Minhee
Minhee Cho, Suwon-Si KR
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20140110824 | SEMICONDUCTOR DEVICES HAVING HYBRID CAPACITORS AND METHODS FOR FABRICATING THE SAME - A semiconductor device includes a plurality of capacitors disposed on a substrate and a support pattern supporting upper portions and lower portions of the capacitors. Each of the capacitors includes a lower electrode, an upper electrode, and a dielectric layer between the lower and upper electrodes. The lower electrode includes a first electrode portion electrically connected to the substrate and having a solid shape and a second electrode portion stacked on the first electrode portion and having a shape comprising an opening therein. The support pattern includes an upper pattern contacting sidewalls of top end portions of the lower electrodes and a lower pattern vertically spaced apart from the upper pattern. The lower pattern contacts sidewalls under the top end portions of the lower electrodes. | 04-24-2014 |
20150236084 | SEMICONDUCTOR DEVICES HAVING HYBRID CAPACITORS AND METHODS FOR FABRICATING THE SAME - A semiconductor device includes a plurality of capacitors disposed on a substrate and a support pattern supporting upper portions and lower portions of the capacitors. Each of the capacitors includes a lower electrode, an upper electrode, and a dielectric layer between the lower and upper electrodes. The lower electrode includes a first electrode portion electrically connected to the substrate and having a solid shape and a second electrode portion stacked on the first electrode portion and having a shape comprising an opening therein. The support pattern includes an upper pattern contacting sidewalls of top end portions of the lower electrodes and a lower pattern vertically spaced apart from the upper pattern. The lower pattern contacts sidewalls under the top end portions of the lower electrodes. | 08-20-2015 |
Minhee Jang, Seoul KR
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20150376329 | NOVEL POLYESTER-BASED POLYMER HAVING SUPERIOR TRANSPARENCY AND HIGH HEAT RESISTANCE AND PREPARATION OF THE SAME - Provided is a novel aromatic polyester-based polymer. The aromatic polyester-based polymer includes the repeating unit represented by the following Chemical Formula I and contains at least one aromatic diol monomer. The aromatic polyester-based polymer has a high glass transition temperature and excellent heat resistance, mechanical properties and transparency, as well as shows excellent formability and processability into films or the like, and thus solves the problems occurring in the conventional crystalline or amorphous engineering plastic materials. In addition, the aromatic polyester-based polymer may be applied to next-generation engineering plastic composite materials, such as matrix resins of composite materials for cars and airplanes. The aromatic polyester-based polymer may also he applied to flexible substrates for next-generation flexible displays, solar cells or electronic paper requiring transparency and high heal resistance at the same time. | 12-31-2015 |
Minhee Kim, Gyeonggi-Do KR
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20140112933 | Antibodies Against Angiopoietins 1 and 2, and Their Use - The present invention relates to antibodies against angiopoietins 1 and 2, and derivatives of these antibodies. More specifically, the present invention relates to therapeutic use of the antibodies and fragment thereof which specifically bind to angiopoietins 1 and 2. | 04-24-2014 |
Minhee Lee, Suwon-Si KR
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20130302677 | CATHODE ACTIVE MATERIAL AND LITHIUM SECONDARY BATTERY COMPRISING THE SAME - Disclosed is a cathode active material comprising a lithium manganese composite oxide with a spinel structure represented by the following Formula 1, wherein the lithium manganese composite oxide is surface-coated with a conductive polymer in an area of 30 to 100%, based on the surface area of the lithium manganese composite oxide: | 11-14-2013 |
20130323599 | CATHODE ACTIVE MATERIAL AND LITHIUM SECONDARY BATTERY COMPRISING THE SAME - Disclosed is a cathode active material (and a secondary battery having the same) comprising a combination of lithium manganese composite oxide with a spinel structure of Formula 1 and an oxide of Formula 2, the material having a broad potential region at 3.0 to 4.8V upon initial charge: | 12-05-2013 |
Minhee Lee, Seoul KR
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20130297839 | METHOD AND SYSTEM FOR MANAGING MODULE IDENTIFICATION INFORMATION, AND DEVICE SUPPORTING THE SAME - The present invention relates to management of module identification information and discloses a system and method therefor and a source device supporting the same. In the system for managing module identification information, a source device sends a request signal for connection establishment, and at least one display device outputs the module identification information for identifying itself on a display unit in response to the signal from the source device. | 11-07-2013 |
20140146253 | DISPLAY DEVICE - A display device is disclosed. The display device includes a display panel including first to nth signal lines formed in a display area in which pixels are formed, and first to nth link lines which are formed in a non-display area excluding the display area from the display panel. The first to nth link lines are respectively connected to the first to nth signal lines, where ānā is an even natural number equal to or greater than 2. At least one of the first to nth link lines includes a hole passing through the at least one link line. | 05-29-2014 |
Minhee Son, Anyang-Si KR
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20150277176 | DISPLAY APPARATUS - A display apparatus includes a first substrate, a second substrate, a liquid crystal layer, and a spacer. The first substrate includes a gate line extending in a first direction, a data line extending in a second direction substantially perpendicular to the first direction, and a gate electrode branched from the gate line. The spacer is disposed on the second substrate and protrudes toward the first substrate and includes a first spacer and a second spacer with different heights that are connected to each other. The first spacer makes contact with the first substrate and the second substrate, and the second spacer makes contact with the second substrate and is spaced apart from the first substrate. | 10-01-2015 |