Hsin-Ying
Hsin-Ying Chen, Taipei TW
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20110187649 | ELECTRONIC DEVICE - An electronic device includes a host module and an input module. The input module includes a keyboard unit and a touch unit. The keyboard unit is electrically connected to the host module. The touch unit includes a touch pad and a plurality of key sets. The touch pad is electrically connected to the key sets. The key sets are selected to be disposed next to the touch pad or not. This can improve the flexibility for the user to use the electronic device with a touch pad and a plurality of key sets. | 08-04-2011 |
Hsin-Ying Chou, New Taipei City TW
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20150328631 | Electrospinning Solution, Polyvinyl Alcohol Nanofibers and Ion-Exchange Membrane - An ion-exchange membrane is provided, and the fibers of the ion-exchange membrane are obtained by electrospinning. The electrospinning solution contains 100 parts by weight of polyvinyl alcohol (PVA), 10-100 parts by weight of a modifier, 10-100 parts by weight of an ion exchanger, and 100-2,500 parts by weight of water. The modifier has a reactive group that can react with the hydroxyl groups of the PVA. The ion exchanger has a polar functional group that can form hydrogen bonds with the hydroxyl groups of the PVA, and has an anion group that can provide ion-exchange ability. | 11-19-2015 |
Hsin-Ying Ho, Taipei TW
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20150307653 | POLYMER PARTICLE AND PREPARATION METHOD THEREOF - Provided is a poly-p-xylyene having at least one chemically active functional group present in a form of particles. In an embodiment, the functionalized poly-p-xylylene is synthesized via CVD, and electrospinning is then performed at a relatively low polymer concentration, so as to produce functionalized poly-p-xylylene particles. The functionalized poly-p-xylyene particles have a particle size at nano-scale or micro-scale. Such functionalized poly-p-xylyene particles can be applied to biological fields extensively. | 10-29-2015 |
Hsin-Ying Ho US
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20090272990 | Light Mixing Apparatus for Light Emitting Diode - A light mixing apparatus of a light emitting diode (LED) is installed on a light emitting surface of the LED. The light emitted from the LED is mixed by a light mixing module of the light mixing apparatus uniformly for adjusting the light output angle. After the angle increases, the light is scattered into a fixed base of the light mixing apparatus, reflected to a containing groove of the light mixing apparatus by a reflecting layer of the fixed base, and guided into the total internal reflection lens of the containing groove. After the total internal reflection lens gathers the light, the light is projected onto a projected surface. If the LED is made of a multi-chip package, the light mixing apparatus can be used for improving the luminance of a light emitted by the LED onto the projected surface and the uniform distribution of the luminance. | 11-05-2009 |
Hsin-Ying Ho, Jhongli City TW
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20090279053 | Apparatus for Continuously Projecting Images and Method therefor - A method for continuously projecting images by enabling an apparatus including a light source, an image creation unit, and a projection unit includes receiving video signals from a predetermined source; creating a plurality of images from the video signals while being impinged by light emitted by the light source; receiving the images from the image creation unit; and activating the projection unit to project the images on a projection screen in a predetermined rapid succession so as to create a motion picture effect. As such, lighting adjustment and natural beauty simulations in a vivid way can be achieved. | 11-12-2009 |
20090322026 | LED Chess Set - In a light emitting diode (LED) chess set, when a chess piece of the chess set is placed on a chessboard, a power supply element in the chessboard will supply power to an LED in the chess piece to emit light, so that the chess piece gives a light emitting effect. When a player removes a chess piece from a square of the chessboard for a next movement of the chess piece, a control element in the chessboard will identify an identification element of the chess piece through a sensing element on the square to determine the possible next movements of the chess piece on the chessboard and drive the LEDs in the corresponding squares of all suggested movements to emit light. The light-emitting square guides and suggests players to make the next movement of a chess piece and improve a beginner's memory on the rules of chess. | 12-31-2009 |
Hsin-Ying Lee, Tainan City TW
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20150267239 | Biosensor Chip Having Precise Count Function and Method of Sensing Amount of Cells - Disclosure is a biosensor chip having precise count function comprising: a substrate, a plurality of ground wire waveguide layers, a signal waveguide layer and a protective layer. Wherein, the plurality of ground wire waveguide layers are located on two sides of the substrate, the signal waveguide layer is located on the substrate and between the plurality of ground wire waveguide layers, wherein the signal waveguide layer has a recess which forms a cell sensing region; and the protective layer covers a portion of the ground wire waveguide layers and a portion of the signal waveguide layer to expose the recess. | 09-24-2015 |
