DMH6215 BLDC Robotic Actuator with Encoder

  • High-torque integrated BLDC motor with onboard driver and CAN communication.
  • Compact 24V brushless motor featuring real-time feedback and advanced protection.
  • DMH6215 motor delivers precise low-speed control with robust thermal and current safeguards.
  • Integrated motor and driver solution ideal for robotics and automated production.
  • Reliable, space-saving BLDC motor with Hall encoder and multiple control modes.

74,8987,11

The DMH6215 Robotic Actuator is an integrated brushless DC motor featuring an onboard driver designed for high-precision, reliable motion control in compact spaces. This all-in-one robotic actuator combines a high-torque motor and driver, significantly reducing wiring complexity and saving installation space. With CAN bus communication, the DMH6215 robotic actuator provides real-time feedback on speed, position, torque, and temperature for precise and intelligent control. Robust protection functions ensure stable operation and long service life, making it ideal for demanding low-speed, high-torque applications with versatile control modes including MIT, speed, and position control.

DMH6215 BLDC Robotic Actuator with Encoder

Key Features

  • Compact integrated motor and driver design for space-saving and simplified installation
  • Rated voltage of 24V with rated torque of 1 N·m and peak torque of 2 N·m
  • Supports CAN bus communication for real-time feedback on speed, position, torque, and temperature, essential for robotic actuators
  • Multiple control modes: MIT mode, speed mode, and position mode, offering flexible operation
  • Comprehensive protection features including over-temperature, over-voltage, under-voltage, over-current, and communication loss safeguards
  • Hall sensor encoder for reliable position and speed sensing in precision applications
  • Firmware upgrade support via CAN interface for easy updates
  • Designed for sustained low-speed, high-torque performance with durability and reliability, ideal for industrial robotic actuator use

Applications

  • Industrial and collaborative robotic arms requiring precise joint control
  • Automated production lines for assembly, material handling, and testing
  • CNC machines and precision manufacturing equipment
  • Medical devices and precision instruments demanding compact, accurate motion
  • Automated warehousing and logistics systems including AGVs
  • Aerospace and defense applications with stringent reliability and performance requirements

Specifications

Parameter Category Parameter Value
Motor Parameters Rated Voltage 24 V
Rated Current 2.5 A
Peak Current 4.3 A
Rated Torque 1 N·m
Peak Torque 2 N·m
Rated Speed 120 rpm
Max No-load Speed 320 rpm
Motor Characteristics Gear Ratio 1:01
Number of Pole Pairs 14
Phase Inductance 2000 µH
Phase Resistance 2.5 Ω
Structure and Weight Outer Diameter 68 mm
Height 44.5 mm
Motor Weight Approx. 360 g
Encoder Encoder Type Hall sensor
Communication Control Interface CAN
Parameter Tuning Interface CAN
Control Modes Control Modes MIT mode, Speed mode, Position mode
Control and Protection Driver Over-temperature Protection 120°C; motor exits “enable mode” upon overheating
Motor Over-temperature Protection User configurable; recommended ≤100°C; exits “enable mode”
Motor Over-voltage Protection User configurable; recommended ≤32V; exits “enable mode”
Communication Loss Protection Auto-exit “enable mode” if CAN commands lost during set period
Motor Over-current Protection User configurable; recommended ≤9.8A; exits “enable mode”
Motor Under-voltage Protection Exits “enable mode” if supply voltage <15V

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