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The micro lens equipped solid image sensor and the optical system which has the non telecentric image pickup lens

机译:装有微透镜的固体图像传感器和具有非远心图像拾取透镜的光学系统

摘要

Respectively, it arranges the non telecentric lens in the upper part of two dimensional array of the photo sensor the photo sensor which possesses the central point (in figure 12 35) in imejiya which has two dimensional array, the micro lens (in figure 12 60) two dimensional array arranges in the upper part of two dimensional array of the photo sensor. Each micro lens relation is attached by the photo sensor which corresponds and at the same time possesses the central point. In addition, color filter array (in figure 12 420, 430 and 440) it arranges in the upper part of two dimensional array of the photo sensor. Color filter array includes plural color filter areas. Each color filter area (in figure 12 420) the photo sensor which corresponds (in figure 12 35) relation it is attached and at the same time possesses the central point. Furthermore, opening of passing characteristic (in figure 16 950) layer it arranges in the upper part of two dimensional array of the photo sensor. Each opening relation is attached by the photo sensor which corresponds and at the same time possesses the central point. In order to become the position where the offset it does from the central point of the photo sensor to which position of the central point of the micro lens corresponds, it arranges the micro lens, in the upper part of the photo sensor which corresponds. In order to become the position where the offset it does from the central point of the photo sensor to which position of the central point of the color filter area corresponds, it arranges the color filter area, in the upper part of the photo sensor which corresponds. And, opening in order to become the position where the offset it does from the central point of the photo sensor to which position of the central point of opening corresponds, arranges in the upper part of the photo sensor which corresponds.
机译:将非远心透镜分别布置在光传感器二维阵列的上部,在具有二维阵列的imejiya中具有中心点的光传感器(图12 35中),微透镜(图12 60)二维阵列排列在光电传感器二维阵列的上部。每个微透镜关系由对应的光电传感器固定,同时具有中心点。另外,滤色器阵列(在图12 420、430和440中)排列在光电传感器的二维阵列的上部。滤色器阵列包括多个滤色器区域。每个彩色滤光片区域(在图12 420中)对应于它(在图12 35中)关系被附接并且同时具有中心点的光电传感器。此外,通过特征层(在图16 950中)的开口布置在光传感器的二维阵列的上部。每个开口关系都由相应的光电传感器固定,同时具有中心点。为了成为从光传感器的中心点偏移到微透镜的中心点的位置所对应的位置,将微透镜配置在对应的光传感器的上部。为了成为从光电传感器的中心点偏移到与滤色器区域的中心点的位置相对应的位置的位置,在与之对应的光电传感器的上部配置滤色器区域。 。并且,为了成为从光传感器的中心点到与该开口的中心点的位置相对应的偏移而进行偏移的位置,在对应的光传感器的上部配置有开口。

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