Hsin-Ying Lee, Taichung City TW
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20130232748 | PROCESSING MACHINE - A processing machine that combines the functions of mounting press and grinding for metallographic analysis and includes a main frame at least one shaft and a drive device horizontally mounted on the main frame. A mounting press unit and a grind unit are mounted on the main frame. The grind unit including a base secured on the main frame and linearly corresponds to the mounting press unit and the corresponding line parallel to the at least one shaft. The grind unit includes a headstock slidably mounted on the at least one shaft the and reciprocally moved on the at least one shaft to selectively align with the base of the grind unit and the mounting press unit when the drive device is operated. A control unit disposed in the grind unit for controlling the mounting press unit and the grind unit. | 09-12-2013 |
Hsin-Ying Lin, Taipei TW
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20150283671 | CHEMICAL MECHANICAL POLISHING CONDITIONER - The present invention relates to a chemical mechanical polishing conditioner, comprising: a substrate; a binding layer disposed on the substrate; and multiple abrasive units placed on the binding layer; wherein each abrasive unit has an abrasive unit substrate and an abrasive layer which is a diamond film formed by chemical vapor deposition and has multiple abrasive tips; wherein the abrasive units have uniform heights, such that the abrasive units form a planarized surface. Therefore, the present invention can improve planarization of the conditioner, enhance efficiency, and prolong lifetime. | 10-08-2015 |
Hsin-Ying Lin, Tainan City TW
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20150123175 | MECHANISMS FOR SEMICONDUCTOR DEVICE STRUCTURE - Embodiments of mechanisms of a semiconductor device structure are provided. The semiconductor device structure includes a substrate and a metal gate structure formed over the substrate. The semiconductor device structure further includes a funnel shaped hard mask structure formed over the metal gate structure. In addition, a method for forming the semiconductor device structure is also provided. | 05-07-2015 |
20150123213 | INTEGRATED CIRCUIT STRUCTURE WITH THINNED CONTACT - Embodiments of mechanism for an integrated circuit (IC) structure are provided. The IC structure includes a substrate including a first diffusion region, a second diffusion region, and an isolation structure separating the first diffusion region and the second diffusion region. The IC structure further includes a gate structure formed over the substrate, and the gate structure extends from the first diffusion region to the second diffusion region. The IC structure further includes a contact formed over the substrate, and the contact includes a wide portion over the first diffusion region and the second diffusion region and a thin portion over the isolation structure. | 05-07-2015 |
20150194422 | SEMICONDUCTOR ARRANGEMENT AND FORMATION THEREOF - A semiconductor arrangement and method of formation are provided herein. A semiconductor arrangement includes a metal connect in contact with a first active region and a second active region, and over a shallow trench isolation region located between the first active region and a second active region. A method of forming the semiconductor arrangement includes recessing the metal connect over the STI region to form a recessed portion of the metal connect. Forming the recessed portion of the metal connect in contact with the first active region and the second active region mitigates RC coupling, such that a first gate is formed closer to a second gate, thus reducing a size of a chip on which the recessed portion is located. | 07-09-2015 |
20150194425 | SEMICONDUCTOR DEVICE AND FORMATION THEREOF - A semiconductor device and method of formation are provided herein. A semiconductor device includes a first active region adjacent a first side of a shallow trench isolation (STI) region. The first active region including a first proximal fin having a first proximal fin height adjacent the STI region, and a first distal fin having a first distal fin height adjacent the first proximal fin, the first proximal fin height less than the first distal fin height. The STI region includes oxide, the oxide having an oxide volume, where the oxide volume is inversely proportional to the first proximal fin height. A method of formation includes forming a first proximal fin with a first proximal fin height less than a first distal fin height of a first distal fin, such that the first proximal fin is situated between the first distal fin and an STI region. | 07-09-2015 |
