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Design of an 81-Channel Read-Out System for a Hybrid PMT/SiPM Modular Gamma-Ray Camera

机译:用于混合PMT / SIPM模块化伽马射线照相机81通道读出系统的设计

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摘要

AdaptiSPECT-C is a dedicated human brain SPECT system currently under development. The system utilizes hybrid PMT/SiPM modular gamma-ray scintillation cameras with 81 photosensor channels for each camera. Here we present the read-out system design for the modular cameras. A front-end board inside the camera enclosure performs the current-to-voltage conversion for the photosensor signals. The back-end board receives the 81 analog signals and estimates time of interaction and amount of light acquired by each photosensor. The energy estimation is performed by sigma-delta modulation (SDM). A non-uniform 2-bit SDM is utilized for triggering and timing. The SDM approach utilized in the front-end board reduces the complexity of the system compared to conventional ADC methods, while maintaining system performance. The digital side of the SDMs is implemented on the FPGA of a system-on-chip, which also contains an ARM-based processor. A direct memory access (DMA) controller implemented on the FPGA writes the data to on-board memory. An embedded lightweight TCP/IP stack reads the data from memory and streams it to the system computer. The back-end board also monitors and controls camera temperature, and supplies power to the camera.
机译:Adaptispect-C是目前正在开发的专用人脑SPECT系统。该系统利用混合PMT / SIPM模块化伽马射线闪烁照相机,为每个摄像机提供81光电传感器通道。在这里,我们介绍了模块化摄像机的读出系统设计。相机机箱内的前端板对光电传感器信号执行电流到电压转换。后端板接收81个模拟信号并估计每个光电传感器获取的相互作用时间和光量。通过Sigma-Delta调制(SDM)执行能量估计。不均匀的2位SDM用于触发和定时。与传统ADC方法相比,前端板中使用的SDM方法降低了系统的复杂性,同时保持系统性能。 SDMS的数字侧在片上系统的FPGA上实现,其还包含基于臂的处理器。在FPGA上实现的直接内存访问(DMA)控制器将数据写入车载内存。嵌入式轻量级TCP / IP堆栈从内存中读取数据并将其流传输到系统计算机。后端板还监控和控制摄像机温度,并为相机提供电源。

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