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Hybrid 4-bit full-adder circuits based on the novel full-swing gates - Khaaza M Unnisha Begum - Bog

Hybrid 4-bit full-adder circuits based on the novel full-swing gatesaf Khaaza M Unnisha Begum
Bag om Hybrid 4-bit full-adder circuits based on the novel full-swing gates

This book summarizes the XOR, XNOR, and C signals are only used so no additional NOT gates need to generate the C signal, whereas if the C signal is also used to produce the Sum output, then XOR and XNOR signals will not drive the Sum output through the TG multiplexer, but only they will be connected to the data select lines of 2-1-MUX. So the capacitance of XOR and XNOR nodes becomes smaller, and the delay of the circuit will be improved. In the future D¿flip flop based on XOR/XNOR circuits can be designed more efficiently. As technology is getting advanced, power consumption, delay time, and chip area are the main concern issues that we have to improve, therefore these circuits can be designed to solve these issues more efficiently to reduce the total cost of the system by optimizing transistors¿ sizes.

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  • Sprog:
  • Engelsk
  • ISBN:
  • 9786205524220
  • Indbinding:
  • Paperback
  • Sideantal:
  • 64
  • Udgivet:
  • 30. juni 2023
  • Størrelse:
  • 150x4x220 mm.
  • Vægt:
  • 113 g.
  • 1-2 uger.
  • 5. marts 2025
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Beskrivelse af Hybrid 4-bit full-adder circuits based on the novel full-swing gates

This book summarizes the XOR, XNOR, and C signals are only used so no additional NOT gates need to generate the C signal, whereas if the C signal is also used to produce the Sum output, then XOR and XNOR signals will not drive the Sum output through the TG multiplexer, but only they will be connected to the data select lines of 2-1-MUX. So the capacitance of XOR and XNOR nodes becomes smaller, and the delay of the circuit will be improved. In the future D¿flip flop based on XOR/XNOR circuits can be designed more efficiently. As technology is getting advanced, power consumption, delay time, and chip area are the main concern issues that we have to improve, therefore these circuits can be designed to solve these issues more efficiently to reduce the total cost of the system by optimizing transistors¿ sizes.

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