2003Asia Pacific Conference on Circuits and SystemsRequires access

Multiple bulk input differential logic

Hongyi Huang, Jing-Fu Lin

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Abstract

In this work, a multiple bulk input differential logic (MBIDL) is presented. A multiple-input boost circuit is employed to the bulk terminal of the input device to improve the logic design flexibility. Logic gates with complex functions can be easily designed. The MBIDL can generate a pair of complementary full-swing output signals without DC power dissipation. It is shown that the MBIDL has better speed and power performance compared to the conventional differential logic circuits.

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What this paper is about

In this work, a multiple bulk input differential logic (MBIDL) is presented. A multiple-input boost circuit is employed to the bulk terminal of the input device to improve the logic design flexibility. Logic gates with complex functions can be easily designed. The MBIDL can generate a pair of complementary full-swing output signals without DC power dissipation. It is shown that the MBIDL has better speed and power performance compared to the conventional differential logic circuits.

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Available abstract

In this work, a multiple bulk input differential logic (MBIDL) is presented. A multiple-input boost circuit is employed to the bulk terminal of the input device to improve the logic design flexibility. Logic gates with complex functions can be easily designed. The MBIDL can generate a pair of complementary full-swing output signals without DC power dissipation. It is shown that the MBIDL has better speed and power performance compared to the conventional differential logic circuits.

Key concepts: Logic family, Logic gate, Pass transistor logic, Diode–transistor logic, Sequential logic, Emitter-coupled logic, Pull-up resistor, Resistor–transistor logic

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