Abstract:
A color filter array includes first pixels, second pixels, third pixels, and fourth pixels. The first pixels transmit light with visible and infrared (IR) wavelengths. The second pixels transmit light with the visible wavelengths and surround each of the first pixels. The third pixels transmit light with a first range of wavelengths among the visible wavelengths. The fourth pixels transmit light with a second range of wavelengths among the visible wavelengths.
Abstract:
The embodiments of the present invention disclose a color filter substrate, a method for fabricating the same, a display panel and a display device, and relate to the field of display technology, for preventing the occurrence of a color mixture phenomenon of the display device while ensuring that the display device has high aperture ratio and resolution. The color filter substrate comprises a color filter layer which comprises color filter units with at least two colors and distributed in the form of a matrix, and a black matrix is arranged between two adjacent color filter units; the color filter substrate further comprises: light-shielding bulges located at a part of the area of the black matrix and facing towards an incident light direction, for preventing the occurrence of the color mixture among the color filter units with different colors.
Abstract:
Compounds of the formula (I) wherein Q is a direct bond or an n-valent linking group; n is an integer 2, 3, or 4; Z is for example C1-C20alkylene, C2-C20alkenylene, C5-C8cycloalkylene or C5-C8cycloalkenylene; Y is for example C6-C20aryl or C3-C20heteroaryl; R1 is for example hydrogen, C2-C5alkenyl, C3-C8cycloalkyl, C1-C12alkyl, phenyl, naphthyl, C3-C20heteroaryl, C1-C8alkoxy, benzyloxy or phenoxy; R2 is for example C1-C20alkyl, C2-C12alkenyl, C4-C8cycloalkenyl, C2-C12alkinyl, C3-C10cycloalkyl, phenyl or naphthyl; R15, R16, R17, R18, R19 and R20 independently of each other for example are hydrogen, halogen, C1-C20alkyl, C6-C20aryl or C4-C20heteroaryl; provided that a compound wherein R15, R16, R17, R15, R19 and R20 are hydrogen, Y is thienyl, R1 is methyl, R2 is ethyl, n is 2, Q is a direct bond and Z is n-propylene and a compound wherein R15, R16, R17, R18, R19 and R20 are hydrogen, Y is thienyl, R1 is methyl, R2 is ethyl, n is 2, Q as an n-valent linking group is methylene and Z is methylene are excluded; are reactive photoinitiators in particular in electronic applications.
Abstract:
The present invention provides a method for fabricating a color filter substrate, including: carrying out a first ultraviolet light irradiation and a heating treatment on functional layers formed by patterning process on a substrate; forming an alignment layer on the functional layers; and carrying out a second ultraviolet light irradiation on the alignment layer. The present invention further provides a display panel including the color filter substrate fabricated by using the method and a display device including the display device.
Abstract:
The invention relates to a display, in particular an autostereoscopic or holographic display, for representing preferably three-dimensional information, wherein the stereo views or the reconstructions of the holographically encoded objects can be tracked to the movements of the associated eyes of one or more observers in a finely stepped manner within a plurality of zones of the movement region. In this case, the zones are selected by the activation of switchable polarization gratings.
Abstract:
According to one embodiment, a first substrate includes first to fourth pixel electrodes. A color filter layer includes a red filter opposed to the first pixel electrode, a green filter opposed to the second pixel electrode, a first blue filter opposed to the third pixel electrode and having a peak of transmittance at a wavelength shorter than 460 nm, and a second blue filter opposed to the fourth pixel electrode and having a peak of transmittance at a wavelength longer than 460 nm.
Abstract:
A CT apparatus for scanning an object is provided. An x-ray source is provided, wherein the x-ray source provides a collimated x-ray beam with a cross-section. A plurality of attenuation elements is provided between the source and object. An actuator is connected to the attenuation elements for moving the attenuation elements. An x-ray detector is located on an opposite side of the object from the x-ray source and is for detecting x-rays that pass through the object and the plurality of attenuation elements. A gantry rotates the x-ray source, the plurality of attenuation elements, and the x-ray detector around an axis of rotation.
Abstract:
The present disclosure provides a color filter substrate, comprising a base substrate, and a color filter matrix, a black matrix and spacers formed in order on the base substrate, the color filter matrix being consisted of a plurality of red, green and blue photoresists. The red, green and blue photoresists are respectively and separately formed within corresponding pixel regions, and are overlapped with one another to form three-layer stacked structures within gap regions between adjacent pixel regions, and, the black matrix and the spacers are sequentially formed on the stacked structures within the pixel regions. The present disclosure further provides a method of manufacturing a color filter substrate, an organic light emitting display panel and a display device. With the solutions of the present disclosure, the red, green and blue photoresists are arranged to overlap with one another to form the stacked structures within the gap regions between adjacent pixel regions, so that the height of the color filter substrate can be increased, the manufacturing height of the spacers is decreased and the process implementation difficulty is reduced, thereby improving the production yield of the color filter. Moreover, the barrier layer can also greatly reduce residues of the material of the black matrix, further improving the production yield of the color filter substrate.
Abstract:
Method for the adjustment of a photo finish camera including a matrix color filter, characterized in that the method includes the following steps: a first step of selecting a basic pattern having optical properties of sensitivity, of color quality and of resolution which are predefined according to race parameters; a second step of software selection of a set of adjacent columns whose number corresponds to the width of said selected basic pattern; a third step of centering said set of adjacent columns on the finish line.
Abstract:
A color filter substrate includes a color filter layer, a light-transmissive layer and a light-shielding layer. The light-transmissive layer is disposed between pixels and includes a side surface that forms a reflection surface. The light-shielding layer is laminated on the light-transmissive layer.