Yang, Miao-Li County
Che-Hsuan Yang, Miao-Li County TW
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20130215364 | DISPLAYS - In one embodiment of the invention, a display is provided. The display includes a light-emitting system including a plurality of light-emitting units, wherein each light-emitting unit emits light independently, a lens array including a plurality of lenses disposed on the light-emitting system, and a first liquid crystal display cell including a plurality of pixels disposed on the lens array, wherein the number of the light-emitting units of the light-emitting system is larger than that of the pixels of the first liquid crystal display cell. | 08-22-2013 |
Cheng-Chen Yang, Miao-Li County TW
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20140063370 | CONDUCTIVE SUBSTRATE AND TOUCH DISPLAY DEVICE - A conductive substrate comprises a substrate, a plurality of conductive patterns, and a plurality of optical compensation patterns. The conductive patterns extend along a first direction and are sequentially disposed on the substrate along a second direction. The optical compensation patterns are staggered from the conductive patterns along the second direction on the substrate. An edge of at least one of the conductive patterns extending along the first direction has a plurality of conductive protrusions, and an edge of at least one of the optical compensation patterns extending along the first direction has a plurality of optical compensation protrusions. A touch display device is also disclosed. | 03-06-2014 |
Cheng-Chung Yang, Miao-Li County TW
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20140035963 | DISPLAY APPARATUS AND IMAGE CONTROL METHOD THEREOF - A display apparatus includes a display panel and a driving module. The driving module is electrically connected with the display panel and has an image processing circuit and a data driving circuit. The image processing circuit receives a first image signal of a frame time. When an average gray level of the first image signal is greater than or equal to a first setting gray level, the image processing circuit reduces gray levels of the first image signal according to a first ratio to obtain a second image signal. The data driving circuit receives the second image signal and drives the display panel to display an image according to the second image signal. An image control method of the display panel is also disclosed. | 02-06-2014 |
20140078191 | DISPLAY DEVICE AND LIGHT ADJUSTING METHOD THEREOF - The present disclosure provides a display device including a light emitting diode and a driving module. The driving module drives the light emitting diode. The driving module includes a first switch circuit, a second switch circuit, and a driver transistor. The first switch circuit selectively writes a gray scale voltage in a first capacitor. The second switch circuit selectively writes an offset voltage in a second capacitor. The driver transistor is coupled to the light emitting diode, the first capacitor, and the second capacitor. The driver transistor adjusts a driving current being outputted to the light emitting diode according to the gray scale voltage and the offset voltage. The gray scale voltage adjusts the voltage difference between the gate and the source of the driver transistor, while the offset voltage adjusts a threshold voltage of the driver transistor. | 03-20-2014 |
Cho-Hao Yang, Miao-Li County TW
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20150301652 | TOUCH PANELS - A touch panel is provided. The touch panel includes a cover plate and a display element under the cover plate. A touch sensing layer is disposed at an active area of the touch panel and between the cover plate and the display element. A decorative layer is disposed at a peripheral area of the touch panel and between the cover plate and the display element, wherein the active area is surrounded by the peripheral area. The touch panel further includes a dielectric layer disposed between the cover plate and the display element, wherein the difference in reflectivity between the active area and the peripheral area is 0 to 0.5. | 10-22-2015 |
Fu-Chi Yang, Miao-Li County TW
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20120056908 | OVERDRIVING VALUE GENERATING METHOD - An overdriving value generating method adapted to a liquid crystal display (LCD) is provided. The overdriving value generating method includes the following steps. A current gray value and a previous gray value are received. A first gray reference value and a second gray reference value closed to the current gray value, and a first previous gray reference value and a second previous gray reference value closed to the previous gray value, and four first overdriving values are obtained according a look-up table (LUT). A target overdriving value corresponding to the current gray value and the previous gray value is obtained through a four dots interpolation operation or a parallelogram interpolation operation according to the current gray value, the previous gray value, the first gray reference value, the second gray reference value, the first previous gray reference value, the second previous gray reference value, and the first overdriving values. | 03-08-2012 |
