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Improving microcontroller power consumption through a segmented gray code program counter

机译:通过分段的格雷码程序计数器提高微控制器的功耗

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This paper introduces a new segmented gray code for microprocessor program counters that exploits the switching activity enhancements of a gray code on high capacitive microcontroller address lines while decreasing the area requirement of the necessary counter hardware. For higher bit widths gray code incrementers tend to explode in complexity compared to binary counters. The presented concept overcomes this problem by localizing the global scope of the common gray code. A method is developed to evaluate the valid gray codes in order to find the optimal one concerning area consumption of its incrementer. Resulting from this evaluation a segmented gray code is presented for which the area and power consumption is lower than for a binary incrementer. This code used for a microprocessor program counter leads to a decrease of the switching activity on the address bus by 25-30% while at the same time decreasing the area and power consumption of the program counter by about 10%.
机译:本文介绍了一种用于微处理器程序计数器的新分段格雷码,该代码利用了高电容微控制器地址线上的格雷码的开关活动增强功能,同时减少了必需的计数器硬件的面积要求。对于更高的位宽,与二进制计数器相比,格雷码递增器的复杂度往往会爆炸。提出的概念通过本地化通用格雷码的全局范围克服了这个问题。开发了一种方法来评估有效的格雷码,以便找到有关其增量器的面积消耗的最佳格雷码。由该评估结果给出了分段的格雷码,其面积和功耗低于二进制增量器。用于微处理器程序计数器的此代码可导致地址总线上的开关活动减少25%至30%,同时将程序计数器的面积和功耗减少约10%。

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