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首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >A Novel Spread Spectrum Clock Generation Technique: Always-On Boundary Spread SSCG
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A Novel Spread Spectrum Clock Generation Technique: Always-On Boundary Spread SSCG

机译:一种新颖的扩频时钟生成技术:始终导通边界扩展SSCG

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摘要

Spread spectrum clock generation (SSCG) is an important technique for electromagnetic interference reduction. To achieve the goal of lowering peak power, clock signal is intentionally "jittered." In circuit implementation, there are mainly three ways to carry out the task of jittering the clock: voltage-controlled oscillator modulation, phase-locked loop divider dithering, and clock-period direct manipulation. From the perspective of spread result, there are three types including down spread, central spread, and up spread. Being an effective solution for lowering the harmful electromagnetic peak power, SSCG is also faced with a challenge of preserving the integrity of the clock signal. In this paper, a novel approach of always-on boundary spread is presented. It is based on time-average-frequency concept. Its aim is to maximize frequency modulation depth while precisely controls clock's impact on system operation. Theoretical analysis is performed, experimental validation is provided through an implementation on field programmable gate array (FPGA). Furthermore, a commercial product is used to demonstrate the feature of "always on" enabled by this SSCG technology.
机译:扩频钟表发电(SSCG)是电磁干扰减少的重要技术。为了实现降低峰值功率的目标,时钟信号故意“抖动”。在电路实现中,主要有三种方法来执行抖动时钟的任务:电压控制振荡器调制,锁相环分频器抖动和时钟周期直接操纵。从传播结果的角度来看,有三种类型包括蔓延,中央涂抹和膨胀。作为降低有害电磁峰值功率的有效解决方案,SSCG也面临着保持时钟信号的完整性的挑战。本文提出了一种始终如一地展示边界扩散的新方法。它基于时间平均频率概念。其目的是最大限度地提高频率调制深度,同时精确地控制时钟对系统操作的影响。进行理论分析,通过现场可编程门阵列(FPGA)的实现提供了实验验证。此外,商业产品用于展示该SSCG技术启用的“始终开启”的特征。

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