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Scanner35-xy.Ultra.HV

Opto-Mechanics · Cryogenic Piezo Stages - Closed-loop Ultra scanners

Scanner35-xy.Ultra.HV

Closed-loop Ultra XY scanner; 35 mm cryogenic scanner profile; integrated high-linearity capacitive displacement sensors with sub-nanometer resolution class; high-vacuum HV environment grade; use with MC-ArchimedesLT.03.Ultra controller.

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Datasheet (PDF) ↗CAD Model (STEP) ↗

Specifications

Active axesX Y
Footprint × hight35 x 35 x 14.5 mm
Mass65 g
Work EnvironmentDefault: 1.4 K~ 400 K, 1e-7 mbar, 35 Tesla
MainbodyDefault: Pure Ti, ULT: BeCu
WiresPhosphor Bronze Twisted Paired Wires, 20cm
Pin materialsPolyster(glass fiber filled), BeCu
Pins number2 pins for each axis
Travel range @300 K100 x 100 um
Drive VoltageMax. 75 V @300 K, Max. 180 V @4 K
Max. Load500 g
Capacitance @300 K8 uF
Resolution2 nm
Repeatibility<10 nm

Applications

Quantitative imaging at base temperature

Capacitive feedback ties image pixels to real distances rather than to applied voltage.

Cryogenic AFM and STM raster

Deliver linear, drift-corrected scan under a probe head operating below 4 K.

Repeat-visit measurement

Return to the same coordinate across thermal cycles and long measurement campaigns.

Specifying this part

What this model has to survive, and what it needs around it

What the capacitive loop buys you

An integrated capacitive displacement sensor closes the loop at 0.5 nm and lets the controller compensate thermal drift, piezoelectric creep and self-heating actively. Worth the extra wiring only if the measurement holds position for hours; if the sample is re-found optically each run, open-loop costs less heat.

Reading the HV / UHV / ULT suffixes

The suffix sets the environmental preparation, not the mechanics: HV, UHV, ULT and UHV.ULT variants differ in materials, cabling and bake compatibility. Match it to the chamber the stage will live in — the mechanical specification is identical across them.

Heat load at the cold plate

Stick-slip inertial drives dissipate energy per step and draw no holding current once stopped, so the steady-state load on the mixing chamber is the wiring loom rather than the motor. Anchor the loom at each temperature stage and thermalise the moving body with an FTC copper braid.

Non-magnetic construction

Titanium bodies and BeCu fasteners throughout, rated for operation to 35 T and down to 30 mK with the .ULT option, at 2 × 10⁻¹¹ mbar with .UHV. A single steel screw substituted at installation is enough to compromise a high-field assembly.

Full series comparison, controller pairing and mounting hardware on the cryogenic piezo stages overview, or work through the selection with the configurator.