Kuan-Ting
Kuan Ting Chen, Taipei Hsien TW
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20090170601 | METHOD FOR RECOGNIZING THE POSITION OF A GAMING DEVICE - A method for recognizing the position of a wireless controller is applied to an interactive gaming device including a wireless controller, a main apparatus and a host. The main apparatus includes a first ultrasonic receiving module, a second ultrasonic receiving module and a third ultrasonic module which are arranged as a triangle shape. The wireless controller includes an ultrasonic transmitting module for sending an ultrasonic wave which is received by the ultrasonic receiving modules in order to obtain three ultrasonic wave transmission times. The main apparatus sends the ultrasonic wave transmission times to the host. The host calculates the ultrasonic wave transmission times and therefore recognizes the position of the wireless controller. When the wireless controller is moved, the host obtains plurality of coordinate values indicating the motion track of the wireless controller. The motion track of the wireless controller is shown in a display by monitoring the coordinate values. | 07-02-2009 |
20090272494 | Laminator - A laminator comprises a main body, having an upper lid mounted thereon, wherein a panel is settled at an obverse side of the upper lid and an assembly hole is formed on the panel. Besides, a touch screen, a spacer, an LCD and a control circuit are successively stacked and then assembled into the assembly hole so as to provide an integrated touch key unit at the panel. Thereby, functional setting items are displayed at the touch screen to allow a convenient, fast and stable operation of the laminator. | 11-05-2009 |
Kuan Ting Chen, Taipei City TW
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20100314999 | LAMP DEVICE - The present invention provides a lamp device. The lamp device of the present invention comprises a lamp holder, a frame on the lamp holder, and a lamp tube having a height. At least one third of the height of the lamp tube is contacted with the frame to improve mechanical strength of the lamp tube. | 12-16-2010 |
20130194742 | DOCKING STATION AND ELECTRONIC APPARATUS USING THE SAME - A docking station and an electronic apparatus using the same are provided. The electronic apparatus includes a portable computer and a docking station. The docking station includes a body, a base and a connecter, and the portable computer is detachably connected to the docking station. The base is movably connected to the body. The connecter disposed on the base is movable with the base relative to the body. The body is electrically connected to the portable computer via the connecter, and thus the portable computer can move relative to the docking station. | 08-01-2013 |
20130201619 | DOCKING STATION AND ELECTRONIC APPARATUS USING THE SAME - A docking station and an electronic apparatus using the same are provided. The electronic apparatus includes a portable computer and a docking station. The docking station includes a body, a base and a connecter, and the portable computer is detachably connected to the docking station. The base is movably connected to the body. The connecter disposed on the base is movable with the base relative to the body. The body is electrically connected to the portable computer via the connecter, and thus the portable computer can move relative to the docking station. | 08-08-2013 |
Kuan Ting Chou, Taipei City TW
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20120244459 | METHOD FOR EVALUATING OVERLAY ERROR AND MASK FOR THE SAME - A mask for evaluating overlay error comprises a plurality of replicate device regions and an overlay mark. The plurality of replicate device regions are disposed uniformly on the mask, wherein each comprises a plurality of device patterns; and a plurality of current layer check patterns are formed adjacent to the plurality of device patterns. The overlay mark is formed on the corner of the mask's peripheral region. In particular, the current layer check patterns are configured to evaluate the pattern offset of a current mask, and the overlay mark and the current layer check patterns are configured to evaluate the overlay error by performing an exposure process using the current mask and a next mask. | 09-27-2012 |
Kuan-Ting Lai, Tao Yuan Shien TW
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20100232513 | VIDEO COMPRESSION CIRCUIT AND METHOD THEREOF - A video compression circuit including a video pre-processor, a macroblock data storage unit and a video processor is provided. When fulfilled by an input video signal, the video pre-processor converts the input video signal to generate a macroblock data. The macroblock data storage unit alternatively and temporally stores the macroblock data generated from the video pre-processor. The video processor alternatively reads the macroblock data stored in the macroblock data storage unit, and compresses the readout macroblock data to an output video signal. | 09-16-2010 |
