Su, Tainan County
Chien-Wei Su, Tainan County TW
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20110189615 | SEMICONDUCTOR PROCESSING METHOD OF MANUFACTURING MOS TRANSISTOR - A method of manufacturing MOS transistor includes providing a substrate having a gate formed thereon; forming a hard mask layer on the substrate, performing an acid treatment to a surface of the hard mask layer, forming a photoresist layer on the hard mask layer after performing the acid treatment, performing a photolithography process to pattern the photoresist layer and the hard mask layer, performing an etching process to form recesses in the substrate, and performing a SEG method to form epitaxial layers respectively in the recesses. | 08-04-2011 |
Chih-Tung Su, Tainan County TW
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20110153068 | METHOD FOR CONTROL OF HUMIDITY AND AUTO-DISPENSING OF PILLS IN A PILL BOX - A method for control of humidity and auto-dispensing of pills in a pill box includes a box having multiple rooms defined therein which are shifted to be in alignment with an outlet. The method controls the humidity in each of the rooms and provides a control unit which controls a transmission unit to proceed a mechanical action to shift the rooms to be in alignment with the outlet according to a time setting signal so as to dispense at least one pill. The method includes a display unit to display time information and provides a reminder to take pills by way of audio and/or light. | 06-23-2011 |
Chun-Hao Su, Tainan County TW
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20090195736 | Liquid crystal on silicon display panel and electronic device using the same - A liquid crystal on silicon (LCOS) display panel and an electronic device using the same are provided. The electronic device comprises the LCOS display panel and a circuit board. The LCOS display panel comprises a silicon substrate, a transparent substrate and a liquid crystal layer. The transparent substrate has a base plate and a mask layer. The circuit board is electrically connected to the display panel. The transparent substrate is disposed opposite to the silicon substrate, and the liquid crystal layer is positioned between the silicon substrate and the transparent substrate. The mask layer is disposed on the base plate and has at least one opening to form at least one light-transmitting region and one light-blocking region, and the light-transmitting region is a displaying region of the transparent substrate. | 08-06-2009 |
20090195739 | LIQUID CRYSTAL ON SILICON DISPLAY PANEL AND ELECTRONIC DEVICE USING THE SAME - A liquid crystal on silicon (LCOS) display panel and an electronic device using the same are provided. The electronic device comprises the LCOS display panel and a circuit board. The LCOS display panel comprises a silicon substrate, a transparent substrate and a liquid crystal layer. The transparent substrate has a base plate and a mask layer. The circuit board is electrically connected to the display panel. The transparent substrate is disposed opposite to the silicon substrate, and the liquid crystal layer is positioned between the silicon substrate and the transparent substrate. The base plate has a first surface and a second surface opposite to the first surface that faces the silicon substrate. The mask layer is disposed on the second surface and has at least one opening to form at least one light-transmitting region and one light-blocking region, and the light-transmitting region is a displaying region of the transparent substrate. | 08-06-2009 |
20090268165 | OPTICAL ENGINE - An optical engine including a light source, a polarizing beam splitter (PBS), a multi-focus lens, and a light valve is provided. The light source is capable of emitting an illumination beam. The PBS is disposed on the light path of the illumination beam. The multi-focus lens is disposed on the light path of the illumination beam between the light source and the PBS, and has a plurality of refractive portions. The refractive portions have different effective focal lengths from one another. The PBS allows at least a part of the illumination beam with a first polarization direction to travel to the light valve. The light valve is capable of reflecting the part of the illumination beam and converting the part of the illumination beam into an image beam with a second polarization direction. The image beam from the light valve travels to the PBS. | 10-29-2009 |
20110058132 | DISPLAY DEVICE AND MANUFACTURING METHOD THEREOF - A manufacturing method of a display device is provided. Firstly, an active device array substrate having an active surface is provided. Next, a first patterned photoresist layer is formed on the active surface. Then, a first alignment layer is obliquely vapor-deposited on the active surface and the first patterned photoresist layer, wherein the active surface comprises at least a first undeposited area located beside an edge of the first patterned photoresist layer. A first alignment unit is formed by removing the first patterned photoresist layer and a portion of the first alignment layer located thereon. A sealant is directly formed on the active surface of the active device array substrate and surrounds the first alignment unit. An opposite substrate having a light transmissive surface is provided. After that, the active device array substrate and the opposite substrate are assembled. A display device is also provided. | 03-10-2011 |
Chun Sheng Su, Tainan County TW
