Title :
Antenna Design of 60-GHz Micro-Radar System-In-Package for Noncontact Vital Sign Detection
Author :
Tze-Min Shen ; Kao, T.J. ; Ting-Yi Huang ; Jianxuan Tu ; Jenshan Lin ; Ruey-Beei Wu
Author_Institution :
Dept. of Electr. Eng., Nat. Taiwan Univ., Taipei, Taiwan
fDate :
7/4/1905 12:00:00 AM
Abstract :
A circularly polarized sequential-rotation 2 × 2 patch antenna array integrated with a 60-GHz Doppler radar system is implemented on the low-temperature co-fired ceramic (LTCC) substrate. The LTCC technology with multiple metal layers is able to satisfy the different dielectric thickness requirements of antennas and microstrip feedlines, and it also provides a compact millimeter-wave packaging option for the CMOS radar chip. Compared to linearly polarized single-patch antenna, the 10-dB bandwidth of the antenna array on LTCC increases from 1.3 (2.4%) to 7 GHz (12.8%) at 55 GHz, and narrow 50- Ω feedline is achieved to realize flip-chip transition. As the modeling and manufacturing variations are often present in the millimeter-wave systems, wide antenna bandwidth is able to cover the possible frequency drift and increase the yield of system-in-package. The circular polarization also provides better isolation against other sensors in multiple radars applications.
Keywords :
CMOS integrated circuits; Doppler radar; antenna feeds; ceramic packaging; electromagnetic wave polarisation; flip-chip devices; microsensors; microstrip antenna arrays; millimetre wave antenna arrays; millimetre wave radar; radar antennas; radar detection; system-in-package; CMOS radar chip; Doppler radar system; LTCC substrate; circularly polarized sequential-rotation patch antenna array; compact millimeter-wave packaging; dielectric thickness requirement; flip-chip transition; frequency 1.3 GHz to 7 GHz; frequency 55 GHz; frequency 60 GHz; gain 10 dB; linearly polarized single-patch antenna; low-temperature cofired ceramic substrate; microradar system-in-package; microstrip antenna feedline; multiple metal layer; multiple radar sensor application; noncontact vital sign detection; resistance 50 ohm; Antenna arrays; Antenna radiation patterns; Doppler radar; Flip chip; Frequency measurement; Medical signal detection; Millimeter wave radar; Patch antennas; Antenna arrays; Doppler radar; flip chip; frequency measurement; medical signal detection; millimeter-wave radar; patch antennas;
Journal_Title :
Antennas and Wireless Propagation Letters, IEEE
DOI :
10.1109/LAWP.2013.2239957