High Vacuum Motorized Linear Stage X-LSM050A-SV2

Specifications

Number Of Axes: One
Vacuum Grade: 10 mbar
Vacuum Compatibility: 10-6 Torr
Travel Range: 25, 50, 100, 150, 200 mm
Load Capacity: 10 kg
Speed: Up to 100 mm/s
Built-in Controller: Yes
Maximum Speed: 24 mm/s
Minimum Speed: 0.000029 mm/s
Speed Resolution: 0.000029 mm/s
Communication Protocol: Zaber ASCII (Default), Zaber Binary
Vertical Runout: < 8 µm
Maximum Current Draw: 350 mA
Power Supply: 24-48 VDC
Motor Rated Current: 800 mA/phase
Inductance: 3.5 mH/phase
Default Resolution: 1/64 of a step
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Features


  • Vacuum Compatibility: Suitable for environments with vacuum levels up to 10-6 Torr.

  • Travel Options: Available in travel lengths of 25, 50, 100, 150, and 200 mm to suit various application needs.

  • Load Capacity: Capable of handling loads up to 10 kg.

  • Performance: Achieves speeds up to 100 mm/s and a peak thrust of 35 N.

  • Built-in Controller: Integrated controller allows for easy daisy-chaining with other Zaber products.

  • Simplified Wiring: Only 4 feedthrough wires are needed to control all units in a daisy-chain via serial port (using an X-PIB adaptor).

  • Compact Design: With a height of only 21 mm, it's ideal for applications requiring a low profile.

  • Easy Integration: Connects to RS-232 or USB ports, and shares power across daisy-chained devices.

  • High Precision: Features a default microstep size of 0.047625 µm, with unidirectional accuracy of 15 µm and repeatability of less than 1 µm.

  • Durable Build: Constructed with vacuum-compatible materials to minimize outgassing and ensure fast pump-down times.

  • Versatile Communication: Supports Zaber ASCII (Default) and Zaber Binary protocols.

  • Power Requirements: Operates with a standard 24 V or 48 V power supply.

  • Motor Specifications: Equipped with a 2-phase stepper motor with 200 steps per revolution.

  • Precision Lead Screw: Utilizes a precision lead screw for reliable mechanical drive.

  • Low Power Consumption: Maximum current draw of 350 mA ensures efficient operation.

Applications


  • Vacuum Motion Systems: Ideal for precision positioning within vacuum chambers requiring low outgassing.

  • Optical Alignment: Suitable for laser optics, beam steering, and fiber alignment in research labs.

  • Semiconductor Manufacturing: Facilitates high-precision wafer or component positioning in vacuum environments.

  • Metrology Systems: Enables accurate sample scanning and measurement in compact setups.

  • Automation and Robotics: Integrates easily into automated assemblies requiring linear motion in vacuum conditions.