//APPLICATIONS

Astrophysics Detectors

Cryogenic astrophysics instruments combine highly sensitive detectors with strict constraints on thermal load, available space, mass, and readout complexity. As detector arrays grow, the cryogenic wiring must scale without consuming an increasing share of the system’s thermal and mechanical budget.

With its low thermal load, lightweight construction, and compact multi- channel architecture, Cri/oFlex® provides cryogenic I/O for detector systems ranging from laboratory and ground-based instruments to space-oriented applications.

FEED

READOUT

//SPECIFICATIONS

Application highlights

Flexible planar cabling reduces wiring volume and provides a practical approach for instruments where space and mass are tightly constrained.

Minimized thermal load and efficient thermal anchoring offer scalability and reliability

Cri/oFlex® can support cryogenic I/O architectures for MKIDs and TES detectors

// I/O OVERVIEW

I/O overview

Scaling cryogenic detector arrays requires I/O architecture that adds channels without proportionally increasing thermal load, wiring volume, and system complexity.

Cri/oFlex® combines flexible multi-channel routing with low thermal load and compact interfacing to support scalable cryogenic detector readout. The platform is suited to MKID and TES systems and can be integrated into demanding cryogenic instrumentation for laboratory, ground-based, and space-oriented applications.

Cabling set-up for astrophysics detector set-ups

// LINE CONFIGURATIONS

Optimized configurations,
optimal transmission

Microwave Drive Line

For Feed and Fast line functions within spin qubit systems

Readout line

Transfer signals from the quantum device back to the control electronics

// APPLICATIONS

Quantum and Cryogenic
compute

Superconducting qubits

Scalable I/O systems with superconducting lines to minimize heat load.

Semi-conductor Spin qubits

High-density, bus-like I/O systems for spin qubit applications

Photonics

Small form factor I/O with minimal transmission distortion tailored for photonics applications

Ready to scale?

Our team of quantum I/O engineers will design the right
solution for your system. Reach out to get started.