Patents Assigned to INSTITUTE
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Patent number: 9815020Abstract: Provided is a dehumidification system including an air directing device and an adsorbent hollow fiber module. The air directing device is used for conveying air. The adsorbent hollow fiber module can adsorb the moisture in the air as the air passes through the adsorbent hollow fiber module. The adsorbent hollow fiber module includes at least one adsorbent hollow fiber. The adsorbent hollow fiber has a tubular body having a first end and a second end and a channel disposed in the tubular body and extending from the first end to the second end.Type: GrantFiled: August 19, 2013Date of Patent: November 14, 2017Assignee: Industrial Technology Reserach InstituteInventors: Chin-Chih Tai, Yun-Hsin Wang, Yi-Shan Lee, Tzer-Shen Lin
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Patent number: 9814725Abstract: This invention generally relates to substituted imidazopyridine compounds, particularly substituted 4-(imidazo[1,2-a]pyridin-2-yl)benzamide compounds and salts thereof. This invention also relates to pharmaceutical compositions and kits comprising such a compound, uses of such a compound (including, for example, treatment methods and medicament preparations), processesor making such a compound, and intermediates used in such processes.Type: GrantFiled: February 2, 2017Date of Patent: November 14, 2017Assignee: NEOMED INSTITUTEInventors: Christophe Buon, Louis-David Cantin, Yun-Jin Hu, Xuehong Luo, Miroslaw Jerzy Tomaszewski
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Patent number: 9816161Abstract: Provided is a Ni-based single crystal superalloy containing 6% by mass or more and 12% by mass or less of Cr, 0.4% by mass or more and 3.0% by mass or less of Mo, 6% by mass or more and 10% by mass or less of W, 4.0% by mass or more and 6.5% by mass or less of Al, 0% by mass or more and 1% by mass or less of Nb, 8% by mass or more and 12% by mass or less of Ta, 0% by mass or more and 0.15% by mass or less of Hf, 0.01% by mass or more and 0.2% by mass or less of Si, and 0% by mass or more and 0.04% by mass or less of Zr, and optionally containing at least one element selected from B, C, Y, La, Ce, and V, with a balance being Ni and inevitable impurities.Type: GrantFiled: July 30, 2013Date of Patent: November 14, 2017Assignees: MITSUBISHI HITACHI POWER SYSTEMS, LTD., NATIONAL INSTITUTE FOR MATERIALS SCIENCEInventors: Kyoko Kawagishi, Hiroshi Harada, Tadaharu Yokokawa, Yutaka Koizumi, Toshiharu Kobayashi, Masao Sakamoto, Michinari Yuyama, Masaki Taneike, Ikuo Okada, Sachio Shimohata, Hidetaka Oguma, Ryota Okimoto, Keizo Tsukagoshi, Yoshitaka Uemura, Junichiro Masada, Shunsuke Torii
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Patent number: 9819496Abstract: The present invention discloses a method and a system for protecting root CA certificates in a virtualization environment. The method installs a root CA certificate security manager on a host computer. The root CA certificate security manager stores the lists of root CA certificates and provides certificate validation service to virtual machines via a read-only interface. When a virtual machine needs the verification of a certificate, it sends a certificate validation service request to the root CA security manager. The root CA certificate security manager provides certificate validation services to the virtual machine in response to the request.Type: GrantFiled: January 16, 2015Date of Patent: November 14, 2017Assignees: Institute of Information Engineering, Chinese Academy of Sciences, Data Assurance & Communications Security Center, Chinese Academy of SciencesInventors: Jingqiang Lin, Jiwu Jing, Le Guan, Bingyu Li, Jing Wang, Wuqiong Pan, Yuewu Wang
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Patent number: 9816989Abstract: Disclosed are immunomodulatory polypeptides that elicit an unusual induced cytokine profile, compositions comprising such polypeptides, compositions comprising antibodies that specifically bind to such polypeptides, and methods of using the same, including in cancer treatment, in the treatment of autoimmune diseases, in organ transplantation and for reducing graft rejection, for promoting fertility, and for identifying a neutrophil subset and/or other cellular subset including by flow cytometry. Pharmaceutical compositions and kits, and treatment methods are also disclosed.Type: GrantFiled: March 12, 2014Date of Patent: November 14, 2017Assignee: Institute of Arthritis Research, LLCInventor: Craig D. Scoville
