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首页> 外文期刊>IEEE Transactions on Nuclear Science >Development of Radiation-Hard Solid-State Amplifiers for Kilogray Environments Using COTS Components
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Development of Radiation-Hard Solid-State Amplifiers for Kilogray Environments Using COTS Components

机译:利用COTS组件开发千窝环境的辐射硬固态放大器

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The high-luminosity Large Hadron Collider (LHC) (HL-LHC) project is the upgrade of the LHC to increase its luminosity by a factor of 5 compared with the nominal value. The LHC injector upgrade (LIU) project aims at upgrading the LHC injector chain to reach the goal of the HL-LHC. The LIU project covers all injectors, that is, the Linac 4, proton synchrotron (PS) booster (PSB), PS, and super PS (SPS). In the PSB, the present ferrite-loaded RF accelerating systems will be replaced with magnetic alloy (Finemet)-loaded cavity systems. The cavity system allows the implementation of a cellular topology and the use of solid-state RF power amplifiers. The PSB will have 144 cavity cells and amplifiers, and each amplifier uses 17 high-power MOSFETs. The RF systems will be installed in the straight sections where the total ionization dose (TID) is 20 Gy(Si)/year, which may even increase after the upgrade. Research and development work has been performed to validate the use of solid-state amplifiers in this radioactive environment. In this article, we describe a technique to stabilize the solid-state amplifier up to the total dose of about 10 kGy. This technique will enable the use of solid-state amplifiers in even higher radiation environments. The higher sensitivity to the single-event effects (SEEs) of the laterally diffused metal-oxide semiconductors (LDMOS) than to that of the vertical metal-oxide-semiconductor (VMOS) devices is also reported.
机译:高亮度大强子撞机(LHC)(HL-LHC)项目是LHC升级,与标称值相比,将其亮度提高了5倍。 LHC注射器升级(LIU)项目旨在升级LHC注射器链以实现HL-LHC的目标。刘项目涵盖所有注射器,即LinaC 4,质子同步rotron(PS)增压器(PSB),PS和超级PS(SPS)。在PSB中,将采用磁性合金(Finemet)载荷的腔系统代替本发明的铁氧体负载的RF加速系统。腔系统允许实现蜂窝拓扑和固态RF功率放大器的使用。 PSB将具有144个腔电池和放大器,每个放大器使用17个高功率MOSFET。 RF系统将安装在直接部分的总电离剂量(TID)为20 GY(Si)/年,这甚至可能在升级后增加。已经进行了研究和开发工作以验证在该放射性环境中使用固态放大器的使用。在本文中,我们描述了一种稳定固态放大器直至约10kGy的总剂量的技术。该技术将使在更高的辐射环境中使用固态放大器。还报道了对横向扩散金属氧化物半导体(LDMOS)的单个事件效应(SEES)的灵敏度越高,而不是垂直金属氧化物 - 半导体(VMOS)器件的较高。

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