Will Jessop builds robots, and he's hoping to crowdsource tidying his office of stray ping pong balls after tournaments. What could possibly go wrong?Read more on MAKE
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Takeoff projects help students complete their academic projects. Register at takeoff projects today to find and learn about different interesting big data projects and grab the best jobs. Get started right now.
In this class we will be using the Sunfounder Raspberry Pi Pico W Keppler Kit. It will make things a lot easier if we are working on identical hardware. the link below is to amazon, and is for the identical hardware I will be using in this entire class.
In this video, I will show you how to use an IR remote with the Raspberry Pi Pico W. This lesson shows how to read button presses from the remote control unit, and how to create a command that is usable in a microPython program. In todays lesson, I show how to use that command from the remote to control the position of the servo. The video will take you through the process step by step. Enjoy!
[Disclosure of Material Connection: I am a participant in the Amazon Services LLC Associates Program, an affiliate advertising program designed to provide a means for sites to earn advertising fees by advertising and linking to amazon.com. ]
The Inky Impression is a standout in the world of ePaper displays, offering a 5.7-inch screen that boasts a 600x448 resolution. This level of detail, combined with the ability to display seven distinct colors, sets a new standard for what we can expect from ePaper technology. The Inky Impression is not just about showing text; it's about bringing images and graphics to life with a depth of color previously unseen in this medium.
▬ Contents of this video ▬▬▬▬▬▬▬▬▬▬ 0:00 - Intro 0:21 - What is it? 1:08 - Why is it Awesome? 1:56 - Features and specs 3:26 - Projects 4:36 - And Finally
Arduino Uno With Servo Motor #arduino #shots #youtubeshorts
Arduino uno project,how to make new project,Arduino uni,arduino nano,servo motor,how to make,servo motor project,how to make school project,#Shorts,#Youtubeshorts,#CREATIVEDIPU
Join me on Technically Unsure as we turbocharge a Raspberry Pi CM4 with a high-octane carrier board that's not just any board – it's a powerhouse from MCUZone, complete with a 5G modem! 🚀 At $170 combined, is this the ultimate upgrade for your Pi project, or overkill for the tinkerer at heart? We're unboxing, reviewing, and testing every port, slot, and feature to see if this board justifies its price tag. From dual Ethernet ports to NVMe SSD compatibility, let's find out if this setup is the dream for Pi enthusiasts or a niche for network ninjas. Get the specs, the setup, and the straight talk – no fluff
In this class we will be using the Sunfounder Raspberry Pi Pico W Keppler Kit. It will make things a lot easier if we are working on identical hardware. the link below is to amazon, and is for the identical hardware I will be using in this entire class.
In this video, I will show you how to use an IR remote with the Raspberry Pi Pico W. I show how to control the neoPixel array using the IR remote, allowing user to select from prewritten displays on the neoPixel. Then, user instructions are displayed on the ssd1306 OLED display. The video will take you through the process step by step. Enjoy!
[Disclosure of Material Connection: I am a participant in the Amazon Services LLC Associates Program, an affiliate advertising program designed to provide a means for sites to earn advertising fees by advertising and linking to amazon.com. ]
Radxa has released a detailed tutorial for their Penta SATA HAT, showcasing its compatibility with the latest Raspberry Pi 5 and their own Rock Pi single-board computers. This cutting-edge device not only offers a range of power options but also supports various RAID configurations, including RAID...
The Raspberry Pi Foundation has updated its Debian 12-based OS for the pocket-sized powerhouse, with the newest LTS kernel.Although there's no version number…...
Firefly Core-3562JQ is a system-on-module based on Rockchip RK3562J SoC - the industrial-grade version of the Rockchip RK3562 quad-core Cortex-A53 Tablet...
Everybody talks about Bluetooth and Wi-Fi. But one heavily used technology is often forgotten: Infrared. Today we will remember this technology and bring it into the today's world of microcontrollers like ESP32 and ESP8266 and to technologies like MQTT and node-red. And as usual, we will dig a little into the basics.
Today - We will use infrared rays to detect objects - And find a way to make the detector immune against interference from daylight - We will use standard photodiodes as well as IR receivers to detect IR signals and see the difference - Then we will use IR instead of LoRa or Wi-Fi to transport information over the air - We will enable an Arduino UNO to receive, learn, and send IR codes - We will port the IR library to the ESP32 and implement MQTT - Finally, we will build a device which can control our home appliances like TVs or Lights - This device should be able to receive signals from an IR remote controller and transfer them via MQTT to Node-Red
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If you want to make any PCBs that are shown in my YouTube shorts videos, simply upload the Gerber file that I provided for each project to the NextPCB website and place your order. After a few days, your newly created PCB will arrive at your doorstep.
