DocumentCode
2924654
Title
CKVdd: A self-stabilization ramp-Vdd Technique for dynamic power reduction
Author
Wang, Chin-Hsien ; Cheng, Ching-Hwa ; Guo, Jiun-In
Author_Institution
Dept. of Electron. Eng., Feng-Chia Univ., Taichung
fYear
2009
fDate
19-22 Jan. 2009
Firstpage
93
Lastpage
94
Abstract
We propose a self-stabilized ramp voltage technique, CKVdd, to reduce power dissipation in conventional CMOS circuit. Normal CMOS circuits show a power increase proportional to clock frequency. CKVdd results in a lower-than-usual power increase. This technique is easily implemented in CMOS circuits. CKVdd technique possesses several characteristics that differ from of the current circuits using Vdd power source. First, CKVdd circuits have less average current and peak current consumption, such that it can be a low power design technique applied to generic digital circuits. Second, CKVdd technique combines the power source and clock signal, and can easily implement the power management mechanism. Compared to constant Vdd for multimedia decoders, the proposed technique has 45% of the usual power dissipation and 88% of the usual peak current reduction at the cost of small delay penalty.
Keywords
CMOS integrated circuits; low-power electronics; power semiconductor switches; CKVdd technique; CMOS circuits; clock signal; dynamic power reduction; generic digital circuits; high voltage coplanar power switch; low power design technique; power dissipation; power gate circuits; power management mechanism; self-stabilization ramp-Vdd technique; Circuit simulation; Clocks; Decoding; Frequency; Power dissipation; Power engineering and energy; Power supplies; Pulsed power supplies; Switching circuits; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Design Automation Conference, 2009. ASP-DAC 2009. Asia and South Pacific
Conference_Location
Yokohama
Print_ISBN
978-1-4244-2748-2
Electronic_ISBN
978-1-4244-2749-9
Type
conf
DOI
10.1109/ASPDAC.2009.4796448
Filename
4796448
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