VLSI Implementations of Low-Power Leading-One Detector Circuits

Khalid H. Abed, R. Siferd · 2006

This paper presents two approaches to design leading-one detector (LOD) circuits, which locate the leading-one position in a binary word. The first approach provides fast leading-one detectors (LODs), and the second emphasizes the design of novel hardware-efficient and low-power LODs. Each approach is used to obtain 0.6 mum CMOS VLSI implementations of 16-, 32-, and 64-bit LOD circuits. Simulations of the 16-, 32-, and 64-bit fast LODs run at 310, 265, and 215 MHz, respectively. The 16-, 32-, and 64-bit low-power LODs consume 14.85, 44.70, and 61.67 milliwatts, respectively while operating at VDDequal to 5 volts and their maximum speed

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