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Yaskawa Accessories 140122-1

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140122-1

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The Yaskawa 140122-1 robotics gear is a precision component designed for multiple applications. This part efficiently integrates with L-Axis and U-Axis systems, ensuring operational flexibility in a variety of robotics, manufacturing, milling, and factory automation settings.

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Technical specifications for 140122-1

ManufacturerYaskawa
Product TypeRobotics Gear
Product LineAccessories
Part Number140122-1
PinionSupported
Straight Tooth GearYes
L-AxisSupported
U-AxisSupported
Spare Part/AccessoryYes
Robotics ApplicationsSupported
Advanced Manufacturing ApplicationsSupported
Milling ApplicationsSupported
Factory Automation ApplicationsSupported
Operating Temperature0 to 40 degrees Celsius
Storage Temperature0 to 50 degrees Celsius
Max. Operating Humidity80% (non-condensing)
Max. Storage Humidity80% (non-condensing)
Max. Operating Altitude1000m above sea level

The robotics gear designated as Yaskawa part number 140122-1 serves as a significant component in robotic systems. It is engineered to support pinion engagement and features a straight tooth configuration. This design promotes reliability in various applications, fulfilling requirements across robotics, advanced manufacturing, milling, and factory automation sectors.

Capable of being utilized with L-Axis and U-Axis setups, this gear exemplifies versatility, making it a practical solution for many high-performance environments. Operating efficiently in temperatures ranging from 0 to 40 degrees Celsius, it is suitable for typical industrial conditions. The component also tolerates humidity levels up to a maximum of 80%, ensuring effective operation without condensation risk.

For storage purposes, this robotics gear can handle temperatures up to 50 degrees Celsius. Additionally, it is rated for installation at altitudes no higher than 1000 meters, maintaining consistent functionality even in elevated locations. As a spare part or accessory, the gear proves to be an essential addition for maintaining operational efficiency across various robotic systems.