Shu-Yu
Shu-Yu Chen, Hsinchu City TW
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20120278776 | SYSTEM AND METHODS FOR CONVERTING PLANAR DESIGN TO FINFET DESIGN - A method for generating a layout for a device having FinFETs from a first layout for a device having planar transistors is disclosed. The planar layout is analyzed and corresponding FinFET structures are generated. | 11-01-2012 |
20120278777 | SYSTEM AND METHODS FOR CONVERTING PLANAR DESIGN TO FINFET DESIGN - A method for generating a layout for a device having FinFETs from a first layout for a device having planar transistors is disclosed. The planar layout is analyzed and corresponding FinFET structures are generated in a matching fashion. The resulting FinFET structures are then optimized. Dummy patterns and a new metal layer may be generated before the FinFET layout is verified and outputted. | 11-01-2012 |
20130019219 | SYSTEM AND METHOD FOR HIERARCHY RECONSTRUCTION FROM FLATTENED GRAPHIC DATABASE SYSTEM LAYOUTAANM Chen; Shu-YuAACI Hsinchu CityAACO TWAAGP Chen; Shu-Yu Hsinchu City TWAANM Lin; Yi-TangAACI Hsinchu CityAACO TWAAGP Lin; Yi-Tang Hsinchu City TWAANM Lei; Cheok-KeiAACI AndarAACO MOAAGP Lei; Cheok-Kei Andar MOAANM Chen; Hsiao-HuiAACI Hsinchu CityAACO TWAAGP Chen; Hsiao-Hui Hsinchu City TWAANM Chang; Yu-NingAACI Hsinchu CityAACO TWAAGP Chang; Yu-Ning Hsinchu City TWAANM Wann; HsingjenAACI CarmelAAST NYAACO USAAGP Wann; Hsingjen Carmel NY USAANM Chang; Chih-ShengAACI HsinchuAACO TWAAGP Chang; Chih-Sheng Hsinchu TWAANM Chen; Chien-WenAACI Hsinchu CityAACO TWAAGP Chen; Chien-Wen Hsinchu City TW - System and method for hierarchy reconstruction from a flattened layout are described. In one embodiment, a method for producing a reconstructed layout for an integrated circuit design from an original layout and a revised layout includes, for each pattern of the original layout, determining a pattern of the revised layout that corresponds to the pattern of the original layout; and assigning the corresponding pattern of the revised layout to a temporary instance, the temporary instance corresponding to an instance of the pattern of the original layout and citing to a temporary cell. The method further includes creating a temporary reconstructed layout from the temporary instances; and producing the reconstructed layout from the temporary reconstructed layout, wherein a hierarchy of the reconstructed layout is similar to a hierarchy of the original layout. | 01-17-2013 |
20140215420 | SYSTEM AND METHODS FOR CONVERTING PLANAR DESIGN TO FINFET DESIGN - A method and layout generating machine for generating a layout for a device having FinFETs from a first layout for a device having planar transistors are disclosed. A planar layout with a plurality of FinFET active areas is received and corresponding FinFET active areas are generated with active area widths. Mandrels are generated according to the active area widths and adjusted such that a beta ratio of a beta number for each FinFET active area to a beta number for each corresponding planar active area is within a predetermined beta ratio range. | 07-31-2014 |
Shu-Yu Hsu, Hsinchu City TW
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20150113204 | DATA STORAGE DEVICE AND COMPUTING SYSTEM WITH THE SAME - A data storage device is in communication with a host through a bus. The data storage device includes a storage medium and a controlling unit. The controlling unit is connected with the host and the storage medium for receiving an analysis data, or storing a write data into the storage medium or retrieving a read data from the storage medium to the host according to a command from the host. The controlling unit includes an arithmetic logic unit. The arithmetic logic unit has a built-in algorithm for analyzing and processing the analysis data, the write data or the read data, thereby generating an analysis result. Moreover, the algorithm may be updated or expanded by the host. | 04-23-2015 |
Shu-Yu Hsu, Chang-Hwa TW
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20090084670 | Light Emitting Diode Vacuum Coating by Magnetized Mask - The present invention discloses an improved method of LED reflector manufacturing process where the method includes providing a substrate, wherein said substrate comprises a reflector unit, and a Light Emitting Diode; providing a shield member with ferromagnetic property; placing said shield member over the desired area of over the substrate; providing a magnet where said shield member is attracted to; placing said magnet immediately below the substrate wherein said magnet is capable of immobilizing the shield member over the substrate; performing a vacuum deposition coating; and removing the magnet and the shield member. | 04-02-2009 |
Shu-Yu Jiang, Taipei Hsien TW
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20130238760 | MANAGEMENT METHODS AND RELATED COMPUTER SYSTEMS AND MACHINE-READABLE STORAGE MEDIUMS USING THE SAME - Management methods for use in a computer system including a wireless module and a processing unit which are turned off are provided. The wireless module is activated to scan at least on access point (AP) to obtain a scanning result during each count period, the processing unit being turned off during performing scanning. Thereafter, the wireless module determines whether to activate the processing unit to wake up the computer system to download update data from a network according to scanning result and predetermined setting. When scanning result does not match with predetermined setting or no update data is to be downloaded from network, the processing unit and the wireless module are turned off. When scanning result matches predetermined setting and an update data is available to be downloaded, the processing unit is activated to wake up the computer system to download update data from network. | 09-12-2013 |
Shu-Yu Jiang, Hsichih TW
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20130223424 | MANAGEMENT METHODS AND RELATED ELECTRONIC DEVICES AND MACHINE-READABLE STORAGE MEDIUMS USING THE SAME - Management methods for use in an electronic device are provided. The electronic device includes a network connection unit for connecting to a network through a first access point (AP). First, a preferred AP list is provided, wherein the preferred AP list records a plurality of APs and connection records corresponding thereto. Then, the first AP is sequentially selected from the plurality of APs of the preferred AP list to connect to the network, wherein each of the plurality of APs is sequentially selected as the first AP based on the corresponding connection record of the selected AP. | 08-29-2013 |