20120056909 | DRIVING METHOD OF DISPLAY PANEL - A driving method for a display panel is provided, wherein the display panel includes a plurality of scan lines, data lines and pixels. The driving method includes the step of driving N scan lines simultaneously and delivering the same pixel data to the pixels coupled to the enabled N scan lines through each one data line. N is a positive integral, and N>1. | 03-08-2012 |
20120092387 | OVERDRIVING APPARATUS AND OVERDRIVING VALUE GENERATING METHOD - An overdriving apparatus including a frame state calculating unit, a white tracking unit, and an overdriving value generator is provided. The frame state calculating unit generates a frame state index according to a previous frame data and a current frame data. The white tracking unit coupled to the frame state calculating unit has pretilt white tracking tables. When the frame state index indicates that a current frame is a dynamic frame, the white tracking unit selects at least one of the pretilt white tracking tables according to the frame state index and finds color grayscales corresponding to the current frame data according to the selected pretilt white tracking table. The overdriving value generator coupled to the white tracking unit generates overdriving values corresponding to the current frame data according to the color grayscales and previous color grayscales. | 04-19-2012 |
Hui-Ching Yang, Miao-Li County TW
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20150071323 | APPARATUS FOR IDENTIFYING MORPHOLOGY - An apparatus for identifying morphology comprises a substrate, a driving circuit, a readout circuit and an identifying circuit. The substrate comprises temperature sensors each comprising a sensing transistor. The driving circuit selects at least one of the transistors as a target sensing transistor, and outputs a driving signal to the target sensing transistor to heat the target sensing transistor in a heating period. The target sensing transistor senses a temperature change to generate a sensing signal in a sensing period after the heating period. The readout circuit reads the sensing signal, and the identifying circuit identifies the morphology according to the sensing signal. | 03-12-2015 |
Kai-Neng Yang, Miao-Li County TW
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20120252299 | METHOD FOR FABRICATING LIQUID CRYSTAL DISPLAY - The invention provides a method for fabricating a liquid crystal display, including: providing a first substrate and a second substrate, wherein the first substrate and the second substrate are disposed oppositely to each other; filling a mixed solution between the first substrate and the second substrate, wherein the mixed solution comprises a plurality of liquid crystal molecules and a plurality of monomers; performing a UV light irradiation process to the mixed solution, wherein the monomers are polymerized to form a first alignment control layer on a surface of the first substrate facing the liquid crystal molecules, and form a second alignment control layer on a surface of the second substrate facing the liquid crystal molecules, and the thickness of the first alignment control layer and that of the second alignment control layer have a ratio of about 1/2-2/1. | 10-04-2012 |
20130155361 | DISPLAY PANEL AND MANUFACTURING METHOD THEREOF AND IMAGE DISPLAY SYSTEM - An embodiment of the invention provides a display panel including: a first substrate; a second substrate disposed on the first substrate; a liquid crystal layer sandwiched between the first substrate and the second substrate; a first alignment layer disposed on a first surface of the first substrate facing the liquid crystal layer, and having a first trench pattern; and a second alignment layer disposed on a second surface of the second substrate facing the liquid crystal layer, and having a second trench pattern, wherein the first alignment layer and the second alignment layer are formed by polymerizing a photopolymerization monomer. | 06-20-2013 |
20140027763 | THIN FILM TRANSISTOR SUBSTRATE AND DISPLAY DEVICE HAVING THE THIN FILM TRANSISTOR SUBSTRATE - A thin film transistor substrate includes a substrate, a gate, a gate insulating layer, a semiconductor layer, a source, a drain and a light-blocking layer. The gate is disposed on the substrate. The gate insulating layer is disposed on the gate. The semiconductor layer is disposed on the gate insulating layer. The source and the drain are disposed on the semiconductor layer with an interval therebetween. The light-blocking layer is disposed on the interval. The semiconductor layer includes an oxide semiconductor. In addition, a display device is also disclosed. | 01-30-2014 |
20140063410 | LIQUID CRYSTAL DISPLAY PANEL AND LIQUID CRYSTAL DISPLAY APPARATUS - A liquid crystal display (LCD) panel includes a first substrate, a second substrate, and a liquid crystal layer. The first substrate includes a first alignment layer. The second substrate is disposed opposite to the first substrate, and includes a second alignment layer. The liquid crystal layer is disposed between the first and second substrates, and the first alignment layer and the second alignment layer contact the liquid crystal layer. The first alignment layer and the second alignment layer are defined as first-type alignment layers, and either the first substrate or the second substrates has a second-type alignment layer. | 03-06-2014 |
