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Asic developments for radiation imaging applications: The medipix and timepix family

机译:放射成像应用的Asic开发:medipix和timepix系列

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Hybrid pixel detectors were developed to meet the requirements for tracking in the inner layers at the LHC experiments. With low input capacitance per channel (10-100 fF) it is relatively straightforward to design pulse processing readout electronics with input referred noise of ~100 e-rms and pulse shaping times consistent with tagging of events to a single LHC bunch crossing providing clean 'images' of the ionising tracks generated. In the Medipix Collaborations the same concept has been adapted to provide practically noise hit free imaging in a wide range of applications. This paper reports on the development of three generations of readout ASICs. Two distinctive streams of development can be identified: the Medipix ASICs which integrate data from multiple hits on a pixel and provide the images in the form of frames and the Timepix ASICs who aim to send as much information about individual interactions as possible off-chip for further processing. One outstanding circumstance in the use of these devices has been their numerous successful applications, thanks to a large and active community of developers and users. That process has even permitted new developments for detectors for High Energy Physics. This paper reviews the ASICs themselves and details some of the many applications.
机译:开发了混合像素检测器,以满足LHC实验中对内层进行跟踪的要求。每通道输入电容低(10-100 fF),设计脉冲处理读出电子设备相对简单,输入参考噪声约为100 e-rms,脉冲整形时间与将事件标记到单个LHC束交叉点相一致,从而提供了清晰的“产生的电离轨迹的图像。在Medipix Collaborations中,相同的概念已经过调整,可在广泛的应用中提供几乎无噪声的成像。本文报告了三代读出ASIC的发展。可以确定两个不同的开发流:Medipix ASIC将像素上多次命中的数据进行集成,并以帧的形式提供图像; Timepix ASIC旨在在芯片外发送尽可能多的有关个体交互的信息,进一步处理。由于拥有大量活跃的开发人员和用户社区,因此使用这些设备的一个杰出情况是其大量成功的应用程序。该过程甚至允许高能物理探测器的新发展。本文回顾了ASIC本身,并详细介绍了许多应用。

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