Shu-Yu Li, Shanghai CN
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20140292102 | SIGNAL LINE POWER RECEIVING CIRCUIT, SIGNAL LINE POWER SUPPLY CIRCUIT AND SIGNAL LINE POWER SUPPLY SYSTEM - A signal line power receiving circuit includes a signal processing unit, a power unit, a signal interface, a first isolation unit and a first filter unit. The signal interface transmits and receives data signals and receives power signals all via a first signal line. The first isolation unit isolates the power signals in the first signal line. The first filter unit filters the data signals in the first signal line and supplies the power signals to the power unit. A signal line power supply circuit and a related signal line power supply system are also provided. | 10-02-2014 |
Shu-Yu Lin, New Taipei City TW
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20150346586 | LIGHT EMITTING DIODE PACKAGING STRUCTURE AND CAMERA MODULE USING THE SAME - The present disclosure illustrates a light emitting diode packaging structure and a camera module having the same. The light emitting diode packaging structure comprises a transparent package member, a plurality of light emitting diodes, and a plurality of conductive wires. The transparent package member has a geometrical shape with an opening located at the center thereof. The opening tightly fits with lens module. The plurality of light emitting diodes are located in the transparent package member. The plurality of light emitting diodes are electrically connected with the plurality of conductive wires, and parts of the plurality of conducting wires are exposed to outside of the transparent package for receiving electric power to provide driving power to the plurality of light emitting diodes. The camera module comprises an image sensor, a lens module, and the light emitting diode packaging structure. | 12-03-2015 |
20150350502 | WAFER-LEVEL CAMERA MODULE AND MANUFACTURING METHOD THEREOF - The present disclosure illustrates a wafer-level camera module for an endoscope and manufacturing method thereof. The wafer-level camera module includes substrate, image sensor unit, light emitting units, lens module, and transparent package member. The substrate has a first area and a plurality of second areas. The image sensor unit and the light emitting units are located at the first area and the plurality of second areas, respectively. The image sensor unit is covered by the lens module, but the plurality of light emitting units are not covered by the lens module. The transparent package member is disposed above the plurality of plurality of light emitting units and around the lens module. The light generated from the light emitting units transmits through the transparent package to outer environment. An opaque material is coated between the lens module and the transparent package member. | 12-03-2015 |
20150350518 | VIDEO IMAGE DISTRIBUTION METHOD - A video image distribution method used in a mobile electronic device is disclosed to include the step of controlling the video camera and starting image capture execution command, the step of temporarily storing original video camera images, the step of enabling the proprietary camera layer to use resource images for the creation of an image processing chain, the step of allocating hardware and software resources and constructing an image processing node Then enabling image processing chain to add source images to multiple processed images for storage, and the step of creating an application user linked service execution command and distributing temporarily stored multiple images to multiple application users. As long as the hardware and software resources permit, the method of the invention can serve multiple application users to meet different needs of different application users for different format settings, achieving optimal results, and facilitating operation of the mobile electronic device. | 12-03-2015 |
Shu-Yu Lin, Taipei TW
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20130089122 | METHOD FOR ADAPTIVELY DRIVING DATA TRANSMISSION AND COMMUNICATION DEVICE USING THE SAME - A method for adaptively driving data transmission and a communication device using the same are provided. The proposed method includes following procedures. Detection result is generated after detecting a receiving signal on a receiving path of the communication device. Driving parameter is generated according to the detection result. Finally, a transmitting signal on a transmitting path is adjusted according to the driving parameter. | 04-11-2013 |
Shu-Yu Lin, Hsin-Chu TW
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20150339000 | OPTICAL TOUCH DEVICE, CORRECTION ELEMENT, AND CORRECTION METHOD THEREFOR - An optical touch device configured to cause a display surface to from a touch surface. The optical touch device includes a non-visible lighting element, a non-visible sensing element, and a correction element. The non-visible lighting element is adjacent to the display surface and forms a non-visible light curtain in front of the display surface. The non-visible lighting element is disposed in front of the display surface and has a sensing area covering the display surface. The correction element is disposed on the display surface and includes a bottom layer placed on the display surface and a plurality of reflecting blocks disposed on the top surface of the bottom layer. The correction element of the optical touch device has long-life. A correction method for an optical touch device is also provided. | 11-26-2015 |
Shu-Yu Wu, Taichung City TW
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20140157076 | DATA ERROR-DETECTION SYSTEM AND METHOD THEREOF - The present invention discloses a data error-detection system and the method thereof. The system includes an initializing module, an encoding module, a decoding module and a restoring module. The initializing module arranges the transmitting data in a 3D matrix to produce information data. The encoding module encodes the information data to produce checking data, and outputs encoding data which includes information data and checking data. The decoding module receives encoding data and detects information data according to the checking data to correct the information data and then produces 3D matrix receiving data. The restoring module produces receiving data according to the 3D matrix receiving data. Herewith, the effect of error-detection and correction of the data can be achieved. | 06-05-2014 |