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Cryo-readout

Readout faces the same scaling constraint as control, since every output channel from the cryostat carries its own cabling, amplification and heat load. Moving more of the readout chain to cryogenic temperatures reduces all three. The same expertise applies to cryogenic low-noise amplification and to SNSPD readout, where integrated bias and readout electronics would let detector arrays scale beyond one line per channel. If readout is the bottleneck in scaling your system, we would be glad to discuss your requirements.

Cryogenic readout electronics being designed on a screen.
Publications

Related research

29.3 A cryo-CMOS receiver with 15K noise temperature achieving 9.8 dB SNR in 10μs integration time for spin qubit readout

IEEE International Solid-State Circuits Conference (ISSCC)2024

Bagas Prabowo; Oriol Pietx-Casas; Mohammad Ali Montazerolghaem; Giordano Scappucci; Lieven M. K. Vandersypen; Fabio Sebastiano

A Compact Low-Power Cryo-CMOS Readout With Active Quenching for Superconducting Nanowire Single-Photon Detectors

IEEE Journal of Solid-State Circuits2026

Giovanni Carboni; Jad Benserhir; Maoran Li; Lin Jin; Marinus C. van der Maas; Luc Enthoven; Jan Riegelmeyer; Ryoichi Ishihara; Carlos Errando-Herranz; Masoud Babaie; Fabio Sebastiano