Kuan-Ting Lai, Tainan TW
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20120037500 | HOLLOW TARGET ASSEMBLY - A hollow target assembly has a support tube, a target body and a plurality of elastic elements. The target body includes a plurality of hollow target materials and they pass through the support tube sequentially and locate at the outer surface of the support tube. By the grooves formed and extended from an end of the inside wall of the hollow target material and the corresponding concaves formed at the outside wall of the support tube, the elastic elements can lean and be positioned in the space generated by the grooves and corresponding concaves. Therefore, the target body and the support tube are brought together closely by these elastic elements in a simple and a low-cost way. | 02-16-2012 |
Kuan-Ting Lee, Hsinchu City TW
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20140238846 | ELECTROCHEMICAL TREATMENT BASED SURFACE MODIFICATION DEVICE - The invention provides an electrochemical treatment based surface modification device that comprises a solution tank, a cathode terminal, and an anode terminal. The solution tank is filled with an acidic solution which contains first valence metal ions. The first valence metal ions are partially reduced to second valence metal ions at the cathode terminal. The valence of the first valence metal ion is greater than that of the second valence metal ion. The anode terminal is provided an electrically conductive oxide, and the second valence metal ions move from the cathode terminal to the anode terminal to from a metal oxide. Wherein, the deposition and etching of the conductive oxide occur simultaneously on the surface of the anode. | 08-28-2014 |
20160102001 | KIT FOR WASTEWATER TREATMENT, AND MANUFACTURING METHOD FOR AND USE OF PHOTOCATALYST - The present invention relates to a kit for water treatment, comprising: a photocatalyst including at least one of SnFe | 04-14-2016 |
Kuan-Ting Li, Wujie Township TW
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20150313041 | GRAPHENE DISSIPATION STRUCTURE - Disclosed is a graphene dissipation structure including a substrate and a graphene dissipation layer. The substrate has at least two surfaces. One of the surfaces contacts at least one heat source, and another one is not in contact with the heat source and provided with the graphene dissipation layer, which includes surface-modified graphene nanometer sheets, a carrier resin and a filler. The surface-modified graphene nanometer sheets are well dispersed in the carrier resin, and enhanced to contact each other through the filler to form a thermal conductive network. The ratio of the particle size of the filler and the thickness of the graphene nanometer sheets is about 2 to 100. Therefore, the heat absorbed by the substrate from the heat source is transferred to the graphene dissipation layer, and further dissipated to the outside through thermal conduction or radiation, thereby achieving the function of heat dissipation. | 10-29-2015 |
Kuan-Ting Lin, Taipei TW
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20110068283 | ELECTROMAGNETIC WAVE ABSORPTION COMPONENT AND DEVICE - The invention provides electromagnetic wave absorption components and device. The electromagnetic wave absorption component includes an electromagnetic shield constituted by at least one material selected from the group consisting of a carbon nanocoil and a carbon fiber, and a solidified layer formed of a mixture of a solidifiable material and the electromagnetic shield after solidification. Another embodiment of the electromagnetic wave absorption component includes an electromagnetic shield constituted by at least one material selected from the group consisting of a carbon nanocoil and a carbon fiber, and a solidified layer, formed by solidifying a solidifiable material, applicable to encapsulating the electromagnetic shield. Further, the electromagnetic wave absorption device is formed by stacking at least two of the above-mentioned electromagnetic wave absorption components. | 03-24-2011 |
Kuan-Ting Lin, Taipei City TW
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20110148526 | Low noise amplifier with variable frequency response - The present invention relates a low noise amplifier with adaptive frequency responses and method of altering frequency responses thereof. The low noise amplifier comprises an inductive degeneration circuit, N cascode circuits and N switches. The inductive degeneration circuit has an input impedance and a frequency response characteristic. Each of the cascode circuits is connected in parallel to the inductive degeneration circuit. Each of the switches is connected to a corresponding cascode circuit respectively. Each of the cascode circuit is turned ON or OFF by enabling or disabling the corresponding switches to alter the frequency response characteristic. | 06-23-2011 |
