Lee, Gumi-City
Bong-Soon Lee, Gumi-City KR
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20100039566 | DISPLAY SYSTEM AND METHOD FOR SWITCHING DISPLAY MODE - Provided are a display system and a method for switching a display mode. Display modes according to kinds of programs are set up and stored. When detecting program activation by a user s request, an image of the program activated in the preset display mode is displayed after confirming a preset display mode in the program. | 02-18-2010 |
Changhyung Lee, Gumi-City KR
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20080291349 | DISPLAY DEVICE - A display device includes a substrate, a display unit on the substrate, the display unit including a plurality of subpixels, a driver that applies a driving signal to the display unit, a pad unit that applies an electric signal received from the outside to the driver; a plurality of lines that connects the display unit to the driver or the pad unit to the driver; and a plurality of pad electrodes disposed at one ends of the lines connected to the driver. A width of one end of the pad electrode connected to the lines is narrower than widths of other areas of the pad electrode excepting the other end of the pad electrode. | 11-27-2008 |
20090008642 | DISPLAY DEVICE - A display device is disclosed. The display device includes a substrate, a display area on the substrate, the display area including a plurality of subpixels, a pad area on the substrate, the pad area including a pad electrode, a conductive adhesive layer on the pad electrode, and a driver on the conductive adhesive layer, the driver being attached to the pad electrode using the conductive adhesive layer. One surface of the conductive adhesive layer includes one surface of the driver. A vertical distance ranging from a shorter side of one surface of the driver to a shorter side of one surface of the conductive adhesive layer lies substantially in a range between 0.2 mm and 4 mm. | 01-08-2009 |
Dong-Kun Lee, Gumi-City KR
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20110092055 | COMPOUND SEMICONDUCTOR SUBSTRATE GROWN ON METAL LAYER, METHOD OF MANUFACTURING THE SAME, AND COMPOUND SEMICONDUCTOR DEVICE USING THE SAME - The present invention relates to a compound semiconductor substrate and a method for manufacturing the same. The present invention provides the manufacturing method which coats spherical balls on a substrate, forms a metal layer between the spherical balls, removes the spherical balls to form openings, and grows a compound semiconductor layer from the openings. According to the present invention, the manufacturing method can be simplified and grow a high quality compound semiconductor layer rapidly, simply and inexpensively, as compared with a conventional ELO (Epitaxial Lateral Overgrowth) method or a method for forming a compound semiconductor layer on a metal layer. And, the metal layer serves as one electrode of a light emitting device and a light reflecting film to provide a light emitting device having reduced power consumption and high light emitting efficiency. | 04-21-2011 |
Gibum Lee, Gumi-City KR
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20090009082 | PLASMA DISPLAY PANEL - A plasma display panel is disclosed. The plasma display panel includes a front substrate, a rear substrate facing the front substrate, a barrier rib that is positioned between the front substrate and the rear substrate and partitions a discharge cell, and a phosphor layer formed inside the discharge cell. The phosphor layer includes a first phosphor layer emitting first color light, a second phosphor layer emitting second color light, and a third phosphor layer emitting third color light. The first phosphor layer includes a first pigment. A thickness of the second phosphor layer is larger than a thickness of the first phosphor layer. | 01-08-2009 |
20090009431 | PLASMA DISPLAY PANEL AND PLASMA DISPLAY APPARATUS - A plasma display panel and a plasma display apparatus are disclosed. The plasma display panel includes a front substrate on which a scan electrode and a sustain electrode are positioned parallel to each other, an upper dielectric layer positioned on the scan and sustain electrodes, a rear substrate on which an address electrode is positioned to intersect the scan and sustain electrodes, a lower dielectric layer positioned on the address electrode, a barrier rib that is positioned between the front substrate and the rear substrate and partitions a discharge cell, and a phosphor layer that is positioned inside the discharge cell and includes YVPO | 01-08-2009 |
20090009433 | PLASMA DISPLAY PANEL - A plasma display panel is disclosed. The plasma display panel includes a scan electrode and a sustain electrode positioned parallel to each other on a front substrate, an upper dielectric layer positioned on the scan electrode and the sustain electrode, a rear substrate on which an address electrode is positioned to intersect the scan electrode and the sustain electrode, a lower dielectric layer positioned on the address electrode, and a barrier rib positioned between the front substrate and the rear substrate. The barrier rib includes lead (Pb) equal to or less than 1,000 ppm (parts per million). A discharge gas is filled between the front substrate and the rear substrate and includes helium (He) of 9% to 42%. | 01-08-2009 |
Hyeonjae Lee, Gumi-City KR
