Component modeling for an integrated digital pixel

W. Robinson, G.E. Triplett, D. Wills
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引用次数: 2

Abstract

Future portable imaging products can benefit from the integration of a detector, analog-to-digital converter, digital processing, and data storage within a single chip. One approach combines these components into a processing element that can be tiled into a focal plane processor (FPP) array. Silicon area tradeoffs among the detector, analog interface, processing, and storage can influence system performance. This paper presents a technique that combines area models for each component of the tiled cell to evaluate system implementation alternatives for a 650mm/sup 2/ FPP array with Quad-CIF (176 /spl times/ 144) resolution. A pixel design tool enables comparisons of architectural design choices such as fill factor and data storage. Reducing data storage can increase fill factor. However, this sacrifices versatility in the application suite. Future work includes the development of performance models of each component based upon its physical implementation in silicon.
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集成数字像素的组件建模
未来的便携式成像产品将受益于探测器、模数转换器、数字处理和数据存储在单个芯片内的集成。一种方法是将这些组件组合成一个处理元件,该处理元件可以平铺到焦平面处理器(FPP)阵列中。检测器、模拟接口、处理和存储之间的硅面积权衡会影响系统性能。本文介绍了一种技术,该技术结合了瓦片电池每个组件的面积模型,以评估具有qud - cif (176 /spl倍/ 144)分辨率的650mm/sup 2/ FPP阵列的系统实现方案。像素设计工具可以比较建筑设计选择,如填充因子和数据存储。减少数据存储可以增加填充系数。然而,这牺牲了应用程序套件的多功能性。未来的工作包括基于每个组件在硅中的物理实现来开发其性能模型。
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