More
efficiency in every situation
In six single-stage and fourteen two- and three-stage sizes,
the helical gearmotors by EP ensure an optimum ratio between power
and space requirements.
Your advantages
- High power density
- Long service life
- R37 ... R167 Reduced backlash option
- RM series, specially designed for agitating applications
The tried and tested modular concept and our strict quality
criteria allow EP to provide a diverse range of torques and gear
ratios with incomparably finely tuned gradings. This exceptional diversity sets
new standards in this field of drive engineering.
Available versions
- Single-stage or multi-stage
- Foot- or flange-mounted
- Foot- and flange-mounted
- Flange-mounted with extended bearing housing
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For high output speeds, the exclusively single-stage
gear units RX57 to RX107 offer compact solutions for your system
design. |
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Gear unit reduction ratio |
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36 ... 830 (320 ... 7350) |
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0.12 ... 45 (0.16 ... 60)
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R Series (two- and three-stage) |
The complete program of helical gearmotors provides the
optimum size and power solution for every drive task. And for operators
with a "weight-watching" issue, our multi-stage gear units provide have a
particularly special solution. Thanks to their die-cast aluminum design,
the models R07, R17 and R27 are three particularly efficient lightweights
– ideal as satellite drives and for use in light machine constructions.
Reduced backlash helical gear units are also available for particularly
precise requirements. |
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Gear unit reduction ratio |
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Multi-stage gear unit reduction ratio |
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31 ... 18000 (270 ... 159310) |
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0.09 ... 160 (0.1 ...
215) |
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RM gearmotors with extended output bearing hub are a
special type of helical gear unit. They were designed especially for
agitating applications and allow for high overhung and axial loads and
bending moments. The remaining data corresponds to that of standard
helical gearmotors. |
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Gear unit reduction ratio |
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Multi-stage gear unit reduction ratio |
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270 ... 18000 (2390 ... 159310) |
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0.12 ... 160 (0.16 ...
214.56) |