Image sensing device including different types of sub-pixels and imaging device including the same
An image sensing device includes a plurality of pixels, each pixel configured to respond to incident light to produce photocharges corresponding to the incident light and include a first sub-pixel and a second sub-pixel surrounding the first sub-pixel. The first sub-pixel is one of a color sub-pixel configured to selectively sense first color light within the incident light and a white sub-pixel configured to sense the incident light at different colors; and the second sub-pixel is the other of the color sub-pixel and the white sub-pixel.
1 . An image sensing device comprising:
a plurality of pixels, each pixel configured to respond to incident light to produce photocharges corresponding to the incident light and include a first sub-pixel and a second sub-pixel surrounding the first sub-pixel,
wherein
the first sub-pixel is one of a color sub-pixel configured to selectively sense first color light within the incident light and a white sub-pixel configured to sense the incident light at different colors;
the second sub-pixel is the other of the color sub-pixel and the white sub-pixel;
the first sub-pixel is the color sub-pixel; and
the second sub-pixel is the white sub-pixel.
2 . The image sensing device according to claim 1 , wherein:
the first sub-pixel is disposed at a center of each pixel;
the second sub-pixel is arranged to include a shape that surrounds the first sub-pixel.
3 . The image sensing device according to claim 1 , wherein:
the first sub-pixel is configured to have a larger area than an area of the second sub-pixel.
4 . The image sensing device according to claim 1 , wherein:
the first sub-pixel includes an optical filter configured to allow the first color light to pass through the optical filter; and
the second sub-pixel is free of the optical filter.
5 . The image sensing device according to claim 1 , wherein:
the first sub-pixel includes a first photoelectric conversion element configured to convert any one of the first color light and white light into the photocharges; and
the second sub-pixel includes a second photoelectric conversion element configured to convert the other of the first color light and the white light into the photocharges,
wherein
the first photoelectric conversion element and the second photoelectric conversion element are physically separated from each other.
6 . The image sensing device according to claim 1 , further comprising:
a first device isolation structure configured to optically isolate a second sub-pixel of a first pixel from a second sub-pixel of a second pixel adjacent to the first pixel.
7 . The image sensing device according to claim 1 , further comprising:
a second device isolation structure configured to optically isolate the first sub-pixel from the second sub-pixel.
8 . An imaging device comprising:
an image sensing device comprising a plurality of pixels, each pixel configured to respond to incident light to produce photocharges corresponding to the incident light and include a first sub-pixel and a second sub-pixel surrounding the first sub-pixel, wherein the first sub-pixel is one of a color sub-pixel configured to selectively sense first color light within the incident light and a white sub-pixel configured to sense the incident light at different colors; and the second sub-pixel is the other of the color sub-pixel and the white sub-pixel; and
an image signal processor communicatively coupled to the plurality of pixels and configured to process image data generated from each of the first sub-pixel and the second sub-pixel,
wherein the image signal processor is configured to:
determine data indicating a result of calculation between first image data generated from the first sub-pixel and second image data generated from the second sub-pixel to be image data of each pixel including the first sub-pixel and the second sub-pixel.
9 . The imaging device according to claim 8 , wherein:
the first sub-pixel is disposed at a center of each pixel;
the second sub-pixel is arranged to include a shape that surrounds the first sub-pixel.
10 . The imaging device according to claim 8 , wherein:
the first sub-pixel is configured to have a larger area than an area of the second sub-pixel.
11 . The imaging device according to claim 8 , wherein:
the first sub-pixel includes an optical filter configured to allow the first color light to pass through the optical filter; and
the second sub-pixel is free of the optical filter.
12 . An imaging device comprising:
a pixel array including pixels that are arranged in rows and columns,
wherein each pixel includes:
a first sub-pixel including a first photoelectric conversion element disposed in a substrate and configured to produce an electrical signal in response to first light incident to the first photoelectric conversion element; and
a second sub-pixel including a second photoelectric conversion element disposed in the substrate and configured to produce a second electrical signal in response to second light incident to the second photoelectric conversion element,
wherein one of the first sub-pixel and the second sub-pixel is a white sub-pixel configured to transmit incident light to a corresponding photoelectric conversion element without optically filtering the incident light, and
wherein:
the first sub-pixel is disposed at a center of each pixel;
the second sub-pixel is arranged to surround the first sub-pixel; and
the first sub-pixel is configured to have a larger area than an area of the second sub-pixel.
13 . The imaging device according to claim 12 , wherein:
the first sub-pixel is a color sub-pixel that selects light of a first color within the incident light at different colors as the first light to transmit to the first photoelectric conversion element; and
the second sub-pixel is the white sub-pixel so that the second light to transmit to the second photoelectric conversion element contains light of different colors in the incident light.
14 . The imaging device according to claim 12 , wherein:
the first sub-pixel is the white sub-pixel so that the first light to transmit to the first photoelectric conversion element contains light of different colors in the incident light; and
the second sub-pixel is a color sub-pixel that selects light of a first color within the incident light at different colors as the second light to transmit to the second photoelectric conversion element.
15 . The imaging device according to claim 12 , further comprising: an image signal processor communicatively coupled to the pixel array and configured to process image data generated from each of the first sub-pixel and the second sub-pixel.
16 . The imaging device according to claim 15 , wherein the image signal processor is further configured to:
determine image data of each pixel based on data indicating a result of calculation based on first image data generated from the first sub-pixel and second image data generated from the second sub-pixel.
17 . The imaging device according to claim 15 , wherein the image signal processor is further configured to:
determine image data of each pixel to correspond to color image data from either the first sub-pixel or the second sub-pixel.