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Front-end ASIC for spectroscopic readout of virtual Frisch-grid CZT bar sensors

机译:虚拟FRISCH-GRID CZT条传感器光谱读数的前端ASIC

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Compact multi-channel radiation detectors rely on low noise front-end application specific integrated circuits (ASICs) to achieve high spectral resolution. Here, a new ASIC developed to readout virtual Frisch-grid cadmium zinc telluride (VFG CZT) detectors for gamma ray spectroscopy is presented. Corresponding to each ionizing event in the detector, the ASIC measures the amplitude and timing at the anode, the cathode and four pad sense electrodes associated with each sensor in a detector array. The ASIC is comprised of 52 channels of which there are 4 cathode channels and 48 channels which can be configured as either anode channels with a baseline of 250 mV or pad sense channels to process induced signals with a baseline of 1.2 V. With a static power dissipation of 3 mW, each channel performs low-noise charge amplification, high-order shaping, peak and timing detection along with analog storage and multiplexing. The overall channel linearity was better than +/- 1% with timing resolution down to 700 ps for charges greater than 8 fC in the 3 MeV range. With a 4 x 4 array of 6 mm x 6 mm x 20 mm virtual Frisch-grid bar sensors connected and biased, an electronic resolution of approximate to 270 e(-) rms for charges up to 100 fC in the 3.2 MeV range was measured. Spectral measurements obtained with the 3D correction technique demonstrated resolutions of 1.8% FWHM at 238 keV and 0.9% FWHM at 662 keV.
机译:紧凑的多通道辐射检测器依靠低噪声前端应用特定电路(ASIC)来实现高光谱分辨率。在这里,提出了一种开发用于读出虚拟Frisch-Grid镉锌碲化镉锌(VFG CZT)探测器的新ASIC,用于伽马射线光谱探测器。对应于检测器中的每个电离事件,ASIC测量与检测器阵列中的每个传感器相关联的阳极,阴极和四个焊盘感测电极处的幅度和定时。 ASIC由52个通道组成,其中有4个阴极通道和48个通道,其可以配置为具有250 mV或焊盘感测通道的基线的阳极通道,以利用1.2 V的基线处理诱导信号。具有静态功率。耗散3 MW,每个通道执行低噪声电量放大,高阶整形,峰值和定时检测以及模拟存储和多路复用。总通道线性度优于+/- 1%,同时分辨率低至700 ps,在3 mev范围内大于8 fc的电荷。使用4 x 4阵列的6 mm x 6 mm x 20 mm虚拟Frisch-栅格杆传感器连接和偏置,测量了在3.2MEV范围内最高可达100 FC的270 e( - )rms的电子分辨率为270 e( - )rms 。用3D校正技术获得的光谱测量值在238keV和662keV的238keV下和0.9%FWHM的分辨率显示为1.8%FWHM。

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