Title :
A 52-mW 3.1–10.6-GHz Fully Integrated Correlator for IR-UWB Transceivers in 0.18
CMOS
Author :
Xie, Haolu ; Wang, Xin ; Lin, Lin ; Tang, He ; Fang, Qiang ; Zhao, Hui ; Wang, Shijun ; Yao, Fei ; Wang, Albert ; Zhou, Yumei ; Qin, Bo
Author_Institution :
Freescale Semicond., Austin, TX, USA
fDate :
5/1/2010 12:00:00 AM
Abstract :
Correlators play key roles in impulse radio ultrawideband (IR-UWB) transceivers. Multiplier-based correlator performs correlation-type demodulation in addition to select desired UWB signals by correlating incoming pulses with templates. This paper reports design and implementation of a fully integrated low-power broadband multiplier-based correlator for a 3.1-10.6-GHz fullband IR-UWB receiver in 0.18 μm CMOS that consists of a UWB multiplier core, two UWB pulse generators, single-ended-to-differential-ended converter, a first-order RC integrator with a 200-MHz bandwidth, and a buffer. Measurement results confirm desired correlation-type demodulation and correlation functions with a conversion gain of 11.03 dB, noise figure of 15.7 dB, very low power consumption of 52 mW and a 1-dB compression point of better than -0.8 dBm over a 7.5-GHz bandwidth.
Keywords :
CMOS integrated circuits; microwave integrated circuits; transceivers; ultra wideband communication; CMOS; IR-UWB transceivers; UWB multiplier core; bandwidth 200 MHz; correlation functions; correlation-type demodulation; first-order RC integrator; frequency 3.1 GHz to 10.6 GHz; fully integrated correlator; gain 11.03 dB; impulse radio ultrawideband transceivers; multiplier-based correlator; noise figure 15.7 dB; power 52 mW; single-ended-to-differential-ended converter; size 0.18 μm; Correlator; impulse radio (IR); linearity; ultrawideband (UWB);
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2009.2031670