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A Miniature 10MHz-3GHz Sub 1-dB NF Cryogenic Inductorless Noise-Canceling Low-Noise Amplifier for Qubit Readout
Conference paper

A Miniature 10MHz-3GHz Sub 1-dB NF Cryogenic Inductorless Noise-Canceling Low-Noise Amplifier for Qubit Readout

Mahesh Kumar Chaubey, Yeke Liu, Po-Chang Wu, Hann-Huei Tsai and Shawn S.H. Hsu
IEEE MTT-S International Microwave Symposium Digest, Vol.2023-June, pp.668-671
2023

Abstract

Cryogenic LNA Current reuse inductorless Noise canceling Quantum computing Qubits Self forward body bias Radiation Condensed Matter Physics Electrical and Electronic Engineering
This paper presents an inductorless wideband cryogenic low-noise amplifier (LNA) by the current reuse feed-forward noise canceling technique in 40-nm CMOS. The proposed LNA consists of a complementary input stage with self-forward body bias (SFBB) for low-power operation, which can also compensate for Vth reduction and improve rout under cryogenic temperature. A noise-canceling stage is used to suppress the channel noise, achieving a sub-1dB noise figure at room temperature. The LNA attains a measured gain (S21) of 25.6 dB with a minimum noise figure of 0.63 dB at 1.8 GHz. At 4K, it shows a measured gain of 29 dB with a 3-dB bandwidth across 10MHz3GHz under a power consumption of 19.4 mW. The circuit only occupies a core area of 0.018 mm2.

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