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首页> 外文期刊>IEEE Transactions on Nuclear Science >Performance of the optically-coupled current-mirror with its input stage cooled to cryogenic temperature
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Performance of the optically-coupled current-mirror with its input stage cooled to cryogenic temperature

机译:输入级冷却至低温时光耦合电流镜的性能

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The Optically-Coupled Current-Mirror (OCCM) is a novel feedback circuit architecture that allows linear transmission of analog signals via optical fibers. Its most distinctive feature is that the input stage is galvanically isolated and passive, as it consists just on the back-to-back connection of a LED and a photodiode. Only those components are required to be in close contact with the detector, and no power supply is required to be brought to the input stage. All active components are located at a safe distance, therefore saving them from being exposed to radiation, as it is common in most experiments at particle accelerators. We have investigated the properties of the OCCM when its passive input stage is cooled to cryogenic temperatures. Results have been extremely interesting as, for instance, the sharp increase in open-loop gain observed when cooling to 77 K, due to an enhanced LED efficiency. This translates into a higher dynamic range and still better linearity, opening new opportunities for the transmission of current signals generated in cryogenic detectors.
机译:光耦合电流镜(OCCM)是一种新颖的反馈电路体系结构,它允许通过光纤线性传输模拟信号。其最独特的功能是输入级是电隔离的和无源的,因为它仅由LED和光电二极管的背对背连接组成。仅要求那些组件与检测器紧密接触,并且不需要将电源带到输入级。所有活性成分都位于安全距离处,因此可以避免它们暴露在辐射下,这在大多数粒子加速器实验中很常见。我们已经研究了当OCCM的被动输入级冷却到低温时的性能。结果非常有趣,例如,由于提高了LED效率,冷却至77 K时观察到的开环增益急剧增加。这转化为更高的动态范围和更好的线性度,为低温探测器中产生的电流信号的传输开辟了新的机会。

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