Oh, Cheonan-Si
Chang-Suk Oh, Cheonan-Si KR
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20080308038 | APPARATUS FOR PROCESSING A SUBSTRATE - In a substrate-processing apparatus for performing coating, baking and developing processes on a semiconductor substrate, a first processing block performs a coating process and a developing process. A second processing block is disposed opposite to the first processing block to heat-treat substrates. A main transfer block is disposed between the first and second processing blocks to transfer the substrates. A third processing block is disposed on one side of the main transfer block in a direction perpendicular to an arrangement direction of the first and second processing blocks to adjust a temperature of the substrates. An auxiliary transfer block is disposed adjacent to the second and third processing blocks to transfer the substrates between the second and third processing blocks. Thus, an overload of the main transfer block may be reduced. | 12-18-2008 |
20080308039 | APPARATUS FOR PROCESSING A SUBSTRATE - In a substrate-processing apparatus for performing coating, baking and developing processes on a semiconductor substrate, a first processing block performs a coating process and a developing process on substrates. A second processing block is disposed opposite to the first processing block to heat-treat the substrates. The first processing block includes upper, middle and lower unit blocks. The upper and lower blocks include at least one coating unit for forming a layer on the substrates and at least one developing unit for developing a photoresist layer on the substrates, respectively. The middle unit block is detachably disposed between the upper and lower unit blocks and includes at least one of coating units and developing units. The configuration of the middle unit block may vary according to a process recipe to improve the throughput of the substrate-processing apparatus. | 12-18-2008 |
Doo-Young Oh, Cheonan-Si KR
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20090060493 | METHOD OF DEVELOPING A SUBSTRATE AND APPARATUS FOR PERFORMING THE SAME - In an apparatus for performing a substrate developing process, a first washing tank and a second washing tank are disposed on both sides of a substrate support section for supporting the substrate opposite to each other to wash a developing nozzle. The developing nozzle moves in a horizontal direction from the first washing tank toward the second washing tank and supplies a developing solution onto the substrate in the meantime. After supplying the developing solution, the developing nozzle is received in the second washing tank, and the developing solution adhered to the developing nozzle is removed by a washing solution in the second washing tank. | 03-05-2009 |
Hyun-Jong Oh, Cheonan-Si KR
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20090116195 | HEAT SINK FOR DISSIPATING HEAT AND APPARATUS HAVING THE SAME - A heat sink includes first and second base plates to contact with first and second surfaces of a heat source, respectively. The first base plate includes a support unit protruding from a first surface and a first dissipating unit to dissipate heat from the heat source. The second base plate includes a penetrating hole spaced apart from an edge portion to hold the support unit and a second dissipating unit to dissipate the heat from the heat source. A coupling member is positioned on an upper surface of the support member and applies a force to the first and second base plates to thereby combine the first and second base plates to the heat source. The base plates are combined to the memory module without any loss of the surface area of the dissipating fin, to thereby improve the dissipation efficiency of the heat sink. | 05-07-2009 |
Jaehwan Oh, Cheonan-Si KR
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20150123099 | THIN FILM TRANSISTOR AND DISPLAY DEVICE HAVING THE SAME - A thin film transistor includes a semiconductor pattern on a base substrate, the semiconductor pattern including an input area, an output area, and a channel area between the input area and the output area, a first insulating layer covering the semiconductor pattern, a control electrode on the first insulating layer, the control electrode overlapping the channel area, a second insulating layer covering the control electrode, an input electrode connected to the input area, an output electrode connected to the output area, and a heat discharge electrode on the second insulating layer, the heat discharge electrode being connected to the control electrode. | 05-07-2015 |
Jae Hwan Oh, Cheonan-Si KR
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20150270327 | ORGANIC LIGHT EMITTING DIODE DISPLAY - An organic light emitting diode display includes a substrate; a gate wire on the substrate; an interlayer insulating layer covering the gate wire; a data wire on the interlayer insulating layer; a passivation layer on the data wire and the interlayer insulating layer and having a protection opening; a pixel electrode on a first wiring portion of the data wire exposed through the protection opening and the interlayer insulating layer; a pixel definition layer on the passivation layer and having a pixel opening exposing the pixel electrode; an organic emission layer covering the pixel electrode; and a common electrode covering the organic emission layer and the pixel definition layer, wherein the pixel electrode contacting the first wiring portion of the data wire and the interlayer insulating layer has protrusions and depressions. | 09-24-2015 |
