Australian Engineered

Cryogenic Interconnect Solutions

High-Fidelity Interconnects for Dilution Refrigerator Environments

XGY Tek delivers highly customised cryogenic connectivity for quantum computing hardware — engineered to eliminate thermal fluctuations, electromagnetic interference, and magnetic field disruption within dilution refrigerators.

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Cryogenic Interconnect Solutions

Core Specifications

Engineered for extreme environments — from room temperature to millikelvin, with uncompromised signal fidelity.

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Temperature Range

10 mK – 300 K

Max Frequency

40 GHz

Non-Magnetic Connectors

SMA / 2.92 mm K, B < 0.1 G

High-Density Assembly

Multi-channel, high-throughput

Materials

NbTi, CuNi, Stainless Steel

Vacuum

Hermetic Cryostat-Grade

Solving Cryogenic Interconnect Challenges

Ensuring the stable operation of quantum computing hardware requires overcoming critical challenges including thermal fluctuations, electromagnetic radiation, and magnetic field interference. XGY Tek provides highly customised connectivity solutions to address these issues within dilution refrigerators and cryogenic test environments.

Whether increasing interconnect density, miniaturising connector footprints, or achieving multi-channel integration, our products deliver reliable, future-oriented support for superconducting systems and quantum processors.

Product Range

  • Semi-Rigid Cable Assemblies — Specialty cryogenic cables with comprehensive electromechanical performance for superconducting systems
  • Flexible Cables — Optimised for compact and confined space applications within cryostat stages
  • High-Density Assemblies — Multi-channel assemblies for high-throughput quantum computing systems
  • Hermetic Flanges — High-precision flanges ensuring vacuum integrity in dilution refrigerators
  • Non-Magnetic Connectors — High-performance SMA / 2.92 mm K connectors developed specifically for quantum hardware
  • Multi-pin Feedthroughs — High-density signal feedthroughs for vacuum chambers and cryostat walls

Typical Applications

  • Superconducting Qubit Systems — Low-loss signal routing between room-temperature electronics and qubit chips
  • Dilution Refrigerator Integration — Multi-stage cabling from 300 K to base temperature stages
  • Quantum Error Correction Research — Phase-matched, high-density interconnects for large qubit arrays
  • Cryogenic Semiconductor Characterisation — Precision connectivity for low-temperature device testing

Key Advantages

  • Temp Range Qualified from 10 mK to 300 K
  • Shielding Non-magnetic construction (B < 0.1 G)
  • Density High-density SMP/SMPM multi-channel
  • Loss Ultra-low insertion loss up to 40 GHz

Performance Highlights

  • Thermal Management Low thermal conductivity materials (NbTi, CuNi, SS) minimise heat load.
  • Quantum Fidelity Phase-matched multi-channel arrays preserve coherent state signals.
  • Vacuum Integrity Hermetic flanges rated for cryostat-grade vacuum environments.

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See the Cryogenic Interconnect Solutions in action. Our engineers provide 1-on-1 consultations for your specific cryogenic testing needs.

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Product Specifications

Product / Parameter Specification
Temperature Range 10 mK – 300 K
Semi-Rigid Cable Assembly Full electromechanical performance
Flexible Cable Compact / confined space optimised
High-Density Assembly Multi-channel, high-throughput
Hermetic Flanges Cryostat-grade vacuum integrity
Non-Magnetic Connectors SMA / 2.92 mm K, B < 0.1 G
Multi-pin Feedthrough High-density vacuum feedthrough
Max Frequency 40 GHz

* Specifications are subject to change without notice. Contact XGY Tek for full technical datasheet.

Extreme Environment Engineering

Every XGY Tek cryogenic interconnect is validated across the full thermal gradient — from 300 K room temperature interfaces to 10 mK base stages in dilution refrigerators.

Cryogenic Qualified Non-Magnetic Construction Hermetic Vacuum Sealing High-Density SMP/SMPM Custom Configuration

Downloads & Resources

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Need a custom cryogenic interconnect solution?

XGY Tek engineers work directly with quantum hardware teams to design interconnects for specific dilution refrigerator architectures and qubit system requirements.