20150333149 | SEMICONDUCTOR ARRANGEMENT AND FORMATION THEREOF - A semiconductor arrangement and method of formation are provided herein. A semiconductor arrangement includes a metal connect in contact with a first active region and a second active region, and over a shallow trench isolation region located between the first active region and a second active region. A method of forming the semiconductor arrangement includes recessing the metal connect over the STI region to form a recessed portion of the metal connect. Forming the recessed portion of the metal connect in contact with the first active region and the second active region mitigates RC coupling, such that a first gate is formed closer to a second gate, thus reducing a size of a chip on which the recessed portion is located. | 11-19-2015 |
Hsin-Ying Lin, Tainan TW
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20150179573 | SEMICONDUCTOR DEVICE AND METHOD FOR MANUFACTURING SEMICONDUCTOR DEVICE - A method for manufacturing semiconductor device is provided. The method includes the following operations: providing a first conductive portion, a second conductive portion and a third conductive portion over a substrate; forming a dielectric layer over the first conductive portion, the second conductive portion, and the third conductive portion; forming a high-resistance layer over the first conductive portion; forming an oxide layer over the high-resistance layer and the dielectric layer; patterning the dielectric layer and the oxide layer by using the high-resistance layer as a blocking layer to form a first recess to expose the second conductive portion and the third conductive portion and to prevent the first conductive portion from exposure; and forming a plug layer in the first recess to connect the second conductive portion and the third conductive portion. | 06-25-2015 |
20150206872 | METHOD OF FORMING CONTACT STRUCTURE OF GATE STRUCTURE - A method of forming a contact structure of a gate structure is provided. In the method, an oxidation layer and a first sidewall layer disposed between a first metal gate and a second metal gate are etched to expose an underlying silicon substrate. A silicide portion defined by a contact profile is deposited in the exposed portion of the silicon substrate. A second sidewall layer substantially covers the first sidewall layer and at least partially covering the silicide portion is formed after depositing the silicide portion. A metal glue layer is deposited around the first metal gate and the second metal gate defining a trench above the silicide portion. A metal plug is deposited within the trench. | 07-23-2015 |
Hsin-Ying Liu, Sacramento, CA US
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20130040351 | POLYHYDROXYALKANOATE PRODUCTION DURING WASTEWATER TREATMENT - A wastewater treatment process elicits microorganisms to convert a waste stream/organic resource to intracellular biopolymer polyhydroxyalkanoate (PHA). The process includes (i) waste stream/organic resource composition feed criteria, (ii) configuration coupled with operational parameters, and (iii) PHA-laden biomass separation and stabilization. A waste stream/organic resource capable of producing enhanced levels of PHA may be selected based on a combination of criteria, which may include short chain fatty acid concentration, protein concentration, polysaccharides concentration, and total suspended solids concentration. The waste stream is introduced into an aeration basin upon a specific configuration and operated under various parameter combinations for selecting/enriching microorganisms capable of producing PHA. The PHA-laden biomass is separated and stabilized for downstream PHA related product beneficial uses. The present process achieves concurrent wastewater treatment and PHA production, where PHA level (of more than 10% on a cell-weight basis) otherwise could not be obtained. | 02-14-2013 |
Hsin-Ying Wang, Hsinchu TW
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20110159624 | METHOD OF FORMING LIGHT-EMITTING DIODE - A method of forming a light emitting diode is provided. The method includes providing a growth substrate; sequentially forming a sacrificial layer and an epitaxial layer on the growing substrate; forming one or more epitaxial layer openings penetrating the epitaxial layer and exposing the sacrificial layer; forming a supporting layer on the epitaxial layer, the supporting layer having one or more supporting layer openings penetrating the supporting layer and joining the epitaxial layer openings; and selectively etching the sacrificial layer to separate the growth substrate from the epitaxial layer. | 06-30-2011 |
20120018750 | SEMICONDUCTOR OPTOELECTRONIC DEVICE AND THE METHOD OF MANUFACTURING THE SAME - A semiconductor optoelectronic device comprises an operating substrate; a semiconductor epitaxial stack unit disposed on the operating substrate comprising a first semiconductor material layer having a first electrical conductivity disposed on the operating substrate and a second semiconductor material layer having a second electrical conductivity disposed on the first semiconductor material layer; a transparent conductive layer disposed on the second semiconductor material layer, wherein the transparent conductive layer comprises a first surface, a directly contacting part disposed on the first surface and directly contacting with the second semiconductor material layer, a second surface substantially parallel with the first surface, and a directly contacting corresponding part disposed on the second surface corresponding to the directly contacting part; and a first electrode disposed on the operating substrate and electrically connected with the semiconductor epitaxial stack by the transparent conductive layer, wherein the first electrode is connected with the transparent conductive layer by an area excluding the directly contacting part and the directly contacting corresponding part. | 01-26-2012 |