Jangsoo Oh, Cheonan-Si KR
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20140185730 | URANIUM DIOXIDE NUCLEAR FUEL PELLET HAVING CERAMIC MICROCELLS AND FABRICATING METHOD THEREOF - A uranium dioxide nuclear fuel pellet has about 50 to about 400 μM (with respect to a 3-dimentional size) microcells formed of a ceramic material having a chemical attraction with fission products generated in the nuclear fuel pellet to absorb and trap the fission products, such that the extraction of the fission product may be retrained in a normal operation condition and that the performance of the nuclear fuel may be enhanced by mitigating PCI. In addition, highly radioactive fission products including Cs and I having a large generation amount or a long half-life enough to affect the environments can be trapped in the pellet in an accident condition, without being released outside. | 07-03-2014 |
20140185731 | URANIUM DIOXIDE NUCLEAR FUEL PELLET HAVING METALLIC MICROCELLS AND FABRICATING METHOD THEREOF - A uranium dioxide nuclear fuel pellet includes metallic microcells having a high protection capacity for fission products and a high thermal conductivity simultaneously arranged in the nuclear fuel pellet to trap fission products, such that extraction of fission products may be restrained in a normal operation condition and that the temperature of a nuclear fuel may be lowered to enhance the performance of the nuclear fuel, only to restrain extraction of radioactive fission products toward the environment in an accident condition to enhance a stability of the nuclear fuel pellet, and a fabricating method thereof. | 07-03-2014 |
Jung Hoon Oh, Cheonan-Si KR
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20100075256 | Onium salt compound, polymer compound comprising the salt compound, chemically amplified resist composition comprising the polymer compound, and method for patterning using the composition - A compound represented by the following formula (1) is provided: | 03-25-2010 |
20100143843 | PHOTOACID GENERATOR, COPOLYMER, CHEMICALLY AMPLIFIED RESIST COMPOSITION, AND METHOD OF FORMING PATTERN USING THE CHEMICALLY AMPLIFIED RESIST COMPOSITION - Disclosed are a photoacid generator, a copolymer, a chemically amplified resist composition, and a method of forming a pattern using the chemically amplified resist composition. The photoacid is connected with a main chain of the copolymer, whereby the photoacid is equally dispersed within a resist layer, and characteristics of line edge roughness of a resist pattern is improved. | 06-10-2010 |
Ju-Suk Oh, Cheonan-Si KR
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20140356572 | WINDOW STRUCTURE AND METHOD OF MANUFACTURING A DISPLAY DEVICE HAVING THE SAME - The present disclosure relates to a display device including a window structure having improved durability and reliability, and a method of manufacturing the display device. The window structure includes a first transparent film layer, a second transparent film layer disposed on the first transparent film layer, a third transparent film layer disposed on the second transparent film layer, and a coating layer disposed on an upper surface of the window structure. | 12-04-2014 |
20150093568 | WINDOW PANEL FOR DISPLAY DEVICE AND DISPLAY DEVICE INCLUDING THE SAME - In an aspect, a window panel for a display device includes a plastic substrate formed of a transparent polyimide, and a first colored hard coating layer disposed at one surface of the plastic substrate is provided. | 04-02-2015 |
Keunchan Oh, Cheonan-Si KR
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20100328290 | LIQUID CRYSTAL DISPLAY AND METHOD OF MANUFACTURING THE SAME - A liquid crystal display includes a first substrate including pixels, each having a transmissive area and a reflective area, a second substrate, and a liquid crystal layer disposed between the first and second substrates. Each of the pixels includes first and second thin film transistors which output a data signal in response to a first gate signal, a transmissive pixel electrode disposed in the transmissive area and electrically connected to the first thin film transistor to charge a first pixel voltage based on the data signal, a reflective pixel electrode disposed in the reflective area and electrically connected to the second thin film transistor to charge a second pixel voltage based on the data signal, and a voltage controller which controls the first pixel voltage and the second pixel voltage in response to a second gate signal, which is generated after the first gate signal. | 12-30-2010 |
20100328564 | LIQUID CRYSTAL DISPLAY AND METHOD OF MANUFACTURING THE SAME - A liquid crystal display includes a first substrate including pixels, each having a transmissive area and a reflective area, a second substrate, and a liquid crystal layer disposed between the first and second substrates. Each of the pixels includes first and second thin film transistors which output a data signal in response to a first gate signal, a transmissive pixel electrode disposed in the transmissive area and electrically connected to the first thin film transistor to charge a first pixel voltage based on the data signal, a reflective pixel electrode disposed in the reflective area and electrically connected to the second thin film transistor to charge a second pixel voltage based on the data signal, and a voltage controller which controls the first pixel voltage and the second pixel voltage in response to a second gate signal, which is generated after the first gate signal. | 12-30-2010 |
