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ROBOTIS AMERICA

OMY-L100

OMY-L100

Regular price $2,873.85
Regular price Sale price $2,873.85
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SKU: 905-0039-000
Weight: 4.0 lb
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Overview

This product has a standard 6-8 week lead time. Please contact america@robotis.com for more information.
 

This product is made to order. The import tariffs have been included in the price. Please email america@robotis.com for a quote.

OMY-L100 Leader 

The OMY-L100 serves as the leader device in the OMY teleoperation system, engineered specifically for imitation learning and advanced human-in-the-loop robotic control. Its lightweight, ergonomic design provides intuitive 6-DOF input, enabling operators to naturally replicate arm and hand motions for real-time robot guidance. By capturing high-resolution motion data and transmitting it with minimal latency over Ethernet, the OMY-L100 ensures precise, responsive control of the OMY-F3M follower arm. Optimized for comfort and accuracy, it’s the ideal tool for training AI systems in complex manipulation tasks through a master-slave control architecture. 

[Leader] Hardware Overview

omy-l100-en-01-1.png

Item OMY-L100
DOF 6
Reach 560 [mm]
Weight 1.46 [kg]
Operating Voltage 12 [VDC]
Joint Resolution -π(rad) ~ π(rad), -2,048 ~ 2,048 [pulse/rev]
Joint Range
Joint 1 : ±180°
Joint 2 : -70° ~ +100°
Joint 3, 4, 5, 6 : ±180°
Joint 7 : -90° ~ +60°
DYNAMIXEL-Y Specification
Joint 1, 2, 3 : XH540-W150-T
Joint 4,5,6 : XC330-T288-T
Joint 7 : XC330-T181-T
Host Interface U2D2 (USB 2.0)
Internal Communications TTL Multidrop Bus
Communication Baudrate 4 [Mbps]

 

[Leader] Layout

What is a "Leader" used for?

 

Leader arms are used in teleoperation systems to allow operators to intuitively control a robotic "follower" arm by physically guiding a mirrored device. These leader arms capture the operator’s hand and arm movements—often in six degrees of freedom (6-DOF)—and translate them into precise motion commands for the remote or virtual robot.

They are commonly used in applications such as:

- Imitation learning, where robots learn manipulation tasks by observing human demonstrations.
- Remote manipulation, such as handling hazardous materials or performing tasks in environments unsafe for humans.
- Human-robot collaboration, where the leader arm helps teach robots how to interact with objects or tools in unstructured environments.
- Surgical training and assistance, where fine motor control and real-time feedback are critical.

By providing natural, gesture-based input and real-time responsiveness, leader arms serve as powerful interfaces for training, guiding, and refining robotic behaviors in both research and real-world deployments.

 

Link

  • AI OMY - Technical Resources

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