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RobStride 00 QDD 14Nm Integrated Actuator Module High-Performance Robotics Joint Motor

Original price was: $159.00.Current price is: $79.50.

SKU: BVHB1865362610 Category:

Overview

The RobStride 00 QDD 14Nm Integrated Actuator Module combines a motor, planetary reducer, and driver in a single compact unit, delivering peak torque of 14Nm with a 10:1 reduction ratio and a lightweight 310g design. Equipped with dual high-precision magnetic encoders, advanced FOC control, and closed-loop temperature algorithms, this actuator ensures exceptional efficiency, stability, and accuracy for robotics and automation applications.

Designed for versatile integration, it supports a wide voltage range (2460V), bidirectional operation (CW/CCW), and high load endurance. The actuators robust construction, Class B insulation, and CE certification guarantee reliable performance in demanding environments.

Key Features

  • Integrated 3-in-1 Design Motor, planetary gearbox, and driver in one unit for easy installation and reduced wiring complexity.

  • High Torque & Efficiency Peak torque of 14Nm, rated torque of 5Nm, with smooth FOC control.

  • Precision Control Dual 14-bit magnetic encoders for accurate positioning and velocity control.

  • Lightweight & Compact Only 310g, with dimensions 57 57 51 mm.

  • Durable & Reliable Wide temperature range (-20C to 50C operating, -30C to 70C storage) and 585% humidity tolerance.

  • High-Speed Communication Supports CAN Bus with a 1 Mbps baud rate.

  • Multi-Industry Applications Compatible with robotics, AGVs, exoskeletons, automation equipment, and consumer devices.

Technical Specifications

Mechanical Specs

Parameter Value
Size 57 57 51 mm
Weight 310g 10g
Poles 28
Phases 3
Drive Method FOC
Reduction Ratio 10:1

Standard Operating Conditions

Parameter Value
Rated Voltage 48V
Voltage Range 2460V
Rated Load (CW) 5Nm
Running Direction CW / CCW
Operating Temp 25C 5C
Temperature Range -20C ~ 50C
Storage Temperature -30C ~ 70C
Humidity Range 585% non-condensing
Standard Humidity 65%
Insulation Level Class B

Electrical Specs

Parameter Value
No-load Speed 315 rpm 10%
No-load Current 0.5 Arms
Rated Load Speed 260 rpm 10%
Rated Load Phase Current 4.7 Apk 10%
Peak Load 14 Nm
Max Load Phase Current 15.5 Apk 10%
Back-EMF 9.5 Vrms/kRPM 10%
Torque Constant 1.48 Nm/Arms
CAN Bus Baud Rate 1 Mbps
Encoder Type Magnetic Encoder
Encoder Resolution 14-bit (Single Absolute)
Encoder Count 2
Wiring 1 in / 1 out

Applications

  • Robotics Quadruped and humanoid robots, robotic arm joints, AMR & AGV drive units.

  • Consumer Products Electric vehicle and scooter power steering units, e-bike assist systems, exoskeleton joints, lawn mowing robots, swimming pool cleaning robots.

  • Automation Control Automated production equipment, mobile automation, robotic gates, and more.

Certifications

  • CE Certified Ensuring compliance with European safety and performance standards.

This RobStride 00 QDD 14Nm Integrated Actuator Module is ideal for engineers and developers seeking a compact, high-torque, precision joint actuator for advanced robotics and automation projects.

Details

RobStride QDD Motor: 14N.m peak load, 10:1 reduction ratio, 310g weight, magnetic encoder.

Integrated High-Performance QDD Actuator. Motor, reducer, and driver are 3 in 1, with peak torque of 14Nm, weighing 310g. Offers excellent performance and easy development.

RobStride QDD Motor for robotics: quadruped, humanoid joints, robotic arms, AMR, AGV drive units.

RobStride QDD Motor for electric vehicles, scooters, e-bikes, exoskeletons, lawn robots, pool cleaners.

QDD motor for automation in production, mobile equipment, and gates.

RobStride QDD Motor: 57x57x51 mm, 310g, 28 poles, 3 phases, FOC drive, 10:1 reduction. 48V, 24-60V range, 5Nm load, CW/CCW, -20 to 50C, 65% humidity. 315rpm no-load, 260rpm rated, 4.7A peak current, 1Mbaud CAN bus.

Product performance characteristics include torque-speed and overload operation data. Torque declines from 15 Nm at low speeds to about 2 Nm at high speeds. Operation time drops quickly as load exceeds 6 Nm, stabilizing near zero at higher loads. These details illustrate the motors efficiency and operational boundaries under various conditions.

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