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Characterization of a high-speed radio-frequency sampling and demultiplexing circuit based on the cascade connection of pin photodiodes

机译:基于引脚光电二极管级联的高速射频采样与解复用电路的表征

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Herein, we apply theoretical models to characterize the transfer function and frequency response of a complex optoelectronic circuit that comprises a primary ultrafast sampling circuit followed by a cascade connection of extsl{N} demultiplexing stages. The successive radio-frequency optoelectronic samplers were based on the cascade connection of positive-intrinsic-negative-photodiodes (PIN-PDs). We developed a procedure to calculate the principal design parameters that allows us to use optical power for each sampling and demultiplexing stage, such that the circuit can be designed based on the application requirements. The results obtained from the theoretical models were compared with the measurements obtained from the 2.5 GS / s sampling circuit connected in cascade with a 1.25 GS / s and a 625MS / s demultiplexing circuit implemented using commercial PIN-PDs.
机译:在此,我们应用理论模型来表征复杂的光电电路的传递函数和频率响应,该电路包括一个主要的超快采样电路,然后是 textsl {N}个解复用级的级联。连续的射频光电采样器基于正-本征-负光电二极管(PIN-PD)的级联。我们开发了一种计算主要设计参数的程序,该程序使我们能够将光功率用于每个采样和多路分解阶段,从而可以根据应用要求设计电路。从理论模型获得的结果与从2.5 GS / s采样电路级联获得的测量结果进行了比较,该采样电路级联使用商用PIN-PD实现的1.25 GS / s和625MS / s多路分解电路。

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