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Design and implementation of an all-digital QPSK direct-sequence spread-spectrum transceiver IC
Conference paper

Design and implementation of an all-digital QPSK direct-sequence spread-spectrum transceiver IC

Jen-Shi Wu, Ming-Luen Liu and Tzi-Dar Chiueh
IEEE International Symposium on Personal, Indoor and Mobile Radio Communications, PIMRC, Vol.3, pp.1024-1028
1996

Abstract

In this paper, an all-digital differentially encoded quaternary phase shift keying (DEQPSK) direct sequence spread-spectrum (DSSS) transceiver is proposed. It consists of two parts: a baseband/IF spread-spectrum transmitter and a coherent intermediate frequency (IF) receiver. The center frequency of this IF receiver is 11MHz and the sampling rate is 44 Msamples/second. Modulation/demodulation, carrier recovery, PN code acquisition, and differential coding are all provided within a single chip. Functional optimization and architecture design have been done before layout implementation. Furthermore, we added testing circuits in this chip and thus each functional block is easily tested. The chip was fabricated through TSMC 0.8μm n-well CMOS SPDM technology. The maximum operational clock rate is measured at over 90MHz (5V, over 4Mbps), and the minimum supply voltage for 2Mbps (44MHz) rated speed is 2.6V.

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