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Low-Power Amplifier-Discriminators for High Time Resolution Detection

机译:用于高时间分辨率检测的低功耗放大器-鉴别器

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摘要

Low-power amplifier-discriminators based on a so-called NINO architecture have been developed with high time resolution for the readout of radiation detectors. Two different circuits were integrated in the NINO13 chip, processed in IBM 130 nm CMOS technology. The LCO version (Low Capacitance and consumption Optimization) was designed for potential use as front-end electronics in the Gigatracker of the NA62 experiment at CERN. It was developed as pixel readout for solid-state pixel detectors to permit minimum ionizing particle detection with less than 180 ps rms resolution per pixel on the output pulse, for power consumption below 300 mu W per pixel. The HCO version (High Capacitance Optimization) was designed with 4 mW power consumption per channel to provide timing resolution below 20 ps rms on the output pulse, for charges above 10 fC. Results presented show the potential of the LCO and HCO circuits for the precise timing readout of solid-state detectors, vacuum tubes or gas detectors, for applications in high energy physics, biotechnologies or medical imaging.
机译:已经开发出具有高时间分辨率的基于所谓的NINO架构的低功率放大器-鉴别器,用于读出辐射探测器。 NINO13芯片中集成了两种不同的电路,并采用IBM 130 nm CMOS技术进行处理。 LCO版本(低电容和功耗优化)专为在CERN NA62实验的Gigatracker中用作前端电子设备而设计。它被开发为固态像素检测器的像素读出器,可实现最小电离粒子检测,并且输出脉冲上每个像素的分辨率低于180 ps rms,每个像素的功耗低于300μW。 HCO版本(高电容优化)的设计每通道功耗为4 mW,可为输出电荷高于10 fC的情况提供低于20 ps rms的时序分辨率。给出的结果显示了LCO和HCO电路对于固态探测器,真空管或气体探测器的精确定时读出的潜力,可用于高能物理,生物技术或医学成像。

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