in:(KIM, Sanghee)
NOVEL PHARMACEUTICAL COMPOSITION
PCT/KR2016/000398
[KIM, Sanghee, KIM, Sanghee, CHANG, Hee Chul, KIM, Sanghee, CHANG, Hee Chul, JUNG, Ji Hoon]
244, Galmachi-ro, Jungwon-guSeongnam-siGyeonggi-do 13211;#708, Byucksan Digital Valley II, 184, Gasan digital 2-roGeumchun-GuSeoul 08501
Disclosed herein a pharmaceutical composition comprising aprepitant or a pharmaceutically acceptable salt thereof; at least one hydrocarbon derivative selected from among a fatty acid of 14 to 18 carbon atoms, and a fatty alcohol of 14 to 18 carbon atoms; and at least one selected from among polyoxyethyelene-type nonionic surfactant, sucrose fatty acid ester, and Macrogol 15 hydroxystearate. The pharmaceutical composition of the present disclosure can release aprepitant or a pharmaceutically acceptable salt thereof to effectively exert the pharmaceutical efficacy, and can be dissolved in a fasted state simulated gastrointestinal fluid so that it can be useful for study on the in vivo pharmacokinetic behavior of aprepitant.
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METHOD FOR MANUFACTURING SEMICONDUCTOR FLUORESCENT NANOPARTICLES TO BE APPLIED TO OPTICS AND DISPLAYS
PCT/KR2015/007471
[KIM, Sanghee 김상희, KIM, Sanghee 김상희, CHOI, JaeBong 최재봉, KIM, Sanghee 김상희, CHOI, JaeBong 최재봉, JEONG, Okhyun 정옥현]
35, Baekbeom-ro, Mapo-gu 121-742 서울시 마포구 백범로 35, SeoulSeoul 121-742
The present invention relates to a method for manufacturing semiconductor fluorescent nanoparticles to be applied to optics and displays and, more specifically, comprises the steps of: making a mixed solution by mixing a first precursor material into a first coordinating solvent contained in a reaction container and stirring the same; heating the mixed solution at a synthesis temperature while stirring the mixed solution; making a synthesized solution by mixing, at the synthesis temperature, an additional solution, in which a second precursor material is mixed into a second coordinating solution, and the mixed solution so as to form nuclei during a synthesis time; and quenching the synthesized solution to a set temperature at a set cooling speed after the synthesis time expires. Accordingly, green fluorescent nanoparticles having a fluorescent emission band of a 540 nm and orange fluorescent nanoparticles having a fluorescent emission band of 580 nm can be manufactured, thereby maximizing the applicability thereof to optics and displays by increasing the efficiency of white light.
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PHARMACEUTICAL COMPOSITION FOR CONTROLLING THE FUNCTION OF SPIHNGOSYLPHOSPHORYLCHOLINE
PCT/KR2007/006188
[KO, Jaeyoung, KIM, Hyuk, KIM, Kwang Mi, NOH, Minsoo, LEE, Chang-hoon, KIM, Jung Ju, KIM, Hyoung June, CHO, Sun A, SUNG, Ki Sa, KIM, Dae-Kwon, SHIN, Jae-min, CHO, Doo Ho, KIM, Sanghee, LIM, Chaemin]
181, 2-ga Hangang-ro, Yongsan-gu Seoul 140-777;3F, Seongok Bldg., #4-1, Sunae-dong, Bundang-gu Seongnam-si, Gyeonggi-do 463-825;San 4-2, Bongcheon-dong, Gwanak-gu Seoul 151-050;Hyunjin Villa C-203, #221-1, Sangdo 4-dong, Dongjak-gu Seoul 156-842;112-ho, #314-1, Bora-dong, Giheung-gu Yongin-si, Gyeonggi-do 446-904;203-ho, #9-34, Yangjae 1-dong, Seocho-gu Seoul 137-131;Whanggol Jugong 1-danji, 129-301, Youngtong-dong, Youngtong-gu Suwon-si, Gyeonggi-do 443-740;Baekma Ssangyong Hanseong Apt. 507-1603 Goyang-si, Gyeonggi-do 410-709;Gaepo Woosung Apt. 9-203, #503, Daechi 1-dong, Gangnam-gu Seoul 135-828;SK Apt. 102-603, Seocheon-dong, Giheung-gu Yongin-si, Gyeonggi-do 446-959;Gwanak Hyundai Apt. 119-1211, Bongcheon 3-dong, Gwanak-gu Seoul 151-755;107-ho, #314-1, Bora-dong, Giheung-gu Yongin-si, Gyeonggi-do 446-904;Miraesarang A-2201, Yangpyeong-dong 3-ga, Youngdeungpo-gu Seoul 150-103;Hosu Dongbo Nobility 1208-1001, Dongbaek-dong, Giheung-gu Yongin-si, Gyeonggi-do 446-732;GS Xi Apt. 201-705, Samsoong-dong Yangju-si, Gyeonggi-do 482-726;Hanyang Apt. 6-308, 21/1, #490, Apgujeong-dong, Gangnam-gu Seoul 135-110;Hyundai Apt. 101-1401, #631-1, Woosan-dong, Buk-gu Gwangju-si 500-718
The present invention relates to a new use of alkylcarbamoyl naphthalenyloxyprophenylhydroxybenzamide derivatives for controlling the function of sphingosylphosphorylcholine.
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Composition for Preventing or Treating Inflammation or Cancer Containing Extract of Micractinium sp.
