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Real-time linear time-domain network analysis using picosecond photoconductive mixer and samplers

机译:使用皮秒光电导混合器和采样器进行实时线性时域网络分析

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Ion-implanted GaAs photoconductive (PC) switches have been used as an optical-microwave frequency mixer and electrical waveform samplers in a real-time sampling system. This high fidelity system has a bandwidth of 100-GHz, time resolution of 4-ps and a measurement sensitivity of 5-/spl mu/V//spl radic/(Hz). Because of this high sensitivity capability, the magnitude of the testing signal can be maintained sufficiently small to allow network analysis of a device or circuit in the linear mode without signal distortion. In this paper, a linear time-domain network analysis of a broadband monolithic microwave integrated circuit (MMIC) amplifier has been demonstrated in real-time by the optoelectronic technique. A measurement time of less than 40 /spl mu/s is used to acquire waveform data. The dynamic range of the system can be further improved to 40 dB by reducing the repetition rate of the step recovery diode. Since the PC switches are fabricated with processes compatible to MMIC manufacturing, this real-time system is well-suited for on-wafer MMIC characterization.
机译:离子注入式GaAs光电导(PC)开关已被用作实时采样系统中的光学微波频率混合器和电波形采样器。这种高保真系统的带宽为100 GHz,时间分辨率为4 ps,测量灵敏度为5- / spl mu / V // spl radic /(Hz)。由于这种高灵敏度能力,测试信号的幅度可以保持足够小,以允许在线性模式下对设备或电路进行网络分析而不会产生信号失真。本文通过光电技术实时演示了宽带单片微波集成电路(MMIC)放大器的线性时域网络分析。小于40 / spl mu / s的测量时间用于获取波形数据。通过降低步进恢复二极管的重复频率,可以将系统的动态范围进一步提高到40 dB。由于PC开关的制造工艺与MMIC制造兼容,因此该实时系统非常适合晶圆上MMIC表征。

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