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Optimization of DC-DC Converters for Improved Electromagnetic Compatibility With High Energy Physics Front-End Electronics

机译:优化DC-DC转换器以提高与高能物理前端电子设备的电磁兼容性

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摘要

The upgrade of the Large Hadron Collider (LHC) experiments at CERN sets new challenges for the powering of the detectors. One of the powering schemes under study is based on DC-DC buck converters mounted on the front-end modules. The hard environmental conditions impose strict restrictions to the converters in terms of low volume, radiation and magnetic field tolerance. Furthermore, the noise emission of the switching converters must not affect the performance of the powered systems. A study of the sources and paths of noise of a synchronous buck converter has been made for identifying the critical parameters to reduce their emissions. As proof of principle, a converter was designed following the PCB layout considerations proposed and then used for powering a silicon strip module prototype for the ATLAS upgrade, in order to evaluate their compatibility.
机译:CERN的大型强子对撞机(LHC)实验的升级为探测器的供电提出了新的挑战。正在研究的一种供电方案是基于安装在前端模块上的DC-DC降压转换器。恶劣的环境条件在体积,辐射和磁场耐受性方面对转换器施加了严格的限制。此外,开关转换器的噪声发射必须不影响动力系统的性能。已经对同步降压转换器的噪声源和路径进行了研究,以确定关键参数以减少其排放。作为原理证明,根据提议的PCB布局考虑设计了转换器,然后将其用于为ATLAS升级的硅条模块原型供电,以评估其兼容性。

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