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Measurement of Switching Performance of Pixelated Silicon Sensor Integrated with Field Effect Transistor

机译:用现场效应晶体管集成的像素化硅传感器的切换性能的测量

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摘要

Silicon shows very high detection efficiency for low-energy photons, and the silicon pixel sensor provides high spatial resolution. Pixelated silicon sensors facilitate the direct detection of low-energy X-ray radiation. In this study, we developed junction field effect transistors (JFETs) that can be integrated into a pixelated silicon sensor to effectively handle many signal readout channels due to the pixelated structure without any change in the sensor resolution; this capability of the integrated system arises from the pixelated structure of the sensor. We focused on optimizing the JFET’s switching function, and simulated JFETs with different fabrication parameters. Furthermore, prototype JFET switches were designed and fabricated on the basis of the simulated results. It is important not only to keep the low leakage currents in the JFET but also reduce the current flow as much as possible by providing a high resistance when the JFET switch is off. We determined the optimal fabrication conditions for the effective switching of the JFETs. In this paper, we present the results of the measurement of the switching capability of the fabricated JFETs for various design variables and fabrication conditions.
机译:硅显示出低能量光子的高检测效率,硅像素传感器提供高空间分辨率。像素化硅传感器有助于直接检测低能量X射线辐射。在本研究中,我们开发了可以集成到像素化硅传感器中的接合场效果晶体管(JFET),以有效地处理由于像素化结构引起的许多信号读出通道,而没有传感器分辨率的任何变化;集成系统的这种能力由传感器的像素化结构产生。我们专注于优化JFET的开关功能,并具有不同的制造参数的模拟JFET。此外,在模拟结果的基础上设计和制造了原型JFET交换机。重要的是,不仅要在JFET中保持低漏电流,而且还可以通过在JFET开关关闭时尽可能地降低电流。我们确定了用于JFET的有效切换的最佳制造条件。在本文中,我们介绍了用于各种设计变量和制造条件的制造的JFET的切换能力的测量结果。

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