Title :
A VLSI low power solution for mobile satellite radio receivers
Author :
Cali, Giovanni ; Erratico, Pietro ; Gimignani, Massimo ; Vita, Piero
Author_Institution :
SGS-Thomson Microelectron., Milan, Italy
Abstract :
Two ICs have been implemented as part of a mobile digital satellite radio receiver. An RF front-end stage makes a superheterodyne frequency conversion from L band to 1.84 MHz IF, with a high level of integration, i.e only a SAW filter outside the chip. A fully digital channel decoder receives the IF signal from the RF front-end and converts it by means of an integrated 6-bit half flash A/D converter. Its main functions are a QPSK demodulator, a Viterbi decoder, a Reed-Solomon decoder, a deinterleaver and TDM extraction. The analogue input signal carrier is 1.84 MHz while the maximum chip frequency is about 10 MHz in order to optimize power consumption. Output data are transferred using a serial interface at a maximum rate of 128 kbit/s, The channel decoder is implemented using a five-metal layer CMOS 0.35 μm process, complexity is 1.5 million transistors, dissipating 50 mW with die size of 23 mm2. For the RF front-end, implemented in a 20 GHz bipolar process, die size is 16 mm2, power consumption is about 200 mW, and includes on-chip low noise amplifier, 3.6 GHz oscillator and two PLL loops
Keywords :
CMOS integrated circuits; Reed-Solomon codes; VLSI; digital radio; low-power electronics; mobile satellite communication; quadrature phase shift keying; radio receivers; 0.35 micron; 1.84 MHz; 128 kbit/s; 20 GHz; 200 mW; 3.6 GHz; 50 mW; 6 bit; CMOS; PLL loops; QPSK demodulator; Reed-Solomon decoder; SAW filter; TDM extraction; VLSI; Viterbi decoder; analogue input signal carrier; channel decoder; chip frequency; deinterleaver; die size; digital satellite radio; half flash A/D converter; low power solution; mobile satellite radio receivers; on-chip low noise amplifier; power consumption; serial interface; superheterodyne frequency conversion; Decoding; Energy consumption; Frequency conversion; Quadrature phase shift keying; RF signals; Radio frequency; Receivers; SAW filters; Satellite broadcasting; Very large scale integration;
Conference_Titel :
Custom Integrated Circuits Conference, 1998. Proceedings of the IEEE 1998
Conference_Location :
Santa Clara, CA
Print_ISBN :
0-7803-4292-5
DOI :
10.1109/CICC.1998.695007