20140240649 | DISPLAY DEVICE - An embodiment of the present invention provides a display device including: a first substrate; a second substrate opposite to the first substrate; a liquid crystal layer sandwiched therebetween; a pixel electrode layer on the first substrate and between the first substrate and the liquid crystal layer; and an alignment layer only disposed on the first substrate, wherein a liquid crystal cell gap of the display device ranges from about 2 μm to 4 μm. | 08-28-2014 |
20140363771 | DISPLAY PANEL AND MANUFACTURING METHOD THEREOF AND IMAGE DISPLAY SYSTEM - An embodiment of the invention provides a manufacturing method of a display panel. The method includes: providing a first substrate, a second substrate and a liquid crystal layer sandwiched therebetween, wherein the liquid crystal layer is doped with a photopolymerization monomer, and the first substrate has a first surface facing the liquid crystal layer, and the second substrate has a second surface facing the liquid crystal layer; and performing an irradiation process on the liquid crystal layer by using a photomask to polymerize the photopolymerization monomer, so as to form a first alignment layer with a first trench pattern on the first surface and a second alignment layer with a second trench pattern on the second surface. | 12-11-2014 |
20150177539 | LIQUID CRYSTAL DISPLAY DEVICE - The present invention relates to a liquid crystal display device, comprising: a first substrate with a first alignment layer disposed thereon; a second substrate with a second alignment layer disposed thereon; and a liquid crystal layer, comprising a negative liquid crystal composition and interposed between the first substrate and the second substrate, wherein the first alignment layer and the second alignment layer are disposed opposite to each other. In the present invention, at least one of the first alignment layer and the second alignment layer has a volume resistivity of 1.5×10 | 06-25-2015 |
Po-Ju Yang, Miao-Li County TW
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20140071391 | LIQUID CRYSTAL DISPLAY APPARATUS - A liquid crystal display apparatus comprises a first substrate, a second substrate and a first spacer. The first substrate includes a transparent substrate, a metal layer, an insulating layer and a first electrode layer. The metal layer is disposed on the transparent substrate. The insulating layer is between the metal layer and first electrode layer, and covers the metal layer. The insulating layer has a first indentation. A surface of the first substrate has a second indentation corresponding to the first indentation and having a first width. The second substrate is opposite to the first substrate. The first spacer is on the second substrate and has a top surface opposite to the second indentation. The top surface and the second indentation at least partially overlap, and the top surface has a second width larger than the first width. | 03-13-2014 |
Shun-Chen Yang, Miao-Li County TW
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20160004129 | DISPLAY DEVICE WITH CONDUCTIVE WIRE AND LIGHT-SHIELDING PATTERN HAVING DIFFERENT CURVATURES - A display device comprises a first substrate, a second substrate, a display medium layer disposed between the first and second substrates, and a light-shielding pattern disposed between the first and second substrates. The second substrate comprises a plurality of conductive wires. One of the conductive wires is projected onto the light-shielding pattern along a first direction, thereby obtaining a projected line within the light-shielding pattern. The projected line comprises a curved portion and two extending portions respectively connected to two ends of the curved portion. A distance between an edge of the light-shielding pattern and the curved portion of the projected line along a second direction is not equal to a distance between the edge of the light-shielding pattern and one of the extending portions along the second direction. The first direction is perpendicular to the second direction. | 01-07-2016 |
Wan-Shan Yang, Miao-Li County TW
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20150198826 | DISPLAY PANEL - A display panel is provided. The display panel includes a first substrate, a second substrate, a liquid crystal layer, a plurality of thin film transistors, a plurality of metal wires, a protection layer, a first alignment layer, and a plurality of agglomerates. The first substrate has at least a display area and a non-display area located outside the display area. The second substrate is disposed opposite to the first substrate. The liquid crystal layer is disposed between the first substrate and the second substrate. The thin film transistors and the metal wires are disposed on the first substrate, the protection layer overlaying at least a portion of the metal wires. The first alignment layer is disposed on the protection layer for exposing a first surface of the protection layer. The agglomerates are disposed on at least a portion of the first surface. | 07-16-2015 |
Wei-Chih Yang, Miao-Li County TW
