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Elephant Robotics

LIMO COBOT: Autonomous Compound Mobile Robot

SKU: RBC1074

₹ 685,599.99

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LIMO COBOT: Autonomous Compound Mobile Robot₹ 685,599.99
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APPLICATIONS AND FUNCTIONS

LIMO Cobot is a desktop mobile robot platform jointly launched by Elephant Robotics and AgileX Robotics. Based on Elephant Robotics' 6-axis collaborative robotic arm, myCobot 280 M5, and AgileX Robotics' latest grasping robotic product, LIMO PRO, it integrates 3 major functions: mobility, collaboration, and intelligence. It is suitable for various applications, including education, competitions, and training.


Mobile Grasping

LIMO Cobot is equipped with a 6-axis robotic arm that supports various end-effectors, enabling precise mobile grasping to meet different task requirements.


Autonomous Mapping

LIMO Cobot is capable of autonomously sensing and constructing accurate environmental maps, providing accurate data support for the robot’s navigation in complex spaces.


Obstacle Avoidance

LIMO Cobot can intelligently perceive its surrounding environment and flexibly navigate to avoid obstacles, ensuring safe task execution.

Open-Source Support

LIMO Cobot supports ROS, Gazebo, Raviz and mainstream programming languages like Python and C++, making development flexible and accessible.

 


POWERFUL BASE

The mobile base of LIMO Cobot incorporates advanced sensors such as the EAI T-mini–Pro LiDAR, Orbbec Dabai depth camera, and IMU, ensuring exceptional control performance. It utilizes 4 hub motors for excellent stability and maneuverability, allowing smooth movement in various terrain environments. More importantly, it can switch between 4 modes based on terrain requirements: Ackermann, Four-wheel differential steering, Tracked steering, and Omni-directional steering. This is a functionality that other mobile robots do not possess.


Ackermann


Four-wheel differential steering


Tracked steering

Omni-directional steering

 


COMPOUND APPLICATION

myCobot 280 M5

LIMO Cobot is equipped with Elephant Robotics' 6-axis collaborative robotic arm, myCobot 280 M5, forming a compound robot.

 

The myCobot 280 M5 has a weight of 850g, a payload of 250g, and an effective working radius of 280mm. Despite its compact size, it boasts powerful functionality. It can be equipped with various end effectors to adapt to diverse application scenarios. Supporting secondary development with multiple platform software, it caters to various needs in research and education, smart home applications, commercial exploration, and more. With different end effectors, it can achieve a variety of applications.

 


LIMO PRO

 

LIMO PRO integrates the NVIDIA Orin Nano alongside the EAI T-mini–Pro LiDAR and Orbbec Dabai depth camera. This enables robust environmental perception and intelligence for autonomous navigation, obstacle avoidance, SLAM mapping, mobile grasping, and visual recognition applications.


Mobile grasping


Autonomous navigation


Visual recognition

SLAM mapping

 


ROS2 SIMULATION CONTROL SUPPORT

LIMO Cobot is equipped with the open-source robotic software platform ROS 2, providing rich development tools and libraries for LIMO robots and assisting users in rapid learning and development of robotic applications. It supports various development tools such as RViz, Nav2, Gazebo, and more.

 


Specifications

 

Resources

Developer Guide

What are the main capabilities and functions of this robot platform?
It integrates mobility, collaboration and intelligence and includes a 6 axis robotic arm with mobile grasping, autonomous mapping and obstacle avoidance. It supports ROS, Gazebo, Raviz and programming languages such as Python and C++.
What mobility modes are available on the base and how do they work?
The mobile base supports four modes based on terrain: Ackermann, four wheel differential steering, tracked steering and omni directional steering.
What are the arm specifications and what end effectors can be used?
The integrated arm is the myCobot 280 M5 with weight 850 g and payload 250 g and an effective working radius of 280 mm. It can be equipped with various end effectors to suit different tasks.
Is the platform compatible with ROS 2 and Gazebo for development?
Yes. It supports ROS 2 and tools such as RViz, Nav2 and Gazebo, enabling flexible development workflows.
Where can developers access documentation and open source resources?
Development resources include a developer guide and open source support. The platform supports Python and C++ and ROS 2 compatible tools.
Welcome to the discussion thread for LIMO COBOT: Autonomous Compound Mobile Robot
Feel free to ask questions, share tips or report issues.

