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A Novel and Voltage Resilient Design of Ultra-High-Speed Low Power Keeper Based Full Adder

  • 23-08-2024
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Abstract

The paper introduces a novel design for a voltage-resilient ultra-high-speed low-power full adder using a grounded keeper circuit. This design addresses the challenges of output voltage swing loss and threshold voltage decrement in CMOS-based integrated circuits. The proposed full adder is implemented using an XOR-XNOR circuit block, a sum circuit block, and a carry circuit block in a hybrid logic design style. The grounded keeper circuit is employed to ensure full output voltage swing and improve circuit speed and efficiency. The design is validated through extensive simulations using HSPICE tools, demonstrating superior performance in terms of propagation delay, power consumption, and power-delay product compared to existing designs. Additionally, the design shows resilience to supply voltage and temperature variations, making it a promising solution for high-end processing applications such as arithmetic logic units and multipliers.

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Title
A Novel and Voltage Resilient Design of Ultra-High-Speed Low Power Keeper Based Full Adder
Authors
Uma Sharma
Mansi Jhamb
Publication date
23-08-2024
Publisher
Springer US
Published in
Circuits, Systems, and Signal Processing / Issue 12/2024
Print ISSN: 0278-081X
Electronic ISSN: 1531-5878
DOI
https://doi.org/10.1007/s00034-024-02830-y
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