in:(PARK, Chul Soon)
ANTENNA OF ELECTRONIC DEVICE
PCT/KR2015/008624
[HWANG, Soon Ho, HWANG, Soon Ho, JEONG, Ui Chul, HWANG, Soon Ho, JEONG, Ui Chul, PARK, Sung Koo, HWANG, Soon Ho, JEONG, Ui Chul, PARK, Sung Koo, AN, Chan Kyu, HWANG, Soon Ho, JEONG, Ui Chul, PARK, Sung Koo, AN, Chan Kyu, BYUN, Joon Ho, HWANG, Soon Ho, JEONG, Ui Chul, PARK, Sung Koo, AN, Chan Kyu, BYUN, Joon Ho, YOO, Sang Keun, HWANG, Soon Ho, JEONG, Ui Chul, PARK, Sung Koo, AN, Chan Kyu, BYUN, Joon Ho, YOO, Sang Keun, LEE, Yoon Jae, HWANG, Soon Ho, JEONG, Ui Chul, PARK, Sung Koo, AN, Chan Kyu, BYUN, Joon Ho, YOO, Sang Keun, LEE, Yoon Jae, JUNG, Jin Woo, HWANG, Soon Ho, JEONG, Ui Chul, PARK, Sung Koo, AN, Chan Kyu, BYUN, Joon Ho, YOO, Sang Keun, LEE, Yoon Jae, JUNG, Jin Woo, CHUN, Jae Bong]
129, Samsung-ro, Yeongtong-guSuwon-siGyeonggi-do 443-742
An antenna of an electronic device is provided, which includes a radiator including at least part of a metal housing of the electronic device; a feeding part connected to the radiator; a ground part; and a capacitor connected between the radiator and the ground part.
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THIN FILM DEPOSITION APPARATUS HAVING PLURALITY OF CRUCIBLES
PCT/KR2014/006227
[OH, Young Man 오영만, OH, Young Man 오영만, CHOI, Jae Soo 최재수, OH, Young Man 오영만, CHOI, Jae Soo 최재수, LEE, Soon Chul 이순철, OH, Young Man 오영만, CHOI, Jae Soo 최재수, LEE, Soon Chul 이순철, KIM, Su Bin 김수빈, OH, Young Man 오영만, CHOI, Jae Soo 최재수, LEE, Soon Chul 이순철, KIM, Su Bin 김수빈, KIM, Myoung Soo 김명수, OH, Young Man 오영만, CHOI, Jae Soo 최재수, LEE, Soon Chul 이순철, KIM, Su Bin 김수빈, KIM, Myoung Soo 김명수, LEE, Young Jong 이영종, OH, Young Man 오영만, CHOI, Jae Soo 최재수, LEE, Soon Chul 이순철, KIM, Su Bin 김수빈, KIM, Myoung Soo 김명수, LEE, Young Jong 이영종, SONG, Ki Min 송기민, OH, Young Man 오영만, CHOI, Jae Soo 최재수, LEE, Soon Chul 이순철, KIM, Su Bin 김수빈, KIM, Myoung Soo 김명수, LEE, Young Jong 이영종, SONG, Ki Min 송기민, PARK, Young Shin 박영신, OH, Young Man 오영만, CHOI, Jae Soo 최재수, LEE, Soon Chul 이순철, KIM, Su Bin 김수빈, KIM, Myoung Soo 김명수, LEE, Young Jong 이영종, SONG, Ki Min 송기민, PARK, Young Shin 박영신, SEO, Tae Won 서태원, OH, Young Man 오영만, CHOI, Jae Soo 최재수, LEE, Soon Chul 이순철, KIM, Su Bin 김수빈, KIM, Myoung Soo 김명수, LEE, Young Jong 이영종, SONG, Ki Min 송기민, PARK, Young Shin 박영신, SEO, Tae Won 서태원, BAE, Young Jin 배영진, OH, Young Man 오영만, CHOI, Jae Soo 최재수, LEE, Soon Chul 이순철, KIM, Su Bin 김수빈, KIM, Myoung Soo 김명수, LEE, Young Jong 이영종, SONG, Ki Min 송기민, PARK, Young Shin 박영신, SEO, Tae Won 서태원, BAE, Young Jin 배영진, KIM, Jeong Taek 김정택, OH, Young Man 오영만, CHOI, Jae Soo 최재수, LEE, Soon Chul 이순철, KIM, Su Bin 김수빈, KIM, Myoung Soo 김명수, LEE, Young Jong 이영종, SONG, Ki Min 송기민, PARK, Young Shin 박영신, SEO, Tae Won 서태원, BAE, Young Jin 배영진, KIM, Jeong Taek 김정택, LEE, Jung Gyun 이정균]
293, Saneop-ro 155beon-gil, Gwonseon-gu 441-811 경기도 수원시 권선구 산업로 155번길 293번지, Gyeonggi-doSuwon-siGyeonggi-do 441-811
