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首页> 外文期刊>Nuclear instruments and methods in physics research >An internal ALD-based high voltage divider and signal circuit for MCP-based photodetectors
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An internal ALD-based high voltage divider and signal circuit for MCP-based photodetectors

机译:用于基于MCP的光电探测器的基于ALD的内部高压分压器和信号电路

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We describe a pin-less design for the high voltage (HV) resistive divider of the all-glass LAPPD™ 8 in.-square thin photodetector module. The divider, which distributes high voltage applied to the photo-cathode to the two micro-channel plates (MCPs) that constitute the amplification stage, is comprised of the two MCPs and three glass mechanical spacers, each of which is coated with a resistive layer using atomic layer deposition (ALD). The three glass grid spacers and the two MCPs form a continuous resistive path between cathode and anode, with the voltages across the MCPs and the spacers determined by the resistance of each. High voltage is applied on an external tab on the top glass window that connects to the photocathode through the metal seal. The DC ground is supplied by microstrips on the bottom glass plate that form the high-bandwidth anode. The microstrips exit the package through the glass-frit seal of the anode base-plate and the package sidewall. The divider is thus completely internal, with no HV pins penetrating the low-profile flat glass package. Measurements of the performance of the divider are presented for the 8 in.-square MCP and spacer package in a custom test fixture and for an assembled externally pumped LAPPD™ prototype with an aluminum photocathode.
机译:我们描述了全玻璃LAPPD™8平方英寸薄型光电探测器模块的高压(HV)电阻分压器的无引脚设计。分压器将施加在光电阴极上的高压分配到构成放大级的两个微通道板(MCP),该分压器由两个MCP和三个玻璃机械垫片组成,每个垫片均涂有电阻层使用原子层沉积(ALD)。三个玻璃栅隔板和两个MCP在阴极和阳极之间形成连续的电阻路径,跨MCP和隔板的电压由各自的电阻确定。高电压施加在顶部玻璃窗的外部凸耳上,该外部凸耳通过金属密封件连接至光电阴极。直流接地由底部玻璃板上的微带提供,该微带形成高带宽阳极。微带通过阳极基板的玻璃粉密封和封装侧壁离开封装。因此,分压器完全位于内部,没有HV引脚穿过薄型平板玻璃封装。分频器性能的测量结果显示在定制测试夹具中的8平方英寸MCP和垫片封装中,以及组装好的带有铝光电阴极的外部抽运LAPPD™原型中。

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