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A Dedicated L3Vision CCD for Adaptive Optics Applications

机译:用于自适应光学应用的专用L3Vision CCD

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ESO and JRA2 OPTICON have funded the development of a compact packaged Peltier cooled 24 μm square 240×240 pixel split frame transfer 8-output back illuminated L3 Vision CCD, L3CCD, by e2v technologies. The device will achieve sub-electron (goal 0.1 e~-) read noise at frame rates from 25 Hz to 1.5 kHz and low dark current of 0.01 e~-/pixel/frame. The development has many unique features. To obtain high frame rates, multi-output EMCCD gain registers and metal buttressing of parallel clocks will be used. To minimize risk, the baseline device will be built in standard silicon. In addition, a split wafer run will enable two speculative variants to be bui deep depletion silicon devices to improve red response and devices with an electronic shutter to extend use to Rayleigh Laser Guide Star (RLGS) applications. These are all unprecedented advancements for L3CCDs. This paper will describe requirements and outline the design established after careful consideration of the application, detector architecture, compact Peltier package, technology trade-offs, schedule and proposed test plan.
机译:ESO和JRA2 Opticon资助了一个紧凑型珀耳帖冷却的24μm正方形240×240像素分体式框架传输8-输出返回照明L3 Vision CCD,L3CCD,通过E2V技术的开发。该装置将在25Hz到1.5 kHz的帧速率下读取诸如帧速率的子电子(目标0.1 e〜 - )读取噪声和0.01 e〜/像素/框架的低暗电流。该开发具有许多独特的功能。为了获得高帧速率,将使用多输出EMCCD增益寄存器和并行时钟的金属支撑。为了最大限度地减少风险,基线设备将建立在标准芯片中。此外,分开的晶片运行将启用两个推测变体;深度耗尽硅装置,以改善红色响应和具有电子快门的装置,以延长瑞利激光导向星(RLGS)应用。这些都是L3CCDS的所有前所未有的进步。本文将描述在仔细考虑应用,探测器架构,紧凑型Peltier包,技术权衡,时间表和建议的测试计划后确定的要求和概述设计。

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