Quantum & Cold-Atom Hardware

UHV systems, ion-trap mounts, dilution-fridge brackets, and cold-atom hardware in titanium and specialty alloys.

Relevant Work

Component work where optical alignment, piezo motion, thermal behavior, and UHV material requirements overlap. The piezo subassembly heritage informs how we approach mounting stiffness, thermal paths, and material cleanliness for the same customer base.

Quote Inputs

  • Non-magnetic material options for ion-trap and trapped-atom environments.
  • Thermal-management features: mass, fin patterns, contact paths, and cold-side mounting.
  • Low-outgassing assembly requirements, cleanliness notes, and packaging constraints.

Parts We Quote

Representative scope for drawing-based RFQs.

Close-up of a precision metal measurement instrument with a digital readout

Ion-Trap Mounts

UHV-compatible titanium mounts for trapped-ion experiments and quantum-computing hardware.

White and blue scientific instrument on a clean white surface

Dilution-Fridge Brackets

Structural brackets and mounting hardware for cryogenic experiment platforms.

Black and gray metal scientific apparatus inside a laboratory

UHV Systems

Chamber assemblies and adjacent titanium hardware for cold-atom experiments.

Laboratory workstation with arranged scientific apparatus and instruments

Optical-Bench Hardware

Bridges, posts, and breadboard mounts where titanium offers a thermal or magnetic advantage.

Ion-trap mount or fridge bracket?

Drop the ion-trap mount, cryo bracket, or chamber drawing into an RFQ. We will come back with material, cleanliness, and lead-time assumptions in the quote.

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