20110304808 | LIQUID CRYSTAL DISPLAY - A liquid crystal display includes a first substrate and a second substrate facing the first substrate. A first alignment layer formed on the first substrate includes a first area aligned in a first direction and a second area aligned in a second direction opposite to the first direction, and a second alignment layer formed on the second substrate includes a third area aligned in a third direction different from the first direction and a fourth area aligned in a fourth direction opposite to the third direction. Liquid crystal molecules in a liquid crystal layer disposed between the first and second alignment layers are aligned in different directions from each other in plural domains defined by the first to fourth areas. Thus, the liquid crystal display may have improved aperture ratio and transmittance. | 12-15-2011 |
20130114030 | LIQUID CRYSTAL DISPLAY AND METHOD OF MANUFACTURING THE SAME - A liquid crystal display includes a first substrate, a second substrate, and a liquid crystal layer disposed between the first substrate and the second substrate. The first substrate includes a first base substrate, a pixel electrode disposed on the first base substrate and including a plurality of branch portions, and a first alignment layer disposed on the pixel electrode. The second substrate includes a second base substrate, a common electrode disposed on the second base substrate, and a second alignment layer disposed on the common electrode. | 05-09-2013 |
20140036193 | LIQUID CRYSTAL DISPLAY AND METHOD OF MANUFACTURING THE SAME - A liquid crystal display includes a first substrate including pixels, each having a transmissive area and a reflective area, a second substrate, and a liquid crystal layer disposed between the first and second substrates. Each of the pixels includes first and second thin film transistors which output a data signal in response to a first gate signal, a transmissive pixel electrode disposed in the transmissive area and electrically connected to the first thin film transistor to charge a first pixel voltage based on the data signal, a reflective pixel electrode disposed in the reflective area and electrically connected to the second thin film transistor to charge a second pixel voltage based on the data signal, and a voltage controller which controls the first pixel voltage and the second pixel voltage in response to a second gate signal, which is generated after the first gate signal. | 02-06-2014 |
20140152922 | LIQUID CRYSTAL DISPLAY AND METHOD OF MANUFACTURING THE SAME - A liquid crystal display apparatus comprises a first substrate including a first pretilting layer thereon, a second substrate facing the first substrate and including a second pretilting layer thereon, a liquid crystal layer disposed between the first pretilting layer and the second pretilting layer, and an electrode part provided on at least one of the first and second substrates to form a horizontal electric field or a fringe electric field. The first and second pretilting layer comprises a polymer polymerized from a chiral reactive mesogen having a chiral group and a reactive mesogenic group. | 06-05-2014 |
20140204329 | LIQUID CRYSTAL DISPLAY DEVICE AND METHOD OF MANUFACTURING THE SAME - A liquid crystal display device includes a first substrate, a second substrate facing the first substrate, and a liquid crystal layer between the first and second substrates. The liquid crystal layer includes a liquid crystal composition including an alkenyl liquid crystal and an antioxidant component including at least one selected from an antioxidant and a derivative thereof. In an embodiment, the antioxidant component is present in an amount of greater than 0 ppm and equal to or less than about 10,000 ppm relative to the total weight of the liquid crystal composition. | 07-24-2014 |
20150138493 | LIQUID CRYSTAL DISPLAY DEVICE AND METHOD OF MANUFACTURING THE SAME - A liquid crystal display device includes a first substrate, a second substrate facing the first substrate, and a liquid crystal layer between the first and second substrates. The liquid crystal layer includes a liquid crystal composition including an alkenyl liquid crystal and an antioxidant component including at least one selected from an antioxidant and a derivative thereof. In an embodiment, the antioxidant component is present in an amount of greater than 0 ppm and equal to or less than about 10,000 ppm relative to the total weight of the liquid crystal composition. | 05-21-2015 |
20150153617 | LIQUID CRYSTAL DISPLAY DEVICE AND METHOD FOR MANUFACTURING THE SAME - A liquid crystal display device including a first substrate, a first alignment layer provided on the first substrate, a second substrate facing the first substrate, a second alignment layer provided on the second substrate, and a liquid crystal layer provided between the first substrate and the second substrate and including liquid crystal molecules. Each of the first alignment layer and the second alignment layer includes a main alignment layer and an alignment forming layer provided on the main alignment layer. The alignment forming layer is obtained by polymerizing two or more reactive mesogens having light absorption peaks in different wavelengths from each other. | 06-04-2015 |
