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A Reconfigurable Image Tube using an External Electronic Image Readout

机译:使用外部电子图像读出的可重新配置图像管

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We have designed and built a sealed tube microchannel plate (MCP) intensifier for optical/NUV photon counting applications suitable for 18, 25 and 40 mm diameter formats. The intensifier uses an electronic image readout to provide direct conversion of event position into electronic signals, without the drawbacks associated with phosphor screens and subsequent optical detection. The Image Charge technique is used to remove the readout from the intensifier vacuum enclosure, obviating the requirement for additional electrical vacuum feedthroughs and for the readout pattern to be UHV compatible. The charge signal from an MCP intensifier is capacitively coupled via a thin dielectric vacuum window to the electronic image readout, which is external to the sealed intensifier tube. The readout pattern is a separate item held in proximity to the dielectric window and can be easily detached, making the system easily reconfigurable. Since the readout pattern detects induced charge and is external to the tube, it can be constructed as a multilayer, eliminating the requirement for narrow insulator gaps and allowing it to be constructed using standard PCB manufacturing tolerances. We describe two readout patterns, the tetra wedge anode (TWA), an optimized 4 electrode device similar to the wedge and strip anode (WSA) but with a factor 2 improvement in resolution, and an 8 channel high speed 50 ohm device, both manufactured as multilayer PCBs. We present results of the detector imaging performance, image resolution, linearity and stability, and discuss the development of an integrated readout and electronics device based on these designs.
机译:我们已经设计和建造为适合于18,25和40毫米直径的格式的光学/ NUV光子计数应用的密封管微通道板(MCP)增强器。增压器使用电子图像读出,以提供事件的位置直接转换成电子信号,而没有与荧光屏和随后的光学检测相关的缺点。所述图像电荷技术被用于从增压真空机壳上卸下读出,消除了对额外的电馈通真空的要求和用于读出的图案是UHV兼容。从增强器通过薄的介电真空窗口电容耦合到所述电子图像读出,这是外部的密封增强管的MCP的电荷信号。所读出的图案是在接近介电窗保持一个单独的项目,并且可以容易地拆卸,从而使系统可重新配置容易。由于读出模式检测感应电荷和外部的管,它可以被构造为多层,从而消除了窄绝缘体的间隙的要求,并允许它使用标准的印刷电路板制造公差构造。我们描述了两个读出模式中,四楔阳极(TWA),类似于楔形件和带状正极(WSA)优化的4电极装置,但是在分辨率因数2的改进,和一个8信道高速50欧姆的装置,既制造作为多层PCB。我们探测器的成像性能,图像分辨率,线性度和稳定性目前的结果,并讨论了基于这些设计集成读数和电子设备的发展。

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