A 3 ~ 5 GHz CMOS UWB Radar Chip for Surveillance and Biometric Applications

A 3-5 GHz UWB radar chip in 0.13 m CMOS process is presented in this paper. The UWB radar transceiver for surveillance and biometric applications adopts the equivalent time sampling architecture and 4-channel time interleaved samplers to relax the impractical sampling frequency and enhance the over...

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Veröffentlicht in:Journal of semiconductor technology and science 2011, 11(4), 44, pp.238-246
Hauptverfasser: Lee, Seung-Jun, Ha, Jong-Ok, Jung, Seung-Hwan, Yoo, Hyun-Jin, Chun, Young-Hoon, Kim, Wan-Sik, Lee, Noh-Bok, Eo, Yun-Seong
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Sprache:eng
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Zusammenfassung:A 3-5 GHz UWB radar chip in 0.13 m CMOS process is presented in this paper. The UWB radar transceiver for surveillance and biometric applications adopts the equivalent time sampling architecture and 4-channel time interleaved samplers to relax the impractical sampling frequency and enhance the overall scanning time. The RF front end (RFFE) includes the wideband LNA and 4-way RF power splitter, and the analog signal processing part consists of the high speed track & hold (T&H) /sample & hold (S&H) and integrator. The interleaved timing clocks are generated using a delay locked loop. The UWB transmitter employs the digitally synthesized topology. The measured NF of RFFE is 9.5 dB in 3-5 GHz. And DLL timing resolution is 50 ps. The measured spectrum of UWB transmitter shows the center frequency within 3-5 GHz satisfying the FCC spectrum mask. The power consumption of receiver and transmitter are 106.5 mW and 57 mW at 1.5 V supply, respectively. KCI Citation Count: 0
ISSN:1598-1657
2233-4866
DOI:10.5573/JSTS.2011.11.4.238