelier de pièce qui s’appuie sur les esquisses modélisées précédemment pour créer un volume, une cavité, une révolution. * Un atelier d’assemblage qui relie plusieurs pièces par des contraintes cinématiques. * Les logiciels les plus poussés permettent des études de simulations (Résistance Des Matériaux (RDM), mécanique des fluides, etc.) afin de valider les précédents choix de conception. * Et enfin, un atelier de mise en plans permet de générer des plans 2D à partir des 3D (pièce ou assemblage) générés précédemment afin de définir précisément chaque dimension des pièces, leur tolérance et tout autre indication nécessaire à la réalisation de la pièce.n nécessaire à la réalisation de la pièce.)
  • Clamps serrage rapide pour fraiseuse à commande numérique  + (Afin de gagner du temps lors de la fabrication en série sur une fraiseuse à commande numérique, il est intéressant d'avoir un système de serrage rapide permettant de maintenir en position le brut. Nous nous sommes inspirés de la vidéo ci-dessous.)
  • Martyr pour fraiseuse à commande numérique  + (Afin de pouvoir mettre en place un système de clamps à serrage rapide sur notre fraiseuse à commande numérique, ce martyr a été usiné sur mesure à la CNC.)
  • Pavé Numérique MIDI  + (Afin d’apprendre à créer des instruments MAfin d’apprendre à créer des instruments MIDI (c.a.d des instruments utilisables dans des logiciels de musique), je me suis entraîné à l’aide de simples boutons. Puis je me suis dit que je pourrais aussi directement utiliser un pavé numérique (keypad). En soi ça m’a paru une bonne idée, car cela permet d’avoir 16 boutons facilement. Mais les pavés numériques '''ne sont pas pensés pour pouvoir être utilisés avec plusieurs boutons en même temps''' donc si cela est important pour vous, vous êtes prévenus.t important pour vous, vous êtes prévenus.)