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Patent number: 9818063Abstract: Information related to a time series can be predicted. For example, a repetitive characteristic of the time series can be determined by analyzing the time series for a pattern that repeats over a predetermined time period. An adjusted time series can be generated by removing the repetitive characteristic from the time series. An effect of a moving event on the adjusted time series can be determined. The moving event can occur on different dates for two or more consecutive years. A residual time series can be generated by removing the effect of the moving event from the adjusted time series. A base forecast that is independent of the repetitive characteristic and the effect of the moving event can be generated using the residual time series. A predictive forecast can be generated by including the repetitive characteristic and the effect of the moving event into the base forecast.Type: GrantFiled: August 10, 2016Date of Patent: November 14, 2017Assignee: SAS INSTITUTE INC.Inventors: Kalyan Joshi, Nitzi Roehl, Yung-Hsin (Alex) Chien
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Patent number: 9819942Abstract: The present invention discloses an encoding apparatus using a Discrete Cosine Transform (DCT) scanning, which includes a mode selection means for selecting an optimal mode for intra prediction; an intra prediction means for performing intra prediction onto video inputted based on the mode selected in the mode selection means; a DCT and quantization means for performing DCT and quantization onto residual coefficients of a block outputted from the intra prediction means; and an entropy encoding means for performing entropy encoding onto DCT coefficients acquired from the DCT and quantization by using a scanning mode decided based on pixel similarity of the residual coefficients.Type: GrantFiled: August 11, 2015Date of Patent: November 14, 2017Assignees: Electronics and Telecommunications Research Institute, Kwangwoon University Research Institute For Industry Cooperation, Industry-Academic Cooperation Group of Sejong UniversityInventors: Se-Yoon Jeong, Hae-Chul Choi, Jeong-Il Seo, Seung-Kwon Beack, In-Seon Jang, Jae-Gon Kim, Kyung-Ae Moon, Dae-Young Jang, Jin-Woo Hong, Jin-Woong Kim, Yung-Lyul Lee, Dong-Gyu Sim, Seoung-Jun Oh, Chang-Beom Ahn, Dae-Yeon Kim, Dong-Kyun Kim
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Patent number: 9815712Abstract: A resin is provided for selectively binding to perchloride and related anions (e.g., TcO4?, ReO4? and I?) in aqueous solution. The resin may take the form of microparticles or beads. The beads are prepared by cross-linking macromolecules such as hyperbranched PEI, and quaternizing the amines with hydrocarbon substituents.Type: GrantFiled: May 21, 2013Date of Patent: November 14, 2017Assignees: California Institute of Technology, AquaNano LLCInventors: Mamadou S. Diallo, Changjun Yu, Dennis P. Chen
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Patent number: 9815161Abstract: A backlash automatic detection system comprises a control device and a machine tool. The machine tool comprises a servo driver, a lead screw, a nut seat and a platform. The method comprises: entering an initial state and outputting a control command to the servo driver through the control device; driving the lead screw by the servo driver to move the nut seat towards a first direction and changing the movement direction of the nut seat towards a reverse second direction by the servo driver; defining a backlash phenomenon period according to one time point at which the nut seat starts to move towards the second direction and another time point at which the platform is driven to move by the nut seat; defining the displacement of the nut seat corresponding to the backlash phenomenon period as a backlash value.Type: GrantFiled: December 26, 2014Date of Patent: November 14, 2017Assignee: Industrial Technology Research InstituteInventors: Yi-Ying Lin, Shih-Je Shiu, Che-Wei Hsu, Po-Hsun Wu, Chien-Yi Lee
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Patent number: 9814370Abstract: The present invention relates to a filter switching device for a fluorescence endoscopic television camera system, and more particularly, to a filter switching device for a fluorescence endoscopic television camera system, which selectively transmits light to a detector sensor of a television camera according to the white light condition or the fluorescence condition to diagnose patients using a fluorescence endoscope. The present invention provides a filter switching device for a fluorescence endoscopic television camera system, which is configured to conveniently switch filters according to the rotational movement of the camera head, by inducing a change of magnetic forces according to the rotation of the camera head by magnetic substances disposed therein while maintaining a sealed structure inside the camera head connecting between a fluorescence endoscope and a television camera and thus allowing the frame of the camera head mounted with two types of filter to move upward and downward.Type: GrantFiled: August 12, 2013Date of Patent: November 14, 2017Assignee: KOREA ELECTROTECHNOLOGY RESEARCH INSTITUTEInventors: Uk Kang, Guang Hoon Kim, Soo Jin Bae, Min Woong Jung, Garry V Papayan, Vladimir Berezin
