C. Aramo, E. Bissaldi, M. Bitossi, G. Robertis, L. Venere, F. Giordano, Simone Incardona, F. Licciulli, Pierpaolo Loizzo, S. Loporchio, G. Marsella, F. Pantaleo, R. Paoletti, G. Tripodo
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引用次数: 0
摘要
本文介绍了用于CTA实验的史瓦西- couder望远镜(SCT)相机的新型前端电子器件(FEE)的特性。新的FEE基于一种新的专用集成电路(ASIC),旨在读出硅光电倍增管(SiPMs)阵列,用于低强度光探测,直到单个光电子,称为SMART(用于高分辨率切伦科夫望远镜的SiPM多通道ASIC)。模拟通道由高速可编程增益路径和用于光子计数的极零滤波器组成。外部快速数字化仪可用于光子计数分析。慢路径允许测量平均SiPM电流,由内部10位ADC采样。我们展示了将SMART与Fondazione Bruno Kessler (FBK)生产的16 SiPM矩阵耦合时获得的表征结果。将给出电荷谱、信噪比和动态范围方面的结果。然后,SMART ASIC与基于TARGET ASIC的SCT读出电子器件耦合,能够以1GS/s的频率数字化波形并产生触发信号。在这项工作中,我们进一步介绍了在整个FEE链上获得的初步表征。
Characterization of the upgraded Frontend Electronics of the Shwarzschild-Couder Telescope based on the SMART ASIC
We present the characterization of the new Frontend Electronics (FEE) developed for the Schwarzschild-Couder Telescope (SCT) camera of the CTA experiment. The new FEE is based on a new Application-Specific Integrated Circuit (ASIC) intended to read-out arrays of Silicon Photomultipliers (SiPMs) for low-level light detection down to the single photoelectron, called SMART (SiPM Multichannel ASIC for high Resolution Cherenkov Telescopes). The analog channel is composed of a high speed path with programmable gain and pole-zero filter designed for photon-counting. An external fast digitizer can be used for the photon-counting analysis. A slow path allows the measurement of the mean SiPM current, sampled by an internal 10-bit ADC. We present the characterization results obtained when coupling the SMART to a 16 SiPM matrix produced by Fondazione Bruno Kessler (FBK). Results in terms of charge spectrum, signal-to-noise ratio and dynamic range will be presented. The SMART ASIC was then coupled to the SCT readout electronics based on the TARGET ASICs, able to digitize waveforms at a frequency of 1GS/s and to generate trigger signals. In this work, we further present the preliminary characterization obtained on the full FEE chain.