Product 2025

Planetary Gearbox - Right Angle (Taiwan)

SESAME Planetary Gearboxes, 100% Made in Taiwan

EXHIBITOR

SESAME MOTOR CORP.
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Description

SESAME right-angle planetary gearboxes are high-performance gear transmission solutions designed to change the direction of power flow while maintaining the high torque and compact efficiency of a traditional planetary gearboxes. The input and output shafts are positioned at a 90-degree angle through one-piece housing allowing for more versatile machine layouts in space-constrained environments.

These gearboxes combine the space-saving benefits of right-angle gearing with the high torque density, efficiency, and precision of a planetary gear system, making it ideal for applications in automation, robotics, and machinery where footprint and layout flexibility are critical.

Key Features

  • Right-Angle Output Configuration
    Enables power transmission in tight spaces by redirecting torque 90 degrees, optimizing system design and space usage.
  • High Torque Output
    Planetary gearing allows for superior torque-to-size ratio, even with the right-angle design.
  • Compact and Space-Efficient
    Ideal for machinery layouts requiring directional changes in power transmission without compromising performance.
  • High Mechanical Efficiency
    Delivers efficiency levels up to 95% with minimal energy loss during operation.
  • Low Backlash Options
    Available with precision gearing for applications requiring accurate positioning and motion control.
  • Durable and Long-Lasting
    Constructed with hardened steel gears, precision-ground surfaces, quality bearings and synthetic lubricant for maintenance-free service life and reliability.
  • Quiet and Smooth Operation
    One-piece right angle housing with precision gearing ensures low noise and vibration performance.
  • Flexible Mounting and Motor Compatibilitys
    Supports various motor interfaces and mounting orientations for easy integration into different systems.
  • Wide Gear Ratio Range
    Offers multiple reduction stages and ratios to meet diverse speed and torque requirements.

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