Title :
A SAW-less GSM/GPRS/EDGE receiver embedded in a 65nm CMOS SoC
Author :
Lu, Ivan Siu-Chuang ; Yu, Chi-Yao ; Chen, Yen-Horng ; Cho, Lan-Chou ; Sun, Chih-Hao Eric ; Tang, Chih-Chun ; Chien, George
Author_Institution :
MediaTek, San Jose, CA, USA
Abstract :
Over the last decade, significant progress has been made towards increasing integration and reducing bill of material (BOM) for GSM/GPRS/EDGE cellular systems. In modern cellular phones, transmit SAW filters have been largely eliminated with innovative TX architecture and circuits [1] while receive SAW filters are still present. This remains as one of the few bottlenecks in achieving a true low-cost single-chip solution which offers a genuine advantage for high-volume applications. The main challenges of eliminating SAW-based bandpass filters from multiband 2G/2.5G receivers lie in noise-figure (NF) degradation and gain desensitization induced by OdBm blockers at merely 20MHz away from the 99dBm in-band signal at GSM850/900 band. Furthermore, these unfiltered inter ferers cause a strong reciprocal mixing effect and result in additional SNR degra dation. Therefore, a SAW-less RX is required to have an extremely high dynam ic range while maintaining best-in-class NF, LO wideband phase noise (PN) and spur performance. In this paper, a receiver embedded in a single-chip quad-band GSM SoC imple mented in 65nm CMOS technology is presented.
Keywords :
CMOS integrated circuits; band-pass filters; bills of materials; cellular radio; microwave filters; packet radio networks; phase noise; radio receivers; surface acoustic wave filters; system-on-chip; BOM; CMOS SoC; CMOS technology; EDGE cellular systems; EDGE receiver; GPRS celluar systems; GPRS receiver; GSM cellular systems; LO wideband phase noise; NF degradation; OdBm blockers; SAW-based bandpass filters; SAW-less GSM receiver; SAW-less RX; SNR degradation; TX circuits; bill of material; cellular phones; frequency 2 GHz; frequency 2.5 GHz; gain desensitization; innovative TX architecture; multiband receivers; noise-figure degradation; receive SAW filters; reciprocal mixing effect; single-chip quad-band GSM SoC; size 65 nm; spur performance; transmit SAW filters; unfiltered interferers; Band pass filters; GSM; Low pass filters; Mixers; Power harmonic filters; SAW filters; System-on-a-chip;
Conference_Titel :
Solid-State Circuits Conference Digest of Technical Papers (ISSCC), 2011 IEEE International
Conference_Location :
San Francisco, CA
Print_ISBN :
978-1-61284-303-2
DOI :
10.1109/ISSCC.2011.5746355