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Development of a driving method suitable for ultrahigh-speed shooting in a 2M-fps, 300k-pixel single-chip color camera

机译:开发适用于2M-fps,30万像素单芯片彩色相机的超高速拍摄的驱动方法

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We have developed an ultrahigh-speed CCD camera that can capture instantaneous phenomena not visible to the human eye and impossible to capture with a regular video camera. The ultrahigh-speed CCD was specially constructed so that the CCD memory between the photodiode and the vertical transfer path of each pixel can store 144 frames each. For every one-frame shot, the electric charges generated from the photodiodes are transferred in one step to the memory of all the parallel pixels, making ultrahigh-speed shooting possible. Earlier, we experimentally manufactured a lM-fps ultrahigh-speed camera and tested it for broadcasting applications. Through those tests, we learned that there are cases that require shooting speeds (frame rate) of more than 1M fps; hence we aimed to develop a new ultrahigh-speed camera that will enable much faster shooting speeds than what is currently possible. Since shooting at speeds of more than 200,000 fps results in decreased image quality and abrupt heating of the image sensor and drive circuit board, faster speeds cannot be achieved merely by increasing the drive frequency. We therefore had to improve the image sensor wiring layout and the driving method to develop a new 2M-fps, 300k-pixel ultrahigh-speed single-chip color camera for broadcasting purposes.
机译:我们开发了一种超高速CCD相机,它可以捕捉人眼看不见的瞬态现象,而普通摄像机无法捕捉这种瞬态现象。超高速CCD是经过特殊构造的,因此光电二极管和每个像素的垂直传输路径之间的CCD存储器可以分别存储144帧。对于每一帧拍摄,将从光电二极管产生的电荷一步一步转移到所有并行像素的内存中,从而可以进行超高速拍摄。之前,我们通过实验制造了1M-fps超高速相机,并对其进行了广播应用测试。通过这些测试,我们了解到有些情况需要拍摄速度(帧速率)超过1M fps;因此,我们的目标是开发一种新的超高速相机,该相机能够实现比目前更快的拍摄速度。由于以超过200,000 fps的速度拍摄会导致图像质量下降以及图像传感器和驱动电路板突然发热,因此仅通过增加驱动频率就无法实现更快的速度。因此,我们必须改善图像传感器的布线布局和驱动方法,以开发用于广播目的的新型2M-fps,30万像素超高速单芯片彩色相机。

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