The present invention relates to a thin film deposition apparatus, comprising: a deposition chamber in which a substrate is supported; a distribution conduit which sprays, via multiple nozzles formed on an upper portion thereof, a deposition material evaporated from a plurality of crucibles in which the deposition material for being deposited on the substrate is held; a distribution conduit heater which is installed independently so as to be positioned to face the outer surface of the distribution conduit in order to heat the distribution conduit; a crucible heater for heating the crucibles to evaporate the deposition material; and an upper plate, formed on the upper portion of the distribution conduit in which outlets corresponding to the nozzles are formed. As such, the invention can decrease the height of a chamber by decreasing the height of the crucibles, and has an effect of enabling a symmetrical or asymmetrical deposition by independently performing left/right deposition of the substrate.
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A WAVE GUIDE FOR CHIP-TO-CHIP COMMUNICATION AND A SEMICONDUCTOR PACKAGE COMPRISING THE SAME
PCT/KR2015/013807
[PARK, Chul Soon, PARK, Chul Soon, OH, Inn Yeal, PARK, Chul Soon, OH, Inn Yeal, JANG, Tae Hwan, PARK, Chul Soon, OH, Inn Yeal, JANG, Tae Hwan, KIM, Hong Yi, PARK, Chul Soon, OH, Inn Yeal, JANG, Tae Hwan, KIM, Hong Yi, LEE, Chae Jun]
(Guseong-dong) 291, Daehak-roYuseong-guDaejeon 34141
The present invention discloses a wave guide for chip-to-chip communication and a semiconductor package comprising the same, the waveguide including a first conductor unit, a dielectric strip stacked at an upper surface of the first conductor unit, and a second conductor unit formed at a lateral surface of the dielectric strip and formed with at least one via hole, and the semiconductor package comprising the wave guide for chip-to-chip communication including a PCB (Printed Circuit Board), a first chip positioned on the PCB to perform an RF signal transmission, and a second chip positioned on the PCB to perform an RF signal receipt, wherein the waveguide is interconnected between the first and second chips to perform an RF signal transmission.
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JIG FOR TABBING DEVICE
PCT/KR2016/006725
[PARK, Young Ik 박영익, PARK, Young Ik 박영익, YANG, Jeong Soon 양정순, PARK, Young Ik 박영익, YANG, Jeong Soon 양정순, GONG, Hyung Chul 공형철, PARK, Young Ik 박영익, YANG, Jeong Soon 양정순, GONG, Hyung Chul 공형철, CHUNG, Dong Jin 정동진]
161-6, Gyeonggidong-ro 18148 경기도 오산시 경기동로 161-6, Gyeonggi-doOsan-siGyeonggi-do 18148
A jig for a tabbing device is disclosed. The jig for a tabbing device of the present invention comprises: a frame; a rigid support part, which extends in a direction crossing a conductive wire laminated on a cell and has an end part coupled to the frame; and an elastically pressing pin part, which has a spring structure elastically deformed by a vertical force, is connected to the lower portion of the rigid support part, and elastically presses the conductive wire toward the cell. A jig for a tabbing device is disclosed. The jig for a tabbing device of the present invention comprises: a frame; a rigid support part, which extends in a direction crossing a conductive wire laminated on a cell and has an end part coupled to the frame; and an elastically pressing pin part, which has a spring structure elastically deformed by a vertical force, is connected to the lower portion of the rigid support part, and elastically presses the conductive wire toward the cell.