Remote control systems are pivotal in the realm of modern electronics, robotics, and DIY projects, serving as the backbone for an array of applications from RC vehicles to sophisticated Arduino-based projects and advanced robotics applications. These systems, harnessing RF (Radio Frequency), IR (Infrared), or even Bluetooth and Wi-Fi technologies, enable users to command their devices wirelessly, offering unprecedented control and flexibility. The significance of remote control systems extends beyond mere convenience; they are essential for precise maneuvering of RC cars, drones, and boats, as well as for implementing complex functionalities in robotics projects. Moreover, the integration of remote control with Arduino boards has opened up a plethora of possibilities for hobbyists and professionals alike, allowing for custom-built solutions tailored to specific needs. Keywords such as "wireless communication," "RF remote control," and "Arduino wireless projects" are crucial in exploring this innovative domain.
The development and customization of remote control systems have become a cornerstone in educational environments and innovation labs, fostering a deeper understanding of electronics, programming, and mechanical design. Through hands-on projects involving remote-controlled robotics, learners and enthusiasts gain practical experience in sensors, actuators, and microcontrollers, notably Arduino, which stands at the heart of numerous creative endeavors. Robotics applications, particularly, benefit from remote control technology, enabling precise and efficient operations in tasks ranging from simple automated movements to complex autonomous functions. The demand for skills in "robotics programming," "Arduino coding," and "electronic circuit design" underscores the importance of mastering remote control systems. Whether for hobby projects, educational purposes, or cutting-edge research, the knowledge of crafting and implementing these systems is invaluable, bridging the gap between theoretical concepts and real-world applications in the ever-evolving fields of electronics and robotics.
🔰Here,I manly used HT12E Encoder and STX882 transmitter module to make the transmitter and used HT12D Decoder and SRX882 receiver module to make the receiver.
🔰 What are these HT12E and HT12D ? The HT12E and HT12D are integral components in wireless communication systems, serving as an encoder and decoder pair for remote control applications. The HT12E encodes input signals into a serialized format for transmission, while the HT12D decodes these signals back into their original form upon reception. Ideal for creating simple, efficient wireless links, these ICs facilitate 4-bit data communication, making them perfect for remote controls, home automation, and hobbyist projects in electronics, emphasizing their versatility and ease of integration into various applications.
Olivier Simard-Hanley created DailyPi, an e-paper dashboard showing your daily tasks and the weather.All of the data preparation is conducted server-side, through a web app hosted on Google Cloud …...
It’s spring time!If you were looking to convert your garage to a game room or simply want to change the ambiance for this summer’s evening hangouts, Slash Gear shares 5 Raspberry Pi pr…...
Thinking about buying the highly anticipated Raspberry Pi 5? Watch this video first! We'll go over everything you need to know about this new device, including its specs, features, and whether it's worth the $80 price tag.
Plus, we'll dive into how well it can handle retro game emulation, making this video a must-watch for anyone considering purchasing the Raspberry Pi 5. Don't miss out on this comprehensive review before making your decision!
https://github.com/wilkinsjohnstanley/Arduino/tree/main/36Calculator @paulmcwhorter Thank you Mr. Paul McWhorter. I watched your videos on the remote and the LCD display and combined them together into this project! I ran into plenty of challenges that I had to figure out on my own as well. So a lot was learned!
Real Python presents a practical guide on using a Raspberry Pi and connecting hardware through the various connections the Pi provides.The Raspberry Pi is one of the leading physical computing boa…...
🕷️ New Board added to WipperSnapper… What’s the second smallest board available for use with WipperSnapper, sporting all the features and pins you could ask for yet still oh so tiny?Wh…...
This MicroROS control board can also be named the Raspberry Pi 5 robot expansion board. It has an ESP32S3 chip as co-processor, 4-channel encoder motor driver, 2-channel PWM servo driver, 1-channel laser lidar interface, 6-axis IMU attitude sensor and other important peripherals. Supports WiFi, Bluetooth, serial port and other communication functions. MicroROS firmware is pre-installed on this control board before shipment, which can communicate with the devices installed with the ROS2 system. Combined with MS200 lidar and 310 motor in our store, you can create Micro ROS robots, Raspberry Pi 5 cars, etc. Buy it on AliExpress:https://www.aliexpress.us/item/3256806442106464.html
I tried to receive array of float values via I2c using Esp8s66 (in Arduino IDE) in the following way: void receiveEvent(int byteCount) { // Ensure byteCount matches the size of the float array if (byteCount != ARRAY_LENGTH \* sizeof(float)) { // Error handling: The received data size doesn't match the expected size Serial.println("Error: Received data size mismatch"); return; } // Read the received bytes and convert them into float values for (int i = 0; i < ARRAY_LENGTH; i++) { byte bytes[sizeof(float)]; Wire.readBytes(bytes, sizeof(float)); // Read 4 bytes (1 float) from I2C floatArray[i] = *((float *)bytes); // Convert byte array to float Serial.println(floatArray[i], 1); // Print with 1 decimal places } Any idea how to get this floating array? Tank you in advance! I tried to interpret the received values via I2c
En: Now playing with rgb led. First by hand, then by code using arduino. First sketch ok, first modifications ok. Next is...
Fr: Bon la je joue avec des led rvb. En premier manuellement, puis par du code depuis l'arduino. Premier sketch ok, puis premières modifications ok. Et maintenant la suite...
Faites ce qui vous tient à cœur. Do things that matters to you. Luuna.
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