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首页> 外文期刊>IEEE Journal of Solid-State Circuits >A CMOS photodiode array with in-pixel data acquisition system for computed tomography
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A CMOS photodiode array with in-pixel data acquisition system for computed tomography

机译:具有用于计算机断层摄影的像素内数据采集系统的CMOS光电二极管阵列

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摘要

A CMOS photodetector array with in-pixel electronics has been developed for computed tomography (CT) applications. Current CT detectors are based on two discrete components: a photodiode array and a data acquisition system (amplifier). Both elements have to fulfill a series of severe requirements. CT scanners are moving toward larger detectors and higher speed, and yet lowering costs and improving performance. This contribution relates to the integration of both elements into a standard CMOS process to fulfill future CT scanner specifications and for a cost-effective solution. A series of limitations have been overcome to integrate both the photodiode and a charge-sensing amplifier at pixel level. In order to balance the limited responsivity of standard CMOS photodiodes, a new low-capacitance device has been devised so that low-noise design is possible while providing enough gain in the amplifier. Since a good geometric detective quantum efficiency is desired (>60%), the available area for electronics is very limited. In order to achieve a necessary dynamic range of 17 bits in such reduced area, a single-stage amplifier with automatic gain-switching has been devised. Consisting of a 10×20 pixel array, in-pixel electronics has been designed to achieve a quantum limited system under CT operating conditions.
机译:已经开发出具有像素内电子器件的CMOS光电探测器阵列,用于计算机断层扫描(CT)应用。当前的CT检测器基于两个分立组件:光电二极管阵列和数据采集系统(放大器)。这两个要素都必须满足一系列严格的要求。 CT扫描仪正朝着更大的检测器和更高的速度发展,但仍在降低成本和提高性能上。这一贡献与将这两种元素集成到标准CMOS工艺中有关,以满足未来的CT扫描仪规格并提供经济高效的解决方案。已克服了在像素级集成光电二极管和电荷感测放大器的一系列限制。为了平衡标准CMOS光电二极管的有限响应度,已设计出一种新的低电容器件,以便在放大器中提供足够增益的同时实现低噪声设计。由于需要良好的几何探测量子效率(> 60%),因此电子设备的可用面积非常有限。为了在这种减小的区域中实现17位的必要动态范围,已经设计了一种具有自动增益切换的单级放大器。像素内电子器件由10×20像素阵列组成,旨在在CT工作条件下实现量子受限系统。

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