Solid state imaging device and method for producing the same
A solid state imaging device comprises a plurality of pixels arranged in a matrix, each of the pixels including: a substrate; a photoelectric conversion element for converting light to electric charges; and a color filter formed on the photoelectric conversion element for color separation. The color filter is a layered color filter including a dye-contained color filter layer and a pigment-dispersed color filter layer formed on the dye-contained color filter layer, the dye-contained color filter layer and the pigment-dispersed color filter layer having the same hue.
1. A solid state imaging device, comprising:
a plurality of pixels arranged in a matrix, each of the pixels including:
a substrate;
a photoelectric element for converting light to electric charges; and
a color filter formed on the photoelectric element for color separation,
wherein the color filter is a layered color filter including a dye-contained color filter layer and a pigment-dispersed color filter layer formed on the dye-contained color filter layer, and
the refractive index of the dye-contained color filter layer is less than that of the pigment-dispersed color filter layer.
2. A solid state imaging device, comprising:
a plurality of pixels arranged in a matrix, each of the pixels including:
a substrate;
a photoelectric element for converting light to electric charges;
a color filter formed on the photoelectric element for color separation; and
a charge transfer portion for transferring the electric charges generated by the photoelectric element;
wherein the color filter is a layered color filter including a dye-contained color filter layer and a pigment-dispersed color filter layer formed on the dye-contained color filter layer,
the charge transfer portion comprises a concavity formed above the photoelectric element, and
the concavity is filled with the layered color filter.
3. A solid state imaging device, comprising:
a plurality of pixels arranged in a matrix, each of the pixels including:
a substrate;
a photoelectric element for converting light to electric charges;
a color filter formed on the photoelectric element for color separation; and
a transparent film disposed on the color filter for flattening the color filter,
wherein the color filter is a layered color filter including a dye-contained color filter layer and a pigment-dispersed color filter layer formed on the dye-contained color filter layer, and
the refractive index of the transparent film is less than that of the color filter.
4. The solid state imaging device of claim 3 , further comprising:
a microlens formed on the transparent film, wherein the refractive index of the microlens is greater than that of the transparent film.
5. A method for producing a solid state imaging device, comprising the steps of:
forming a photoelectric element for converting light to electric charges in a substrate; and
forming a layered color filter for color separation on the photoelectric element,
wherein the step of forming the layered color filter includes:
forming a first material film of a dye-contained material, and
forming a second material film of a pigment-dispersed material on the first material film, and
exposing the first material film and the second material film simultaneously, and
developing the first material film and the second material film.
6. The method of claim 5 , further comprising after the step of forming the photoelectric element and prior to the step of forming the layered color filter, the step of:
forming a charge transfer portion on the substrate for transferring the electric charges generated by the photoelectric conversion element, which comprises a concavity above the photoelectric conversion element, and
the concavity is filled with the layered color filter.
7. The method of claim 5 , further comprising the step of: forming a microlens for collecting light on the layered color filter.
8. The method of claim 5 , wherein the first material film and the second material film have the same hue.