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221.
公开(公告)号:US20240414930A1
公开(公告)日:2024-12-12
申请号:US18731817
申请日:2024-06-03
Inventor: Dae Sung CHUNG , Sangjun LEE
Abstract: Provided is an organic photodiode for detecting SWIR, a method for manufacturing the same, and an SWIR sensor including the same, and more specifically, to an organic photodiode for SWIR detection including a first electrode, a second electrode, and a photoelectric conversion layer between the first and second electrodes. The photoelectric conversion layer includes a first photoelectric conversion layer and a second photoelectric conversion layer sequentially stacked, wherein the first photoelectric conversion layer includes a polymer represented by Formula 1, and an organic dopant represented by Formula 2.
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公开(公告)号:US12166868B2
公开(公告)日:2024-12-10
申请号:US17736986
申请日:2022-05-04
Inventor: Jae Han Park , Jae Yoon Sim
IPC: H04L9/08 , H03K19/003
Abstract: An exemplary embodiment of the present disclosure provides a physically unclonable function (PUF) cell capable of exhibiting a stable performance and showing an excellent repeatability while being less affected by environmental factors such as a noise, temperature, and bias voltage. The PUF cell generates an output value by combining a scheme of amplifying a threshold voltage difference and a scheme of amplifying an oscillation frequency difference. In an oscillator that generates oscillation signals of different frequencies, the frequency difference of the oscillation signals is amplified by alternately supplying bias voltages of different magnitudes generated by utilizing the threshold voltage difference to a plurality of stages in the oscillator.
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223.
公开(公告)号:US20240396344A1
公开(公告)日:2024-11-28
申请号:US18493683
申请日:2023-10-24
Inventor: Jae Yoon SIM , Hee Sung ROH
Abstract: Disclosed is an energy harvesting method of an energy harvesting apparatus configured to convert input power coming from an energy source using a switching frequency, which is generated by monitoring an input voltage, and a first time and a second time, which are on-times of a first switch and a second switch, respectively, and generated based on the switching frequency, and deliver the converted input power to a battery.
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公开(公告)号:US20240382582A1
公开(公告)日:2024-11-21
申请号:US18663339
申请日:2024-05-14
Inventor: Jae Sung PARK , Su Yeon KIM , Seung Ik OH , Chungmin HAN
IPC: A61K39/215 , A61K9/51 , A61K39/00 , A61P31/14 , C12N7/00
Abstract: The present invention relates to nanovesicles which express immunomodulatory proteins or targeting proteins, methods for preparing the same and uses thereof. More specifically, the present invention provides plasma membrane bleb-based nanovesicles which are prepared more homogeneously than existing plasma membrane bleb-based nanovesicles, by using cell lines expressing various immunomodulatory proteins or targeting proteins in the plasma membrane as materials, methods for preparing the nanovesicles, pharmaceutical compositions including the nanovesicles, methods for inducing immunity using the nanovesicles and methods for signal transduction or targeting using the nanovesicles.
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公开(公告)号:US12148104B2
公开(公告)日:2024-11-19
申请号:US17731063
申请日:2022-04-27
Inventor: Hwang Jun Song , Hyun Min Noh
Abstract: A system for providing an adaptive AR streaming service may comprise: a cloud AR server that stores an AR object composed of a plurality of progressive mesh chunks, and a meta file including property information of the AR object and the progressive mesh chunks; and a mobile augmented reality (AR) device that requests and receives the meta file from the cloud AR server, parses the meta file to identify a property of the AR object, and implements augmented reality.
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226.