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20110171517 | TEARABLE BATTERY TUBING AND BATTERY WRAPPED WITH THE SAME - A battery tubing according to the present invention is provided. The battery tubing is hollow and shrinkable. The battery tubing has at least one perforation line and a user can easily tear the battery tubing along the perforation line. The present invention further provides a battery wrapped with the above battery tubing. | 07-14-2011 |
Juh-Yuh Su, Tainan County TW
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20090035534 | Method and structure of a reusable substrate - A reusable substrate structure and a method of handling the reusable substrate are disclosed. The reusable substrate structure comprises a substrate, at least one epitaxial layer and at least one inter layer. The method used in this invention is by employing a separating method in order to decompose the inter layer. Since the inter layer is decomposed, the substrate and the epitaxial layer will be separated. This achieves the goal of reusable substrate and then can save the material cost without additional wasting. | 02-05-2009 |
20110076794 | METHOD OF MAKING A VERTICALLY STRUCTURED LIGHT EMITTING DIODE - A method of making a vertically structured light emitting diode includes: providing a sacrificial substrate having first and second portions; forming a first buffer layer on a surface of the sacrificial substrate; forming a second buffer layer on a surface of the first buffer layer; forming a light emitting unit on a surface of the second buffer layer; forming a device substrate on a surface of the light emitting unit; etching the first portion of the sacrificial substrate such that the second portion of the sacrificial substrate remains on the first buffer layer; dry-etching the second portion of the sacrificial substrate; dry-etching the first buffer layer; and etching the second buffer layer. An etch rate of a material of the second buffer layer is lower than an etch rate of a material of the first buffer layer. | 03-31-2011 |
Pin Chia Su, Tainan County TW
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20090152545 | Feature Dimension Measurement - A method of measuring dimensional characteristics includes providing a substrate and forming a reflective layer over the substrate. A dielectric layer is then formed over the reflective layer. The dielectric layer includes a grating pattern and a resistivity test line inset in a transparent region. Radiation is then directed onto the dielectric layer so that some of the radiation is transmitted through the transparent region to the reflective layer. A radiation pattern is then detected from the radiation reflected and scattered by the metal grating pattern. The radiation pattern is analyzed to determine a first dimensional information. Then the resistance of the resistivity test line is measured, and that resistance is analyzed to determine a second dimensional information. The first and second dimensional informations are then compared. | 06-18-2009 |
20100176306 | IMPLANTATION QUALITY IMPROVEMENT BY XENON/HYDROGEN DILUTION GAS - A method comprises supplying a dopant gas in an arc chamber of an ion source. A dilutant is supplied to dilute the dopant gas. The dilutant comprises about 98.5 wt. % xenon and about 1.5 wt. % hydrogen. An ion beam is generated from the diluted dopant gas using the ion source. | 07-15-2010 |
Shao-Yung Su, Tainan County TW
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20090245670 | APPARATUS FOR PROCESSING A DATA STREAM HAVING A HIERARCHICAL LAYER STRUCTURE AND INCLUDING ENCODED DATA SETS AND RAW DATA SETS AND METHOD THEREOF - An apparatus for processing a data stream having a hierarchical layer structure and including encoded data sets and raw data sets is provided. The apparatus includes a first processing circuit for generating an enable signal corresponding to a predetermined layer of the hierarchical layer structure when detecting that a data set of the data stream corresponds to the predetermined layer, and a second processing circuit coupled to the first processing circuit for detecting whether an identifier of the data set corresponds to one predetermined raw data set identifier when receiving the enable signal from the first processing circuit. | 10-01-2009 |
Szu-Hsiang Su, Tainan County TW
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20100252940 | POLYIMIDE SHIELD AND INTEGRATED CIRCUIT STRUCTURE HAVING THE SAME - A polyimide shield includes a base film layer that is made from polyimide, and a colored film layer that overlies the base film layer and that contains a coloring agent dispersed in a polymer. A method of making the polyimide shield includes forming the base film layer from polyimide and applying a liquid composition onto the base film layer. The liquid composition contains a polymer and the coloring agent that is dispersed in the polymer. An integrated circuit structure includes a circuitry substrate and the polyimide shield that covers the circuitry substrate. | 10-07-2010 |
Tsung-Yi Su, Tainan County TW
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20080252783 | Device for separating synchronous signal and method thereof - In a device for separating a synchronous signal in a video signal, a capacitor receives the video signal to obtain a coupling signal, a level determining circuit receives the coupling signal and compares a voltage level of the coupling signal with a number of reference voltages. The reference voltages define several reference voltage ranges, one of which is a predetermined reference voltage range. The level determining circuit outputs an adjusting signal according to a reference voltage range corresponding to a minimum voltage level of the coupling signal within a predetermined time period. A level adjusting circuit has several current sources for receiving the adjusting signal and thus controls the current sources to adjust a DC level of the coupling signal. A synchronous signal separating circuit separates the synchronous signal from the coupling signal when the minimum voltage level of the coupling signal is substantially within the predetermined reference voltage range. | 10-16-2008 |