Kuan-Ting Liu, Hsin-Chu TW
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20150262822 | N-WORK FUNCTION METAL WITH CRYSTAL STRUCTURE - A method includes forming a dummy gate stack over a semiconductor substrate, wherein the semiconductor substrate is comprised in a wafer. The method further includes removing the dummy gate stack to form a recess, forming a gate dielectric layer in the recess, and forming a metal layer in the recess and over the gate dielectric layer. The metal layer has an n-work function. A portion of the metal layer has a crystalline structure. The method further includes filling a remaining portion of the recess with metallic materials, wherein the metallic materials are overlying the metal layer. | 09-17-2015 |
20150262823 | Conformity Control for Metal Gate Stack - A method includes forming a dummy gate stack over a semiconductor substrate, wherein the semiconductor substrate is comprised in a wafer. The method further includes removing the dummy gate stack to form a recess, forming a gate dielectric layer in the recess, and forming a metal layer in the recess. The metal layer is over the gate dielectric layer. The formation of the metal layer includes placing the wafer against a target, applying a DC power to the target, and applying an RF power to the target, wherein the DC power and the RF power are applied simultaneously. A remaining portion of the recess is then filled with metallic materials, wherein the metallic materials are overlying the metal layer. | 09-17-2015 |
Kuan-Ting Liu, Longtan Shiang TW
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20100314242 | Method for Recovering Gold, Silver, Copper and Iron from Plasma-Caused Slag Containing Valuable Metals - There is disclosed an environmentally friendly method for recovering gold, silver, copper and iron from valuable metal-contained plasma-molten slag. At first, plasma is used to burn the used printed circuit boards, thus producing the slag. Then, the slag is grinded. Then, leaching, crystallization, precipitation, replacement and electric winning are conducted to recover gold, silver, copper and iron. | 12-16-2010 |
Kuan-Ting Liu, Hsinchu City TW
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20130075833 | MULTI-LAYER SCAVENGING METAL GATE STACK FOR ULTRA-THIN INTERFACIAL DIELCTRIC LAYER - A multi-layer scavenging metal gate stack, and methods of manufacturing the same, are disclosed. In an example, a gate stack disposed over a semiconductor substrate includes an interfacial dielectric layer disposed over the semiconductor substrate, a high-k dielectric layer disposed over the interfacial dielectric layer, a first conductive layer disposed over the high-k dielectric layer, and a second conductive layer disposed over the first conductive layer. The first conductive layer includes a first metal layer disposed over the high-k dielectric layer, a second metal layer disposed over the first metal layer, and a third metal layer disposed over the second metal layer. The first metal layer includes a material that scavenges oxygen impurities from the interfacial dielectric layer, and the second metal layer includes a material that adsorbs oxygen impurities from the third metal layer and prevents oxygen impurities from diffusing into the first metal layer. | 03-28-2013 |
20140315360 | Method of Scavenging Impurities in Forming a Gate Stack Having an Interfacial Layer - A multi-layer scavenging metal gate stack, and methods of manufacturing the same, are disclosed. In an example, a gate stack disposed over a semiconductor substrate includes an interfacial dielectric layer disposed over the semiconductor substrate, a high-k dielectric layer disposed over the interfacial dielectric layer, a first conductive layer disposed over the high-k dielectric layer, and a second conductive layer disposed over the first conductive layer. The first conductive layer includes a first metal layer disposed over the high-k dielectric layer, a second metal layer disposed over the first metal layer, and a third metal layer disposed over the second metal layer. The first metal layer includes a material that scavenges oxygen impurities from the interfacial dielectric layer, and the second metal layer includes a material that adsorbs oxygen impurities from the third metal layer and prevents oxygen impurities from diffusing into the first metal layer. | 10-23-2014 |
Kuan-Ting Liu, Hsinchu TW
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20150155365 | SEMICONDUCTOR DEVICE WITH PROFILED WORK-FUNCTION METAL GATE ELECTRODE AND METHOD OF MAKING - The present disclosure provides a semiconductor device with a profiled work-function metal gate electrode. The semiconductor structure includes a metal gate structure formed in an opening of an insulating layer. The metal gate structure includes a gate dielectric layer, a barrier layer, a work-function meta layer between the gate dielectric layer and the barrier layer and a work-function adjustment layer over the barrier layer, wherein the work-function metal has an ordered grain orientation. The present disclosure also provides a method of making a semiconductor device with a profiled work-function metal gate electrode. | 06-04-2015 |
