DocumentCode
1967488
Title
Clock-powered CMOS VLSI graphics processor for embedded display controller application
Author
Athas ; Tzartzanis, N. ; Mao, W. ; Lai, Richard ; Chong, K. ; Peterson, L. ; Bolotski, M.
Author_Institution
Inf. Sci. Inst., Univ. of Southern California, Marina del Rey, CA, USA
fYear
2000
fDate
9-9 Feb. 2000
Firstpage
296
Lastpage
297
Abstract
This paper describes a 16 b clock-powered microprocessor that dissipates only 2.9 mW at 15.8 MHz from laboratory measurements. Clock-powered logic (CPL) has been developed as a new approach for designing and building low-power VLSI systems. In CPL, the clock signals serve as a source of ac power for the large on-chip capacitive loads. By exploiting adiabatic charging and an energy conserving clock driver, it is possible to build ultra-low-power CMOS processors with this approach. Previously, a CPL processor was demonstrated in a 0.5 /spl mu/m n-well CMOS process. Laboratory measurements confirmed that it was possible and practical to recover and reuse large amounts (upwards of 80%) of the on-chip capacitive energy for a 16 b pipelined general-purpose CMOS processor. The measurements and simulation data analysis also pointed out some of the shortcomings of the original design approach which limited the speed, voltage scalability, and robustness of the processor.
Keywords
CMOS digital integrated circuits; VLSI; display instrumentation; embedded systems; low-power electronics; microcontrollers; microprocessor chips; 0.5 micron; 15.8 MHz; 16 bit; 2.9 mW; CMOS VLSI graphics microprocessor; adiabatic charging; clock-powered logic; embedded display controller; low-power system; Buildings; CMOS logic circuits; CMOS process; Clocks; Displays; Graphics; Laboratories; Logic design; Microprocessors; Very large scale integration;
fLanguage
English
Publisher
ieee
Conference_Titel
Solid-State Circuits Conference, 2000. Digest of Technical Papers. ISSCC. 2000 IEEE International
Conference_Location
San Francisco, CA, USA
ISSN
0193-6530
Print_ISBN
0-7803-5853-8
Type
conf
DOI
10.1109/ISSCC.2000.839788
Filename
839788
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