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Design and optimization of the extended true single-phase clock-based prescaler
Journal article   Peer reviewed

Design and optimization of the extended true single-phase clock-based prescaler

Xiao Peng Yu, Manh Anh Do, Wei Meng Lim, Kiat Seng Yeo and Jian-Guo Ma
IEEE transactions on microwave theory and techniques, Vol.54(11), pp.3828-3835
01/11/2006

Abstract

Engineering Engineering, Electrical & Electronic Science & Technology Technology
The power consumption and operating frequency of the extended true single-phase clock (E-TSPC)-based frequency divider is investigated. The short-circuit power and the switching power in the E-TSPC-based divider are calculated and simulated. A low-power divide-by-2/3 unit of a prescaler is proposed and implemented using a CMOS technology. Compared with the existing design, a 25% reduction of power consumption is achieved. A divide-by-8/9 dual-modulus prescaler implemented with this divide-by-2/3 unit using a 0.18-mu m CMOS process is capable of operating up to 4 GHz with a low-power consumption. The prescaler is implemented in low-power high-resolution frequency dividers for wireless local area network applications.

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