2002Unpublished venueRequires access

Dynamic current mode logic (DyCML), a new low-power high-performance logic family

M.W. Allam, M.I. Elmasry

Open publisher page 15 citations

Abstract

This paper presents a new logic style DyCML for low-power high-performance VLSI applications. The new logic family combines the speed, low supply voltage and noise immunity advantages of MCML circuits while achieving the low standby current and design simplicity features of dynamic circuits. Simulation results show that DyCML circuits are superior to CMOS and DCVS logic styles in terms of power and delay. A 16 bit DyCML Carry Look Ahead Adder (CLA) fabricated in 0.6 /spl mu/m achieves a delay of 1.1 ns while dissipating 21.2 mW at 400 MHz.

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What this paper is about

This paper presents a new logic style DyCML for low-power high-performance VLSI applications. The new logic family combines the speed, low supply voltage and noise immunity advantages of MCML circuits while achieving the low standby current and design simplicity features of dynamic circuits. Simulation results show that DyCML circuits are superior to CMOS and DCVS logic styles in terms of power and delay. A 16 bit DyCML Carry Look Ahead Adder (CLA) fabricated in 0.6 /spl mu/m achieves a delay of 1.1 ns while dissipating 21.2 mW at 400 MHz.

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Available abstract

This paper presents a new logic style DyCML for low-power high-performance VLSI applications. The new logic family combines the speed, low supply voltage and noise immunity advantages of MCML circuits while achieving the low standby current and design simplicity features of dynamic circuits. Simulation results show that DyCML circuits are superior to CMOS and DCVS logic styles in terms of power and delay. A 16 bit DyCML Carry Look Ahead Adder (CLA) fabricated in 0.6 /spl mu/m achieves a delay of 1.1 ns while dissipating 21.2 mW at 400 MHz.

Key concepts: Pass transistor logic, Logic family, Current-mode logic, Adder, Logic gate, Electronic engineering, Integrated injection logic, Dynamic logic (digital electronics)

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