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20160141546 | DISPLAY PANEL - An organic light emitting diode (OLED) display device and a manufacturing method thereof are provided. The OLED display device includes a first substrate, an organic light emitting element disposed on the first substrate, a first inorganic layer, and a second inorganic layer. The organic light emitting element includes a first electrode disposed on the first substrate, an organic light emitting layer disposed on the first electrode, and a second electrode disposed on the organic light emitting layer. The first inorganic layer covers the organic light emitting element, wherein the first inorganic layer has a first thickness. The second inorganic layer covers the first inorganic layer and covers the organic light emitting element, wherein the second inorganic layer has a second thickness larger than the first thickness, and the second inorganic layer has a consistency less than the consistency of the first inorganic layer. | 05-19-2016 |
Yixin Yang, Miao-Li County TW
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20150340653 | OLED DISPLAY PANEL - An OLED display panel is disclosed, which comprises: a substrate; an OLED unit disposed on the substrate; and an inorganic-DLC composite layer comprising a first inorganic layer and a first DLC layer, wherein the first inorganic layer and the first DLC layer sequentially laminate on the OLED unit, and the first inorganic layer locates between the OLED unit and the first DLC layer. Herein, a ratio of a thickness of the first inorganic layer to that of the first DLC layer is in a range from 50 to 500. | 11-26-2015 |
Yi-Xin Yang, Miao-Li County TW
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20150090477 | MULTILAYER STRUCTURE, FINGERPRINT IDENTIFICATION DEVICE AND MANUFACTURING METHOD THEREOF - A multilayer structure comprises an insulation material, a conductive layer and a protective film. The conductive layer is disposed on the insulation material. The protective film is disposed on the surface of the conductive layer, and the surface area of the protective film is less than that of the conductive layer. A fingerprint identification device and a manufacturing method thereof are also disclosed. | 04-02-2015 |
20150364722 | DISPLAY DEVICE - A display device includes a first substrate, a second substrate, a connecting element and a display medium. The first and second substrates are disposed opposite to each other, and the connecting element is disposed between the first and second substrates. An accommodating space is formed between the first substrate, the second substrate and the connecting element, and the display medium is disposed in the accommodating space. The connecting element has a first sealing layer, a second sealing layer and an adhesive layer. The first and second sealing layers are departed or partially connected. The second sealing layer is disposed adjacent to the accommodating space. The adhesive layer is disposed between the first and second sealing layers. The adhesive layer includes a water-resisting material. | 12-17-2015 |
20160066463 | CURVED ELECTRONIC DEVICE - A curved electronic device includes a shaping layer having a first curved surface and a second curved surface opposite to the first curved surface, and an electronic element conformably disposed over the first curved surface of the shaping layer, wherein the shaping layer comprises radiation-curable materials or thermal-curable materials. | 03-03-2016 |
Yu-Heng Yang, Miao-Li County TW
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20140035963 | DISPLAY APPARATUS AND IMAGE CONTROL METHOD THEREOF - A display apparatus includes a display panel and a driving module. The driving module is electrically connected with the display panel and has an image processing circuit and a data driving circuit. The image processing circuit receives a first image signal of a frame time. When an average gray level of the first image signal is greater than or equal to a first setting gray level, the image processing circuit reduces gray levels of the first image signal according to a first ratio to obtain a second image signal. The data driving circuit receives the second image signal and drives the display panel to display an image according to the second image signal. An image control method of the display panel is also disclosed. | 02-06-2014 |
20140104548 | LCD DEVICE AND MANUFACTURING METHOD THEREOF - The invention provides a liquid crystal display (LCD) device comprising a first substrate, a first electrode, a second substrate, a liquid crystal layer, a main spacer and an auxiliary spacer. The first electrode is disposed on the first substrate and has a first thickness and a second thickness, wherein the first thickness is smaller than the second thickness. The second substrate and the first substrate are disposed oppositely. The liquid crystal layer is disposed between the first substrate and the second substrate. The main spacer is disposed between the first substrate and the second substrate and corresponding to a part of the first electrode having the first thickness. The auxiliary spacer is disposed between the first substrate and the second substrate and corresponding to a part of the first electrode having the second thickness. | 04-17-2014 |