Operational limitations of charge transfer devices

K. Thornber
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引用次数: 11

Abstract

The incomplete transfer of charge and the existence of random noise lead to the primary operational limitations of charge transfer devices. Owing to the signal dependence of the residual charge, which accumulates as a result of the incomplete transfer, signal detection with static detection levels becomes seriously impaired before the onset of significant signal attenuation or noise degradation. A scheme using dynamic detection levels is found to greatly extend the operational range of CTD's and achieves the minimum possible error rate for detecting uncorrelated charge packet sizes. By contrast, simple coding procedures are found to be ineffective in overcoming signal degradation due to incomplete transfer. Shannon's expression for maximum information transmission capacity is transformed into an expression for maximum information storage capacity. It is found that significantly larger storage capacities are possible with CTD's than have been achieved.
电荷转移装置的操作限制
电荷的不完全转移和随机噪声的存在是电荷转移器件的主要工作限制。由于残余电荷的信号依赖性,由于残余电荷的不完全转移而积累,在信号明显衰减或噪声退化之前,用静态检测电平进行信号检测就会受到严重损害。提出了一种采用动态检测级别的方案,该方案大大扩展了CTD的工作范围,并实现了检测不相关电荷包大小的最小可能错误率。相比之下,发现简单的编码程序在克服由于不完全传输引起的信号退化方面是无效的。将香农的最大信息传输容量表达式转化为最大信息存储容量表达式。发现CTD的存储容量比已经实现的要大得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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