20120055532 | SEMICONDUCTOR OPTOELECTRONIC DEVICE - A semiconductor optoelectronic device comprises a growth substrate; a semiconductor epitaxial stack formed on the growth substrate comprising a sacrificial layer with electrical conductivity formed on the growth substrate; a first semiconductor material layer having a first electrical conductivity formed on the sacrificial layer, and a second semiconductor material layer having a second electrical conductivity formed on the first semiconductor material layer; and a first electrode directly formed on the growth substrate and electrically connected to the semiconductor epitaxial stack via the growth substrate. | 03-08-2012 |
20140295588 | METHOD OF FORMING LIGHT-EMITTING DIODE - A method of forming a light-emitting diode includes: providing a substrate having one or more first openings passing through the substrate; forming a sacrificial layer on the substrate; forming an epitaxial layer on the sacrificial layer; connecting a supporting substrate with the epitaxial layer; and separating the substrate from the epitaxial layer by selectively etching the sacrificial layer. | 10-02-2014 |
20140322838 | Semiconductor Optoelectronic Device And The Method Of Manufacturing The Same - A semiconductor optoelectronic device comprises an operating substrate; a semiconductor epitaxial stack unit disposed on the operating substrate comprising a first semiconductor material layer having a first electrical conductivity disposed on the operating substrate and a second semiconductor material layer having a second electrical conductivity disposed on the first semiconductor material layer; a transparent conductive layer disposed on the second semiconductor material layer, wherein the transparent conductive layer comprises a first surface, a directly contacting part disposed on the first surface and directly contacting with the second semiconductor material layer, a second surface substantially parallel with the first surface, and a directly contacting corresponding part disposed on the second surface corresponding to the directly contacting part; and a first electrode disposed on the operating substrate and electrically connected with the semiconductor epitaxial stack by the transparent conductive layer, wherein the first electrode is connected with the transparent conductive layer by an area excluding the directly contacting part and the directly contacting corresponding part. | 10-30-2014 |
20150236205 | LIGHT-EMITTING DEVICE - A light-emitting device comprises: a light-emitting stack comprising a first side, a second side opposite to the first side, and an upper surface between the first side and the second side; a first electrode pad formed on the upper surface; a second electrode pad formed on the upper surface, and the first electrode pad is closer to the first side than the second electrode pad; and a first extension electrode comprising a first section extended from the first electrode pad toward the second electrode pad, and a second section extended from the first electrode pad toward the first side. | 08-20-2015 |
Hsin-Ying Wang, Hsinchu City TW
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20120104455 | OPTOELECTRONIC DEVICE AND METHOD FOR MANUFACTURING THE SAME - An optoelectronic device includes a substrate and a first transition stack formed on the substrate including at least a first transition layer formed on the substrate and having at least one hollow component formed inside the first transition layer, and a second transition layer wherein the second transition layer is an unintentional doped layer or an undoped layer formed on the first transition layer. | 05-03-2012 |
Hsin-Ying Wu, Taichung City TW
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20150346469 | PROJECTOR, PROJECTING LENS OF THE PROJECTOR AND METHOD OF PROJECTING IMAGES - A projector includes an image ray generator and a projecting lens, wherein the image ray generator generates image rays. The projecting lens includes a relay optical system for receiving the image rays and a projection optical system having at least one lens and a reflector. Whereby, the image rays pass through the relay optical system, pass through the at least one lens, and then are reflected by the reflector. After being reflected, the image rays pass through the at least one lens again, and then leave the projecting lens to be projected onto a screen. In addition, the invention further discloses the structure of the projecting lens and a method of projecting images. | 12-03-2015 |
Hsin-Ying Wu, Hsin-Chu TW
