DocumentCode :
1562417
Title :
A dual-pulse-clock double edge triggered flip-flop for low voltage and high speed application
Author :
Cheng, Kuo-Hsing ; Lin, Yung-Hsiang
Author_Institution :
Dept. of Electr. Eng., Tamkang Univ., Tamsui, Taiwan
Volume :
5
fYear :
2003
Abstract :
In this paper, a low voltage dual-pulse-clock double edge triggered D-flip-flop (DPDET) is proposed. The DPDET flip-flop uses a split output latch clocked by a short pulse train. Compared to the previously reported double edge triggered flip-flops, the DPDET flip-flop uses only six transistors with two transistors being clocked, operating correctly under low supply voltage. The total transistors count is reduced to improve speed and power dissipation in flip-flop. The number of transistors is reduced by 40% to 70% compared to other double edge triggered flip-flops. Based on 0.35um single-poly quad-metal CMOS technology, the HSPICE simulation results show that the operating speed of the DPDET flip-flop is 2.7 GHz at a 3.3V supply voltage. The operating speed of the DPDET flip-flop is increased about 41% and 49% in compared with others for 3.3V and 2.5V supply voltage, respectively. The power dissipation is reduced about 36% and 29% in compared with others for 3.3V and 2.5V supply voltage, respectively. Moreover, the DPDET flip-flop can be used in a 0.9V supply voltage with 224 MHz operating speed. Therefore the proposed DPDET flip-flop is suitable for low supply voltage and high speed CMOS applications.
Keywords :
CMOS logic circuits; SPICE; flip-flops; high-speed integrated circuits; low-power electronics; 0.35 micron; 0.9 V; 2.5 V; 2.7 GHz; 224 MHz; 3.3 V; CMOS low-voltage high-speed circuit; HSPICE simulation; dual-pulse-clock double edge triggered flip-flop; CMOS technology; Circuits; Clocks; Flip-flops; Frequency; Latches; Low voltage; Merging; Power dissipation; Very large scale integration;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Circuits and Systems, 2003. ISCAS '03. Proceedings of the 2003 International Symposium on
Print_ISBN :
0-7803-7761-3
Type :
conf
DOI :
10.1109/ISCAS.2003.1206304
Filename :
1206304
Link To Document :
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