20150198847 | DISPLAY DEVICE AND METHOD OF MANUFACTURING THE SAME - A display device including a first substrate, a second substrate facing the first substrate, and a liquid crystal layer provided between the first substrate and the second substrate. The liquid crystal layer has a value of rotation viscosity (γl)/bending modulus of elasticity (K33) of about 6.0 to about 6.4 mPa*s/pN. | 07-16-2015 |
Ki-Taik Oh, Cheonan-Si KR
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20090200357 | Wire clamp and wire bonding apparatus having the same - A wire clamp includes a pair of clamp arms at a predetermined distance from each other to define an interval therebetween for a bonding wire, a clamp body coupled to the clamp arms, the clamp body configured to adjust the predetermined distance between the clamp arms with respect to a process to be performed, a clamping section in each clamp arm, the clamping section having concave portions facing the interval between the clamp arms, the concave portions being configured to contact the bonding wire when the clamp arms are brought close together, and at least one abrasion prevention member in each clamping section, the abrasion prevention members being configured to prevent abrasion during contact with the bonding wire. | 08-13-2009 |
20110042983 | NOZZLE FOR HOLDING A SUBSTRATE AND APPARATUS FOR TRANSFERRING A SUBSTRATE INCLUDING THE SAME - A nozzle for holding a substrate may include a nozzle head and a nozzle body. The nozzle head may provide the substrate with compressed air. The nozzle body may be connected to the nozzle head. The nozzle body may be arranged facing the semiconductor substrate. The nozzle body may have a substantially flat supporting surface which provides a uniform gap between the substrate and the nozzle body. The nozzle body may have a first passageway which allows the compressed air to pass through toward the substrate to form a vacuum between the substantially flat supporting surface and the substrate. | 02-24-2011 |
20130221071 | CAPILLARY EXCHANGE SYSTEM OF SEMICONDUCTOR WIRE BONDING - A capillary exchange system of a semiconductor wire bonding includes a wire bond unit having a chuck that includes a holding portion for holding a capillary for semiconductor wire bonding, a holding release guide unit for mechanically acting on the chuck of the wire bond unit to allow the capillary to be held by the holding portion or released from the holding portion, and a capillary exchange unit for separating the capillary from the chuck of the wire bond unit and installing a new capillary in the chuck in cooperation with the holding release guide unit. | 08-29-2013 |
Mi-Sun Oh, Cheonan-Si KR
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20140004215 | COMPOSITIONS AND METHODS FOR MANAGING WEIGHT | 01-02-2014 |
20150072953 | COMPOSITIONS AND METHODS FOR JOINT HEALTH - The present disclosure provides mixtures of prenylated flavonoids, stilbenes, or both with flavans or curcuminoids or both capable of modulating joint inflammation, joint pain, joint stiffness, cartilage degradation, or improving mobility, range of motion, flexibility, joint physical function, or any combination thereof. Such a mixture of prenylated flavonoids, stilbenes, or both with flavans or curcuminoids or both can optionally be used in combination with other joint management agents, such as non-steroidal anti-inflammatory agents/analgesics, COX/LOX inhibiting agents, glucosamine compounds, neuropathic pain relief agents, or the like. | 03-12-2015 |
Nam-Yong Oh, Cheonan-Si KR
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20090014503 | Reflow apparatuses and methods for reflow - There are provided reflow apparatuses and a methods therefor. In some embodiments, a reflow apparatus includes a first heating unit capable of heating a solder on a substrate up to just below before a melting point of the solder at ambient pressure such that the solder on the substrate is melted and electronic components mounted on the substrate are then soldered to the substrate; and a second heating unit connected to the first heating unit, the second heating unit capable of heating the solder on the substrate heated in the first heating unit through at least a portion of a solder melting temperature range in a vacuum state. | 01-15-2009 |
20090310313 | Semiconductor module - A semiconductor module including a module body and a shock absorbing member on an exposed surface of the module body is provided. The module body may include at least one semiconductor package on a substrate and the exposed surface of the module body may include exposed surfaces of the substrate and the at least one semiconductor package. In accordance with example embodiments, the module body may also include a heat transfer member on the at least one semiconductor package and an exposed surface of the module body may include an exposed surface of the heat transfer member. | 12-17-2009 |
20110068151 | METHOD OF ATTACHING A SOLDER BALL AND METHOD OF REPAIRING A MEMORY MODULE - In a method of attaching a solder ball, a first material is coated on a solder ball. A second material is coated on a pad of a substrate where the solder ball is to be attached to exothermically react with the first material. The solder ball makes contact with the pad such that the first material and the second material exothermically react with each other to release heat to adhere the solder ball to the pad using the heat. | 03-24-2011 |