Wei-Chen Su, Tainan County TW
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20080252794 | DISPLAY DEVICE AND COLOR ADJUSTMENT METHOD THEREOF, AND METHOD FOR DISPLAYING VIDEO SIGNAL - A display device and a color adjustment method thereof and a method for displaying video signals are provided. The display device includes a video signal receiver, a scaling engine, a color engine, an output stage, and a panel. The video signal receiver receives the video signals. The scaling engine is coupled to the video signal receiver to modulate the resolution of the video signal. The color engine is coupled to the scaling engine, which includes a local adjusting unit. The local adjusting unit adjusts hue, saturation, or intensity of a group of pixels, and thereby increase the quality of images. The output stage is coupled to the color engine, which outputs the adjusted video signals. The panel is coupled to the output stage, which displays the adjusted video signal. | 10-16-2008 |
20080273864 | CONTROLLING DEVICE OF A LIQUID CRYSTAL DISPLAY - A controlling device of a liquid crystal display is provided. The controlling device includes an A/D interface, a sampler, and a shift error correction circuit. An input end of the A/D interface receives an analog video signal for being converted, so as to output a digital video color level. The sampler is coupled between a reference potential and the input end of the A/D interface, and a controlling end of the sampler receives a correction signal. The shift error correction circuit receives the digital video color level, the correction signal, and a target value corresponding to the reference potential. When the correction signal is enabled, the sampler is ON, and the shift error correction circuit performs a correction operation on the received digital video color level and the target value to get a correction value for the A/D interface that corrects the conversion error of the A/D interface. | 11-06-2008 |
20090092369 | Video controller and method for processing video signal - A video controller including a switching device, an analog-to-digital converter and a digital video processor is provided. The switching device is for receiving an analog video sync signal and a first analog video signal, and combining the analog video sync signal with the first analog video signal to form a mixing signal according to a switching control signal. The analog video sync signal includes a specific video signal and a sync signal. A frequency of the switching control signal relates to a frequency of the sync signal. The analog-to-digital converter converts the mixing signal into a digital signal according to a sampling control signal. The digital video processor receives the digital signal and decodes the digital signal to generate a digital video sync signal and a first digital video signal. | 04-09-2009 |
20130201402 | DISPLAY DEVICE AND COLOR ADJUSTMENT METHOD THEREOF, AND METHOD FOR DISPLAYING VIDEO SIGNAL - A device for image processing includes: a video signal receiver, for receiving at least one video signal; a color engine, comprising a local adjusting unit, for dividing pixels of an image frame of the at least one video signal into multiple pixel groups according to luminance factors of the pixels in HSI color space and adjusting the luminance factors of a specific pixel group of the pixel groups having luminance factors in a predetermined range that is a part of a full range of luminance factor by moving the pixels of the specific pixel group from a region to another region of the HSI color space without changing color axes of the HSI color space. | 08-08-2013 |
Wei-Chih Su, Tainan County TW
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20090176302 | Modified Mite Allergen and Pharmaceutical uses Thereof - The present invention provides a modified | 07-09-2009 |
Yu-Ti Su, Tainan County TW
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20110121394 | CHIP AND ELECTROSTATIC DISCHARGE PROTECTION DEVICE THEREOF - An ESD protection device is provided, which includes a P-type doped region, an N-type doped region, a first P+ doped region, a first N+ doped region, a second N+ doped region and a third N+ doped region. The N-type doped region is located in the P-type doped region. The first P+ doped region connected to a pad is located in the N-type doped region. A part of the first N+ doped region is located in the N-type doped region and the residue part thereof is located in the P-type doped region. The second and the third N+ doped regions are located in the P-type doped region and outside the N-type doped region, and are respectively electrically connected to a first power rail and a second power rail. In addition, the second N+ doped region is located between the first and the third N+ doped regions. | 05-26-2011 |
20110128658 | ESD PROTECTION APPARATUS AND ESD DEVICE THEREIN - An electrostatic discharge (ESD) protection device is provided. The ESD protection device includes a source region and a drain region. The source region is to be coupled to a low-level voltage. The drain region is disposed apart from the source region and includes a first P-type heavily doped region and at least one first N-type heavily doped region. The first P-type heavily doped region is configured to couple to a pad, and the first N-type heavily doped region is adjacent to the first P-type heavily doped region and floated. An electrostatic discharge protection apparatus is also disclosed herein. | 06-02-2011 |