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Patent number: 9818645Abstract: Embodiments provided are a through electrode that can be manufactured by a method not including the step of removing a side-wall insulating film formed at the bottom part of the through hole and so having improved electrical characteristics and mechanical reliability and a manufacturing method thereof as well as a semiconductor device and a manufacturing method thereof. A through electrode is disposed in a semiconductor substrate, and includes: a conductive layer; a side-wall insulating film that is disposed between the conductive layer and the semiconductor substrate, the side-wall insulating film being represented by the following chemical formula (1), and a tubular semiconductor layer disposed between the conductive layer and the semiconductor substrate, the semiconductor layer including a same material as the material of the semiconductor substrate.Type: GrantFiled: August 30, 2016Date of Patent: November 14, 2017Assignee: NATIONAL INSTITUTE OF ADVANCED INDUSTRIAL SCIENCE AND TECHNOLOGYInventors: Masahiro Aoyagi, Tung Thanh Bui, Naoya Watanabe, Katsuya Kikuchi, Wei Feng
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Patent number: 9818733Abstract: A power converter includes a PCB and a semiconductor die coupled to the PCB. The semiconductor die includes first through fourth switching devices. The power converter further includes a first energy storage element electrically connected to the first and second switching devices and a second energy storage element electrically connected to the third and fourth switching devices. The first energy storage element is mounted over the first and second switching devices and the second energy storage element is mounted over the third and fourth switching devices.Type: GrantFiled: May 24, 2012Date of Patent: November 14, 2017Assignee: Massachusetts Institute of TechnologyInventor: David Michael Giuliano
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Publication number: 20170319621Abstract: The present invention relates to a method for producing natural killer cells using T cells, and more particularly, to a method for producing natural killer cells, which comprises culturing seed cells using CD4(+) T cells as feeder cells. The method for producing natural killer cells using T cells according to the present invention is a method capable of producing natural killer cells by selectively proliferating only natural killer cells from a small amount of seed cells while maintaining the high killing activity of the natural killer cells. The method of the present invention can produce a large amount of natural killer cells that can be frozen, and thus is useful for commercialization of cell therapeutic agents.Type: ApplicationFiled: November 25, 2015Publication date: November 9, 2017Applicants: GREEN CROSS LAB CELL CORPORATION, MOGAM INSTITUTE FOR BIOMEDICAL RESEARCHInventors: Bo Kyung MIN, Hana CHOI, Yu Kyeong HWANG
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Publication number: 20170320807Abstract: Method for preparing methyl formate and coproducing dimethyl ether by reacting a formaldehyde and methanol raw material (molar ratio range of 1:4 to 1:0.05) in a First Reaction Region at ranges from 50° C. to 100° C. with Catalyst A resulting in post-reaction material separated into Constituent I. Reacting Constituent I in a Second Reaction Region at ranges from 50° C. to 200° C. and from 0.1 MPa to 10 MPa with Catalyst B resulting in post-reaction material, which is separated into methyl formate, dimethyl ether and Constituent II. At least 1% of dimethyl ether is product, and recycling the rest to the First Reaction Region. Constituent II is recycled to the Second Reaction Region. Each component is gaseous phase and/or liquid phase, independently. The method shows long catalyst life, mild reaction condition, high utilization ratio of raw materials, continuous production and large scale industrial application potential.Type: ApplicationFiled: November 17, 2014Publication date: November 9, 2017Applicant: DALIAN INSTITUTE OF CHEMICAL PHYSICS, CHINESE ACADEMY OF SCIENCESInventors: Youming NI, Wenliang ZHU, Yong LIU, Hongchao LIU, Zhongmin LIU, Lina LI, Shiping LIU, Hui ZHOU
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Publication number: 20170321308Abstract: A magnetic powder is represented by general formula Fea(SibBcPd)100-a, and is produced with a gas atomization method. When the value of a and the value of b in the general formula is represented (a, b), (a, b) is within a predetermined region V1. Similarly, (a, c) and (a, d) are within a predetermined region, respectively. Whereby, it is possible to obtain an alloy magnetic powder which has high saturation magnetic flux density, low magnetic loss, and is spherical and easy to handle; and a magnetic core, a variety of coil components, and a motor can be realized by using the magnetic material.Type: ApplicationFiled: July 27, 2017Publication date: November 9, 2017Applicants: Murata Manufacturing Co., Ltd., Tohoku Magnet Institute Co., Ltd.Inventors: Toru TAKAHASHI, Kazuhiro HENMI, Akihiro MAKINO, Noriharu YODOSHI
