Sheng-Kai
Sheng-Kai Chang, Chung Li TW
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20110222294 | Side emitting LED module - The invention provides a side emitting light emitting diode (LED) module which comprises a LED, a base, a lens, a reflex plane and a transparent plane wherein the base is on the LED for facing it, the lens placed on the base and is centered by the LED, the reflex plane is on the lens for refracting or transmitting lights from the lens reflexing, the outer is the transparent plane which is an extended plane from the rim of the reflex plane down to the base, both the refracting light by the reflex plane and the transmitting light by the lens sent out by the transparent plane, the final lights from the transparent plane parallel the base and sent out of the LED module. | 09-15-2011 |
Sheng-Kai Chen, Taipei County TW
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20110084283 | THIN FILM TRANSISTOR AND MANUFACTURING METHOD THEREOF - A thin film transistor and a manufacturing method thereof are provided. An insulating pattern layer having at least one protrusion is formed on a substrate. Afterwards, at least one spacer and a plurality of amorphous semiconductor patterns separated from each other are formed on the insulating pattern layer. The spacer is formed at one side of the protrusion and connected between the amorphous semiconductor patterns. Later, the spacer and the amorphous semiconductor patterns are crystallized. Subsequently, the protrusion and the insulating pattern layer below the spacer are removed so that a beam structure having a plurality of corners is formed and suspended over the substrate. Then, a carrier tunneling layer, a carrier trapping layer and a carrier blocking layer are sequentially formed to compliantly wrap the corners of the beam structure. Hereafter, a gate is formed on the substrate to cover the beam structure and wrap the carrier blocking layer. | 04-14-2011 |
20120135571 | MANUFACTURING METHOD OF A THIN FILM TRANSISTOR - A manufacturing method of a thin film transistor is provided. An insulating pattern layer having at least one protrusion is formed on a substrate. At least one spacer and a plurality of amorphous semiconductor patterns separated from each other are formed on the insulating pattern layer. The spacer is formed at one side of the protrusion and connected between the amorphous semiconductor patterns. The spacer and the amorphous semiconductor patterns are crystallized. The protrusion and the insulating pattern layer below the spacer are removed so that a beam structure having a plurality of corners is formed and suspended over the substrate. A carrier tunneling layer, a carrier trapping layer and a carrier blocking layer are sequentially formed to compliantly wrap the corners of the beam structure. Hereafter, a gate is formed on the substrate to cover the beam structure and wrap the carrier blocking layer. | 05-31-2012 |
Sheng-Kai Chen, Taichung City TW
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20140111245 | INTEGRATED CIRCUIT DESIGN PROTECTING DEVICE AND METHOD THEREOF - An integrated circuit design protecting device includes a switch device and a non-volatile memory. The switch device includes M input ports, N output ports, N multiplexers, and S selection nodes. Each multiplexer of the N multiplexers includes I input nodes, an output node, and at least one selection node. The I input nodes are coupled to I input ports of the M input ports. The output node is coupled to an output port of the N output ports. The non-volatile memory is coupled to the S selection nodes of the switch device for providing selection codes to the switch device. | 04-24-2014 |
Sheng-Kai Chen, Taipei TW
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20150102111 | ENCODING METHOD AND ENCODING DEVICE - An encoding method is provided. The encoding method comprises: encoding a first portion of target data to generate a first two dimensional code; encoding a second portion of the target data by the encoding unit generate a second two dimensional code; generating a three dimensional model according to the first two dimensional code, wherein the three dimensional model includes a plurality of three dimensional modules, the three dimensional modules are arranged along a first direction and a second direction, and a height in a third direction of the three dimensional modules is determined according to the first codes; coloring the three dimensional modules according to the second two dimensional code, respectively, to generate a colored three dimensional model, wherein a color of the three dimensional modules of the colored three dimensional model is determined according to the second codes. | 04-16-2015 |
Sheng-Kai Hu, Chu-Nan TW
