首页> 外文会议>Conference on UV/Optical/IR space telescopes and instruments: Innovative technologies and concepts VI >Multi-level parallel clocking of CCDs for: improving charge transfer efficiency, clearing persistence, clocked anti-blooming and generating low noise backgrounds for pumping
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Multi-level parallel clocking of CCDs for: improving charge transfer efficiency, clearing persistence, clocked anti-blooming and generating low noise backgrounds for pumping

机译:CCD的多级并行时钟,用于提高电荷转移效率,清除持久性,钟出的防润滑,产生低噪音背景供泵送

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A multi-level clocking scheme has been developed to improve the parallel CTE of four-phase CCDs by suppressing the effects of traps located in the transport channel under barrier phases by inverting one of these phases throughout the transfer sequence. In parallel it was apparent that persistence following optical overload in Euclid VIS detectors would lead to undesirable signal released in subsequent rows and frames and that a suitable scheme for flushing this signal would be required. With care, the negatively biased electrodes during the multi-level transfer sequence can be made to pin the entire surface, row-by-row, and annihilate the problematic charges. This process can also be extended for use during integration to significantly reduce the unusable area of the detector, as per the clocked anti-blooming techniques developed many years ago; however, with the four-phase electrodes architecture of modern CCDs, we can take precautionary measures to avoid the problem of charge pumping and clock induced charge within the science frames. Clock induced charge is not all bad! We also propose the use of on-orbit trap-pumping for Euclid VIS to provide calibration input to ground based correction algorithms and as such a uniform, low noise background is require. Clock induced charge can be manipulated to provide a very suitable, low signal and noise background to the imaging array. Here we describe and present results of multi-level parallel clocking schemes for use in four-phase CCDs that could improve performance of high precision astronomy applications such as Euclid VIS.
机译:一种多级的钟控方案已被开发,通过反转这些相之一在整个传输序列抑制位于下屏障阶段传输信道的陷阱的作用,以改善的四相的CCD平行CTE。并行显而易见的是,在EuclID VIS检测器中的光学过载后持久性将导致在随后的行和帧中释放的不希望的信号,并且需要适当的冲洗该信号的方案。小心地,可以使多级转移序列期间的负偏置电极引脚针整个表面,逐行,并危及有问题的电荷。在整合过程中也可以扩展该过程,以显着减少探测器的不可用区域,根据多年前开发的时钟的防绽放技术;然而,随着现代CCD的四相电极架构,我们可以采取预防措施来避免在科学框架内充电泵送和时钟感应电荷的问题。时钟诱导的电荷并不差!我们还提出使用用于EuclID VI的On-Orbit Trap-泵送,以提供基于地面的校正算法的校准输入,并且如此均匀,低噪声背景。可以操纵时钟感应电荷以向成像阵列提供非常合适的,低信号和噪声背景。在这里,我们描述了多级并行时钟方案的结果,用于四相CCD,可以提高高精度天文应用的性能,例如EuclID Vis。

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