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FANUC Alpha Series A97L-0118-0950

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A97L-0118-0950

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The FANUC A97L-0118-0950 is a reducer gear designed for use in robotics systems within the Alpha Series of Fanuc products. Its primary function is to lower rotational speed while simultaneously boosting torque in robotic joints.

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Technical specifications for A97L-0118-0950

ManufacturerFANUC
Product LineAlpha Series
Part NumberA97L-0118-0950
Weight20.63 lbs (9.36 kg)
Description of ModuleReducer Gear
ApplicationUsed in Fanuc robotics systems
MaterialHigh-strength steel alloys
FunctionReduces rotational speed and increases torque in robotic joints
CompatibilityDesigned for specific Fanuc robot models
Ambient Storage Temperature-25 to 55 °C
Ambient Operating Temperature0 to 55 °C
Relative Humidity5 to 95% without condensation
With Yellow BorderYes

The A97L-0118-0950 module by FANUC belongs to the Alpha Series and serves as a reducer gear in their robotics systems. This gear is constructed from high-strength steel alloys, ensuring durability and longevity under operational stresses. With a weight of approximately 20.58 lbs. (9.34 kg), it is robust yet manageable for integration into robotic assemblies.

Designed to reduce rotational speed while enhancing torque in robotic joints, the module plays a crucial role in the functionality of various Fanuc robots. Compatibility is a key feature, as this component is tailored for specific Fanuc robot models, ensuring optimal performance. The environmental tolerances for this gear include an operational temperature range of 0 to 55 °C and storage capabilities from -25 to 55 °C, making it suitable for diverse working conditions.

Furthermore, the reducer gear functions effectively within a relative humidity span of 5 to 95% without the risk of condensation, which is vital for maintaining reliability in various settings. The presence of a yellow border on this part helps in easy identification and categorization within assembly lines. In summary, the FANUC A97L-0118-0950 reducer gear is engineered to meet the precise demands of robotic systems, enhancing both speed management and torque application.