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Sensor-Based Time Speculation in the Presence of Timing Variability
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Sensor-Based Time Speculation in the Presence of Timing Variability

Chung-Han Chou, Tsui-Yun Chang, Kai-Chiang WuShih-Chieh Chang
IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems
08/2017

摘要

Clocks Delays Detectors Logic gates Monitoring PVT variation. transition detector Variable-latency design Software Computer Graphics and Computer-Aided Design Electrical and Electronic Engineering
Time speculation has been widely used to achieve high performance in modern design as it exploits average-case timing optimization instead of worst-case timing optimization focusing on reducing longest path delay which rarely happens. Variable-latency design style is one research category of time speculation. Since process and environmental variations are hard to predict, traditional variable-latency units (VLUs) designed at pre-silicon stage will suffer significant performance loss due to pessimistic assumptions for addressing variations. In this paper, we propose a novel sensor-based, transition-aware VLU (S-VLU) scheme adapting to process-voltage-temperature (PVT) variations by using in-situ sensors to obtain real-time transition information in a circuit. Moreover, we also propose a sensor deployment strategy to achieve near-maximal performance gain. On average, the S-VLU achieves a 31.27% performance improvement as compared to a 19.26% improvement by using traditional HL. The area overhead of the S-VLU is 13.48%. To the best of the authors&null knowledge, this is the first wok to address PVT variations in variable-latency design style.

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