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SRAM Cell Leakage Control Techniques for Ultra Low Power Application: A Survey 被引量:1
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作者 pavankumar bikki Pitchai Karuppanan 《Circuits and Systems》 2017年第2期23-52,共30页
Low power supply operation with leakage power reduction is the prime concern in modern nano-scale CMOS memory devices. In the present scenario, low leakage memory architecture becomes more challenging, as it has 30% o... Low power supply operation with leakage power reduction is the prime concern in modern nano-scale CMOS memory devices. In the present scenario, low leakage memory architecture becomes more challenging, as it has 30% of the total chip power consumption. Since, the SRAM cell is low in density and most of memory processing data remain stable during the data holding operation, the stored memory data are more affected by the leakage phenomena in the circuit while the device parameters are scaled down. In this survey, origins of leakage currents in a short-channel device and various leakage control techniques for ultra-low power SRAM design are discussed. A classification of these approaches made based on their key design and functions, such as biasing technique, power gating and multi-threshold techniques. Based on our survey, we summarize the merits and demerits and challenges of these techniques. This comprehensive study will be helpful to extend the further research for future implementations. 展开更多
关键词 Body BIASING Gate LEAKAGE JUNCTION LEAKAGE Power GATING MULTI-THRESHOLD SRAM Cell SUB-THRESHOLD LEAKAGE
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