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robotics makers hub
We extended the capabilities of ChatGPT to robotics and controlled multiple platforms such as robot arms, drones with language.
Based on Raspberry Pi, myCobot Pi has gradually become a necessity for RPI lovers.
How to move a collaborative robotic arm?
In our project, we enable the AI to learn from provided texts, allowing it to automatically write code and execute tasks to control myCobot.
A very comprehensive guide to using myCobot 280 Pi from scratch.
A smartphone arm was created using myCobot and the OAK-D OpenCV DepthAI camera, allowing users to always enjoy videos right in front of them
Learn how to integrate the myCobot 280 robotic arm with the myAGV mobile chassis to build a versatile compound robot for smart automation.
This case designs a project to play tic-tac-toe with robot arm, integrating computer vision and robotic control.
myCobot 280 Raspberry Pi - 6 DOF Collaborative Robotic Arm
myCobot 280 Raspberry Pi - 6 DOF Collaborative Robotic Arm
myCobot 280 Raspberry Pi - 6 DOF Collaborative Robotic Arm
myCobot 280 Raspberry Pi - 6 DOF Collaborative Robotic Arm
myCobot 280 Raspberry Pi - 6 DOF Collaborative Robotic Arm
myCobot 280 Raspberry Pi - 6 DOF Collaborative Robotic Arm
myCobot 280 Raspberry Pi - 6 DOF Collaborative Robotic Arm
myCobot 280 Raspberry Pi - 6 DOF Collaborative Robotic Arm
myCobot 280 Raspberry Pi - 6 DOF Collaborative Robotic Arm
myCobot 280 Raspberry Pi - 6 DOF Collaborative Robotic Arm
myCobot 280 Raspberry Pi - 6 DOF Collaborative Robotic Arm
myCobot 280 Raspberry Pi - 6 DOF Collaborative Robotic Arm
myCobot 280 Raspberry Pi - 6 DOF Collaborative Robotic Arm
myCobot 280 Raspberry Pi - 6 DOF Collaborative Robotic Arm

myCobot 280 Raspberry Pi - 6 DOF Collaborative Robotic Arm

$799.00
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A Raspberry Pi 4 platform
Here is a documentation of the development of an automated navigation project with myAGV and myCobot.
In August, Elephant Robotics upgraded myAGV with better performance and more functions to meet more applications. Let's see how to use it!
Try using myAGV for automatic navigation with TEB-DWA algorithm.
Map creation and automatic navigation with myAGV
I just tried to control this compound robot that combined with the mechArm and myAGV
Learn how to integrate the myCobot 280 robotic arm with the myAGV mobile chassis to build a versatile compound robot for smart automation.
Discover how myAGV excels in vision-based navigation and obstacle recognition! Explore the challenges and innovations behind its success.
myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad
myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad
myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad
myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad
myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad
myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad
myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad
myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad
myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad
myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad
myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad
myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad
myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad
myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad
myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad
myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad

myAGV PI - Mobile Chassis Autonomous Navigation Raspberry Pi Robot Kit 2D/3D Mapping, Smart 4-Wheel Drive Vehicle with Gamepad

$949.00

FEATURES AND APPLICATIONS

myAGV PI is powered by a Raspberry Pi 4B core board, paired with the customized Ubuntu Mate 20.04 operating system from Elephant Robotics, ensuring a smooth and user-friendly experience. myAGV offers a wide range of features, including 2D mapping and navigation, 3D mapping and navigation, graphical programming, visual software, ROS simulation, gamepad and keyboard control, making it the top choice for research, education, and individual makers.

Education and Research

myAGV PI is equipped with high-performance planetary brushless DC motors, providing it with increased power for a wider range of more complex application scenarios. This significantly enhances the accuracy of autonomous navigation. Whether in laboratory research or classroom teaching, this chassis offers comprehensive support, helping you explore the unknown and making research and education more flexible.
Education and Research

Innovative Development

myAGV PI builds with the functions like 3D navigation, visual software, graphical programming, and various optional accessories. It offers greater user-friendliness and can meet the diverse needs of different users for personalized scenario development.

Innovative Development

Business Exploration

myAGV PI can be equipped with our company's five types of robotic arms. myAGV Pi + Robotic Arm = Infinite Possibilities. With autonomous navigation, machine vision, and end effectors, it can simulate various business scenarios and meet the application requirements of complex projects. It supports composite robot kits, simulating warehouse logistics and sorting scenarios, making it suitable for business research and composite robot scenario demonstrations.

Business Exploration

EXCELLENT CONFIGURATION

A hardcore product configuration that fulfills your embedded development needs, with versatile IO interfaces and screen displays, allowing you to bring your ideas to life.

CUSTOMIZED ROBOT OPERATING SYSTEM

System developed over three years, it offers a near-desktop PC experience. myAGV PI system not only has built-in environments like ROS and Python but also features robot development software like VSCode, VNC, and SSH. No complicated configurations needed. It also offers automated update software, supporting one-click updates for the corresponding development environment. Simplifying the process makes robot applications easier.

photo of myCobot Arduino with main features

EASY ROBOT PROGRAMMING

Offers myBlockly, a drag-and-drop programming software for beginners. With block-based programming and graphical debugging tools, even novices can easily control the robotic arm. Python 2/3 development environment supports various development driver libraries like OpenCV, QT, and pymycobot. It meets advanced development needs in robot control, image recognition, and frontend development.

1

myBlockly

2

Python


myStudio

MyStudio, a brand new upgrade, says goodbye to the old version's inability to connect to the internet for downloading the latest firmware. With cloud-based updates and real-time synchronization, it further enhances the user experience.

Download

photo of myCobot Arduino with main features

Instructions

Gitbook
[Recommended reading]

gitbook link
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A project to reinforce learning robotic arm grasping through Isaac Gym.
myCobot dancing under the Christmas tree | Merry Christmas Achieve myCobot "drag and teach" through Python
myCobot Toolkit: Exploring the Robotic End-effectors
This project integrates WSL, ROS, and Unity to build a cross-platform control environment for robotic arm to perform pick-and-place task.
Intelligentization of Robotic Arm Control, An Attempt Based on Speech Recognition Technology
This Robot Arm Can Play Chess with You: Robot Arm combines with AI using DQN Neural Network
A project about a robotic arm and a depth camera working together.
Record the process of using the robotic arm
Details of robot vision and human-robot interaction with myCobot AI Kit
A project to control the robotic arm directly by speaking!
Discover the innovative integration of AI and robotics in the mylangrobot project, showcasing practical automation solutions.
Prototyping the use of a robot arm in a food truck.
A 4-axis palletizing robot arm that is very suitable for industrial education.
Now myPalletizer 260 is capitable with AI Kit, and here is the detailed process of achieving color and image recognition by myPalletizer AI
This article is primarily about introducing 3 robotic arms that are compatible with AI Kit. What are the differences between them?
The article delves into the development of a fascinating project that involves object detection, tracking, and control of a mechanical arm
Exploring the Power of myCobot 280 for Jetson Nano: A Promising Combination for Robotics
This article was created by "Cang Hai Xiao" and is reproduced with the author's permission.
Quick start with mycobot280 for Arduino, how to choose between the three supported demo boards, Arduino Uno, Mega2560, or MKR WiFi 1010.
Find the end actuator that suits you best for you!
In this case, we will use a 3-finger anthropomorphic robotic hand to demonstrate pinching and clamping motions.
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