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首页> 外文期刊>Circuits and Systems II: Express Briefs, IEEE Transactions on >Linear Equalization and PVT-Independent DC Wander Compensation for AC-Coupled PCIe 3.0 Receiver Front End
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Linear Equalization and PVT-Independent DC Wander Compensation for AC-Coupled PCIe 3.0 Receiver Front End

机译:交流耦合的PCIe 3.0接收器前端的线性均衡和独立于PVT的直流漂移补偿

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摘要

An alternating current (ac)-coupled high-speed receiver analog front end is capable of shifting the input direct current (dc) level without extra current consumption and signal degradation at high frequencies. However, the dc wander due to the high-pass characteristic of the ac-coupled front end may degrade the receiver performance because it equivalently modulates the sampling threshold voltage of the sampler. While this modulation may be negligible for highly dc-balanced input, it shows observable degradation in Peripheral Component Interconnect Express (PCIe) 3.0 receivers operating at 8 Gb/s. In addition, analog equalization is generally required for a PCIe 3.0 receiver front end. This paper presents techniques to add linear equalization and dc wander compensation into an ac-coupled receiver front end. The proposed linear equalization scheme attenuates the low-frequency energy and keeps the high-frequency energy. The proposed dc wander-compensation method is independent of process, voltage, and temperature; therefore, there is no need for calibration or compensation. The proposed schemes have very low power consumption and very good linearity because only passive and linear components are utilized in the main signal path. The proposed schemes were confirmed by simulation.
机译:交流(ac)耦合的高速接收器模拟前端能够在不增加电流消耗和高频信号衰减的情况下,改变输入直流(dc)电平。但是,由于交流耦合前端的高通特性导致的直流漂移可能会降低接收器性能,因为它等效地调制了采样器的采样阈值电压。尽管对于高直流平衡输入而言,这种调制可以忽略不计,但它在以8 Gb / s速度运行的外围组件互连Express(PCIe)3.0接收器中显示出明显的降级。此外,PCIe 3.0接收器前端通常需要模拟均衡。本文介绍了将线性均衡和直流漂移补偿添加到交流耦合接收器前端的技术。所提出的线性均衡方案衰减了低频能量,并保持了高频能量。所提出的直流漂移补偿方法与过程,电压和温度无关。因此,无需校准或补偿。提议的方案具有非常低的功耗和很好的线性度,因为在主信号路径中仅利用了无源和线性分量。仿真验证了所提出的方案。

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