Rae-Taek Oh, Cheonan-Si KR
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20090145463 | Ozonated water mixture supply apparatus and method, and substrate treating facility with the apparatus - Provided are an ozonated water mixture supply apparatus and method, and a substrate treating facility that receives an ozonated water mixture from the apparatus to treat a substrate. The ozonated water mixture supply apparatus includes a mixing line and distribution lines. The mixing line respectively receives a treating liquid and an ozonated water from a treating liquid supply line and an ozonated water supply line and mixes the treating liquid and the ozonated water to generate the ozonated water mixture satisfying a previously set concentration. Each of the distribution lines distributes the ozonated water mixture generated from the mixing line into a process unit. The mixing line includes a mixing valve and a static mixer. Therefore, the ozonated water mixture having the previously set concentration is generated and supplied using an in-line mixing method without requiring a mixing vessel such as a mixing tank. | 06-11-2009 |
Seonju Oh, Cheonan-Si KR
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20110053376 | Wafer dividing apparatus and methods - Example embodiments are directed to a wafer dividing apparatus and method thereof. The wafer dividing apparatus includes a chuck unit having upper and lower chucks, a cutting wire that is provided in a space between the upper and lower chucks to cut a wafer and driven by a first driving unit, and an etchant supplying nozzle supplying etchant to a groove of the wafer, which is formed by the cutting wire. | 03-03-2011 |
Seon-Ju Oh, Cheonan-Si KR
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20090174078 | Semiconductor device and method of manufacturing the same - Provided is a semiconductor device and method of manufacturing the same. The semiconductor device may include a base material and a compound layer on the base material including a mixture of a non-adhesive organic material and a non-oxidizing metal material. | 07-09-2009 |
20110256736 | METHOD FOR PROCESSING A SUBSTRATE USING A LASER BEAM - A method for processing a substrate includes generating a first laser beam, splitting the first laser beam into a plurality of second laser beams, focusing the split second laser beams on a plane in the substrate parallel to a main surface of the substrate, and performing surface separation of the substrate along the plane. | 10-20-2011 |
Sung Jun Oh, Cheonan-Si KR
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20150151695 | INVERTER FOR ELECTRIC VEHICLE - An inverter for an electric vehicle is provided. The inverter for an electric vehicle, which controls an RPM of a motor for the electric vehicle, the inverter including a busbar connected to a power semiconductor module for supplying current, a current sensor measuring the current passing through the busbar, and a control board on which the current sensor is mounted, the control board controlling the motor for the electric vehicle according to a result measured by the current sensor. The busbar is disposed to vertically pass through the current sensor and control board. | 06-04-2015 |
20150155692 | BUSBAR COUPLING DEVICE ASSEMBLY - Provided is a busbar coupling device. The busbar coupling device includes: a plate including a first side and a second side disposed opposite to each other; a first end wall part protruding and extending in a direction that the first side faces at a first end part in a length direction of the plate; a first protrusion part disposed at the plate, spaced from the first end wall part, and protruding in the direction that the first side faces; a second end wall part protruding and extending from a second end part disposed opposite to the first end part to a direction that the second side faces in the length direction of the plate; and a second protrusion part disposed at the plate, spaced from the first end wall part, and protruding in the direction that the first side faces. | 06-04-2015 |
20150156901 | INVERTER FOR ELECTRIC VEHICLE - Provided is an inverter for an electric vehicle. The inverter for the electric vehicle includes a heat sink, a power semiconductor module disposed on an upper portion of the heat sink, a control board connected to the power semiconductor module, a light source coupled to the control board, a case coupled to the upper portion of the heat sink to cover the power semiconductor module and the control board, and an indicator coupled to the case to transmit light emitted from the light source therethrough. The indicator is double injection-molded to the case. | 06-04-2015 |
Young-Rok Oh, Cheonan-Si KR
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20100302717 | DISPLAY DEVICE - A display device according to an embodiment has a structure capable of minimizing the width of a bezel part so that a plurality of display devices may be connected together to constitute a multi-display device. The display device includes a display panel displaying an image; a first frame having an upper surface on which the display panel is seated and a lower surface including first fixing projections; and a second frame engaged with the first frame and including fixing holes into which the first fixing projections are inserted. | 12-02-2010 |