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Publication number: 20170322110Abstract: A method for assessing the similarity between a power profile of a manufactured optic device and a nominal power profile upon which the power profile of the manufactured optic device is based. The method comprises measuring the power profile of manufactured optic device, identifying a region of interest from the measured power profile of manufactured optic device, and applying an offset to the measured power profile to substantially minimize a statistical quantifier for quantifying the similarity between the nominal power profile and the offset measured power profile. The method further comprises comparing the offset and the statistical quantifier to predefined quality control metrics, determining whether the measured power profile meets the predefined quality control metrics based, at least in part on the comparison.Type: ApplicationFiled: November 11, 2015Publication date: November 9, 2017Applicant: Brien Holden Vision InstituteInventors: Fabian Conrad, Ravi Chandra Bakaraju, Klaus Ehrmann
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Publication number: 20170323986Abstract: A PV module includes a transparent substrate, a first solar cell unit, a crystalline silicon solar cell, and a spacer. The first solar cell unit is between the transparent substrate and the crystalline silicon solar cell, and the first solar cell unit includes a first electrode, a second electrode, and a I-III-VI semiconductor layer between the first electrode and the second electrode. The I-III-VI semiconductor layer includes at least gallium (Ga) and sulfur (S), and the energy gap thereof is more than that of crystalline silicon. Moreover, the crystalline silicon solar cell and the first solar cell unit are separated by the spacer.Type: ApplicationFiled: July 19, 2017Publication date: November 9, 2017Applicant: Industrial Technology Research InstituteInventors: Chia-Wen Chang, Wei-Sheng Lin, Sung-Yu Chen, Hsi-Chuan Chen
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Publication number: 20170324436Abstract: Disclosed is a digital radio frequency (RF) signal receiving apparatus including an RF filter configured to convert multichannel wireless signals received through an antenna into signals available for digital sampling, an analog-to-digital converter configured to perform digital sampling on the multichannel wireless signals converted by the RF filter, a digital processor configured to perform filtering on each of the digital-sampled multichannel wireless signals into a plurality of bandwidth signals within a maximum bandwidth range simultaneously, and down-convert the filtered multichannel wireless signals to be signals in a baseband, a data formatter configured to format the down-converted signals based on an input/output data form of transmission interfaces, and a data transmitter configured to simultaneously transmit each of formatted signals to a corresponding processing platform.Type: ApplicationFiled: May 2, 2017Publication date: November 9, 2017Applicant: Electronics and Telecommunications Research InstituteInventors: Kanghee KIM, Sang-Won KIM, Ki Cheol TAE, Yong-Seok CHOI
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Publication number: 20170325312Abstract: A driving system and a driving method for a planar organic electroluminescent device are provided. The light emitting device has multiple light emitting elements, each having a first electrode and a second electrode. The driving system includes a first circuit, a second circuit, a driving module, and a ground circuit. The first circuit is connected to and provides a constant voltage to the first electrode of each light emitting element. The second circuit is connected to the second electrode of each light emitting element. The driving module is respectively connected to the second electrode of each light emitting element through the second circuit. The ground circuit is connected to the driving module and connects each light emitting element to the ground. The first electrodes of the light emitting elements are connected to one another, and the light emitting elements are driven by a constant current output by the driving module.Type: ApplicationFiled: September 9, 2016Publication date: November 9, 2017Applicant: Industrial Technology Research InstituteInventors: Hsuan-Yu Lin, Cheng-Yen Tsai, Sue-Chen Liao
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Publication number: 20170322127Abstract: A device for collecting contaminants from water samples is provided. The device includes a solid sorbent that collects and stores the contaminants from water samples. The solid sorbent is configured to allow for the preservation of the stored contaminants. The concentrations of the contaminants in the water samples are determined via analysis of the solid sorbent or via elution of the stored contaminants from the sorbent and analysis of the eluate solution.Type: ApplicationFiled: April 26, 2017Publication date: November 9, 2017Applicant: MASSACHUSETTS INSTITUTE OF TECHNOLOGYInventors: Emily Hanhauser, Michael Bono, Anastasios John Hart, Rohit Karnik, Xiaoyuan Ren, Chintan Vaishnav