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20140022635 | AUTOSTEREOSCOPIC DISPLAY APPARATUS - An autostereoscopic display apparatus includes a substrate, a plurality of sub-pixels, a plurality of concave lens structures, a middle layer and a lenticular layer. The sub-pixels are disposed on the substrate, and each sub-pixel includes a light permeable area and at least one light masking area. The concave lens structures are disposed on the sub-pixels and on the optical paths of the light permeable areas. The middle layer is disposed on the concave lens structures, wherein the concave lens structures is used to expand the illumination distribution of the light from the light permeable areas of the sub-pixels, so as to form a plurality of virtual sub-pixel patterns. The projections of virtual sub-pixel patterns respectively projected to the sub-pixels cover the light masking areas of the sub-pixels. The focal point of the lenticular layer falls on the virtual sub-pixel patterns. | 01-23-2014 |
20150022440 | DISPLAY AND METHOD OF DISPLAYING THREE-DIMENSIONAL IMAGES WITH DIFFERENT PARALLAXES - A display includes multiple pixels, a detecting device and an optical unit. Each of the pixels is configured to display a first image. The detecting device is configured to detect a position of a viewer to generate a position data. The optical unit cooperates with each of the pixels to project the first image to multiple viewable zones, in which an unobserved zone is formed between consecutive two of the viewable zones. Each of the pixels is configured to switch from a first image to a second image while the position data corresponds to the viewer located in the unobserved zone. | 01-22-2015 |
20150054928 | AUTO-STEREOSCOPIC DISPLAY APPARATUS AND STORAGE MEDIA - An auto-stereoscopic display apparatus and a storage media are provided. The auto-stereoscopic display apparatus includes a display area, which includes a display panel and a lens layer. The display panel includes a plurality of pixel rows sequentially arranged in a first direction. Each one of the pixel rows includes a plurality of pixels sequentially arranged in a second direction substantially perpendicular to the first direction. Each one of the pixels includes a plurality of sub-pixels sequentially arranged in the second direction. The lens layer is disposed on the display panel and includes a plurality of lenticular lenses substantially arranged in the second direction. N successive sub-pixels in each pixel row are corporately covered by one of the lenticular lenses. A ratio of a component of a width in the second direction of each lenticular lens to a width of each sub-pixel in the second direction is configured to a non-integer. | 02-26-2015 |
20150323803 | 3D IMAGE DISPLAY DEVICE AND 3D IMAGE DISPLAY METHOD - A 3D image display device includes an image projection unit for projecting a first image; a first polarization unit disposed on a projection path of the first image for linearly polarizing the first image to have a first linear polarization direction; a lens array disposed on the projection path of the first image for refracting an image having a second linear polarization direction, the second linear polarization direction being different from the first linear polarization direction; a first quarter-wave plate disposed on the projection path of the first image for converting polarization direction of an image between a linear polarization direction and a circular polarization direction; and a reflection unit disposed on the projection path of the first image for reflecting the first image transmitted from the first quarter-wave plate back to the first quarter-wave plate. | 11-12-2015 |
Hsin-Ying Wu, Yilan City TW
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20090079929 | Method of alignments of liquid crystal employing magnetic thin films - Alignments of liquid crystal are obtained. A transparent magnetic thin film provides a homeotropic alignment of liquid crystal molecules. Or, a homeotropic or homogeneous alignment having an adjustable pretilt angle is further obtained through rubbing the transparent magnetic thin film. The present invention has a simple procedure with a low cost. The present invention is used in equipment with a plasma source while providing high transmittance, hardness and insulation. And the transparent magnetic thin film has potential uses in the applications of non-contact multi-domain alignment without extra procedure for alignment treatment. | 03-26-2009 |
20100110360 | Method of alignments of liquid crystal employing magnetic thin films - Alignments of liquid crystal are obtained. A transparent magnetic thin film provides a homeotropic alignment of liquid crystal molecules. Or, a homeotropic or homogeneous alignment having an adjustable pretilt angle is further obtained through rubbing the transparent magnetic thin film. The present invention has a simple procedure with a low cost. The present invention is used in equipment with a plasma source while providing high transmittance, hardness and insulation. And the transparent magnetic thin film has potential uses in the applications of non-contact multi-domain alignment without extra procedure for alignment treatment. | 05-06-2010 |