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Description
Ask AI about this product

 

APPLICATIONS AND FUNCTIONS

LIMO Cobot is a desktop mobile robot platform jointly launched by Elephant Robotics and AgileX Robotics. Based on Elephant Robotics' 6-axis collaborative robotic arm, myCobot 280 M5, and AgileX Robotics' latest grasping robotic product, LIMO PRO, it integrates 3 major functions: mobility, collaboration, and intelligence. It is suitable for various applications, including education, competitions, and training.


Mobile Grasping

LIMO Cobot is equipped with a 6-axis robotic arm that supports various end-effectors, enabling precise mobile grasping to meet different task requirements.


Autonomous Mapping

LIMO Cobot is capable of autonomously sensing and constructing accurate environmental maps, providing accurate data support for the robot’s navigation in complex spaces.


Obstacle Avoidance

LIMO Cobot can intelligently perceive its surrounding environment and flexibly navigate to avoid obstacles, ensuring safe task execution.

Open-Source Support

LIMO Cobot supports ROS, Gazebo, Raviz and mainstream programming languages like Python and C++, making development flexible and accessible.

 


POWERFUL BASE

The mobile base of LIMO Cobot incorporates advanced sensors such as the EAI T-mini–Pro LiDAR, Orbbec Dabai depth camera, and IMU, ensuring exceptional control performance. It utilizes 4 hub motors for excellent stability and maneuverability, allowing smooth movement in various terrain environments. More importantly, it can switch between 4 modes based on terrain requirements: Ackermann, Four-wheel differential steering, Tracked steering, and Omni-directional steering. This is a functionality that other mobile robots do not possess.


Ackermann


Four-wheel differential steering


Tracked steering

Omni-directional steering

 


COMPOUND APPLICATION

myCobot 280 M5

LIMO Cobot is equipped with Elephant Robotics' 6-axis collaborative robotic arm, myCobot 280 M5, forming a compound robot.

 

The myCobot 280 M5 has a weight of 850g, a payload of 250g, and an effective working radius of 280mm. Despite its compact size, it boasts powerful functionality. It can be equipped with various end effectors to adapt to diverse application scenarios. Supporting secondary development with multiple platform software, it caters to various needs in research and education, smart home applications, commercial exploration, and more. With different end effectors, it can achieve a variety of applications.

 


LIMO PRO

 

LIMO PRO integrates the NVIDIA Orin Nano alongside the EAI T-mini–Pro LiDAR and Orbbec Dabai depth camera. This enables robust environmental perception and intelligence for autonomous navigation, obstacle avoidance, SLAM mapping, mobile grasping, and visual recognition applications.


Mobile grasping


Autonomous navigation


Visual recognition

SLAM mapping

 


ROS2 SIMULATION CONTROL SUPPORT

LIMO Cobot is equipped with the open-source robotic software platform ROS 2, providing rich development tools and libraries for LIMO robots and assisting users in rapid learning and development of robotic applications. It supports various development tools such as RViz, Nav2, Gazebo, and more.

 


Specifications

 

Resources

Developer Guide

FAQ
What are the main capabilities and functions of this robot platform?
It integrates mobility, collaboration and intelligence and includes a 6 axis robotic arm with mobile grasping, autonomous mapping and obstacle avoidance. It supports ROS, Gazebo, Raviz and programming languages such as Python and C++.
What mobility modes are available on the base and how do they work?
The mobile base supports four modes based on terrain: Ackermann, four wheel differential steering, tracked steering and omni directional steering.
What are the arm specifications and what end effectors can be used?
The integrated arm is the myCobot 280 M5 with weight 850 g and payload 250 g and an effective working radius of 280 mm. It can be equipped with various end effectors to suit different tasks.
Is the platform compatible with ROS 2 and Gazebo for development?
Yes. It supports ROS 2 and tools such as RViz, Nav2 and Gazebo, enabling flexible development workflows.
Where can developers access documentation and open source resources?
Development resources include a developer guide and open source support. The platform supports Python and C++ and ROS 2 compatible tools.
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Forum
Welcome to the discussion thread for LIMO COBOT: Autonomous Compound Mobile Robot
Feel free to ask questions, share tips or report issues.
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