首页> 外文期刊>Very Large Scale Integration (VLSI) Systems, IEEE Transactions on >Level-Converting Retention Flip-Flop for Reducing Standby Power in ZigBee SoCs
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Level-Converting Retention Flip-Flop for Reducing Standby Power in ZigBee SoCs

机译:电平转换保持触发器,用于降低ZigBee SoC中的待机功耗

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In this paper, we propose a level-converting retention flip-flop (RFF) for ZigBee systems-on-chips (SoCs). The proposed RFF allows the voltage regulator that generates the core supply voltage (VDD,core) to be turned off in the standby mode, and it thus reduces the standby power of the ZigBee SoCs. The logic states are retained in a slave latch composed of thick-oxide transistors using an I/O supply voltage (VDD,IO) that is always turned on. Level-up conversion from VDD,core to VDD,IO is achieved by an embedded nMOS pass-transistor level-conversion scheme that uses a low-only signal-transmitting technique. By embedding a retention latch and level-up converter into the data-to-output path of the proposed RFF, the RFF resolves the problems of the static RAM-based RFF, such as large dc current and low readability caused by threshold drop. The proposed RFF does not also require additional control signals for power mode transitioning. Using 0.13-μm process technology, we implemented an RFF with VDD,core and VDD,IO of 1.2 and 2.5 V, respectively. The maximum operating frequency is 300 MHz. The active energy of the RFF is 191.70 fJ, and its standby power is 350.25 pW.
机译:在本文中,我们提出了一种用于ZigBee片上系统(SoC)的电平转换保持触发器(RFF)。拟议的RFF允许在待机模式下关闭产生内核电源电压(VDD,core)的稳压器,从而降低ZigBee SoC的待机功耗。逻辑状态通过始终打开的I / O电源电压(VDD,IO)保留在由厚氧化物晶体管组成的从锁存器中。通过使用低信号传输技术的嵌入式nMOS传输晶体管电平转换方案,可以实现从VDD,core到VDD,IO的升压转换。通过将保留锁存器和升压转换器嵌入到所提出的RFF的数据到输出路径中,RFF解决了基于静态RAM的RFF的问题,例如直流电流大和阈值下降导致的可读性低。所提出的RFF也不需要用于功率模式转换的附加控制信号。使用0.13μm的工艺技术,我们实现了RFF,其VDD,core和VDD,IO分别为1.2和2.5V。最大工作频率为300 MHz。 RFF的有功电能为191.70 fJ,待机功率为350.25 pW。

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