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LIGHT EMITTING DEVICE AND MANUFACTURING METHOD OF THE SAME
PCT/KR2015/010136
[PARK, Seung Chul, PARK, Seung Chul, AHN, Soon Ho, PARK, Seung Chul, AHN, Soon Ho, LIM, Michael]
65-16, Sandan-ro 163beon-gil,Danwon-gu, Ansan-si,Gyeonggi-do 15609
A light emitting device and a method of manufacturing the same. The method includes: growing a first nitride semiconductor layer on a substrate having a non-polar or semi-polar crystal plane; growing an active layer on the first nitride semiconductor layer; and growing a second nitride semiconductor layer on the active layer, wherein growing the second nitride semiconductor layer includes sequentially growing a p-type semiconductor layer, an undoped layer, a p++-type semiconductor layer, and a P++ InGaN contact layer, and the undoped layer, the p++-type semiconductor layer and the P++ InGaN contact layer may be grown in a nitrogen atmosphere.
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LIGHT EMITTING DEVICE AND METHOD OF FABRICATING THE SAME
PCT/KR2015/014123
[PARK, Seung Chul, PARK, Seung Chul, AHN, Soon Ho, PARK, Seung Chul, AHN, Soon Ho, KIM, Chae Hon]
65-16, Sandan-ro 163beon-gil,Danwon-gu, Ansan-si,Gyeonggi-do 15609
A light emitting device is disclosed. The light emitting device includes a first conductive type semiconductor layer having an m-plane as a growth plane; a stacking fault suppression (SFS) layer; an active layer; and a second conductive type semiconductor layer, wherein the SFS layer has lower band-gap energy than the first nitride layer and the first nitride layer, and includes a stack structure in which a second nitride layer containing In is stacked in one or more cycles, and the second nitride layer includes a lower region and an upper region, which have a relationship satisfying Equation 1 ([Equation 1] 0.8≤RD<1.0, (RD = standard deviation of In atomic density of the upper region per unit volume (1 nm3)/standard deviation of In atomic density of the lower region per unit volume (1 nm3)).
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SIGNPOST FOR PREVENTING FREEZING, MOUNTING A TRANSPARENT PLATE HAVING A HOT WIRE
KR20030035019A
[IM YOUNG SUN, JANG KWANG PYO, JONG GUN HWA, JUNG HAE SANG, KIM BO YOUNG, KIM DONG YEOP, KIM YEONG HAN, LEE CHAN BAE, LEE JAE KWAN, LEE JEA HO, LEE KEUN BAE, LEE YOUNG CHUL, LIM HUN SOO, LIM KWANG SOO, NO YOUNG SOO, PARK JONG BIN, PARK JUNG GYU, PARK WAN SOON, PARK YOUNG DOO, PARK YOUNG TAE, SEO SOON SEOG, SUNG NAG MOOG, YOU MIN YOUNG]
;;;;;;;;;;;;;;;;;;;;;;
PURPOSE: A signpost for preventing freezing is provided to prevent freezing of the signpost by emitting heat from a hot wire of a transparent plate, and to drive safely by improving the visibility of the signpost and preventing lane deviation. CONSTITUTION: A hot wire(13) is fastened to the surface of a signpost(10) and heating tie of the hot wire is controlled by a heating time control circuit(18). The surface of the signpost of the road and the hot wire are covered with a transparent plate(11). A charge battery(15) is installed at the side of the signpost of the road, and freezing of the signpost is restricted by supplying power from the charge battery to the hot wire. The heating time control circuit is connected to a solar cell(14) and the charge battery, and the transparent plate is fixed to the signpost by covering the hot wire with the transparent plate.
