首页> 外文会议>Instrumentation and Measurement Technology Conference, 1990. IMTC-90. Conference Record., 7th IEEE >Application and operation of a superconducting sampler based instrumentation system
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Application and operation of a superconducting sampler based instrumentation system

机译:基于超导采样器的仪器系统的应用与操作

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A superconducting sampler system with a self-triggering mechanism achieved a 70-GHz bandwidth, 5-ps rise time resolution, 20- mu V r.m.s. (root mean square) noise floor, less than 1-ps jitter, and an 8-mV, 70-GHz triggering capability. The sampler was used for studying ion-induced SEU (single-event-upset) transient phenomena in silicon diodes and GaAs MESFETs. Compared with conventional methods, the superconducting sampling system is easy to use and provides superior capabilities. An SEU transient has been measured with a record 25-ps rise time. The superconducting sampler configured as a TDR (time-domain reflectometer) has achieved a 2.5-ps rise time at the I/O interface after deconvolution. This corresponds to a 0.375-mm spatial resolution. It is concluded that the TDR can provide useful information for improving the performance of microwave and millimeter-wave devices.
机译:具有自触发机制的超导采样器系统实现了70 GHz带宽,5 ps上升时间分辨率,20μVr.m.s。 (均方根)本底噪声,小于1ps的抖动以及8mV的70GHz触发能力。该采样器用于研究硅二极管和GaAs MESFET中离子诱导的SEU(单事件翻转)瞬态现象。与传统方法相比,该超导采样系统易于使用并且具有出色的功能。测量到的SEU瞬态具有创纪录的25ps上升时间。解卷积后,配置为TDR(时域反射计)的超导采样器在I / O接口处实现了2.5ps的上升时间。这对应于0.375毫米的空间分辨率。结论是,TDR可以为提高微波和毫米波设备的性能提供有用的信息。

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