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Serial power protection for ATLAS silicon strip staves

机译:ATLAS硅条冷却壁的串行电源保护

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Upgrades to the inner tracking detectors at the Super Large Hadron Collider (SLHC) will require more efficient methods of power delivery. Serial power is one architecture that delivers power efficiently by powering a chain of front-end circuits (hybrids) with a common current. A major concern with serial power is the loss of the full hybrid chain due to an open circuit failure of a single hybrid. We propose a method to protect a serial chain of hybrids with emphasis on application to the ATLAS silicon strip upgrade. A prototype protection circuit and its discrete component implementation are described. Results from tests of the protection circuit used with individual "dummy" hybrids and in a system test with a collection of dummy hybrids are given. Finally, a path towards a radiation-hard ASIC implementation is discussed. This work demonstrates that the protection of a serial chain is viable and is not an obstacle to the implementation of serial power.
机译:升级到超大型强子对撞机(SLHC)的内部跟踪探测器将需要更有效的功率传输方法。串行电源是一种架构,可通过使用公共电流为前端电路链(混合)供电来有效地提供电源。串行电源的一个主要问题是由于单个混合电路的开路故障而导致整个混合电路的损耗。我们提出了一种保护混合动力串联链的方法,重点是应用于ATLAS硅带升级。描述了原型保护电路及其分立组件的实现。给出了与单个“虚拟”混合动力设备一起使用的保护电路的测试结果以及与一组虚拟混合动力设备一起进行的系统测试的结果。最后,讨论了实现防辐射ASIC的方法。这项工作表明,串行链的保护是可行的,并且不构成实现串行电源的障碍。

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