alpha Advanced Line

TPM+ HIGH TORQUE

Servo actuator

The TPM+ HIGH TORQUE servo actuator offers 50% more torque and higher performance for shorter cycle times. An additional planet significantly increases the torsional rigidity. Fusion of the individual components into a compact design enables flexible installation options.

22 – 220

Ratio

230 – 950 Nm

Max. torque

≤ 1 arcmin

Backlash

More precision

The high torsional rigidity and ample torque reserve ensure consistently stable drive control in the event of disruptive forces. The reliable servo actuator guarantees maximum precision for your work

Small footprint

The short installation length of the servo actuators helps to make the design of your machine and system more compact

Higher efficiency

The low moment of inertia and high power density result in improved utilization of the energy supplied

Technical details

Product typeTPM+ HIGH TORQUE
Ratio22 – 220
Number of sizes3
Max. backlash c)jt≤ 1 arcmin
Max. acceleration torqueT2b950 Nm
Max. output speedn2Max220 rpm
Torsional rigidityCt21730 Nm/arcmin
Max. tilting momentM2KMax1335 Nm
Operating voltageUD320 V; 560 V
c) In relation to reference sizes
Holding brake
Output shape
Flange
System output
Characteristic
Food-grade lubrication a) b)
Corrosion-resistant a) b)
System solutions
Linear system (rack / pinion)
Accessory (for more information, see the relevant product pages)
Coupling
Power cable, signal cable, hybrid cable
a) Performance reduction: Technical data available on request
b) Please contact WITTENSTEIN alpha
Document name Document type Language Downloads

Technical data / Dimension sheets TPM+

Brochure /Catalog American English

Technical data (CAD, dimension sheet, data sheet) TPM+ HIGH TORQUE

CAD / CAE Neutral

Contact us

Would you like to learn more about our solutions?
We would be happy to advise you—personally, competently, and tailored to your requirements.

Compact power density

High torsional rigidity and torque reserve thanks to fourth planet gear.
Very short overall length thanks to high integration of individual components.
Robust bearings with long service life
External surfaces with smooth design for reduced susceptibility to contamination.
High power density of motors with low cogging.