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CTC and CT5TEA: an Advanced Multi-Channel Digitizer and Trigger ASIC for Imaging Atmospheric Cherenkov Telescopes

NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT(2024)

Erlangen Centre for Astroparticle Physics (ECAP) | Univ Hawaii | Max Planck Inst Kernphys | Nagoya Univ | Univ Leicester | Institute for Mathematics | Univ Wisconsin Madison | DESY | Siemens Mobil Inc

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Abstract
We have developed a new set of Application-Specific Integrated Circuits (ASICs) of the TARGET family (CTC and CT5TEA), designed for the readout of signals from photosensors in cameras of Imaging Atmospheric Cherenkov Telescopes (IACTs) for ground-based gamma-ray astronomy. We present the performance and design details. Both ASICs feature 16 channels, with CTC being a Switched-Capacitor Array (SCA) sampler at 0.5 to 1 GSa/s with a 16,384 sample deep storage buffer, including the functionality to digitize full waveforms at arbitrary times. CT5TEA is its companion trigger ASIC (though may be used on its own), which provides trigger information for the analog sum of four (and 16) adjacent channels. Since sampling and triggering takes place in two separate ASICs, the noise due to interference from the SCA is suppressed, and allows a minimal trigger threshold of <= 2.5 mV (0.74 photo electrons (p.e.)) with a trigger noise of <= 0.5 mV (0.15 p.e.). For CTC, a maximal input voltage range from -0.5 V up to 1.7 V is achieved with an effective bit range of > 11.6 bits and a baseline noise of 0.7 mV. The cross-talk improved to <= 1% over the whole -3 dB bandwidth of 220 MHz and even down to 0.2% for 1.5 V pulses of 10 ns width. Not only is the performance presented, but a temperature- stable calibration routine for pulse mode operation is introduced and validated. The resolution is found to be similar to 2.5% at 33.7 mV (10 p.e.) and <= 0.3% at 337 mV (100 p.e.) with an integrated non-linearity of < 1.6 mV. Developed for the Small-Sized Telescope (SST) and Schwarzschild-Couder Telescope (SCT) cameras of the Cherenkov Telescope Array Observatory (CTAO), CTC and CT5TEA are deployed for both prototypes and shall be integrated into the final versions.
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Data acquisition circuits,Trigger concepts and systems (hardware and software),Gamma telescopes,Imaging air Cherenkov telescope,Camera electronics
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要点】:本文介绍了TARGET家族中的两款新型专用集成电路(ASIC)CTC和CT5TEA,用于成像大气切伦科夫望远镜(IACTs)中光电传感器的信号读取,具有高采样率、低噪声和优化的触发功能,适用于地面伽马射线天文学研究。

方法】:CTC是一款具有16通道的开关电容器阵列(SCA)采样器,采样率在0.5至1 GSa/s之间,具备16,384样本深度的存储缓冲区,能够任意时刻数字化完整波形;CT5TEA是其配套的触发ASIC,提供四个(或16个)相邻通道模拟和的触发信息。

实验】:作者展示了CTC和CT5TEA的性能和设计细节,并在温度稳定的条件下引入并验证了脉冲模式操作的校准程序。该ASICs已部署在Cherenkov Telescope Array Observatory(CTAO)的小型望远镜(SST)和施瓦茨希尔德-库尔德望远镜(SCT)相机的原型和最终版本中,但未提及具体数据集名称。结果显示,CTC的输入电压范围可达-0.5 V至1.7 V,有效比特范围超过11.6位,基线噪声为0.7 mV,且具有优异的通道间串扰抑制性能。