in:(Jae-Hyuck Park)
LOGISTICS TRANSPORT SYSTEM
PCT/KR2016/001997
[PARK, Joon Pyo, PARK, Joon Pyo, SONG, Young Youn, PARK, Joon Pyo, SONG, Young Youn, KWON, Koo Po, PARK, Joon Pyo, SONG, Young Youn, KWON, Koo Po, AUH, Jae Hyuck]
(Seosomun-dong)53, Sejong-daero 9-gilJung-guSeoul 100-814
A logistics transport system according to an embodiment of the present invention may include a transport cart onto which articles to be transported are loaded, a mobile robot coupled to the transport cart and configured to move the transport cart, and a management server configured to manage position information about the mobile robot, send position information about the transport cart to which the mobile robot is to be coupled and information about a position to which the transport cart having the mobile robot coupled thereto is to move to the mobile robot, and to manage the position information. The logistics transport system has advantages in that the position of an article to be loaded onto the transport cart can be accurately checked, the position of an article to be loaded onto the transport cart can be rapidly checked, and the time taken to transport an article to be loaded can be reduced.
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SOLID-WOOD CARD HAVING CHIP EQUIPPED THEREIN
PCT/KR2023/021766
[PARK, Ki Tae 박기태, PARK, Hae Seon 박해선, CHEON, Jeong Min 천정민, JO, Jae Hyuck 조재혁, PARK, Chae Hee 박재희, LEE, Eun Ji 이은지, PARK, Dong Ho 박동호]
{9 Hannam-ro 67beon-gil, Daedeok-gu 34432 대전광역시 대덕구 한남로67번길 9, DaejeonDaejeon 34432;KR KR(KR)(KR)}
Disclosed is a solid-wood card having a chip, such as an IC chip and/or an NFC chip, equipped therein. The solid-wood card having a chip equipped therein comprises: an upper UV printed layer on which a company logo and card information are printed; an upper defoamed, resin-impregnated, and natural oil-coated layer provided over a solid-wood and natural resin sheet layer having one or more solid-wood sheets provided therein; the solid-wood and natural resin sheet layer having one or more solid-wood sheets provided therein; an IC chip disposed on top of the solid-wood and natural resin sheet layer having one or more solid-wood sheets provided therein; an NFC chip and a loop antenna disposed below the solid-wood and natural resin sheet layer having one or more solid-wood sheets; a lower defoamed, resin-impregnated, and natural oil-coated layer disposed below the NFC chip and the loop antenna; and a lower UV printed layer on which card information and designed shapes are printed.
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Wood card to be embedded chip
KR20230166171A
[PARK KI TAE, PARK HAE SEON, CHEON JEONG MIN, JO JAE HYUCK, PARK CHAE HEE, LEE EUN JI, PARK DONG HO]
KR
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Pellicle Frame with Filter and Method of Fabricating the Same
KR20220142289A
[KIM YONG SU, LEE SO YOON, PARK SEONG HWAN, KANG HONG GU, CHOI JAE HYUCK, SEO KYOUNG WON, CHO SANG JIN, BAE JUNG JUN, PARK JUN WOO, YOO JUN SEONG, YUN WOO HYUN, HONG SEONG GYU, PARK JIN SU, KIM KYOUNG SOO, YU LAN, KIM CHEONG, LEE DONG HOON, YANG SEONG JU, LEE HWA CHOL]
KR
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METHOD FOR MANUFACTURING PELLICLE FOR EXTREME ULTRAVIOLET LITHOGRAPHY
PCT/KR2023/008198
[PARK, Jin Su 박진수, KIM, Kyoung Soo 김경수, YU, Lan 우란, KIM, Cheong 김청, HONH, Seong Gyu 홍성규, SEO, Kyoung Won 서경원, PARK, Seong Hwan 박성환, CHO, Sang Jin 조상진, LEE, So Yoon 이소윤, BAE, Jung Jun 배정준, KIM, Yong Su 김용수, KANG, Hong Gu 강홍구, PARK, Jun Woo 박준우, YU, Jun Seong 유준성, YUN, Woo Hyun 윤우현, CHOI, Jae Hyuck 최재혁]
15-23, Dongtansandan 6-gil, 18487 경기도 화성시 동탄산단6길 15-23, Gyeonggi-doHwaseong-si,Gyeonggi-do 18487
The present invention relates to a method for manufacturing a pellicle for extreme ultraviolet lithography. The present invention relates to a method for manufacturing a pellicle for extreme ultraviolet lithography. More specifically, the present invention relates to a method for manufacturing a pellicle for extreme ultraviolet lithography by using a solid-state reaction between a metal layer and a silicon-based material layer. The present invention provides a method for manufacturing a pellicle for extreme ultraviolet lithography, comprising the steps of: a) forming, on a substrate, a stack obtained by sequentially stacking a first silicon-based material layer, a metal layer, and a second silicon-based material layer; and b) inducing an interlayer solid-state reaction so that the layers constituting the stack react to form a multi-component compound. According to the method for manufacturing a pellicle for extreme ultraviolet lithography, in the present invention, a multi-component compound is formed through diffusion between a metal layer and a silicon-based material layer, and thus the mechanical strength of a pellicle film is improved. In addition, improvements in thermal stability and transmittance can also be expected. The present invention relates to a method for manufacturing a pellicle for extreme ultraviolet lithography. The present invention relates to a method for manufacturing a pellicle for extreme ultraviolet lithography. More specifically, the present invention relates to a method for manufacturing a pellicle for extreme ultraviolet lithography by using a solid-state reaction between a metal layer and a silicon-based material layer. The present invention provides a method for manufacturing a pellicle for extreme ultraviolet lithography, comprising the steps of: a) forming, on a substrate, a stack obtained by sequentially stacking a first silicon-based material layer, a metal layer, and a second silicon-based material layer; and b) inducing an interlayer solid-state reaction so that the layers constituting the stack react to form a multi-component compound. According to the method for manufacturing a pellicle for extreme ultraviolet lithography, in the present invention, a multi-component compound is formed through diffusion between a metal layer and a silicon-based material layer, and thus the mechanical strength of a pellicle film is improved. In addition, improvements in thermal stability and transmittance can also be expected.
