Abstract: A Cognitive Radio (CR) communication apparatus is provided. The CR communication apparatus may include a determination unit to determine any one of a plurality of Radio Access Technologies (RATs) as a temporary control RAT, an estimation unit to estimate an available resource and a channel state of each common RAT using the temporary control RAT, and a selection unit to calculate an available capacity of each of the common RATs using the available resource and the channel state, and to select an optimum RAT from the common RATs based on the available capacity of each of the common RATs. The common RATs may be used by the CR communication apparatus and a receiving CR communication apparatus from among the plurality of RATs.
Type:
Grant
Filed:
July 29, 2010
Date of Patent:
April 23, 2013
Assignees:
Samsung Electronics Co., Ltd., SNU R&DB Foundation
Inventors:
Hyun Ho Choi, Sung Hyun Choi, Young Soo Kim, Young Woo Hwang
Abstract: Provided is a lipid emulsion having krill oil as an active ingredient and a preparation method therefor, wherein the lipid emulsion can be used independently for oral/parenteral administration or as a daily nutrient, and preferably, as a nutritious intravenous lipid emulsion having krill oil.
Abstract: An iridium phosphorescent dendrimer represented by Formula 1: wherein A is a carbazole-based dendron. Also disclosed is a method of preparing the iridium phosphorescent dendrimer and an electroluminescent device including the iridium phosphorescent dendrimer.
Type:
Grant
Filed:
October 8, 2009
Date of Patent:
April 16, 2013
Assignees:
Samsung Electronics Co., Ltd., SNU R&DB Foundation
Inventors:
Dong-hoon Choi, Kyung-moon Jung, Min-ju Cho
Abstract: A graphene electronic device may include a silicon substrate, connecting lines on the silicon substrate, a first electrode and a second electrode on the silicon substrate, and an interlayer dielectric on the silicon substrate. The interlayer dielectric may be configured to cover the connecting lines and the first and second electrodes and the interlayer dielectric may be further configured to expose at least a portion of the first and second electrodes. The graphene electronic device may further include an insulating layer on the interlayer dielectric and a graphene layer on the insulating layer, the graphene layer having a first end and a second end. The first end of the graphene layer may be connected to the first electrode and the second end of the graphene layer may be connected to the second electrode.
Type:
Grant
Filed:
February 17, 2011
Date of Patent:
April 16, 2013
Assignees:
Samsung Electronics Co., Ltd., SNU R&DB Foundation
Inventors:
Hyun-jong Chung, Seung-jae Baek, Sun-ae Seo, Yun-sung Woo, Jin-seong Heo, David Seo
Abstract: Provided is a method for forming a nanocrystalline silicon film that can be deposited on a substrate while maintaining a high degree of crystallinity at low temperatures. The method includes performing plasma treatment on a substrate, and forming a nanocrystalline silicon film by depositing the nanocrystalline silicon film on the substrate.
Abstract: A liquid crystal display panel may include a first substrate, a second substrate facing the first substrate and including a plurality of colloidal particles obtained by thermally treating a surface of the second substrate facing the first substrate, and a liquid crystal layer interposed between the first and second substrates to contain liquid crystal molecules. The size of each of the plurality of colloidal particles may vary according to the length of time heat is applied.
Abstract: In a multi-user multiple input multiple output (MIMO) communication system using the same radio resource, a unitary matrix may be generated to remove interference signals and enhance a transmission capacity. The unitary matrix may be used for precoding. Vectors included in the unitary matrix may have a most similar direction to precoding vectors of target terminal devices and may be orthogonal to each other.
Type:
Grant
Filed:
August 5, 2010
Date of Patent:
April 9, 2013
Assignees:
Samsung Electronics Co., Ltd., SNU R&DB Foundation
Inventors:
Hyoung Joo Lee, Ill Soo Sohn, Kwang Bok Lee, Chang Soon Park, Sung Jin Kim
Abstract: A method of signal transmission based on differentially quantized channel information in a multi-antenna wireless communication system which can transmit signal to multiple mobile stations simultaneously through multiple transmit antennas includes a main codebook reporting step of each mobile station for quantizing channel correlation information (CCI) using a main-codebook and reporting an index of the main codebook, which corresponds to the quantized CCI, to a base station. A sub-codebook reporting step of each mobile station for quantizing the change of the CCI between the quantization interval using a sub-codebook and reporting an index of the sub-codebook, which corresponds to the quantized CCI change, to a base station. A multi-user eigen-beam transmission step of the base station for generating multiple eigen-beams using the index of the main-codebook or sub-codebook reported from mobile stations and transmitting them to multiple users simultaneously.
