Abstract:
PROBLEM TO BE SOLVED: To transfer a single-layer or multi-layer thin film to another place while maintaining physical characteristics of the thin film by providing a repairing device that repairs a defect part to recover a function if a defect occurs to a semiconductor device or other electronic components such as a liquid crystal display. SOLUTION: A defect repairing device for electronic components includes an ultrashort pulse laser light emitting device which suitably adjusts and emits ultrashort pulse laser light, a flexible mask pattern generator that forms the ultrashort pulse laser light emitted by the ultrashort pulse laser light emitting device into a prescribed shape, an optical system which converges the ultrashort pulse laser light, and a first stage where an electronic component to be repaired is mounted and positioned. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a backlight module and a frame therefor. SOLUTION: The frame includes an outer frame, an elastic-side frame, a connecting arm, and a cantilever beam. The elastic-side frame is disposed on at least one side of the outer frame. The connecting arm is connected to a surface of the elastic-side frame. The cantilever beam is disposed on the connecting arm to form a first space with the elastic-side frame. The frame of the backlight protects an optical film or panel to protect the optical film from a high stress. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a method for forming an organic light emitting diode (OLED) display panel and a polysilicon channel layer thereof. SOLUTION: A substrate 11 having a polysilicon layer disposed thereon is prepared. Then, a dopant atomic not selected from group IIIA and group VA is doped into polysilicon channel layers (14, 22) to form the polysilicon channel layers (14, 22). COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide adjustment of polarized output of switchable active lenses for use in a display device which generates an output for display of 3D/2D images. SOLUTION: A switchable birefringent lens array includes a birefringent material, arranged between a planar surface and at least one projection surface defining an array of cylindrical lenses; and an electrode for applying a control voltage to both ends of the birefringent material. In a 3D mode, a prescribed voltage is applied to the electrode of the lens array, and the birefringent material is aligned approximately in parallel with a geometrical axis of the cylindrical lenses at, at least; and one projection surface and twists between the planar surface and the projection surface and modifies the directional distribution of incident light polarized in a predetermined direction. In a 2D mode, in a state where the prescribed voltage is not applied to the electrode, the birefringent material is homeotropically aligned at, at least, one projection surface and is configured so as to have substantially no effect on incident light polarized in the predetermined direction. COPYRIGHT: (C)2011,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a polishing machine and its transport tool capable of reducing cost and time for replacement of stages and flexibly performing polishing processes to substrates in various sizes. SOLUTION: The transport tool 102 loading an article 106 to be transported thereon comprises a center platform 108, a first tray 110 secondarily supporting the article 106 to be transported, and a second tray 112 secondarily supporting the article 106 to be transported. The first tray 110 and the second tray 112 are respectively placed on both sides of the center platform 108. Sides of the respective trays adjacent to the center platform 108 correspond to each other to form a complementary structure. The first tray 110 and the second tray 112 are relatively moved and adjusted to secondarily support the article 106 to be transported. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To improve the luminance of a liquid crystal display device by reducing the light loss generated in a light shielding region. SOLUTION: The liquid crystal display device is equipped with a backlight module 102, a first transparent substrate 106, a second substrate 114, and a liquid crystal layer 110. The backlight module 102 has a light exit surface 101. The first transparent substrate 106 is arranged on one side of the light exit surface 101 of the backlight module 102, and is formed with a plurality of high refractive index regions 108 on one surface adjacent to the light exit surface 101 within one same surface of the first transparent substrate 106. The refractive index of the high refractive index regions 108 is greater than the refractive index of the first transparent substrate 106. A second substrate 114 is arranged on the first transparent substrate 106 and has a plurality of light transmission regions 112a. The light transmission regions 112a are formed in the positions corresponding to the high refractive index regions 108. The liquid crystal layer 110 is formed between the first transparent substrate 106 and the second substrate 114. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a manufacturing method of an array substrate of a transflective liquid crystal display device by which a production cost of the liquid crystal display device is reduced and a production amount thereof is increased. SOLUTION: The number of used photo masks is reduced into three or four by rear surface exposure and halftone photo masks to prepare the transflective liquid crystal display device. A capacitance value per unit area is increased by connecting a storage capacitance 141 in series and an area occupied by the storage capacitance on a substrate 100 is reduced to heighten a numerical aperture of a transmission region and luminance of the display device. COPYRIGHT: (C)2008,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a liquid-crystal display having quick response time in screen display, and to provide its pixel electrode array. SOLUTION: A pixel electrode array of a liquid-crystal display is provided with first pixel electrodes 110 and second pixel electrodes 115. The first pixel electrodes 110 are arranged on two pixel regions 120, which are adjacent to each other or share one corner, and includes at least first sub-pixel electrodes 110a and 110b, which are adjacent and diagonally connected to each other. The second pixel electrodes 115 are distributed on two pixel regions 120, which are adjacent to each other or share one corner, and includes at least two second sub-pixel electrodes 115a and 115b which are adjacent and diagonally connected to each other. The polarity of the second pixel electrodes 115 is opposite to that of the first pixel electrodes 110, and the first pixel electrodes 110 and the second pixel electrodes 115 are arranged alternately; and at least one of the first sub-pixel electrodes 110a and 110b, and at least one of the second electrodes 115a and 115b are arranged on each pixel area 120. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a liquid crystal display panel and a liquid crystal display device incorporating the same. SOLUTION: The liquid crystal display panel includes a first substrate, a second substrate and a liquid crystal layer. The first substrate includes a first base, a dielectric layer and a storage capacitor. The storage capacitor includes a reflective electrode. The dielectric layer covers at least a part of the storage capacitor. The second substrate is substantially paralleled to the first substrate. The second substrate includes a second base, a black matrix and a common electrode. The black matrix corresponds to the storage capacitor. The black matrix includes an opening corresponding to the reflective electrode. The opening is provided to let outside light enter into the liquid crystal display panel such that the reflective electrode reflects the outside light to provide a light source to the liquid crystal display panel. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To disclose a liquid crystal display (LCD) panel module which lowers the amount of flexible printed circuits down to reduce the circuit complexity and production cost, and a scan driver thereof. SOLUTION: The LCD panel module includes a LCD panel having data electrodes and scan electrodes, a scan driver and a data driver. The scan driver includes a timing controller, a scale-adjusting function circuit and an image gamma modulation circuit. The timing controller generates a first control signal and second control signal according to a first clock signal. The scan driver is controlled by the first control signal to drive the scan electrodes. The scale-adjusting function circuit adjusts an image scale corresponding to a first display signal and outputs a second display signal accordingly. The image gamma modulation circuit performs a gamma modulation on the second display signal to output a third display signal. The data driver, disposed on the LCD panel, drives the data electrodes to display pictures on the LCD panel according to the second control signal. COPYRIGHT: (C)2007,JPO&INPIT