Development of ATLAS Liquid Argon Calorimeters readout electronics for HL-LHC

Kai Chen
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Abstract

The high-luminosity phase of the Large Hadron Collider (LHC) will provide 5-7 times greater instantaneous and total luminosities than assumed in the original design of the ATLAS Liquid Argon (LAr) Calorimeters and their readout system. The improved trigger system has a higher acceptance rate of 1 MHz and a longer latency of up to 60 micro-seconds. This requires an upgrade of the readout electronics, and a better radiation tolerance is also required. This paper will present concepts for the future readout of the 182,468 calorimeter channels at 40 or 80 MHz with a 16 bit dynamic range. Progress of the development of low-noise, low-power and high-bandwidth electronic components will be presented. These include radiation-tolerant preamplifiers, analog-to-digital converters (ADC) up to 14 bits and low-power optical links providing transfer rates of at least 10 Gbps per fiber.
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hc - lhc用ATLAS液氩量热计读出电子器件的研制
大型强子对撞机(LHC)的高亮度相位将提供比ATLAS液氩量热计及其读出系统原始设计中假设的高5-7倍的瞬时和总亮度。改进后的触发系统具有1 MHz的更高接受率和长达60微秒的更长的延迟。这需要对读出电子设备进行升级,并且还需要更好的辐射容忍度。本文将介绍在40或80 MHz具有16位动态范围的182,468个量热计通道的未来读出概念。介绍了低噪声、低功耗和高带宽电子元件的发展进展。其中包括耐辐射前置放大器、高达14位的模数转换器(ADC)和每根光纤传输速率至少为10gbps的低功率光链路。
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