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METHOD FOR PRODUCING TNFR-FC FUSION PROTEIN CONTAINING TARGET CONTENT OF IMPURITIES
PCT/KR2015/014393
[PARK, Sang Woo 박상우, PARK, Sang Woo 박상우, LEE, Hwa Young 이화영, PARK, Sang Woo 박상우, LEE, Hwa Young 이화영, CHOI, Soon Woong 최순웅, PARK, Sang Woo 박상우, LEE, Hwa Young 이화영, CHOI, Soon Woong 최순웅, JUNG, Chul Ho 정철호]
58, Saemunan-ro, 03184 서울시 종로구 새문안로 58, SeoulJongno-gu,Seoul 03184
The present invention relates to a method for preparing a TNFR-Fc fusion protein mixture containing a target content of hydrophobic chromatogram peak 3, and to a method for adjusting the content of hydrophobic chromatogram peak 3 and, specifically, to a method for preparing a TNFR-Fc fusion protein mixture using a hydrophobic chromatograph medium containing an aromatic functional group, which is pre-equilibrating with an equilibration buffer comprising sodium chloride or ammonium sulfate, on a sample comprising a TNFR-Fc fusion protein mixture liquid produced from mammal cells, and to a method for adjusting the content of hydrophobic chromatogram peak 3 by hydrophobic chromatography using an equilibration buffer containing a predetermined concentration of sodium chloride or ammonium sulfate. The present invention can provide a method for producing a TNFR-Fc fusion protein by, in the production of the TNFR-Fc fusion protein using hydrophobic chromatography, performing hydrophobic chromatography through the equilibration using an equilibration buffer containing a predetermined concentration of sodium chloride or ammonium sulfate, thereby adjusting the content of hydrophobic chromatogram peak 3 to contain a target content of hydrophobic chromatogram peak 3. Therefore, the method presented above can be favorably used in the manufacturing of biological medicines comprising a recombinant protein, such as etanercept produced from animal cell culture through genetic recombinant technology.
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HYBRIDIZATION SYSTME OF NEW AND RENEWABLE ENERGY TECHNOLOGIES ON THE BASIS OF SALINITY GRADIENT POWER GENERATION
KR20150160998A
[JEONG NAM JO, KO HEE SANG, KIM CHAN SOO, KWAK SUNG JO, PARK CHUL HO, CHOI JI YEON, YANG SEUNG CHEOL, HWANG KYO SIK, NAM JOO YOUN, CHON KANG MIN, KIM DAE HEE, KIM HAN KI, JWA EUN JIN, PARK SOON CHUL, KIM DONG KOOK, JANG MOON SEOK, CHOI JUNG CHUL, RYU KYUNG SANG, SHIN PYUNG HO]
KR
The present invention relates to a hybridization system of new and renewable energy technologies based on salinity gradient power generation. According to the present invention, a hybridization system of new and renewable energy technologies comprises: an electricity generating device generating electricity using wind power generation, sunlight power generation, and salinity gradient power generation; a power storage device storing the generated electricity; and a water electrolysis device converting a portion of the generated electricity to hydrogen gas energy. The present invention improves load variability and a utilization rate of conventional new and renewable energy technologies, and provides customized new and renewable energy fitted to geographical conditions.
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Turbomachine
KR20200148095A
[LIM YOUNG CHUL, YOON EUI SOO, PARK MOO RYONG, HWANG SOON CHAN, CHOI BUM SEOG, PARK JUN YOUNG, YOO IL SU, SEO JEONG MIN, BANG JE SUNG, LIM HYUNG SOO, CHOI WON CHUL, KIM SOO WON, PARK SEH JIN]
KR
According to an embodiment of the present invention, a turbo-machine comprises: a rotary shaft; an impeller coupled to the rotary shaft, and having a plurality of blades providing centrifugal force for a fluid; a shroud coupled to a housing to be slid relative to the housing while forming a predetermined gap from the impeller; a diffuser vane for guiding the fluid discharged from the impeller, and being in contact with an inner wall of the shroud; a diffuser having a diffuser plate to which the diffuser vane is fixed; a diffuser support unit for supporting the diffuser; and a thermal deformation member inserted into the diffuser support unit in a state of being in contact with a bottom surface of the diffuser plate. Therefore, a gap between the rotary shaft and the shroud can be constantly maintained at a design dimension.
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