Type:
Application
Filed:
April 6, 2011
Publication date:
April 4, 2013
Applicant:
SNU R&DB FOUNDATION
Inventors:
Yong Hwan Lee, Hee-Nam Cho, Jin-Woo Lee
Abstract: Provided is a light emitting diode (hereinafter, referred to as an LED) coating method, and more particularly, an LED coating method that can be used to coat a phosphor, a molding, etc., on an LED. The LED coating method includes (a) preparing a substrate and a plurality of LEDs arranged on the substrate; (b) applying a photoresist onto the substrate and the plurality of LEDs; and (c) selectively exposing the photoresist to light to form a first coating on surfaces of the plurality of LEDs. Here, the first coating is formed by curing the photoresist.
Abstract: Disclosed herein are a printed circuit substrate and a method of manufacturing the same. The printed circuit substrate includes an insulating layer, and a circuit layer that includes a circuit pattern disposed on the insulating layer and a barrier layer that is disposed to cover at least one surface of the circuit pattern and suppresses electrochemical migration from the circuit pattern, thereby making it possible to achieve high-density and secure reliability, and the method of manufacturing the same.
Type:
Grant
Filed:
June 22, 2010
Date of Patent:
April 2, 2013
Assignees:
Samsung Electro-Mechanics Co., Ltd., SNU R&DB Foundation
Inventors:
Hyung Wook Park, Young Chang Joo, Hong Seok Min, Young Gwan Ko, Chang Sup Ryu, Ho Young Lee, Shin Bok Lee, Min Suk Jung
Abstract: A fluidic channel system is provided. The fluidic channel system includes a light projection apparatus, a fluidic channel, and a rail. The light projection apparatus provides light. A photocurable fluid, which is selectively cured by the light, flows inside the fluidic channel. A fine structure which is to be formed by curing the photocurable fluid moves along the rail.
Type:
Grant
Filed:
October 1, 2008
Date of Patent:
April 2, 2013
Assignee:
SNU R&DB Foundation
Inventors:
Sunghoon Kwon, JiYun Kim, Wook Park, HyunSung Park, SeungAh Lee, SuEun Chung
Abstract: According to an exemplary embodiment of the present invention, a receiver in an orthogonal frequency division multiple access (OFDMA) system includes: an extraction unit that extracts received user signal subvectors for subcarriers assigned to the receiver from received signal vectors received from a transmitter; and a fast Fourier transform (FFT) unit that performs a fast Fourier transform on the received user signal subvectors.
Abstract: Provided are a manufacturing method for a thin film transistor, and a thin film transistor manufactured by the manufacturing method. In the manufacturing method, a semiconductor layer and an insulating layer for stopping etching, which are sequentially stacked, are etched by dry etching and wet etching using a single photoresist pattern, and patterning the semiconductor layer and the insulating layer into a channel layer and an etch stop layer, respectively, thereby simplifying the manufacturing process of the thin film transistor.
Abstract: The following disclosure relates to a technology of genotyping a particular single nucleotide polymorphism (SNP) having significant association with attention deficit hyperactivity disorder (ADHD) and using the SNP genotypes for predicting the risk of ADHD. The present invention relates to providing a method of predicting ADHD risk by identifying the nucleotide of rs5508181 SNP in GIT1, which is C or T at the 24926101st residue on human chromosome 17, and a linkage disequilibrium block harboring rs5508181. Further, the present invention relates to a composition for diagnosing ADHD risk, including a probe for detecting the SNP or a primer for amplifying the chromosomal region, and a diagnosing kit having the probe immobilized on a surface thereof. Therefore, the method, the composition and the kit for diagnosing ADHD risk according to the following disclosure are useful technologies that can conveniently classify risk groups for ADHD at high sensitivity.