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20090002982 | OUTDOOR LIGHTING SYSTEM WITH CONTROLLED LUMINANCE - An outdoor lighting system comprises an outdoor light source, a luminance control device, a detection apparatus, a communication network and a main controlling system. The detection apparatus is configured for detecting a luminance of the light source and generating a corresponding detecting signal associated with the luminance of the light source. The main controlling system receives the detecting signal from the detection apparatus via the communication network, and generates a luminance control signal in responsive to the detecting signal; the luminance control device is configured for receiving the luminance control signal via the communication network and regulating the luminance of the light source according to the luminance control signal. | 01-01-2009 |
20090212720 | LIGHT EMITTING DIODE DRIVING SYSTEM - An exemplary light emitting diode driving system includes a protective circuit, a rectifying circuit, a driving circuit, a light emitting diode module and a detecting circuit. The protective circuit, the rectifying circuit, the driving circuit and the light emitting diode module are connected in series. The driving circuit is configured for driving the light emitting diode to emit light. The detecting circuit has predetermined voltages or current values stored therein. The detecting circuit detects the respective voltage or current of the protective circuit, the rectifying circuit and the driving circuit, and compares the respective voltage or current with the predetermined voltages or currents. | 08-27-2009 |
Sheng-Kai Huang, New Taipei City TW
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20150074272 | APPLICATION MANAGEMENT NETWORK DEVICE AND APPLICATION MANAGEMENT METHOD THEREOF - An application management network device and an application management method thereof are provided. The application management network device receives an application request from a VDI user device. The application management network device distributes a license of the application to the VDI user device according to the application request. The application management network device maintains a VDI application connection between the VDI user device and the at least one application server after the VDI user device executes the application deployed on the at least one application server based on the license. | 03-12-2015 |
Sheng-Kai Hung, Hsin Chu County TW
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20120278636 | REMOTE WAKE MECHANISM FOR A NETWORK SYSTEM AND REMOTE WAKE METHOD THEREOF - A network system with wake-up on LAN (WOL) mechanism and a wake-up on LAN method are disclosed. The network system includes: a first network device in a first local area network; a second network device in a second local area network, wherein the first local area network and the second local area network are different; and, a match server in a wide area network, wherein the first network device and the second network device perform data transmission through the match server. | 11-01-2012 |
Sheng-Kai Lai, New Taipei City TW
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20150159803 | VARIABLE HEIGHT TROLLEY AND HEIGHT DISPLAYING ASSEMBLY THEREOF - A variable height trolley and a height displaying assembly thereof, and the height displaying assembly includes a height indicator unit, a spool and an connecting unit. The height displaying assembly obtains a height of platform from a serial mechanical action between the connecting unit and the platform. The height displaying assembly uses mechanical approach to instantly show the height of the platform. | 06-11-2015 |
Sheng-Kai Lin, Hsin-Chu TW
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20150177557 | Thin Display Panel and Manufacturing Method Thereof - A display panel is provided. The display panel includes a first substrate, a second substrate, a sealing frame set, and a third adhesion portion. The first substrate has an inner surface which includes a superposed area and an exposed area on a side of the superposed area. The second substrate is disposed and superposed on the superposed area; the substrates have a space therebetween. The sealing frame set is located between the substrates and disposed along and insides an edge of the superposed area to enclose the space. The sealing frame set includes first and second sealing frames, wherein the first sealing frame connects the substrates and surrounds the superposed area, the second sealing frame surrounds an outer side of the first sealing frame. A third adhesion portion is located between the first and the second substrates, and between the second sealing frame and the exposed area. | 06-25-2015 |
Sheng-Kai Peng, Yunlin County TW
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20100134020 | LED LIGHTING CONTROL INTEGRATED CIRCUIT HAVING EMBEDDED PROGRAMMABLE NONVOLATILE MEMORY - For providing a compact high-precision lighting control means to drive an LED lighting module, a lighting control integrated circuit is set forth to perform an accurate lighting control. At least one nonvolatile memory is embedded in the lighting control integrated circuit for storing a plurality of lookup tables. One lookup table provides related data for setting the driving currents of the LED lighting module based on spacing or pitch of LED disposition of the LED lighting module. Another lookup table provides related data to recover uniformity for different LED damage situations of the LED lighting module. The other lookup tables are applied to perform compensation processes on the driving currents concerning temperature variation, ambient light intensity, aging degradation, and power-on time. In addition, a signal processing unit, a pulse-width-modulation signal generating module, and a driving module are incorporated in the lighting control integrated circuit for signal processing and current driving. | 06-03-2010 |
