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Toward 100 Mega-Frames per Second: Design of an Ultimate Ultra-High-Speed Image Sensor

机译:每秒达到100兆帧:终极超高速图像传感器的设计

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摘要

Our experience in the design of an ultra-high speed image sensor targeting the theoretical maximum frame rate is summarized. The imager is the backside illuminated in situ storage image sensor (BSI ISIS). It is confirmed that the critical factor limiting the highest frame rate is the signal electron transit time from the generation layer at the back side of each pixel to the input gate to the in situ storage area on the front side. The theoretical maximum frame rate is estimated at 100 Mega-frames per second (Mfps) by transient simulation study. The sensor has a spatial resolution of 140,800 pixels with 126 linear storage elements installed in each pixel. The very high sensitivity is ensured by application of backside illumination technology and cooling. The ultra-high frame rate is achieved by the in situ storage image sensor (ISIS) structure on the front side. In this paper, we summarize technologies developed to achieve the theoretical maximum frame rate, including: (1) a special p-well design by triple injections to generate a smooth electric field backside towards the collection gate on the front side, resulting in much shorter electron transit time; (2) design technique to reduce RC delay by employing an extra metal layer exclusively to electrodes responsible for ultra-high speed image capturing; (3) a CCD specific complementary on-chip inductance minimization technique with a couple of stacked differential bus lines.
机译:总结了我们在设计针对理论最大帧速率的超高速图像传感器方面的经验。成像器是背面照明的原位存储图像传感器(BSI ISIS)。确认限制最高帧速率的关键因素是信号电子从每个像素背面的生成层到输入栅极到正面的原位存储区域的传输时间。通过瞬态仿真研究,理论上的最大帧速率估计为每秒100兆帧(Mfps)。该传感器的空间分辨率为140,800像素,每个像素中安装了126个线性存储元件。通过采用背面照明技术和冷却技术,可以确保非常高的灵敏度。超高帧速率是通过正面的原位存储图像传感器(ISIS)结构实现的。在本文中,我们总结了为实现理论上最大帧速率而开发的技术,其中包括:(1)通过三次注入进行特殊的p阱设计,以朝着正面的收集门产生平滑的电场背面,从而缩短了电子传输时间(2)通过专门在负责超高速图像捕获的电极上使用额外的金属层来减少RC延迟的设计技术; (3)CCD专用互补片上电感最小化技术,具有几条堆叠的差分总线。

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