首页> 外文会议>IEEE Nuclear Science Symposium and Medical Imaging Conference >Radiation and magnetic field effects on commercial DC-DC converters for HL-LHC experiments
【24h】

Radiation and magnetic field effects on commercial DC-DC converters for HL-LHC experiments

机译:辐射和磁场对用于HL-LHC实验的商用DC-DC转换器的影响

获取原文
获取外文期刊封面目录资料

摘要

THE High Luminosity upgrade of the Large Hadron Collider will pose new challenges to the installed detectors. Higher beam background, combined with new requirements in terms of power supply for the upgraded detectors, and the presence of magnetic fields up to 1 T, make the choice of power supply electronic components a crucial point for the successful operation of the detectors for the new physics run. We took the case of the ATLAS New Small Wheel muon detector installation [1], foreseen for the Phase I upgrade, which will integrate over its lifetime a Total Ionizing Dose (TID) of 1.7 kGy, up to 3×10 1 MeV-equivalent n/cm, and will operate in a magnetic field ranging between 0.3 and 0.6 T [2], [3], [4]. We carried out a test campaign on different DC-DC power converters and voltage regulators, by exposing test modules to gamma-rays up to 4 kGy TID, neutrons up to 5×10 n/cm, protons up to 5×10 p/cm, with a wide range of integrated doses and fluences, and magnetic field up to 1 T. A list of candidate devices was identified by a combination of market survey and recommendation. The devices fall into two categories: single-inductor buck converters are intended for one-step reduction of a 12 V-24 V supply voltage to the delivery voltage; low-dropout voltage regulators (LDOs) may optionally follow the buck converters for noise reduction or to provide additional voltages. The selected candidate parts include a variety of desirable features, such as multiple outputs (LTM4619, LTM4628, ADP5052), low radiated noise (LTM8033), or integrated magnetics (LTM8033, LTM4619, LTM4628).
机译:大型强子对撞机的高光度升级将给已安装的探测器带来新的挑战。更高的光束背景,再加上升级后的探测器在电源方面的新要求以及高达1 T的磁场,使得选择电源电子组件成为新探测器成功运行的关键点物理运行。我们以ATLAS新型小轮μ子探测器的安装情况为例[1],预计将进行第一阶段升级,它将在其使用寿命内集成1.7 kGy的总电离剂量(TID),最高可达3×10 1 MeV等效值n / cm,并且将在0.3到0.6 T [2],[3],[4]范围内的磁场中工作。我们通过将测试模块暴露于高达4 kGy TID的伽马射线,高达5×10 n / cm的中子,高达5×10 p / cm的质子进行了针对不同DC-DC电源转换器和稳压器的测试活动,具有广泛的集成剂量和注量,以及高达1 T的磁场。通过市场调查和推荐相结合,确定了候选设备的列表。这些器件分为两类:单电感降压转换器,旨在将12 V-24 V的供电电压一步降低到输出电压;降压稳压​​器(LDO)可以可选地跟随降压转换器,以降低噪声或提供额外的电压。选定的候选部件包括各种所需的功能,例如多个输出(LTM4619,LTM4628,ADP5052),低辐射噪声(LTM8033)或集成磁性(LTM8033,LTM4619,LTM4628)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号