31ZY DC Gear Motor Dual Shaft Worm Gear

  • Dual-shaft worm gear design: Provides smooth operation, low noise, and higher load capacity compared to traditional bevel gears.
  • Self-locking mechanism: Prevents motor rotation when power is off, enhancing safety and stability.
  • High torque capability: Rated torque of 140 kgf·cm, with a maximum load of 180 kgf·cm, and higher torque at larger gear ratios.
  • Copper motor core and permanent magnets: Offer stable, efficient power delivery with low power consumption and minimal heat generation.
  • PWM speed control and reversible operation: Allows precise speed adjustment and easy direction reversal by switching polarity.

17,60

This DC gear motor features a dual-shaft worm gear design, offering smooth operation with low noise and high torque. It supports both forward and reverse rotation, adjustable speed control via PWM, and features an automatic lock mechanism upon power loss. The worm gear system ensures higher load capacity than typical crossed-axis bevel gears, while the copper motor core and permanent magnets provide consistent and efficient power. Ideal for applications requiring precise control and robust performance.

Features:

  • Dual-shaft worm gear design: Ensures smooth operation and quiet performance, with better load capacity compared to traditional bevel gears.
  • Powerful self-locking function: Prevents motor rotation when power is off, enhancing safety and stability.
  • High torque: Rated torque of 140 kgf·cm and maximum load torque of 180 kgf·cm, with torque increase at higher gear ratios (e.g., 70 kgf·cm at a 670:1 ratio).
  • Copper motor core and permanent magnets: Deliver sustained power and high efficiency, with reduced power consumption and controlled temperature rise.
  • PWM speed control: Adjustable speed with a dedicated control board, offering precise control over the motor’s performance.
  • Reversible operation: Easy switching between forward and reverse by adjusting polarity.

Applications:

  • Robotics and automation systems requiring precise speed and torque control.
  • Electric vehicles, such as small robots or RC vehicles.
  • Industrial equipment requiring high torque in compact designs.
  • Conveyor systems or mechanical systems needing adjustable speed and direction control.

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