公开(公告)号:US20240362787A1
公开(公告)日:2024-10-31
申请号:US18771155
申请日:2024-07-12
Applicant: POSTECH RESEARCH AND BUSINESS DEVELOPMENT FOUNDATION , THE CATHOLIC UNIVERSITY OF KOREA INDUSTRY-ACADEMIC COOPERATION FOUNDATION
Inventor: Chulhong KIM , Jeonghoon HA , Byullee PARK , Dong Jun LIM
CPC classification number: G06T7/0014 , A61B5/0095 , G06T2207/10132 , G06T2207/30096
Abstract: A tumor classification method using multi-wavelength photoacoustic image and ultrasound image comprises the steps of: receiving, by an analysis device, an image set including photoacoustic frames and ultrasound frames collected over time for a predetermined period of time by each of a plurality of wavelength bands with respect to a subject; selecting, by the analysis device, photoacoustic frames and ultrasound frames to be analyzed, from the image set, on the basis of ultrasound image; performing, by the analysis device, spectral unmixing analysis on the selected photoacoustic frames; calculating, by the analysis device, at least one parameter for a tumor region by using the result of the spectral unmixing analysis; and classifying, by the analysis device, the subject's tumor by using the parameter.
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公开(公告)号:US20240289967A1
公开(公告)日:2024-08-29
申请号:US18572866
申请日:2022-02-07
Inventor: Jae-Sung PARK , Si-Woo CHO
CPC classification number: G06T7/246 , G06T7/74 , G06T2200/24 , G06T2207/10028 , G06T2207/10152 , G06T2207/20076 , G06T2207/30204 , G06T2207/30241
Abstract: Disclosed are an analysis method and computational system which have been developed so that the particle tracking analysis method can derive correct results under conditions with different photographing conditions for each frame when analyzing the various characteristics of individual particles through the particle tracking analysis method from consecutive images in which particles are photographed.
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公开(公告)号:US20240231496A9
公开(公告)日:2024-07-11
申请号:US18320096
申请日:2023-05-18
Inventor: Keehoon KIM
IPC: G06F3/01
CPC classification number: G06F3/016
Abstract: The present disclosure relates to a cable-based force feedback control apparatus capable of automatically determining the unspecified number and positions of cable haptic apparatus and performing force feedback control based on the determination result and a control method for the apparatus. A force feedback control apparatus and a control method for the apparatus according to the present disclosure may freely change the number and positions of haptic modules, may be installed according to various screen sizes, and may automatically detect the number and positions of the haptic devices, thereby achieving scalability.
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公开(公告)号:US20240228598A1
公开(公告)日:2024-07-11
申请号:US18403934
申请日:2024-01-04
Inventor: Su Jin NOH , Jaewoo AHN
CPC classification number: C07K16/18 , A61K47/6803 , A61K47/6843 , A61P25/18 , A61K2039/505 , C07K2317/14 , C07K2317/565 , C07K2317/569
Abstract: The present invention relates to a nanobody or an antigen binding fragment thereof, and a pharmaceutical composition for preventing or treating a mental or neurological disease, which includes the nanobody or antigen binding fragment thereof. The nanobody or antigen binding fragment thereof according to the present invention binds to proteins (i.e., C1, C3, or C4) of the complement system to inhibit or interfere with their activity, thereby preventing a decrease in dendritic spines in nerve cells, and thus effectively improving the positive and negative symptoms of schizophrenia. In particular, the nanobody or antigen binding fragment thereof according to the prevent invention has an excellent advantage in that it may improve the negative symptoms of schizophrenia, which were difficult to treat in the past.
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公开(公告)号:US12034157B2
公开(公告)日:2024-07-09
申请号:US17285316
申请日:2020-03-06
Inventor: Jangbae Kim , Soojin Park , Jaegeon Ryu , Jonghyun Chae , Jihye Yang
IPC: H01M4/00 , C01B33/023 , H01M4/134 , H01M4/38 , H01M4/02 , H01M10/0525
CPC classification number: H01M4/386 , C01B33/023 , H01M4/134 , C01P2002/54 , C01P2002/72 , C01P2004/03 , C01P2004/04 , C01P2006/16 , C01P2006/40 , H01M2004/021 , H01M2004/027 , H01M10/0525
Abstract: A sulfur-doped silicon negative electrode material, a preparation method for a sulfur-doped silicon negative electrode material, a negative electrode for a lithium secondary battery comprising the sulfur-doped silicon negative electrode material, and a lithium secondary battery comprising the negative electrode, wherein the sulfur-doped silicon negative electrode material has an internal pore channel having an average width of 500 nm to 3 μm and an average external diameter of 1 μm to 5 μm.
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