DocumentCode :
482114
Title :
79GHz automotive short range radar sensor based on single-chip SiGe-transceivers
Author :
Winkler, Volker ; Feger, Reinhard ; Maurer, Linus
Author_Institution :
DICE GmbH & Co KG, Linz, Austria
fYear :
2008
fDate :
30-31 Oct. 2008
Firstpage :
459
Lastpage :
462
Abstract :
Today automotive short range radar sensors are only available for the 24 GHz band. But in the EU the production of ultra-wideband sensors is limited to 2013 for the 24 GHz band, after 2013 the 79 GHz range must be used. This was the impact to develop a single-chip SiGe RF-transceiver for the 79 GHz-band on Infineon¿s B7HF200-Process with transition frequencies above 200 GHz. The power spectral density limit of -9 dBm/MHz for the 79 GHz-band is much higher than the -41.3 dBm/MHz limit for 24 GHz. Therefore the built prototype is a FMCW radar and no pulse radar in order to achieve a higher Signal-to-Noise Ratio. The required frequency ramp generation according to the FMCW-Principle is realized without a Phase Locked Loop(PLL), but by controlling digitally the tuning voltage of the VCO with help of a D/A-converter. The non-linearity of the VCO tuning law is compensated by measuring the frequency of the divider signal. Two bistatic transceiver variants have been realized: ATRX2 has one transmit and three receive channels, while ATRX3 has two switchable transmitters and two receivers. An RF-board has been designed for each chip, where low-cost patch antennas have been applied, optimized for a short range system. In the following the configuration for both chips is explained and measurement results are presented in order to demonstrate the angle detection capabilities.
Keywords :
CW radar; FM radar; phase locked loops; road vehicle radar; sensors; silicon compounds; transceivers; voltage-controlled oscillators; DA-converter; FMCW radar; Inflneon´s B7HF200-Process; RF-board; SiGe; VCO tuning law; angle detection capabilities; automotive short range radar sensor; bistatic transceiver; frequency 24 GHz; frequency 79 GHz; frequency ramp generation; phase locked loop; single-chip transceivers; Antenna measurements; Automotive engineering; Frequency; Production; Radar; Semiconductor device measurement; Silicon germanium; Tuning; Ultra wideband technology; Voltage-controlled oscillators;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Radar Conference, 2008. EuRAD 2008. European
Conference_Location :
Amsterdam
Print_ISBN :
978-2-87487-009-5
Type :
conf
Filename :
4760901
Link To Document :
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