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A High Resolution On-Chip Delay Sensor with Low Supply-Voltage Sensitivity for High-Performance Electronic Systems

机译:具有低电源电压灵敏度的高分辨率片上延迟传感器用于高性能电子系统

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摘要

An all-digital on-chip delay sensor (OCDS) circuit with high delay-measurement resolution and low supply-voltage sensitivity for efficient detection and diagnosis in high-performance electronic system applications is presented. Based on the proposed delay measurement scheme, the quantization resolution of the proposed OCDS can be reduced to several picoseconds. Additionally, the proposed cascade-stage delay measurement circuit can enhance immunity to supply-voltage variations of the delay measurement resolution without extra self-biasing or calibration circuits. Simulation results show that the delay measurement resolution can be improved to 1.2 ps; the average delay resolution variation is 0.55% with supply-voltage variations of ±10%. Moreover, the proposed delay sensor can be implemented in an all-digital manner, making it very suitable for high-performance electronic system applications as well as system-level integration.
机译:提出了一种具有高延迟测量分辨率和低电源电压灵敏度的全数字片上延迟传感器(OCDS)电路,以在高性能电子系统应用中进行有效的检测和诊断。基于提出的延迟测量方案,提出的OCDS的量化分辨率可以降低到几皮秒。另外,所提出的级联级延迟测量电路可以增强对延迟测量分辨率的电源电压变化的抵抗力,而无需额外的自偏置或校准电路。仿真结果表明,延迟测量分辨率可以提高到1.2 ps。平均延迟分辨率变化为0.55%,电源电压变化为±10%。而且,所提出的延迟传感器可以以全数字方式实现,使其非常适合于高性能电子系统应用以及系统级集成。

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