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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.
Powered by Arduino, this kit comes disassembled, allowing users to develop hand and motor skills as they build their own robots. Along with the kit, we provide a free training e-book that guides you step-by-step through the robot-building process 🤖 Whether for children or adults, SolarX offers a fun and educational experience for all ages!
Learn how to make a Selection List project with arduino using OLED Screen
timeCodes
0:00 -Demo of the project 1:10 -electronic omponents used 02:08 -Connecting Arduino Nano 33 IoT on the board 03:11 -Connecting an RGB LED Module to the Arduino Nano 33 IoT 03:46 -Connecting OLED Display to Arduino Nano 33 IoT 04:09 -Connecting Pushbutton to Arduino Nano 33 IoT 05:40 -Circuit diagram 05:45 -Arduino Code 7:01 -Testing the project
Learn how to create a selection list project with Arduino using an OLED screen with this step-by-step tutorial! In this video, you will discover how to set up the project, write the code, and display a selection list on the OLED screen. Whether you're a beginner or an experienced Arduino enthusiast, this tutorial will guide you through the process. Watch now and start building your own selection list project with Arduino and OLED screen today! #selectionlist #arduino #oledscreen
If you have a spare lanyard and you don’t live in a Mediterranean climate, you probably want to know what the temperature is right now.To that end, you might want to have a look at this proj…...
The TinyWatch S3 is an ESP32-S3 development board in a smartwatch form factor from Seon Rozenblum, also known as Unexpected Maker.It is powered by the...
Unlock the future with our RFID based automatic door lock system using Arduino Uno! 🚪🔒 In this video, we'll guide you through the essential components and steps to build your own secure and efficient door lock system. Whether you're a DIY enthusiast or a tech hobbyist, this project is perfect for enhancing the security of your spaces effortlessly.
🚪🔒 Components Used:
1. RFID RC522: This module is the heart of our project, allowing for secure access using RFID tags. 2. OLED Screen: Displays the status of the door lock system, ensuring clear communication and control. 3. Arduino: The brain of our system, managing the operations and interactions between the components.
1. Wiring: Connect the RFID RC522 to the Arduino, ensuring proper communication between the tag reader and the microcontroller. 2. Coding: Program the Arduino to read RFID tags and control the door lock mechanism. Don’t forget to include the OLED display code for status updates! 3. Testing: Scan your RFID tag to see the system in action! The OLED screen will display the status, and the door will lock/unlock based on the tag information.
This project is perfect for enhancing security at your home or office. Follow along to build your own and take your DIY skills to the next level!
Watch till the end to see the system in action and don't forget to like, share, and subscribe for more innovative tech projects!
Has the urge to track planes got to you yet? The FlightAware Pro will satisfy that itch! Turn your Raspberry Pi into a receiver for flight data up to 400km away. Gain access to a global network of fellow tail spotters and watch aircraft cross the globe everyday!
Go browse your favorite store for a smart thermostat and take a look at the prices. They aren’t cheap and the more affordable models tend to lock you into proprietary ecosystems.But a decent smart thermostat can save you money on energy costs, so you might want to consider this DIY design created...
The Pi 5 proves to be a very competent computer for an off-grid setup. Here we look at the Pi5 with MX Linux and the Cinnamon Desktop. #raspberryPi #MXLinux #vanlife
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Join Kevin and Kyle as they guide you step-by-step through building your very own WiFi-controlled Raspberry Pi-powered robot! In this exciting project, you'll learn how to create a wireless electric mini-car that can be navigated from your computer and includes a live video feed capability. We cover everything from the materials you need, to the assembly process, to programming the Raspberry Pi using Thonny and Python. Whether you're a robotics enthusiast or a beginner, this project is perfect for you. Watch as we demonstrate the robot's capabilities, discuss potential upgrades, and explore future project ideas. Don't forget to like, subscribe, and stay tuned for more amazing robotics content!
In this video I show you how to create a toggle switch using a button switch to turn an LED on and off. The switch is using a 10K pullup resistor. We then use the switch to control an LED. For this example we are using an RGB LED, and control the color using 3 toggle switches. We can independently turn the Red, the Green and the Blue LED on or off. 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. ]
Although ebooks and e-readers have a number of benefits over reading an analog paper book as well as on more common electronic devices like tablets, most of them are locked behind proprietary systems ...
I made a bill(denomination) reader with a raspberry pi. It uses: -Raspi 3B -3D printed case -2X1.5in breadboard -1 white LED -4 female to male connectors -430 ohm resistor -Pi camera 2( No IR)
A deeper instruction is on my github: github.com/kianteymouri/raspicash
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want to learn how to use the raspberry pi camera? then this is the video! In this video you will learn how to use the raspberry pi camera with a raspberry pi 5. Get the raspberry pi to follow this video! go to raspberrypi.com
The easiest and most convienent way to write an SD card and set up your Raspberry PI possible! You can be up and running in minutes and connect with both the SSH prompt and a Desktop, without a mouse or keyboard.
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