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EUV Membrane for EUV lithography and manufacturing method for the same
KR20230067136A
[YU LAN, SEO KYOUNG WON, PARK JIN SU, YANG SEONG JU, HONG SEONG GYU, LEE HWA CHOL, KIM CHEONG, KIM KYOUNG SOO, YUN WOO HYUN, CHO SANG JIN, LEE DONG HOON, LEE SO YOON, PARK SEONG HWAN, KIM YONG SU, KANG HONG GU, CHOI JAE HYUCK]
KR
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WIRELESS POWER TRANSMISSION APPARATUS AND METHOD FOR CONTROLLING SAME
EP17775859.6
[LEE, Chong-Min, LEE, Kyung-Woo, PARK, Sung-Bum, PARK, Jae-Hyun, SHIN, Jae-Hyuck, RYU, Young-Ho, LEE, Sang-Wook]
129, Samsung-ro
Yeongtong-gu, Suwon-si, Gyeonggi-do 16677, KR
Provided is a wireless power transmission apparatus. A wireless power transmitter comprises: an antenna; a memory; and a processor, wherein the processor is set to control first reflection signal information on a pilot signal transmitted through the antenna at a first time point to be stored in the memory as reference information, to control second reflection signal information on the pilot signal transmitted through the antenna at a second time point to be compared with the reference information, and to determine, on the basis of the comparison result, a position of an object to be detected.<img id="iaf01" file="imgaf001.tif" wi="41" he="68" img-content="drawing" img-format="tif" />
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POLYETHYLENE RESIN FOR SECONDARY BATTERY SEPARATOR, METHOD FOR MANUFACTURING THE SAME, AND SEPARATOR TO WHICH THE SAME IS APPLIED
EP21186638.9
[HAN, Jae Hyuck, PARK, Eun Jin, LEE, Jin Woo, KANG, Mi Hyeon, PARK, Ji Yong]
103 Dokgot 2-ro
Daesan-eup, Seosan-si, Chungcheongnam-do 31900, KR
The present invention relates to a polyethylene resin for a separator capable of securing excellent mechanical strength of a porous separator film as a molded product while exhibiting excellent extrusion processability, a method for manufacturing the same, and a separator for a secondary battery to which the polyethylene resin is applied. The polyethylene resin is a single particle and has a melting point exhibiting a double peak in which a first peak is in the range of 125 °C to 132 °C and a second peak is in the range of 133 °C to 136 °C
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POLYETHYLENE RESIN FOR SECONDARY BATTERY SEPARATOR, METHOD FOR MANUFACTURING THE SAME, AND SEPARATOR TO WHICH THE SAME IS APPLIED
EP21186638.9
[HAN, Jae Hyuck, PARK, Eun Jin, LEE, Jin Woo, KANG, Mi Hyeon, PARK, Ji Yong]
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WASHER-INTEGRATED TYPE WIPER APPARATUS
US15207891
[Jong Min Park, Nak Kyoung Kong, Choong Yeul Kim, Ki Hong Lee, Keon Soo Jin, Jae Hyuck An, Jin Wan Park, Kwan Hee Kim, Seung Hun Nam]
KR Seoul
A washer-integrated type wiper apparatus is provided. The washer-integrated type wiper apparatus includes a nozzle cover that is coupled to one side of a bending component of a retainer to support a wiper blade and a hose module that extends in the longitudinal direction in the interior of the retainer and is positioned in the interior of the nozzle cover and is connected to a washer liquid storing tank. Further, a main nozzle is connected in the interior of the nozzle cover to the hose module and is formed to expose a plurality of spray ports to the outside of the nozzle cover and is configured to spray the washer liquid supplied from the washer liquid storing tank through the spray ports. A heater module is installed in the heating area.
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