Abstract:
Colored radiation-sensitive composition includes (A) a dye multimer, (B) an alkali-soluble resin containing at least one kind of repeating unit selected from a group consisting of a repeating unit represented by the following Formula (b1) and a repeating unit represented by the following Formula (b2), (C) a polymerizable compound, and (D) a photopolymerization initiator. In the formulae, each of R1 and R4 independently represents a hydrogen atom, an aryl group, or an alkyl group, and among these, an aryl group is preferable. R2 represents a hydrogen atom or a methyl group, R3 represents an alkylene group having 2 or 3 carbon atoms, and m represents an integer from 1 to 15.
Abstract translation:着色的放射线敏感性组合物包括(A)染料多聚体,(B)含有选自由下式(b1)表示的重复单元和重复单元的重复单元中的至少一种重复单元的碱溶性树脂 由下式(b2)表示,(C)可聚合化合物和(D)光聚合引发剂。 在该式中,R 1和R 4各自独立地表示氢原子,芳基或烷基,其中优选芳基。 R 2表示氢原子或甲基,R 3表示碳原子数2或3的亚烷基,m表示1〜15的整数。
Abstract:
An image sensor including a color filter isolation layer and a method of manufacturing the image sensor. The image sensor includes a plurality of color filters that transmit light of a predetermined wavelength band to a light sensing layer. The image sensor also includes an isolation layer disposed between adjacent ones of the plurality of color filters. The isolation layer is formed of a material having a lower refractive index than a refractive index of the color filters, thus totally internally reflecting light incident on the isolation layer from one of the plurality of color filters.
Abstract:
Array cameras, and array camera modules incorporating independently aligned lens stacks are disclosed. Processes for manufacturing array camera modules including independently aligned lens stacks can include: forming at least one hole in at least one carrier; mounting the at least one carrier relative to at least one sensor so that light passing through the at least one hole in the at least one carrier is incident on a plurality of focal planes formed by arrays of pixels on the at least one sensor; and independently mounting a plurality of lens barrels to the at least one carrier, so that a lens stack in each lens barrel directs light through the at least one hole in the at least one carrier and focuses the light onto one of the plurality of focal planes.
Abstract:
The invention discloses an array substrate, a color substrate, and manufacturing methods thereof, a display panel and a display device. The array substrate includes a plurality of gate lines and a plurality of data lines provided on a first base substrate to be intersected with each other, the gate lines and the data lines define a plurality of pixel units and at least part of the pixel units each provided therein with a first electrode, when the plurality of gate lines are sequentially scanned, the first electrode is loaded with a first voltage signal and a region corresponding to the first electrode is in a transparent state, and when the plurality of gate lines are reversely scanned, the first electrode is loaded with a second voltage signal, and a region corresponding to the first electrode is in a non-transparent state. The invention realizes a high switchover efficiency.
Abstract:
A double-lens structure and a method for fabricating the same are provided. The double-lens structure includes a first lens structure formed of a color filter layer having a first refractive index and a second lens structure formed of a micro-lens material layer having a second refractive index and disposed on the first lens structure. The first refractive index of the color filter layer is different from the second refractive index of the micro-lens material layer. An incident light enters the second lens structure and then passes through the first lens structure. Further, a method for fabricating the double-lens structure is also provided.
Abstract:
An imaging apparatus has a color filter array, an image sensor, and a differential information acquisition unit. In the color filter array, including five or more types of color filters are arranged in a two dimensional form. The image sensor has a plurality of pixels covered by the color filters, and the plurality of pixels generate pixel signals. The acquisition unit designates one of the pixels covered by the color filters of interest as a pixel of interest one pixel at a time in order. The acquisition unit calculates first differential information based on pixel signals generated by two of the pixels arranged on both sides of the pixel of interest along the first direction. The acquisition unit calculates second differential information based on pixel signals generated by two of the pixels arranged on both sides of the pixel of interest along the second direction.
Abstract:
The present invention provides a display substrate and a manufacturing method thereof, and a driving method of a display substrate. In the display substrate, a plurality of pixel groups are repeatedly arranged on a substrate base, each of the pixel groups comprises four first subpixels, four second subpixels, four third subpixels and four fourth subpixels, the subpixels in each of the pixel groups are arranged in a 4×4 matrix, each row of subpixels in each of the pixel groups include one first subpixel, one second subpixel, one third subpixel and one fourth subpixel, the first subpixel, the second subpixel, the third subpixel and the fourth subpixel in different rows of subpixels in each of the pixel groups are arranged successively in different orders, and subpixels with the same color are not located in the same column so that the subpixels are distributed uniformly.
Abstract:
An optical filter array includes a substrate permeable to an electromagnetic radiation to be detected, a first DBR mirror arranged on the substrate, a second DBR minor arranged above the first DBR mirror, and a plurality of cavity sections. The cavity sections have different respective optical lengths, and are arranged so as to be spatially separated from each other between the first DBR mirror and the second DBR mirror. Each of the first DBR mirror, the second DBR mirror, and the plurality of cavity sections with different optical lengths form filter elements of a filter. The filter reflects in a stopband determined by the first DBR mirror and the second DBR mirror. Each filter element has at least one narrow transmission band determined by the optical length of its respective cavity section located inside the stopband. A different thicknesses of the cavity sections is provided via a nanoimprint process.
Abstract:
The method comprises the steps of providing a semiconductor device comprising a semiconductor layer (1) with at least one radiation sensor (6) and a dielectric layer (2), arranging a web (3) comprising a plurality of recesses (4) on the dielectric layer, and introducing ink of different colors (A, B, C) in the recesses by inkjets (I).
Abstract:
An image display apparatus including an image display panel that includes: a first color filter for passing light of a first primary and first auxiliary pixels for displaying the first primary; a second color filter for passing light of a second primary and second auxiliary pixels for displaying the second primary; a third color filter for passing light of a third primary and third auxiliary pixels for displaying the third primary; and fourth auxiliary pixels for displaying a fourth color; the first auxiliary pixels, the second auxiliary pixels, the third auxiliary pixels, and the fourth auxiliary pixels being arranged in a two-dimensional matrix, and a light shielding region disposed at least partly around the peripheral edge of each of the fourth auxiliary pixels.