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Design of a low power wide-band high resolution programmable frequency divider
Journal article   Peer reviewed

Design of a low power wide-band high resolution programmable frequency divider

X.P. Yu, M.A. Do, L. Jia, J.G. Ma and K.S. Yeo
IEEE transactions on very large scale integration (VLSI) systems, Vol.13(9), pp.1098-1103
01/09/2005

Abstract

CMOS digital integrated circuits CMOS process Counting circuits Design optimization Energy consumption Flip-flops Frequency conversion frequency dividers frequency synthesizers phase locked loops Power measurement Propagation delay Voltage Wideband
The design of a high-speed wide-band high resolution programmable frequency divider is investigated. A new reloadable D flip-flop for the high speed programmable frequency divider is proposed. It is optimized in terms of propagation delay and power consumption as compared with the existing designs. Measurement results show that an all-stage programmable counter implemented with this D flip-flop using the Chartered 0.18 /spl mu/m CMOS process is capable of operating up to 1.8 GHz for a 1.8 V supply voltage and a 5.8-mW power consumption. By using this counter, an ultra-wide range high resolution frequency divider is achieved with low power consumption for 5-6-GHz wireless LAN applications.

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