planetary reducer gearbox

Key feature:
Planetary gearbox is made by modular design, and will be mixed according to client’s request
Involuted planetary gear design
Nodular cast iron Housing to improve rigidity and antiknock
Durable bearing on low‐speed shaft, and can bear big radial load due to proportionate distribution of torque
All gears are case hardened to get high surface area hardness, which guarantee transmitting efficiency and whole gearbox’s life
Planetary gearbox has 16 models for different torque range, and each model have 1‐5 reduction stages to attain different ratios
Ratio range: 3.15‐9000
Input power: 0.25‐55KW
Permit torque rang: ≤ 800000N. M
Output speed: 0.425‐445 r/min
Structure mode: Chance for flange, foot, or shaft mounting solutions
Wide and comprehensive range of N series for commercial applications
Low speed shaft design: Cylindrical with essential, splined, hollow with shrink disc or splined hollow shaft
Rigid and precise nodular cast iron casing
Low noise operating, high manufacturing quality standard
High and reliable performance, load capacity and low speed shaft bearing

Perfect for servo applications, the P Series Inline EP Precision Gearhead feature planetary gearing and bearing choices to create them the most accurate and efficient planetary gearheads offered. Our equipment technology provides minimum use, low noise, and backlash of ≤3 arcmin. The P Series rate reducer can be attached to almost any servo motor.

For application & selection assistance, please call, fax or email us. Your application details will be reviewed by our engineers, who’ll recommend the very best solution for your application.
EP precision planetary gearboxes work well for increasing torque result of servo systems, while reducing the reflected load inertia for higher response. Offered in inline, right-position and hub designs, these best-in-class gearboxes offer high stiffness, high effectiveness, and very quiet operation. Mounting equipment is included for mating to EP motors.

These reducers are typically selected predicated on the peak cycle forces, which often happen during accelerations and decelerations. These cycle forces depend on the driven load, the quickness vs. time profile for the cycle, and any other exterior forces acting on the axis.

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worm gearbox

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