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20090009431 | PLASMA DISPLAY PANEL AND PLASMA DISPLAY APPARATUS - A plasma display panel and a plasma display apparatus are disclosed. The plasma display panel includes a front substrate on which a scan electrode and a sustain electrode are positioned parallel to each other, an upper dielectric layer positioned on the scan and sustain electrodes, a rear substrate on which an address electrode is positioned to intersect the scan and sustain electrodes, a lower dielectric layer positioned on the address electrode, a barrier rib that is positioned between the front substrate and the rear substrate and partitions a discharge cell, and a phosphor layer that is positioned inside the discharge cell and includes YVPO | 01-08-2009 |
20090009433 | PLASMA DISPLAY PANEL - A plasma display panel is disclosed. The plasma display panel includes a scan electrode and a sustain electrode positioned parallel to each other on a front substrate, an upper dielectric layer positioned on the scan electrode and the sustain electrode, a rear substrate on which an address electrode is positioned to intersect the scan electrode and the sustain electrode, a lower dielectric layer positioned on the address electrode, and a barrier rib positioned between the front substrate and the rear substrate. The barrier rib includes lead (Pb) equal to or less than 1,000 ppm (parts per million). A discharge gas is filled between the front substrate and the rear substrate and includes helium (He) of 9% to 42%. | 01-08-2009 |
Jaedo Lee, Gumi-City KR
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20080291135 | ORGANIC LIGHT EMITTING DEVICE - An organic light emitting device is disclosed. The organic light emitting device includes a display unit including a plurality of subpixels, a host memory unit that stores image data received from the outside by the frame, a data adjusting unit that fetches the image data frames stored in the host memory unit by the bit and converts one frame into a plurality of subfields and one display memory unit that stores the image data frame converted into the plurality of subfields by the data adjusting unit. When the data adjusting unit converts the frame into the plurality of subfields, the data adjusting unit inserts a black time into at least one of the plurality of subfields. | 11-27-2008 |
Jihoon Lee, Gumi-City KR
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20090009431 | PLASMA DISPLAY PANEL AND PLASMA DISPLAY APPARATUS - A plasma display panel and a plasma display apparatus are disclosed. The plasma display panel includes a front substrate on which a scan electrode and a sustain electrode are positioned parallel to each other, an upper dielectric layer positioned on the scan and sustain electrodes, a rear substrate on which an address electrode is positioned to intersect the scan and sustain electrodes, a lower dielectric layer positioned on the address electrode, a barrier rib that is positioned between the front substrate and the rear substrate and partitions a discharge cell, and a phosphor layer that is positioned inside the discharge cell and includes YVPO | 01-08-2009 |
20090009433 | PLASMA DISPLAY PANEL - A plasma display panel is disclosed. The plasma display panel includes a scan electrode and a sustain electrode positioned parallel to each other on a front substrate, an upper dielectric layer positioned on the scan electrode and the sustain electrode, a rear substrate on which an address electrode is positioned to intersect the scan electrode and the sustain electrode, a lower dielectric layer positioned on the address electrode, and a barrier rib positioned between the front substrate and the rear substrate. The barrier rib includes lead (Pb) equal to or less than 1,000 ppm (parts per million). A discharge gas is filled between the front substrate and the rear substrate and includes helium (He) of 9% to 42%. | 01-08-2009 |
20100327732 | PLASMA DISPLAY PANEL - A plasma display panel is disclosed. The plasma display panel includes a front substrate, a rear substrate positioned to be opposite to the front substrate, a barrier rib positioned between the front substrate and the rear substrate to partition a discharge cell, and a phosphor layer positioned in the discharge cell. The phosphor layer includes a phosphor material and an additive material. The phosphor layer includes a red phosphor layer emitting red light, a green phosphor layer emitting green light, and a blue phosphor layer emitting blue light. A thickness of the blue phosphor layer is larger than a thickness of the red phosphor layer. | 12-30-2010 |
Junghyun Lee, Gumi-City KR
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20080252560 | PLASMA DISPLAY APPARATUS - A plasma display apparatus is disclosed. The plasma display apparatus includes a scan electrode and a sustain electrode positioned parallel to each other, and an address electrode positioned to intersect the scan electrode and the sustain electrode. A sustain signal is supplied to at least one of the scan electrode and the sustain electrode. A length of a voltage maintenance period of the sustain signal satisfies the following Equation: 3.5 g≦W≦25 g, where W is the length of the voltage maintenance period of the sustain signal in unit of nanosecond, and g is an interval between the scan electrode and the sustain electrode in unit of μm. | 10-16-2008 |
