A Burn-in Test Station for the ATLAS Phase-II Tile-Calorimeter Low-Voltage Power Supply Transformer-Coupled Buck Converters

Q3 Physics and Astronomy
R. Mckenzie
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引用次数: 1

Abstract

The upgrade of the ATLAS hadronic tile-calorimeter (TileCal) Low-Voltage Power Supply (LVPS) falls under the high-luminosity LHC upgrade project. This article serves to provide an overview of the development of a burn-in test station for a Phase-II upgrade LVPS component known as a Brick. These Bricks are radiation hard transformer-coupled buck converters that function to step-down bulk 200 V DC power to the 10 V DC power required by the on-detector electronics. To ensure the high reliability of the Bricks, once installed within the TileCal, a burn-in test station has been designed and built. The Burn-in procedure subjects the Bricks to sub-optimal operating conditions that function to accelerate their aging as well as to stimulate failure mechanisms. This results in elements of the Brick that would fail prematurely within the TileCal failing within the burn-in station or to experience performance degradation that can be detected by followup testing effectively screening out the ’weak’ sub-population. The burn-in station is of a fully custom design in both its hardware and software. The development of the test station will be explored and the preliminary burn-in procedure to be employed will be presented. The commissioning of the burn-in station will be presented along with a summary and outlook of the project.
ATLAS二期瓦式热量计低压电源变压器耦合降压变换器的老化试验台
ATLAS强子瓦量热计(TileCal)低压电源(LVPS)的升级属于高亮度LHC升级项目。本文概述了第二阶段升级LVPS组件(称为Brick)的老化测试站的开发。这些砖块是辐射硬变压器耦合降压转换器,其功能是将大量200v直流电源降压到检测器电子器件所需的10v直流电源。为了确保砖的高可靠性,一旦安装在TileCal内,就会设计并建造一个老化试验站。烧进过程使砖处于次优操作条件下,加速其老化并刺激失效机制。这导致砖的元素可能会在砖的老化站中过早失效,或者经历性能下降,这可以通过后续测试来检测,有效地筛选出“弱”亚群。老化站在硬件和软件上都是完全定制的设计。本文将探讨试验站的发展,并提出初步的老化程序。将介绍老旧站的调试情况,并对项目进行总结和展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Instruments
Instruments Physics and Astronomy-Instrumentation
CiteScore
2.60
自引率
0.00%
发文量
70
审稿时长
11 weeks
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