2015Procedia Computer ScienceOpen access

Low Leakage CNTFET SRAM Cells

Rajendra Prasad Somineni, B. K. Madhavi, K. Lal Kishore

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Abstract

This paper presents different low-leakage power Carbon NanoTube FET (CNTFET) based SRAM cells at nano technology. These SRAM cells are obtained by applying different circuit level leakage power reduction techniques called Sleep transistor, Forced stack, Data-Retention sleep transistor and Stacked sleep. All these cells are designed and simulated to assess their performance. All these techniques are compared in terms of leakage power, dynamic power, read delay, write delay, SNM and Area. Among all the SRAM cells, stacked sleep CNTFET SRAM cell is best in terms of leakage power saving with state saving capability.

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What this paper is about

This paper presents different low-leakage power Carbon NanoTube FET (CNTFET) based SRAM cells at nano technology. These SRAM cells are obtained by applying different circuit level leakage power reduction techniques called Sleep transistor, Forced stack, Data-Retention sleep transistor and Stacked sleep. All these cells are designed and simulated to assess their performance. All these techniques are compared in terms of leakage power, dynamic power, read delay, write delay, SNM and Area. Among all the SRAM cells, stacked sleep CNTFET SRAM cell is best in terms of leakage power saving with state saving capability.

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Available abstract

This paper presents different low-leakage power Carbon NanoTube FET (CNTFET) based SRAM cells at nano technology. These SRAM cells are obtained by applying different circuit level leakage power reduction techniques called Sleep transistor, Forced stack, Data-Retention sleep transistor and Stacked sleep. All these cells are designed and simulated to assess their performance. All these techniques are compared in terms of leakage power, dynamic power, read delay, write delay, SNM and Area. Among all the SRAM cells, stacked sleep CNTFET SRAM cell is best in terms of leakage power saving with state saving capability.

Key concepts: Static random-access memory, Carbon nanotube field-effect transistor, Leakage power, Leakage (economics), Transistor, Computer science, Memory cell, Electrical engineering

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