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Elephant Robotics

MyBuddy 280: Dual 6-Axis Collaborative Robot

SKU: RBA1037

₹ 189,999.99

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MyBuddy 280: Dual 6-Axis Collaborative RobotNone₹ 189,999.99
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MyBuddy 280: Double Axis Collaborative Robot Arm

 The most cost-effective dual-arm robot powered by Raspberry Pi

photo of myCobot Arduino with main features
 

THE MOST COST-EFFECTIVE DUAL-ARM ROBOT

myBuddy is 1st dual-arm robot product of Elephant Robotics powered by Raspberry Pi, belonging to Service robot - A Dual-arm 13-axis Humanoid Collaborative Robot. The working radius of a single arm of myBuddy is 280mm, and the maximum payload is 250g. It owns a 7-inch interactive display screen and two 2-million-pixel HD camera, and provides the 3.3V I/O ports and Lego ports. myBuddy can work with multiple accessories such as suction pump,grippers,etc.It can meet the needs of different applications.

 

 

OPEN-SOURCE RESEARCH EDUCATION ROBOT

The whole machine motion control drive library of myBuddy is open, more than 100 control interfaces such as joint angel control, coordinate control,etc. Therefore, users can realize robot motion path planning algorithm research, dual-arm interference avoidance algorithm research, robot vision learning and other artificial intelligence applications development. myBuddy effectively helps developers and students to improve their personal scientific research ability.

photo of myCobot Arduino with main features

Visual Development environment

It can realize the learning and teaching of artificial intelligence grasping. Standard artificial intelligence camera interface. The 45-degree camera below supports area location positioning, object and QR code recognition. Another camera Can achieve the face & body recognition.

Creative Journey for Robot players

Open bottom control interface. The potential value, angles, coordinates, running speeds and other interfaces can be controlled freely. It can achieve the application research of dual-arm robots, motion path planning, development of action and visual recognition. A variety of interfaces can meet the multiple applications for the comercial use and educational purpose.

ROS Learning application

The ROS development environment built-in the robot system, it provides a variety of cases in the RVIZ and MOVEIT, such as mobile following, slider control, path planning and other advanced applications. The robot URDF configuration documents are open, so users can make secondary modification development.

 

PARAMETERS

280mm working radius, up to 250g payload, 0.5MMRepeatability, to help you achieve your scene exploration needs.


EXCELLENT CONFIGURATION


24V industrialized electrical interface, to complete your industrial scene development needs, key interaction, screen display, PLC interface, allowing you to quickly and safely build robotic arm application exploration scenarios.

photo of myCobot Arduino with main features

 

OPEN-SOURCE INTERFACES


Based on different kinds of applications, open-source to its interfaces and enables to achieve objects recognition, facial recognition, image recognition etc.

photo of myCobot Arduino with main features

photo of myCobot Arduino with main features

 

SECONDARY DEVELOPMENTS

Easily learn to program myCobot in your style and ready to start your robotics journey.

photo of myCobot Arduino with main features

 

Supports ROS

Developing in ROS - the world's mainstream robot communication framework, you can control myPalletizer and conduct algorithm verificationin under a virtual environment, which reduces the requirements for the experimental environment and improves the experimental efficiency.




myStudio QuickTool

Quick teach and play myBuddy with TouchScreen



 

myBuddy 280 Pi Unboxing

Resources

What are the key reach and payload specs of this robot?
Each arm has a 280 mm working radius and a maximum payload of 250 g. It offers a repeatability of 0.5 mm.
What hardware features support sensing and interaction?
The unit includes a 7 inch interactive display, two 2 MP HD cameras, 3.3V I O ports and Lego ports, and supports accessories such as suction pumps and grippers.
What development and programming options are available?
It provides an open source motion control library with over 100 control interfaces, ROS support, and open URDF configuration. It also offers a visual development environment and the myStudio QuickTool for quick teach and play.
Is it suitable for education and research purposes?
Yes, it is described as an open source research education robot with tools for artificial intelligence grasping, motion path planning, interference avoidance, and vision based applications.
Where can I find documentation and learning resources?
Documentation and learning resources are available through Gitbook and Github, including recommended reading and a user manual for the ROS environment. Examples and tutorials for RVIZ and MOVEIT are provided.
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Description
Ask AI about this product

