A 140-GHz FMCW Radar Transceiver With Dual-Lens Packaging for Improved Beam Alignment in 65-nm CMOS Technology

  • Yoo, Junghwan; 
  • Kim, Doyoon; 
  • Keum, Wooyong; 
  • Son, Heekang; 
  • Kim, Jungsoo; 
  • ... Rieh, Jae-Sung; 
  • 외 3명
Citations

SCOPUS

20

초록

An frequency-modulated continuous-wave (FMCW) radar transceiver (TRX) chip operating near 140 GHz has been developed based on a 65-nm CMOS technology, subsequently packaged with a pair of silicon lenses for optimal beam alignment. The TRX consists of a wideband local oscillator (LO) chain, a high-power transmitter (TX), and a low-noise receiver (RX). The design procedures for sub-block circuits as well as integrated TX and RX are described in detail along with their measured performances. With the integrated single-chip TRX, a TX output power of 9.5 mW with a corresponding effective isotropic radiated power (EIRP) of 14 dBm was achieved along with a noise figure (NF) of 9.9 dB near 140 GHz. The chip with a size of 2930 × 830 µm2 consumed 350 mW of dc power. A dual-lens packaging technique has been proposed and successfully applied to the fabricated TRX chip, in which an individual dedicated lens is assigned for each of the TX and RX ON-chip antennas, leading to significantly improved beam alignment as well as TX-RX isolation. A ranging experiment has been performed with the packaged radar TRX module with a chirp bandwidth of 32 GHz (128–160 GHz), which exhibited a range resolution of around 10 mm. For the chirp generation, a very short modulation period of 6.0 µs was adopted, which would help suppress the effect of the low-frequency noise especially for CMOS-based systems. © 1963-2012 IEEE.

키워드

Antenna radiation patterns; bistatic radar; CMOS integrated circuits; D-band (110–170 GHz); millimeter wave radar
제목
A 140-GHz FMCW Radar Transceiver With Dual-Lens Packaging for Improved Beam Alignment in 65-nm CMOS Technology
저자
Yoo, Junghwan; Kim, Doyoon; Keum, Wooyong; Son, Heekang; Kim, Jungsoo; Lee, Il-Min; Yang, Sanghyeok; Kim, Hyunsoo; Rieh, Jae-Sung
DOI
10.1109/TMTT.2024.3396668
발행일
2024
유형
Article
저널명
IEEE Transactions on Microwave Theory and Techniques
권
72
호
11
페이지
6426 ~ 6442