20080252561 | PLASMA DISPLAY APPARATUS - A plasma display apparatus is disclosed. The plasma display apparatus includes a scan electrode and a sustain electrode positioned parallel to each other, and an address electrode positioned to intersect the scan electrode and the sustain electrode. A reset signal is supplied to the scan electrode, and a first bias signal is supplied to the address electrode to overlap the reset signal. A voltage magnitude of the first bias signal satisfies the following Equation: 0.15 g≦ΔV≦0.6 g, where ΔV is a magnitude of a highest voltage of the first bias signal in unit of volt, and g is an interval between the scan electrode and the sustain electrode in unit of μm. | 10-16-2008 |
Kyung Taek Lee, Gumi-City KR
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20100001957 | DISPLAY APPARATUS - A display apparatus includes a controller and an input unit having one or more local keys located on a side of a case. The controller controls display of a guide screen in a display area that is based on mounting positions of the one or more local keys. The guide screen is generated in response to an input received in association with one of the local keys and includes information that provides an indication of mounting positions of the local keys on the side of the case. | 01-07-2010 |
Kyung-Won Lee, Gumi-City KR
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20100073336 | APPARATUS FOR DISPLAYING MARK OF DISPLAY DEVICE AND DISPLAY DEVICE - Provided is an apparatus for properly displaying a mark of a display device although the display device is pivoted. The apparatus includes a display unit, at least two mark units, a state detection unit, and a control unit. The display unit displays images. The mark units are disposed at a front region of the display unit and spaced apart from each other. The state detection unit detects whether the display unit is substantially in a horizontal or vertical orientation. The control unit operates at least one of the mark units according to a detection signal of the state detection unit. | 03-25-2010 |
Sang-Mok Lee, Gumi-City KR
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20100253047 | INFLATABLE FABRICS AND AN AIR-BAG - Disclosed is a inflatable double-layered fabric. The fabric includes an inflating part having gas inflatability, a non-inflating part supporting the inflating part, and a co-woven part constituting a boundary between the inflating part and the non-inflating part, wherein the inflating part is composed of two separated fabric layers, and the weave of the co-woven part is set up at a nk+1 pixel from the width or length end of the double-layered fabric (where, k is 2 or 3, and n is 0 or a positive number) when dividing the double-layered fabric into a plurality of pixels, an airbag including the same, and a method of preparing the airbag. | 10-07-2010 |
20100269465 | NONWOVEN FOR AIR FILTRATION AND A PREPARATION METHOD THEREOF - The present invention relates to a spunbonded filament nonwoven fabric and a method of preparing the same, and particularly to a multilayered spunbonded filament nonwoven fabric of which the fineness of the filaments decreases from an air inlet part toward an air outlet part, and a method of preparing the same. The spunbonded nonwoven fabric of the present invention can be used as an air filter for power generation equipment for a gas turbine, because it can reduce a pressure loss, promote filter efficiency, and extend the lifetime for use by using fiber layers having different denier. | 10-28-2010 |
Sangyong Lee, Gumi-City KR
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20100237776 | PLASMA DISPLAY PANEL - A plasma display panel is disclosed. The plasma display panel includes a front substrate, a rear substrate opposite the front substrate, a barrier rib that is positioned between the front substrate and the rear substrate to provide a discharge cell, a seal layer that attaches the front substrate to the rear substrate, and an exhaust hole that is formed on the rear substrate in a portion between the barrier rib and the seal layer. The exhaust hole is positioned in a portion overlapping an active area along a shorter side or a longer side of the rear substrate. | 09-23-2010 |
Soomyun Lee, Gumi-City KR
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20110115357 | MULTI PLASMA DISPLAY PANEL - A multi plasma display panel is disclosed. The multi plasma display panel includes a plurality of plasma display panels positioned adjacent to one another, each of the plurality of plasma display panels including, a front substrate on which a first electrode is positioned, a rear substrate on which a second electrode crossing the first electrode is positioned, a barrier rib between the front substrate and the rear substrate, the barrier rib providing a plurality of discharge cells, and an exhaust hole on the rear substrate. The exhaust hole is formed in at least one of the plurality of discharge cells. A size of a discharge cell in which the exhaust hole is formed is greater than a size of at least one discharge cell in which the exhaust hole is not formed. | 05-19-2011 |
20110259624 | PLASMA DISPLAY PANEL AND MULTI-PLASMA DISPLAY PANEL - A plasma display panel and a multi plasma display panel are disclosed. The plasma display panel includes a front substrate, a back substrate positioned opposite the front substrate, a barrier rib positioned between the front substrate and the back substrate to partition a discharge cell, and a seal portion positioned outside the barrier rib in an area between the front substrate and the back substrate. A distance between the barrier rib and the seal portion on one side of the plasma display panel is different from a distance between the barrier rib and the seal portion on the other side of the plasma display panel opposite the one side. | 10-27-2011 |