HIGH TORQUE HTDW-4438-30-NE-JC Planetary Joint Module
The HIGH TORQUE HTDW-4438-30-NE-JC is a compact planetary joint module designed for robotic arms, humanoid robots, and other space-constrained robotic systems. It integrates a motor, 30:1 reduction mechanism, encoder feedback, and communication interface into a lightweight joint actuator, providing a practical solution for building precise and responsive robotic joints.
Compact Joint Module Design
With a compact 44 × 44.9 mm form factor and a weight of only 237 g, the HTDW-4438-30-NE-JC is designed for lightweight robotic structures where installation space and joint weight are important considerations. Its integrated configuration simplifies mechanical integration into robotic arms and articulated robot platforms.
30:1 Planetary Reduction
The joint module uses a 30:1 reduction ratio to provide increased torque output in a compact package. It delivers 2 Nm rated torque and up to 10 Nm locked-rotor torque, making it suitable for robotic joints requiring controlled torque output and compact mechanical integration.
High-Resolution Encoder Feedback
The HTDW-4438-30-NE-JC features 14-bit input and output encoder resolution, supporting feedback-based motion control and accurate joint positioning. The integrated encoder system enables the module to provide real-time joint feedback for robotic motion and control applications.
CAN FD/CAN Communication
The module supports CAN FD/CAN communication and a control frequency of up to 3 kHz, providing high-speed communication for responsive robotic joint control. Its 12–50.4 V operating voltage range allows integration into a variety of robotic power systems.
Key Specifications
- Compact 44 × 44.9 mm joint module
- Weight: 237 g
- 30:1 reduction ratio
- Rated torque: 2 Nm
- Locked-rotor torque: 10 Nm
- 14-bit input and output encoder resolution
- CAN FD/CAN communication
- Control frequency: up to 3 kH
- Operating voltage: 12–50.4 V
- Response time: 140 μs
Applications
The HIGH TORQUE HTDW-4438-30-NE-JC is suitable for robotic arms, humanoid robots, compact robot joints, research platforms, and custom robotic systems that require a lightweight integrated actuator with reduction gearing, encoder feedback, and high-speed communication.