Sheng-Kai Su, Taipei TW
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20140353981 | Latch Mechanism - A latch mechanism that includes first and second latch members is described according to one aspect of the present disclosure. The first latch member is connected to a back cover of an electronic device and has an engaging portion. The second latch member is connected to a main casing body of the electronic device and has an engaging segment and a pushing segment. The second latch member is rotatable between a locking position, where the engaging segment engages the engaging portion, and a releasing position, where the engaging segment is disengaged from the engaging portion and the pushing segment pushes the first latch member, thereby facilitating removal of the back cover from the main casing body. | 12-04-2014 |
Sheng-Kai Wang, Taipei TW
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20090232831 | METHODS AND COMPOSITIONS FOR THE TREATMENT OR PREVENTION OF HUMAN IMMUNODEFICIENCY VIRUS INFECTION - A conserved cluster of oligomannose glycans on gp120 has been identified as the epitope recognized by the broadly HIV-1-neutralizing monoclonal antibody 2G12. Oligomannose glycans are also the ligands for DC-SIGN, a C-type lectin found on the surface of dendritic cells. Multivalency is fundamental for carbohydrate-protein interactions, and mimicking of the high glycan density on the virus surface has become essential for designing carbohydrate-based HIV vaccines and antiviral agents. Synthesis of oligomannose dendrons, which display multivalent oligomannoses in high density, and characterize their interaction with 2G12 and DC-SIGN by a glycan microarray binding assay is disclosed. These glycodendrons inhibit the binding of gp120 to 2G12 and recombinant dimeric DC-SIGN with IC | 09-17-2009 |
Sheng-Kai Wang, New Taipei City TW
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20150185526 | LAMINATION CARRIER AND LAMINATION METHOD USING THE SAME - A lamination carrier is used in a lamination method of a display device. The display device includes a first component, a second component and an adhesive layer. The first component includes a transparent portion and an opaque portion surrounding the transparent portion. The adhesive layer is disposed between the first component and the second component, and is distributed on the transparent portion and the opaque portion. The lamination carrier includes a base plate and a light-guiding structure having a reflecting surface that extends upwardly and outwardly from the base plate and that is disposed to reflect light to the adhesive layer distributed on the opaque portion of the first component. A lamination method is also disclosed. | 07-02-2015 |
Sheng-Kai Wen, Kaohsiung City TW
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20100309087 | Chip antenna device - A chip antenna device includes a single or multi-layer dielectric substrate, a radiator body, one or a plurality of first coupling electrodes formed on the radiator body, and a ground radiator formed on the upper or lower surface or inter-layer in another end of the substrate. It is designed by using loops and coupling concepts. The chip antenna device does not require large areas and clear space but has high radiation efficiency. It adjusts the impedance matching and operation frequency by changing the signal feed position, so that low frequency operation can be achieved without increasing the area of said antenna meeting the requirements of compact size for electronic products. | 12-09-2010 |
20110037655 | Dielectric-loaded and coupled planar antenna - A dielectric-loaded and coupled planar antenna includes a ground plane, a radiator, a ceramic substrate and at least one ground coupling electrode. The radiator is formed by extending one side of the ground plane, and a feeding point is formed between the radiator and the ground plane. The radiator extends at least one end portion on the ceramic substrate. The ground coupling electrode is formed on the ceramic substrate by extending the other side of the ground plane. The ground coupling electrode formed on the ceramic substrate and the end portion of the radiator formed on the ceramic substrate are coupled with each other to form a coupling electrode. The present invention can adjust the coupling amount loaded by the ceramic substrate so as to be operated in a desired frequency range. The present invention can be operated in a single-frequency, dual-frequency or multi-frequency condition. | 02-17-2011 |