120N.m Integrated QDD Motor Module

  • Three-in-one design – This integrates the motor body, reducer, and driver (with dual encoder feedback) into a compact unit. This design can save installation space and improve system integration.
  • Peak torque of 120N.m – The peak torque refers to the maximum instantaneous torque output by the motor, which is crucial for applications that require high power, such as robotics and automation equipment.
  • Torque density of 85.72N.m/Kg – Torque density represents the torque output per unit mass, which is an important indicator of motor compactness. This motor unit has a very high torque density, meaning it can output a large torque even with a relatively small volume and weight.
  • High-performance motor control algorithms – Advanced motor control algorithms are used to achieve more accurate and efficient torque/speed control, improving system responsiveness and stability.
  • Closed-loop temperature control – It has temperature monitoring and heat dissipation control capabilities, which can prevent motor overheating and ensure long-term high-power operation reliability.

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120N.m Integrated QDD Motor Module

 

This integrated motor body, reducer, and driver (with double encoders) unit appears to be designed for applications requiring precise torque control, compact size, and high performance. Let’s break down the key features:

Integrated Design

Combining the motor body, reducer, and driver into a single unit offers several advantages including compactness, easier installation, and potentially lower overall cost.

Double Encoders

The inclusion of double encoders likely provides redundancy and improves accuracy in position and speed feedback, which is crucial for precise control applications.

Peak Torque

The peak torque of 120 Nm indicates that this system is capable of delivering high levels of force when needed, which is important for applications requiring high torque output.

Torque Density

The torque density of 85.72 Nm/Kg suggests that this system delivers a relatively high amount of torque per unit of weight, indicating efficiency and compactness.

High-Performance Motor Control

This feature likely involves advanced control algorithms and possibly feedback mechanisms to optimize motor performance, efficiency, and response time.

Closed-Loop Temperature Control Algorithms

Temperature control is essential for preventing overheating and ensuring the longevity of the motor system. Closed-loop algorithms can monitor and adjust temperature in real-time to maintain optimal operating conditions.

Overall, this three-in-one motor system seems well-suited for demanding applications that require precise torque control, compact design, and high performance, such as robotics, CNC machines, or industrial automation systems.

 

 

QDD motor module Servomotor

Weight 1.5 kg

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