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Analysis and design of mixed signal oscilloscope for jitter reduction

机译:降低抖动的混合信号示波器的分析与设计

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摘要

This paper presents a 12.5-Gb/s on-chip oscilloscope (OCO) circuit to measure eye diagrams and jitter histograms of high-speed digital signals. The proposed circuit adopts a novel architecture to capture both single-ended and differential signals. In addition, it is capable of measuring the eye openings and jitter of the input signals without the need to construct the whole eye diagram which makes it a suitable candidate for eye opening monitor circuits. An asynchronous sampling technique and an efficient algorithm are employed in this research to decrease the area of the OCO as well as its processing time. The proposed circuit is fabricated in a 65-nm CMOS technology and the measurement results show sub-Pico second resolution when the input signals consist of a 10-GHz clock signal and a 12.5 GB/spseudorandom binary sequence. The OCO circuit has a power consumption of 1.9 m W, and its core area is 40 × 60 μm.
机译:本文提出了一种12.5 Gb / s的片上示波器(OCO)电路,用于测量高速数字信号的眼图和抖动直方图。所提出的电路采用新颖的架构来捕获单端和差分信号。另外,它能够测量输入信号的眼图张开和抖动,而无需构建整个眼图,这使其成为眼图监视电路的合适候选者。本研究采用异步采样技术和高效的算法来减少OCO的面积和处理时间。所提出的电路是采用65 nm CMOS技术制造的,当输入信号由10 GHz时钟信号和12.5 GB /伪随机二进制序列组成时,测量结果显示了亚皮秒的第二分辨率。 OCO电路的功耗为1.9 m W,其核心面积为40×60μm。

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