MyBuddy 280: Double Axis Collaborative Robot Arm

 The most cost-effective dual-arm robot powered by Raspberry Pi

photo of myCobot Arduino with main features
 

THE MOST COST-EFFECTIVE DUAL-ARM ROBOT

myBuddy is 1st dual-arm robot product of Elephant Robotics powered by Raspberry Pi, belonging to Service robot - A Dual-arm 13-axis Humanoid Collaborative Robot. The working radius of a single arm of myBuddy is 280mm, and the maximum payload is 250g. It owns a 7-inch interactive display screen and two 2-million-pixel HD camera, and provides the 3.3V I/O ports and Lego ports. myBuddy can work with multiple accessories such as suction pump,grippers,etc.It can meet the needs of different applications.

 

 

OPEN-SOURCE RESEARCH EDUCATION ROBOT

The whole machine motion control drive library of myBuddy is open, more than 100 control interfaces such as joint angel control, coordinate control,etc. Therefore, users can realize robot motion path planning algorithm research, dual-arm interference avoidance algorithm research, robot vision learning and other artificial intelligence applications development. myBuddy effectively helps developers and students to improve their personal scientific research ability.

photo of myCobot Arduino with main features

Visual Development environment

It can realize the learning and teaching of artificial intelligence grasping. Standard artificial intelligence camera interface. The 45-degree camera below supports area location positioning, object and QR code recognition. Another camera Can achieve the face & body recognition.

Creative Journey for Robot players

Open bottom control interface. The potential value, angles, coordinates, running speeds and other interfaces can be controlled freely. It can achieve the application research of dual-arm robots, motion path planning, development of action and visual recognition. A variety of interfaces can meet the multiple applications for the comercial use and educational purpose.

ROS Learning application

The ROS development environment built-in the robot system, it provides a variety of cases in the RVIZ and MOVEIT, such as mobile following, slider control, path planning and other advanced applications. The robot URDF configuration documents are open, so users can make secondary modification development.

 

PARAMETERS

280mm working radius, up to 250g payload, 0.5MMRepeatability, to help you achieve your scene exploration needs.


EXCELLENT CONFIGURATION


24V industrialized electrical interface, to complete your industrial scene development needs, key interaction, screen display, PLC interface, allowing you to quickly and safely build robotic arm application exploration scenarios.

photo of myCobot Arduino with main features

 

OPEN-SOURCE INTERFACES


Based on different kinds of applications, open-source to its interfaces and enables to achieve objects recognition, facial recognition, image recognition etc.

photo of myCobot Arduino with main features

photo of myCobot Arduino with main features

 

SECONDARY DEVELOPMENTS

Easily learn to program myCobot in your style and ready to start your robotics journey.

photo of myCobot Arduino with main features

 

Supports ROS

Developing in ROS - the world's mainstream robot communication framework, you can control myPalletizer and conduct algorithm verificationin under a virtual environment, which reduces the requirements for the experimental environment and improves the experimental efficiency.




myStudio QuickTool

Quick teach and play myBuddy with TouchScreen



 

myBuddy 280 Pi Unboxing

Resources

FAQ
What are the key reach and payload specs of this robot?
Each arm has a 280 mm working radius and a maximum payload of 250 g. It offers a repeatability of 0.5 mm.
What hardware features support sensing and interaction?
The unit includes a 7 inch interactive display, two 2 MP HD cameras, 3.3V I O ports and Lego ports, and supports accessories such as suction pumps and grippers.
What development and programming options are available?
It provides an open source motion control library with over 100 control interfaces, ROS support, and open URDF configuration. It also offers a visual development environment and the myStudio QuickTool for quick teach and play.
Is it suitable for education and research purposes?
Yes, it is described as an open source research education robot with tools for artificial intelligence grasping, motion path planning, interference avoidance, and vision based applications.
Where can I find documentation and learning resources?
Documentation and learning resources are available through Gitbook and Github, including recommended reading and a user manual for the ROS environment. Examples and tutorials for RVIZ and MOVEIT are provided.
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Welcome to the discussion thread for MyBuddy 280: Dual 6-Axis Collaborative Robot
Feel free to ask questions, share tips or report issues.
Add Post

For more discussion Click Here

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