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Linear Tunable Analog Front-End Electronics for Silicon Charged-Particle Detectors

机译:线性可调模拟前端电子器件,用于硅带电粒子检测器

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A linear front-end electronic system based on a high-speed charge sensitive amplifier and a tunable shaping amplifier suitable for silicon detectors has been presented. The designed charge sensitive amplifier features simplicity and compactness. It is based on the combination of a low-noise field-effect transistor input device and a current feedback opamp ensuring high frequency and small rise time. The circuit provides both an energy signal and a timing signal. The shaping amplifier is a fifth-order complex filter based on an opamp- topology providing a nearly Gaussian response. The shaper also includes a pole-zero cancellation circuit and a base line restorer to preclude the pileup of subsequent input signals. A control system has been developed to adjust the main parameters of the channel. The designed readout channel has been optimized for a medium energy range up to 50 MeV coupled to silicon detectors up to 100 pF. Its feasibility for nuclear physics applications has been experimentally validated.
机译:提出了一种基于高速电荷敏感放大器和适用于硅探测器的可调整形放大器的线性前端电子系统。设计的电荷敏感放大器具有简单而紧凑的特点。它基于低噪声场效应晶体管输入设备和电流反馈运算放大器的组合,可确保高频和小上升时间。该电路同时提供能量信号和定时信号。整形放大器是基于运算放大器拓扑的五阶复数滤波器,可提供接近高斯的响应。整形器还包括零极点消除电路和基线恢复器,以防止后续输入信号的堆积。已经开发出一种控制系统来调节通道的主要参数。设计的读出通道已针对耦合至100 pF的硅探测器的高达50 MeV的中等能量范围进行了优化。它在核物理应用中的可行性已通过实验验证。

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