Title :
Low-power and high-quality signal transmission baseband LSIC for personal communications
Author :
Kobayashi, Kiyoshi ; Kubota, Shuji ; Enomoto, Kiyoshi ; Seki, Kazuhiko ; Kawazoe, Katsuhiko ; Sakata, Tetsu ; Matsumoto, Yoichi ; Hattori, Takeshi
Author_Institution :
Wireless Syst. Labs., NTT Corp., Kanagawa, Japan
Abstract :
This paper presents a very low power consumption one-chip baseband large-scale integrated circuit (LSIC) for personal communication terminals. It comprises a /spl pi//4-shift QPSK modem, an adaptive differential pulse code modulation (ADPCM) codec, a time division multiple access time division duplex (TDMA-TDD) controller and a link access procedure for a digital cordless (LAPDC: Layer-2 protocol) controller. The developed LSIC meets all the specifications of the personal handy-phone system (PHS) standard. By employing a novel coherent demodulator and an ADPCM codec with a click noise suppressor, a higher quality voice transmission has been achieved in a fading environment. In addition, it has 61-kb/s data transmission capability to achieve wireless multimedia services based on PHS. Moreover, the novel circuit configurations of the modem, the ADPCM codec, the TDMA-TDD controller, and the LAPDC controller achieve significant power reduction of the baseband circuits (57.4 mW) of personal communication terminals. It enables very low power consumption wireless multimedia terminals to be achieved based on the PHS common air interface.
Keywords :
cordless telephone systems; large scale integration; low-power electronics; multimedia communication; telecommunication terminals; /spl pi//4-shift QPSK modem; 57.4 mW; 64 kbit/s; ADPCM codec; LAPDC controller; Layer-2 protocol; PHS common air interface; TDMA-TDD controller; click noise suppressor; coherent demodulator; data transmission; low power circuit; one-chip baseband LSIC; personal communication; personal handy phone system; signal transmission; voice transmission; wireless multimedia terminal; Baseband; Circuits; Codecs; Communication system control; Energy consumption; Large scale integration; Modems; Programmable control; Pulse modulation; Quadrature phase shift keying;
Journal_Title :
Very Large Scale Integration (VLSI) Systems, IEEE Transactions on