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Low power readout circuits for large area silicon photomultiplier array

机译:大面积硅光电倍增器阵列的低功率读出电路

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In this paper we present modeling and experimental characterization of two passive charge division circuits as low power readout systems for large area silicon photomultiplier (SiPM) array. The first configuration is the traditional discrete positioning circuit (DPC), while the second one is a symmetric charge division circuit where the SiPM output current is split into two symmetric signals by a pair of diodes. Testing the two CDC networks on a 16×28 array of SiPMs, we found that image reconstruction is significantly compromised when the DPC configuration is connected to few SiPMs, while the diode-based CDC configuration presents a very high quality image histogram independently on the number of the connected photosensors. These results demonstrate the efficacy of the proposed diode-based CDC as passive readout circuitry and open the route for the development of effective low-power consumption, portable gamma camera systems.
机译:本文在大面积硅光电倍增器(SIPM)阵列的低功率读出系统中,提出了两个无源电荷划分电路的建模和实验表征。第一配置是传统的离散定位电路(DPC),而第二个配置是第二个配置电流电路,其中SIPM输出电流被一对二极管分成两个对称信号。在16×28阵列的SIPMS上测试两个CDC网络,我们发现当DPC配置连接到几个SIPMS时,图像重建显着损害,而基于二极管的CDC配置在数量上独立地呈现非常高质量的图像直方图连接的光电传感器。这些结果证明了基于二极管的CDC作为被动读出电路的功效,并打开了开发有效低功耗,便携式伽马摄像机系统的途径。

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