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Eleven Ways to Boost Your Synchronizer

机译:增强同步器的十一种方法

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摘要

Synchronizers play an essential role in multiple clock domain systems-on-chip. The most common synchronizer consists of a series of pipelined flip-flops. Several factors influence the performance of synchronizers: circuit design, process technology, and operating conditions. Global factors apply to the entire integrated circuit, while others can be adjusted for each individual synchronizer in the design. The following guidelines are provided to improve synchronizers: avoiding scan and reset, selecting minimum size flip-flop cells, minimizing routing, reducing jitter in coherent clock domain crossings, opting for high-performance process flavor and minimum , over-provisioning to account for variations, maximizing supply voltage, and manipulating clock duty cycle.
机译:同步器在多个时钟域片上系统中起着至关重要的作用。最常见的同步器由一系列流水线触发器组成。有几个因素会影响同步器的性能:电路设计,工艺技术和工作条件。全局因素适用于整个集成电路,而其他因素可以针对设计中的每个单独的同步器进行调整。提供以下指南来改进同步器:避免扫描和复位,选择最小尺寸的触发器单元,最小化布线,减少相干时钟域交叉中的抖动,选择高性能的过程风味和最小的,为解决变化而过度配置,最大化电源电压和操纵时钟占空比。

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