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An On-Chip Monitoring Circuit for Signal-Integrity Analysis of 8-Gb/s Chip-to-Chip Interfaces With Source-Synchronous Clock

机译:带有源同步时钟的片上监控电路,用于8 Gb / s芯片到芯片接口的信号完整性分析

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This paper presents an on-chip monitoring circuit (OCMC) for analyzing the signal integrity of high-speed signals for a chip-to-chip interface with a source-synchronous clocking scheme. The proposed OCMC consists of a fractional-N phase-locked loop (PLL)-based frequency synthesizer, a high-bandwidth track-and-hold circuit, and a 10-bit analog-to-digital converter (ADC) to implement a subsampling scheme. The proposed fractional-N PLL-based frequency synthesizer improves the time jitter accumulated in a voltage-controlled oscillator using a fractional frequency divider operated by an eight-phase clock. The bandwidth of the track-and-hold circuit is designed to be 6 GHz, using inductive peaking realized through a source follower. The OCMC samples 49 points over two unit intervals of a high-speed input signal when the frequency multiplication of the frequency synthesizer is 6.125/6. The 10-bit ADC uses the architecture of a pipelined successive approximation register ADC to reduce the power consumption and chip area. The proposed OCMC is implemented with 65-nm CMOS technology and a 1.2 V supply. The 8-Gb/s chip-to-chip interface signal is reconstructed with time and voltage resolutions of 5.1 ps and 1.17 mV, respectively.
机译:本文提出了一种片上监控电路(OCMC),用于使用源同步时钟方案分析芯片到芯片接口的高速信号的信号完整性。提议的OCMC由基于分数N锁相环(PLL)的频率合成器,高带宽采样保持电路和10位模数转换器(ADC)组成,以实现二次采样方案。所提出的基于分数N PLL的频率合成器使用由八相时钟操作的分数分频器改善了压控振荡器中累积的时间抖动。跟踪和保持电路的带宽设计为6 GHz,使用通过源极跟随器实现的电感峰值。当频率合成器的倍频为6.125 / 6时,OCMC在高速输入信号的两个单位间隔内采样49个点。 10位ADC使用流水线逐次逼近寄存器ADC的架构来减少功耗和芯片面积。拟议的OCMC采用65纳米CMOS技术和1.2 V电源实现。分别以5.1 ps和1.17 mV的时间和电压分辨率重建8 Gb / s芯片到芯片接口信号。

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