2014Unpublished venueRequires access

A low power CMOS technology compatible non-volatile SRAM cell

Lina Wang, Jinhui Wang, Zezhong Yang, Ligang Hou, Na Gong

Open publisher page 1 citations

Abstract

This paper presents a CMOS technology compatible non-volatile 8T SRAM called NV SRAM. NV SRAM works as conventional 8T SRAM to keep high speed and high noise margin in work mode; in sleep mode, the data is kept in non-volatile part and the power supply is switched off, thereby minimizing the leakage energy without data loss. Based on 65 nm SMIC Technology, simulation results show that sleep time is longer than 219 µs, NV SRAM is able to achieve energy savings. The NV SRAM is particularly effective to implement on-chip-memories with long idle time.

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What this paper is about

This paper presents a CMOS technology compatible non-volatile 8T SRAM called NV SRAM. NV SRAM works as conventional 8T SRAM to keep high speed and high noise margin in work mode; in sleep mode, the data is kept in non-volatile part and the power supply is switched off, thereby minimizing the leakage energy without data loss. Based on 65 nm SMIC Technology, simulation results show that sleep time is longer than 219 µs, NV SRAM is able to achieve energy savings. The NV SRAM is particularly effective to implement on-chip-memories with long idle time.

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Available abstract

This paper presents a CMOS technology compatible non-volatile 8T SRAM called NV SRAM. NV SRAM works as conventional 8T SRAM to keep high speed and high noise margin in work mode; in sleep mode, the data is kept in non-volatile part and the power supply is switched off, thereby minimizing the leakage energy without data loss. Based on 65 nm SMIC Technology, simulation results show that sleep time is longer than 219 µs, NV SRAM is able to achieve energy savings. The NV SRAM is particularly effective to implement on-chip-memories with long idle time.

Key concepts: Static random-access memory, Sleep mode, CMOS, Idle, Noise margin, Leakage power, Computer science, Electronic engineering

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