KR20180074887A
[KIM SANGHEE, SUH SUNG SUK, KIM IL CHAN, YOUN UI JOUNG, HAN SE JONG, HONG JU MI, KIM SUN MI, KIM JUNG EUN, KIM EUN JAE]
KR
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Active Baluns
US11970192
[Dong Ho Lee, Ki Seok Yang, Yunseok Kim, Sanghee Kim, Hyogeun Bae, Kijoong Kim, Li Lee, Songcheol Hong, Chang-Ho Lee, Haksun Kim, Joy Laskar]
US GA Atlanta
Example embodiments of the invention may provide for active baluns. An example active balun may include a resonator that may convert a single-ended input signal to at least two differential input signals, and a differential switching block that includes first and second transistors that each receive a respective one of the at least two differential input signals from the resonator, where the first and second transistors may be cross-coupled to each other to provide a first differential output signal and a second differential output signal. An example active balun may further include one or more loads connected to the first and second differential output signals, and one or more stacked inverters that may provide a first output port and a second output port, where the first output port may be responsive to the first differential output signal and the second output port may be responsive to the second differential output signal.
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MIXED SOLVENT FOR QUANTUM DOT INK COMPOSITION, QUANTUM DOT INK COMPOSITION INCLUDING THE SAME, LIGHT-EMITTING DEVICE MANUFACTURED USING QUANTUM DOT INK COMPOSITION, AND ELECTRONIC APPARATUS INCLUDING THE LIGHT-EMITTING DEVICE
US18299825
[Dongsun Yoo, Gyubong Kim, Sanghee Yu, Sehun Kim, Jihye Kim, Hoilim Kim, Yohan Suh, Yunku Jung]
KR Yongin-si
Embodiments provide a mixed solvent for a quantum dot ink composition, wherein the mixed solvent includes at least two solvents, an R1 value of the mixed solvent is greater than or equal to about 7.3 Mpa0.5, an R2 value of the mixed solvent is greater than or equal to about 5.0 Mpa0.5, and a molar volume of the mixed solvent is greater than or equal to about 160 cm3/mol.
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DISPLAY DEVICE AND CONTROL METHOD THEREFOR
PCT/KR2019/016272
[HEO, Ubeom 허우범, CHOI, Gowoon 최고운, KIM, Jaeuk 김재욱, CHOI, Sooin 최수인, KIM, Taeil 김태일, PARK, Eunji 박은지, KIM, Sohyun 김소현, LEE, Sanghee 이상희, CHO, Yeonju 조연주, YU, Hannie 유환희, KIM, Doehee 김도희]
128, Yeoui-daero 07336 서울시 영등포구 여의대로 128, SeoulYeongdeungpo-GuSeoul 07336
A display device according to one embodiment of the present invention comprises: a display; a communication unit for communicating with two or more external devices connected to the display device in a wired or wireless manner; and a controller for performing control so that a graphic user interface (GUI) for integrally managing the external devices is displayed on the display, wherein the controller configures the GUI so that the external devices are classified into two or more groups on the basis of device type so as to be integrally managed in the GUI. According to the present invention, an application for integrated management of a plurality of external devices connected to a digital device is provided to a user, and the plurality of external devices connected to the digital device can be integrally managed through the application.
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Active baluns
US11970192
[Dong Ho Lee, Ki Seok Yang, Yunseok Kim, Sanghee Kim, Hyogeun Bae, Kijoong Kim, Li Lee, Songcheol Hong, Chang-Ho Lee, Haksun Kim, Joy Laskar]
KR
Example embodiments of the invention may provide for active baluns. An example active balun may include a resonator that may convert a single-ended input signal to at least two differential input signals, and a differential switching block that includes first and second transistors that each receive a respective one of the at least two differential input signals from the resonator, where the first and second transistors may be cross-coupled to each other to provide a first differential output signal and a second differential output signal. An example active balun may further include one or more loads connected to the first and second differential output signals, and one or more stacked inverters that may provide a first output port and a second output port, where the first output port may be responsive to the first differential output signal and the second output port may be responsive to the second differential output signal.
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1- Composition for improving wrinkle comprising 1-monoeicosapentaenoin as effective component
KR20190164076A
[CHAE SUNG UK, KIM KI MO, LEE JOO YOUNG, SANGHEE KIM, UI JOUNG YOUN, SE JONG HAN, EUN JAE KIM]
KR;KR
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ELECTRONIC DEVICE FOR PROVIDING VISUALIZED ARTIFICIAL INTELLIGENCE SERVICE BASED ON INFORMATION OF EXTERNAL OBJECT AND METHOD FOR THE SAME
KR20190020233A
[YOO YUNSON, KIM KIHWAN, KIM YOUNJUNG, KIM JUNYOUNG, PARK SANGHEE, LEE MINYOUNG, LEE JINHAK, CHOI ILKWANG]
KR
According to various embodiments of the present invention, provided is an electronic device, and an operation method of the electronic device. The electronic device comprises: a vision sensor capable of detecting an external object in a space in which an electronic device is disposed and rotatable; a projector which outputs a screen to the space in which the electronic device is disposed and is rotatable; a memory storing space information of the space in which the electronic device is disposed; and a processor. The processor can be set to control the vision sensor to track the external object while the vision sensor rotates, determine a location of the screen to be outputted by the projector based on the space information and information of the external object generated based on tracking of the external object, and control the projector to output the screen to the determined location. In addition, various embodiments are possible.
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