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Separate Clock Network Voltage for Correcting Random Errors in ULV Clocked Storage Cells

机译:单独的时钟网络电压,用于校正ULV时钟存储单元中的随机错误

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This brief presents an implementation of ultralow-power microcontrollers that use a separate clock network voltage (SCNV) to correct unexpected errors produced by on-chip variations (OCVs). Separating the clock network voltage requires amendments in the standard cell library and physical designs. Here, the experiments used a 65-nm technology that exhibited considerable OCVs, which caused write and retention errors in clocked storage cells and limited the voltage scaling of microcontrollers. Using the SCNV provides an extraordinary operability to correct errors in the low-voltage clocked storage cells. In addition, the area overhead of the proposed implementation is negligible. Applying the SCNV, the measurement results indicate that the microcontrollers can be operated below 0.3 V, over 0.15-V extension in voltage scaling, and achieve the optimal energy consumption at 0.34 V. Separating the clock network voltage has tradeoff issues in system timing and energy consumption based on the measurement results, and this brief discusses proper applications.
机译:本简介介绍了超低功耗微控制器的实现,该微控制器使用单独的时钟网络电压(SCNV)来纠正由片上变化(OCV)产生的意外错误。分离时钟网络电压需要修改标准单元库和物理设计。在这里,实验使用的65nm技术表现出相当大的OCV,这会在时钟存储单元中引起写入和保留错误,并限制了微控制器的电压缩放。使用SCNV可提供卓越的可操作性,以纠正低压时钟存储单元中的错误。另外,所提议的实现的面积开销可以忽略不计。应用SCNV,测量结果表明,微控制器可以在0.3 V以下的电压下工作,在电压缩放范围上可扩展至0.15 V以上,并在0.34 V时达到最佳能耗。时钟网络电压的分离在系统时序和能量方面存在权衡问题根据测量结果的消耗量,本简介讨论了正确的应用。

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