首页> 外文会议>2013 IEEE Nuclear Science Symposium and Medical Imaging Conference >SENSROC5: A 16-channel radiation-hardness low-noise front-end ASIC dedicated to CZT detectors for X- and #x03B3;-ray imaging
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SENSROC5: A 16-channel radiation-hardness low-noise front-end ASIC dedicated to CZT detectors for X- and #x03B3;-ray imaging

机译:SENSROC5:16通道辐射强度低噪声前端ASIC,专用于X射线和γ射线成像的CZT检测器

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This paper presents a low-noise front-end readout application specific integrated circuit (ASIC) for CZT detectors. A cascode amplifier based on split-let topology is selected to realize the charge-sensitive amplifier (CSA) to achieve low noise performances. A leakage-current-compensation circuit is added to suppress the leakage current of from 0 to 10 nA. The output of the CSA is connected to a slow shaper implemented by a CR-(RC)2 semi-Gaussian architecture. In the time branch, the CSA output is followed by a fast shaper for the trigger acquisition. A digital monostable circuits is designed to adjust the delay of trigger signals so that the peak value of the shaped voltages can be tracked. The sampled voltages are stored into an analog memory. Based on the above topology, a 16-channel front-end readout prototype chip (named as SENSROC5) is designed and implemented in 0.35 µm CMOS process. In this chip, the radiation-hardness layout techniques are adopted. The die size is 2.12 mm×4.60 mm. The input range of the ASIC is from 2000 e-to 180000 e-, which is suitable for the detection of the X-and gamma ray from 11.2 keV to 1 MeV. The post-simulated results are listed in the following. The gain of the readout channel is 40.2 V/pC. The ENC is 90 e- at zero farad plus 15 e- per picofarad. The nonlinearity is less than 3 %. The crosstalk is less than 2 %. The power dissipation is about 16.5mWplus 3.1 mW/channel.
机译:本文提出了一种用于CZT检测器的低噪声前端读出专用集成电路(ASIC)。选择基于分裂拓扑的共源共栅放大器来实现电荷敏感放大器(CSA),以实现低噪声性能。添加了泄漏电流补偿电路以将泄漏电流抑制为0到10 nA。 CSA的输出连接到由CR-(RC) 2 半高斯架构实现的慢速整形器。在时间分支中,CSA输出后跟一个快速整形器,用于触发采集。设计数字单稳态电路来调节触发信号的延迟,以便可以跟踪整形电压的峰值。采样电压存储在模拟存储器中。基于上述拓扑,设计并采用0.35 µm CMOS工艺实现了16通道前端读出原型芯片(命名为SENSROC5)。在该芯片中,采用了辐射硬度布局技术。模具尺寸为2.12mm×4.60mm。 ASIC的输入范围是2000 e至180000 e-,适用于检测11.2 keV至1 MeV的X射线和伽马射线。下面列出了模拟后的结果。读出通道的增益为40.2 V / pC。 ENC为零法拉时为90 e-,每微微法拉为15 e-。非线性度小于3%。串扰小于2%。功耗约为16.5mW + 3.1 mW /通道。

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