Title :
Multi-channel Low-noise receiver and transmitter for 76-81 GHz automotive radar systems in 65 nm CMOS
Author :
Shimura, Toshihiro ; Matsumura, Hiroshi ; Kawano, Yoichi ; Sato, Masaru ; Suzuki, Toshihide ; Ohashi, Yoji
Author_Institution :
Fujitsu Labs. Ltd., Atsugi, Japan
Abstract :
This paper presents the design and characteristics of a receiver and a transmitter in 65-nm CMOS technology for automotive radar systems covering dual radar bands of 76 GHz and 79 GHz. The receiver has a 4-channel fully differential configuration for DBF systems. A unit receiver achieves a single-side band noise figure of 12 dB at an IF range from 1 to 200 kHz using a low 1/f-noise double-balanced resistive mixer and a low-noise differential amplifier. Using an on-chip multi-channel DAC, the receiver maintains a constant conversion gain with varying temperature by means of the fine control of gate bias voltages. The transmitter has a 2-channel configuration for multi-transmitting mode and includes a frequency PLL synthesizer. The transmitter achieves a phase noise of -84 dBc/Hz at a 100 kHz offset using an XOR-type phase detector and a 49-MHz reference. Due to the wider frequency circuit operation of frequency dividers and a VCO, the frequency synthesizer in the transmitter achieves a 76-81 GHz frequency range operation. We demonstrate 5-GHz band width FMCW and 10-μs fast-FM signal generation using the transmitter.
Keywords :
frequency synthesizers; low noise amplifiers; mixers (circuits); phase locked loops; road vehicle radar; 4-channel fully differential configuration; CMOS technology; XOR-type phase detector; automotive radar system; frequency 76 GHz to 81 GHz; frequency PLL synthesizer; low 1/f-noise double-balanced resistive mixer; low-noise differential amplifier; multichannel low-noise receiver; multichannel low-noise transmitter; on-chip multichannel DAC; single-side band noise; CMOS integrated circuits; Frequency synthesizers; Mixers; Radar; Receivers; Temperature measurement; Transmitters; CMOS; DAC; FMCW; PLL; automotive; differential amplifier; millimeter-wave; radar; receiver; resistive mixer; synthesizer; transmitter;
Conference_Titel :
Microwave Conference (EuMC), 2014 44th European
Conference_Location :
Rome
DOI :
10.1109/EuMC.2014.6986504