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首页> 外文期刊>IEEE Transactions on Nuclear Science >Analog front-end cell designed in a commercial 0.25 /spl mu/m process for the ATLAS pixel detector at LHC
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Analog front-end cell designed in a commercial 0.25 /spl mu/m process for the ATLAS pixel detector at LHC

机译:LHC的ATLAS像素检测器采用商业化0.25 / spl mu / m工艺设计的模拟前端单元

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摘要

A new analog pixel front-end cell has been developed for the ATLAS detector at the future Large Hadron Collider (LHC) at the European Laboratory for Particle Physics (CERN). This analog cell has been submitted in two commercial 0.25 /spl mu/m CMOS processes (in an analog test chip format), using special layout techniques for radiation hardness purposes. It is composed of two cascaded amplifiers followed by a fast discriminator featuring a detection threshold within the range of 1000 to 10000 electrons. The first preamplifier has the principal role of providing a large bandwidth, low input impedance, and fast rise time in order to enhance the time-walk and crosstalk performance, whereas the second fully differential amplifier is aimed at delivering a sufficiently high-voltage gain for optimum comparison. A new do feedback concept renders the cell tolerant of sensor leakage current up to 300 nA and provides monitoring of this current. Two 5-bit digital-to-analog converters tolerant to single-event upset have been implemented for threshold and recovery-time pixel-to-pixel matching purposes. Special attention has been paid to the power-supply rejection ratio to minimize sensitivity to pickup. The complete cell dissipates 30 /spl mu/W, occupies an area of 50/spl times/90 /spl mu/m/sup 2/ and is operated with a single 1.6-V power supply. Measurements of two test chips are presented.
机译:在未来的欧洲粒子物理实验室(CERN)的大型强子对撞机(LHC)中,已经为ATLAS检测器开发了一种新的模拟像素前端单元。该模拟单元已通过两种特殊的0.25 / spl mu / m CMOS工业化工艺(以模拟测试芯片格式)提交,并采用了特殊的布局技术以达到辐射硬度的目的。它由两个级联放大器和一个快速鉴别器组成,该鉴别器的检测阈值为1000至10000个电子。第一个前置放大器的主要作用是提供大带宽,低输入阻抗和快速上升时间,以增强时间步移和串扰性能,而第二个全差分放大器旨在为最佳比较。一个新的做反馈概念使电池对传感器泄漏电流的耐受性高达300 nA,并提供对该电流的监控。为了阈值和恢复时间像素间匹配的目的,已经实现了两个可容忍单事件翻转的5位数模转换器。已特别注意电源抑制比,以最大程度降低对拾取的敏感度。整个电池耗散30 / spl mu / W,占地50 / spl倍/ 90 / spl mu / m / sup 2 /,并使用单个1.6 V电源供电。给出了两个测试芯片的测量结果。

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