Type:
Application
Filed:
April 13, 2012
Publication date:
March 21, 2013
Applicants:
SNU R&DB FOUNDATION, KOREA ADVANCED INSTITUTE OF SCIENCE AND TECHNOLOGY
Inventors:
Changwon KANG, Eunjoon KIM, Jae-Won Kim, Eunjin KIM, Hyejung WON, Won MAH, Soo-Churl CHO
Abstract: Provided are a vertical nonvolatile memory device and a method for fabricating the vertical nonvolatile memory device. The vertical nonvolatile memory device can be integrated more highly as compared with a nonvolatile memory device of the related art. In addition, since the vertical nonvolatile memory device includes a selective diode, reading errors can be prevented.
Abstract: A method for coating medication for a medical product is disclosed. A technique for coating gel in a viscous semisolid state is provided to facilitate coating of medication. Coating of medication on an article can be facilitated using gel, and coating of medication on an article such as an article made of silk and an article made of polypropylene can be further facilitated.
Type:
Grant
Filed:
January 21, 2010
Date of Patent:
March 19, 2013
Assignee:
SNU R and DB Foundation
Inventors:
Jong-Sang Park, Dae-Joong Kim, In-Su Baek, Chengzhe Bai
Abstract: The present invention relates to a microjet drug delivery system for microjet spraying a drug solution stored inside to inject the same into the bodily tissue of a person to be operated, and a microjet injector. The microjet injector comprises: a pressure chamber completely filled with the liquid for propelling pressure, having an accommodation space with one side opened; an elastic film, which is a film member made of an elastic material, arranged so as to form a closed space by closing the opened one side of the pressure chamber; a drug chamber for accommodating a drug solution in a predetermined inner space, provided adjacent to the pressure chamber with interposing the elastic film therebetween; and a microjet nozzle communicating with the inner space of the pressure chamber so as to be formed as a channel for allowing the drug solution stored inside the pressure chamber to be microjet sprayed to the outside.
Abstract: The present invention relates to tricarbonyl technetium-99m or rhenium-188 labeled cyclic RGD derivatives, a preparation method thereof, and a pharmaceutical composition containing the derivative as an active ingredient for use in the diagnosis or treatment (radiotherapy) of angiogenesis-related diseases. The tricarbonyl technetium-99m or rhenium-188 labeled cyclic RGD derivatives of the present invention has a high subnanomolar affinity to integrin ?v?3 (also called as a vitronectin receptor) that is activated in an angiogenic action induced by a tumor, reflects a high tumor image of the tricatvonyl technetium-99m labeled cyclic RGD derivative after initial intake in an animal in which cancer cells are transplanted, and acts exclusively upon cancer cells having selectively activated integrin ?v?3 because of a substantially low intake into the liver and intestines, compared to existing known radioactive isotope labeled cyclic RGD derivatives.
Type:
Application
Filed:
May 24, 2011
Publication date:
March 14, 2013
Applicant:
SNU R&DB FOUNDATION
Inventors:
Byung Chul Lee, Sang Eun Kim, Ji Sun Kim, Byung Seok Moon, Jae Ho Jung
Abstract: A particle detector includes: a conductive nanolayer; insulating nanolayers attached to both sides of the conductive nanolayer; a nanopore formed to penetrate the conductive nanolayer and the insulating nanolayers so as to provide a migration path for a sample particle; a power supply unit configured to apply an electric field between both ends of the nanopore so as to apply a potential to the conductive nanolayer; and an electric signal measuring unit electrically connected to the conductive nanolayer and configured to measure the potential change in the conductive nanolayer induced by the sample particle as the sample particle migrates through the nanopore. The particle detector is capable of detecting a particle with high signal-to-noise ratio and resolution, scanning a sample without mechanical motion of the conductive nanolayer and analyzing DNA base sequences.
Abstract: The present invention relates to a surface-modified tantalum oxide nanoparticle, a method for preparation thereof, a contrast agent (medium) for X-ray computed tomography, and a highly dielectric (high-K) film using the same. In particular, the present invention is directed to a surface-modified tantalum oxide nanoparticle, a method for preparing surface-modified tantalum oxide nanoparticles, comprising: (i) adding an aqueous phase to an organic solvent which contains a surfactant, to prepare a water-in-oil microemulsion; (ii) introducing a tantalum precursor to said microemulsion; (iii) adding a surface-modifier having an organic silane group or phosphine group to a solution obtained at the step (ii); (iv) removing said organic solvent from a product obtained at the step (iii); and (v) separating surface-modified tantalum oxide nanoparticles from a mixture obtained at the step (iv), a contrast agent for X-ray computed tomography, and a highly dielectric (thin) film using the same.