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Design and Analysis of SRAM cell using Body Bias Controller for Low Power Applications

机译:低功耗应用的SRAM电池设计与分析

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Low power consumption of electronic devices has become one of the most desirable factors in the present day's technology. Static random access memory (SRAM) being an integral part of most of the electronic gadget suffers from leakage current which results in static power dissipation and subsequently affects its performance particularly during standby or hold mode. This becomes crucial especially for those systems which are portable and have limited power supply. This work therefore proposes a body bias controller implemented with a 7T SRAM cell at 28 nm CMOS technology node which lowers the static power consumption and increases the hold static noise margin (HSNM) of SRAM during standby mode by changing the threshold voltage. Moreover, it also reduces write delay due to reduction in threshold voltage of proposed design without having a significant effect on write static noise margin and read static noise margin. It has been noticed that there is a reduction of 40%, 28%, 41.9% and 30% in static power dissipation whereas there is an enhancement of 19%, 14.2%, 6.6% and 5.2% in HSNM of the proposed design when compared to 6T SRAM cell, 7T SRAM cell, WRE8T SRAM cell and 9T SRAM cell, respectively. The proposed design can thus be a suitable alternative for low power SRAMs.
机译:电子设备的低功耗已成为本日技术中最理想的因素之一。静态随机存取存储器(SRAM)是大多数电子小工具的组成部分的漏电电流遭受静态功耗,随后在待机或保持模式期间特别影响其性能。这对于这些便携式的系统具有至关重要的是,对于便携式的系统具有有限的电源。因此,该工作提出了一种在28nm CMOS技术节点的用7T SRAM单元实现的体偏置控制器,该节点降低了静态功耗,并通过改变阈值电压在待机模式期间增加SRAM的保持静态噪声裕度(HSNM)。此外,它还通过提出设计的阈值电压降低而减少了写入延迟,而不对写静电噪声裕度和读取静电噪声裕度具有显着影响。已经注意到,静态功耗下降了40%,28%,41.9%和30%,而在相比之下,提高了拟议设计的HSNM的19%,14.2%,6.6%和5.2%到6T SRAM单元,7T SRAM CELL,WRE8T SRAM CELL和9T SRAM单元。因此,所提出的设计可以是低功率SRAM的合适替代方案。

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