DocumentCode :
611126
Title :
GALS Design for Spectral Peak Attenuation of Switching Current
Author :
Xin Fan ; Schrape, Oliver ; Marinkovic, M. ; Dahnert, P. ; Krstic, Miroslav ; Grass, Eckhard
Author_Institution :
IHP, Frankfurt (Oder), Germany
fYear :
2013
fDate :
19-22 May 2013
Firstpage :
83
Lastpage :
90
Abstract :
Digital circuits often suffer from the switching noise when synchronized by a global clock. This work investigates the spectral peak attenuation of the switching current by applying Globally Asynchronous Locally Synchronous (GALS) design. It is theoretically proven that, in particular for a plesiochronous design with M clock domains, an attenuation of up to 20logM dB can be achieved at lower order harmonics of the clock frequency. Power-consumption balanced GALS partitioning is found to be preferred for spectral noise attenuation, since it provides robustness against the current shape variations in individual blocks. Experiments on a 130-nm CMOS synchronous/GALS dual-core FMCW-RADAR chip, named Lighthouse, have been performed. Comparing with the synchronous design, on the on-chip power supply, a spectral peak attenuation of 12.29 dB at the fundamental clock frequency can be measured for the power balanced GALS design with five plesio-chronous clocks.
Keywords :
CMOS logic circuits; CW radar; FM radar; asynchronous circuits; logic design; CMOS synchronous chip; GALS dual-core FMCW-radar chip; Lighthouse; clock frequency; digital circuits; fundamental clock frequency; globally asynchronous locally synchronous design; on-chip power supply; plesiochronous design; power balanced GALS design; power-consumption balanced GALS partitioning; size 130 nm; spectral noise attenuation; spectral peak attenuation; switching current; switching noise; EMC; FFT; GALS; SSN;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Asynchronous Circuits and Systems (ASYNC), 2013 IEEE 19th International Symposium on
Conference_Location :
Santa Monica, CA
ISSN :
1522-8681
Print_ISBN :
978-1-4673-5956-6
Type :
conf
DOI :
10.1109/ASYNC.2013.28
Filename :
6546181
Link To Document :
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