Kuan-Ting Liu, Taipei City TW
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20100062214 | Method for drilling micro-hole and structure thereof - Disclosed is a micro-hole structure and a method for forming the micro-hole. A working energy source is projected onto a predetermined drilling site on a first surface of a substrate for a given period of time so as to melt a portion of the substrate to form a working energy entering section until the working energy source penetrates through a second surface of the substrate to form a micro-hole. A melt formed by melting a portion of the substrate in the micro-hole next to the second surface is allowed to reflow in a direction opposite to the projection of the working energy source to thereby form a reflow section in the substrate. Further, a two or more stages emission of laser pulses is used to form the micro-hole to control the bore diameter of the micro-hole. | 03-11-2010 |
20120074108 | METHOD FOR DRILLING MICRO-HOLE AND STRUCTURE THEREOF - Disclosed is a micro-hole structure and a method for forming the micro-hole. A working energy source is projected onto a predetermined drilling site on a first surface of a substrate for a given period of time so as to melt a portion of the substrate to form a working energy entering section until the working energy source penetrates through a second surface of the substrate to form a micro-hole. A melt formed by melting a portion of the substrate in the micro-hole next to the second surface is allowed to reflow in a direction opposite to the projection of the working energy source to thereby form a reflow section in the substrate. Further, a two or more stages emission of laser pulses is used to form the micro-hole to control the bore diameter of the micro-hole. | 03-29-2012 |
Kuan-Ting Wu, Citong Township TW
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20160045937 | SUBSTRATE CLEANING APPARATUS AND METHOD FOR CLEANING A SUBSTRATE - A substrate cleaning apparatus includes a holder, a brush, a moving element, a driving element and a pressure sensor. The holder is used for disposing a substrate thereon. The moving element is connected to the brush. The driving element is connected to the moving element for proving a lateral pushing power to the moving element such that the moving element and the brush jointly move. The pressure sensor is disposed close to the moving element for sensing the lateral pushing power when the moving element moves to contact with the pressure sensor along a lateral direction, in which the brush moves to laterally push the substrate after the lateral pushing power is sensed to reach a first threshold value by the pressure sensor such that the brush is abutted on the substrate when the brush cleans the substrate. | 02-18-2016 |
Kuan-Ting Wu, Kaohsiung City TW
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20150160280 | SELF-DETECTION METHOD UTILIZING AN ION GENERATING DEVICE TO DISSIPATE ELECTROSTATIC CAPACITY - An ion generating device includes a controller, positive and negative ion generating circuits, an airflow generator, and a detecting element. The controller is preinstalled with a constant of proportionality, controls the positive and the negative ion generating circuits, and the airflow generator directs the ions to a destination. The detecting element detects the balanced voltage of the positive and negative ions at the destination, and responds with the detecting result to the controller. The controller increases or decreases the ion numbers. The variation of the ion numbers is x, and the balanced voltage at the destination is y. The controller compares the function of x and y with the constant of proportionality to determine whether they are similar. If the comparison result is similar, then the electrostatic dissipation capability of the ion generating device is normal. | 06-11-2015 |
Kuan-Ting Yeh, Hsinchu City TW
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20150087953 | NON-INVASIVE INTRAOCULAR PRESSURE SENSOR - A non-invasive intraocular pressure sensor adapted to be configured on an eyeball is provided. The non-invasive intraocular pressure sensor includes a sensing unit and a readout circuit. The sensing unit includes a plurality of electrode layers and a dielectric layer. The dielectric layer encloses the electrode layers and fills therebetween, and the electrode layers and the dielectric layer form a capacitor. A variation of capacitance of the capacitor varies with a variation of an intraocular pressure of the eyeball. The readout circuit is electrically connected to the sensing unit. | 03-26-2015 |