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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Theoretical comparison between two different filtering techniques suitable for the VLSI spectroscopic amplifier ROTOR
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Theoretical comparison between two different filtering techniques suitable for the VLSI spectroscopic amplifier ROTOR

机译:适用于VLSI光谱放大器ROTOR的两种不同滤波技术之间的理论比较

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The development of new detection systems based on arrays of Silicon Drift Detectors (SDD) used for new X-ray spectroscopy applications, like X-ray Holography and EXAFS experiments, requires the realization of suitable integrated low-noise electronics for the readout of the detector signals. Recently, a new VLSI time-variant signal processor called ROTOR has been developed. Despite its time-variant nature ROTOR is capable of correctly processing events randomly distributed along the time axis, thanks to the employment of the Concurrent Wheel Technique (CWT). Two different possible solutions for the ROTOR chip have been developed, both suitable for the CWT working mechanism. A theoretical comparison between the noise performances of the two filtering methods has been carried out and is presented in this work.
机译:基于用于新的X射线光谱学应用(例如X射线全息照相术和EXAFS实验)的硅漂移检测器(SDD)阵列的新检测系统的开发,需要实现合适的集成低噪声电子设备以读取检测器信号。最近,开发了一种称为ROTOR的新型VLSI时变信号处理器。尽管具有时变特性,但由于采用了并发轮技术(CWT),因此ROTOR能够正确处理沿时间轴随机分布的事件。已经为ROTOR芯片开发了两种不同的解决方案,均适用于CWT工作机制。进行了两种滤波方法的噪声性能之间的理论比较,并在本文中进行了介绍。

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