Implementation and Analysis of Low Power Reduction Techniques in Sense Amplifier

Reeya Agrawal, V. Tomar
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引用次数: 6

Abstract

In proposed work, low power reduction techniques such as footer stack, MTCMOS (Multi-Threshold CMOS), sleepy stack and sleepy keeper have been implemented in voltage-mode, current-mode and charge-transfer sense _amplifiers in customary gpdk 90nm technology documents using Cadence tool. Observations are mainly focused on power dissipation of different sense amplifier configurations. The simulation results show that the charge-transfer sense_amplifier consumes less power i. e 11.069 μW as compared to the power consumed by current sense and voltage sense amplifiers 54.245 μW and 86.66 μW respectively. Furthermore, proposed implementation of MTCMOS technique in current mode sense amplifier leads to a dramatical reduction i.e. 10-98% in power dissipation considering power supply voltage of 1.2V.
感测放大器低功耗降耗技术的实现与分析
在本研究中,利用Cadence工具在常规gpdk 90nm技术文档中,在电压模式、电流模式和电荷转移感测放大器中实现了页脚堆栈、MTCMOS(多阈值CMOS)、休眠堆栈和休眠保持器等低功耗技术。观察主要集中在不同的感测放大器配置的功耗。仿真结果表明,电荷转移感测放大器的功耗为11.069 μW,而电流感测和电压感测放大器的功耗分别为54.245 μW和86.66 μW。此外,在电流模式检测放大器中采用MTCMOS技术,考虑到电源电压为1.2V,功耗可显著降低10-98%。
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