Precision Gears & Actuators

Spinea TwinSpin and DriveSpin – high-precision gears and rotary actuators with low backlash, compact design and long service life for advanced industrial applications.

Spinea TwinSpin and DriveSpin – High-precision gears and actuators

Spinea TwinSpin and DriveSpin represents the next generation of backlash-free transmission solutions and rotary actuators for industrial applications that require precise positioning, high precision and long service life.

 

TwinSpin – Backlash-free cycloid gears

TwinSpin backlash-free cycloidal gears are based on a patented design with integrated radial and axial bearings, which enables direct power transmission without additional bearingsThese switches can absorb both radial and axial forces and is used directly in, for example, robot axes and manipulatorsCompared to traditional planetary gears, TwinSpin has much lower clearance, standard <1 arcmin, and maintains high precision over a long service life.

 

Main advantages:

  • Extremely low backlash and high precision

  • Compact and integrated design

  • High torque capacity

  • Long life and reliability

  • Direct use in robotics and advanced machinery

 

DriveSpin – Compact rotary actuators

DriveSpin series combines TwinSpin reduction gears with servo motors and feedback system for high precision rotary actuatorsThe series offers modular (Modular), hollowshaft (DSH), flat (DSF) and standard (DS) solutions with high dynamics, torque and kinematic accuracy. DriveSpin actuators are ideal for robotics, CNC machines, medical technology, defense industry and flight simulation.

 

Main advantages:

  • High dynamics and torque capacity

  • Low lost motion

  • Integrated radial-axial bearing systems

  • Compact design with minimal axial length

  • Flexible integration with the customer's control system

 

Spinea TwinSpin and DriveSpin offers together high-precision solutions for advanced applications, where compact design, low backlash, high dynamics and long service life are crucial for optimal performance.

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