This paper presents a review of 77-GHz down-converter solutions for automotive radar sensors in 28-nm FD-SOI CMOS technology. A comparison of two different topologies based on common source (CS) and common gate (CG) stages is reported. The comparison is carried out at a power supply as low as 1-V and at 15-mA current consumption. CS-based and CG-based down-converters achieve a conversion gain of 27.5 and 21.3 dB over a -3-dB bandwidth of 16 GHz and 22 GHz, respectively, while exhibiting a noise figure of 7.8 dB and 9.1 dB.

Down-converter solutions for 77-GHz automotive radar sensors in 28-nm FD-SOI CMOS technology

NOCERA, CLAUDIO;Ragonese, Egidio
;
Palmisano, Giuseppe;
2018-01-01

Abstract

This paper presents a review of 77-GHz down-converter solutions for automotive radar sensors in 28-nm FD-SOI CMOS technology. A comparison of two different topologies based on common source (CS) and common gate (CG) stages is reported. The comparison is carried out at a power supply as low as 1-V and at 15-mA current consumption. CS-based and CG-based down-converters achieve a conversion gain of 27.5 and 21.3 dB over a -3-dB bandwidth of 16 GHz and 22 GHz, respectively, while exhibiting a noise figure of 7.8 dB and 9.1 dB.
2018
978-1-5386-5387-6
CMOS integrated circuits;millimetre wave radar;road vehicle radar;silicon-on-insulator;CG-based down-converters;down-converter solutions;common gate stages;common source stages;CS-based down-converters;automotive radar sensors;FD-SOI CMOS technology;noise figure 9.1 dB;gain 27.5 dB;gain 21.3 dB;noise figure 7.8 dB;frequency 77 GHz;bandwidth 22.0 GHz;bandwidth 16 GHz;current 25 mA;Gain;Radar;CMOS technology;Logic gates;Noise measurement;Bandwidth;Power supplies;Down-converters;common gate stage;common source stage;integrated transformers;mixers;CMOS technology;EM simulations;W-band
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11769/333854
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