Scanner55-xy: Ultra-High Load Piezoelectric Scanner Stage for Low Temperature & High Vacuum Environments

Specifications

Axes Of Motion: One
Travel Range: 0.12 mm
Load Capacity (Horizontal): 0.5 kg
Load Capacity (Vertical): Not Specified
Max Speed: Not Specified
Weight: 0.15 kg
Guiding Mechanism: Other
Voltage Requirement: Other
Capacitance @300 K: 7 uF
Resolution: 2 nm
Linearity Error: Typical ~ 0.1 %
Dimensions (WxHxD): 55 x 55 x 15 mm
Temperature Range: 1.4 to 400 K
Vacuum Compatibility: 2E-7 mbar (UHV version: 2E-11 mbar)
Max Magnetic Field: 18 Tesla
Drive Voltage: Max 75 V @300 K, Max 180 V @4 K
Materials (Main Body): Pure Ti, BeCu
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Features


  • Compact Design: The Scanner55-xy is designed to be compact with dimensions of 55*55*15 mm, making it suitable for a variety of applications where space optimization is crucial.

  • Compatibility with Extreme Conditions: It is compatible with ultra-high vacuum conditions (2 E-11 mbar) and very low temperatures (30 mK), allowing for its use in demanding environments and specialized applications.

  • Non-Magnetic Materials: The stage is composed of pure Ti and BeCu, ensuring its compatibility with magnetic fields up to 18 Tesla and preventing magnetic interference.

  • High Load Capacity: With the ability to support high loads up to 500g, this scanner stage is ideal for applications requiring the handling of heavier components or materials.

  • Extended Travel Range: It offers a substantial travel range of 120*120 um at 300 K, facilitating movements over extended distances and making it versatile for various tasks.

  • High-Resolution Position Sensing: Equipped with position sensing capabilities up to 2 nm resolution, the Scanner55-xy guarantees precise and accurate movements for critical applications.

Applications


  • Cryogenic Research: Ideal for He3 and dilution cryogenics systems, with operation down to 30 mK

  • High-Vacuum Environments: Suitable for experiments in ultra-high vacuum (UHV) environments with pressures down to 2E-11 mbar

  • Nanotechnology: Excellent for precision positioning of nanoscale components with up to 2 nm resolution

  • Magnetic Field Research: Works in magnetic environments up to 18 Tesla, ideal for high-field studies

  • Precision Motion Control: Essential for experiments that require high-accuracy and repeatable motion control