Title :
Integrated 200–240-GHz FMCW Radar Transceiver Module
Author :
Bryllert, Tomas ; Drakinskiy, Vladimir ; Cooper, Ken B. ; Stake, Jan
Author_Institution :
Dept. of Microtechnol. & Nanosci., Chalmers Univ. of Technol., Goteborg, Sweden
Abstract :
We present a 220-GHz homodyne transceiver module intended for frequency modulated continuous wave radar applications. The RF transceiver circuits are fabricated on 3-μm-thick GaAs membranes, and consist of a Schottky diode based transmitter frequency doubler that simultaneously operates as a sub-harmonic down-converting mixer. Two circuits are used in a balanced configuration to improve the noise performance. The output power is > 3 dBm over a 40-GHz bandwidth (BW) centered at 220 GHz, and the receiver function is characterized by a typical mixer conversion loss of 16 dB. We present radar images at 4-m target distance with up to 60-dB dynamic range using a 30-μs chirp time, and near-BW-limited range resolution. The module is intended for applications in high-resolution real-time 3-D radar imaging, and the unit is therefore designed so that it can be assembled into 1-D or 2-D arrays.
Keywords :
CW radar; FM radar; III-V semiconductors; Schottky diodes; frequency multipliers; gallium arsenide; millimetre wave radar; mixers (circuits); radar imaging; radar transmitters; transceivers; 3D radar imaging; FMCW radar transceiver module; GaAs; RF transceiver circuit; Schottky diode; balanced configuration; bandwidth 40 GHz; frequency 200 GHz to 240 GHz; frequency modulated continuous wave radar; homodyne transceiver module; membranes; mixer conversion loss; noise performance improvement; radar images; receiver function; size 3 mum; subharmonic down-converting mixer; time 30 mus; transmitter frequency doubler; Chirp; Mixers; Noise; Radar antennas; Radar imaging; Transceivers; Frequency modulated continuous wave (FMCW); Schottky diode; imaging radar; millimeter wave; radar; semiconductor membrane; transceiver;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2013.2279359