Patents by Inventor Ikmo Park
Ikmo Park has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 10594387Abstract: Disclosed is a solar cell integrated with a radio wave transceiving apparatus. A solar cell integrated with a radio wave transceiving apparatus according to an exemplary embodiment of the present disclosure may include a substrate; a solar cell in which a plurality of unit cells is periodically arranged on the upper surface of the substrate to form a metasurface; and a crossed dipole type radiator positioned on the solar cell.Type: GrantFiled: April 18, 2018Date of Patent: March 17, 2020Assignee: AJOU UNIVERSITY INDUSTRY-ACADEMIC COOPERATION FOUNDATIONInventors: Ikmo Park, Jaejin Lee, Ta Son Xuat
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Patent number: 10483652Abstract: A multi-beam antenna array system according to an exemplary embodiment of the present disclosure includes: a grounding surface; a plurality of multi-beam antennas which each includes a dielectric substrate and a radiating part formed on the dielectric substrate so as to radiate electromagnetic waves, and is disposed above the grounding surface so as to be spaced apart from each other; and a feed circuit which is formed on a lower portion of the grounding surface, and supplies electric power to the plurality of multi-beam antennas so that the electromagnetic waves are radiated in different directions from the plurality of multi-beam antennas.Type: GrantFiled: April 25, 2017Date of Patent: November 19, 2019Assignee: AJOU UNIVERSITY INDUSTRY-ACADEMIC COOPERATION FOUNDATIONInventors: Ikmo Park, Tran Huy Hung
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Publication number: 20180302149Abstract: Disclosed is a solar cell integrated with a radio wave transceiving apparatus. A solar cell integrated with a radio wave transceiving apparatus according to an exemplary embodiment of the present disclosure may include a substrate; a solar cell in which a plurality of unit cells is periodically arranged on the upper surface of the substrate to form a metasurface; and a crossed dipole type radiator positioned on the solar cell.Type: ApplicationFiled: April 18, 2018Publication date: October 18, 2018Applicant: AJOU UNIVERSITY INDUSTRY-ACADEMIC COOPERATION FOUNDATIONInventors: Ikmo PARK, Jaejin LEE, Ta Son XUAT
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Patent number: 9887464Abstract: Provided is a compact dipole antenna for a radio frequency identification (RFID) tag. The antenna includes a substrate, a dipole radiator including a first dipole element and a second dipole element, in each of which a first meander line formed in a meandering shape and an arm configured of a triangular pattern which is an end connected to the first meander line, are arranged to face each other, wherein the first and second dipole elements are arranged on the substrate to be perpendicular to each other, and an impedance matcher, which includes a second meander line formed in a meandering shape, is formed at a point at which the first and second dipole elements are perpendicular to each other, and performs an impedance matching between the antenna and an RFID tag chip through the second meander line.Type: GrantFiled: June 2, 2016Date of Patent: February 6, 2018Assignee: AJOU UNIVERSITY INDUSTRY-ACADEMIC COOPERATION FOUNDATIONInventors: Ikmo Park, Tran Huy Hung
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Patent number: 9831557Abstract: Provided is a broadband circularly polarized antenna using a metasurface. The antenna includes a lower substrate, an upper substrate stacked on the lower substrate, a radiator, which is located between the lower substrate and the upper substrate, has a rectangular patch shape in which two triangular removed parts are formed by removing opposite corners in a triangular shape, extends so as to have a predetermined width and length from one end of a hypotenuse of one triangular removed part of the triangular removed parts, and includes an extended strip having a feed hole formed therein, and the metasurface formed on an upper surface of the upper substrate and including a plurality of unit cells. The antenna has improved performance, such as a low profile, a broadband circular polarization characteristic, a high gain characteristic, and the like.Type: GrantFiled: June 2, 2016Date of Patent: November 28, 2017Assignee: AJOU UNIVERSITY INDUSTRY-ACADEMIC COOPERATION FOUNDATIONInventors: Ikmo Park, Son Xuat Ta
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Publication number: 20170317426Abstract: A multi-beam antenna array system according to an exemplary embodiment of the present disclosure includes: a grounding surface; a plurality of multi-beam antennas which each includes a dielectric substrate and a radiating part formed on the dielectric substrate so as to radiate electromagnetic waves, and is disposed above the grounding surface so as to be spaced apart from each other; and a feed circuit which is formed on a lower portion of the grounding surface, and supplies electric power to the plurality of multi-beam antennas so that the electromagnetic waves are radiated in different directions from the plurality of multi-beam antennas.Type: ApplicationFiled: April 25, 2017Publication date: November 2, 2017Applicant: AJOU UNIVERSITY INDUSTRY-ACADEMIC COOPERATION FOUNDATIONInventors: Ikmo PARK, Tran Huy HUNG
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Publication number: 20170117634Abstract: Provided is a compact dipole antenna for a radio frequency identification (RFID) tag. The antenna includes a substrate, a dipole radiator including a first dipole element and a second dipole element, in each of which a first meander line formed in a meandering shape and an arm configured of a triangular pattern which is an end connected to the first meander line, are arranged to face each other, wherein the first and second dipole elements are arranged on the substrate to be perpendicular to each other, and an impedance matcher, which includes a second meander line formed in a meandering shape, is formed at a point at which the first and second dipole elements are perpendicular to each other, and performs an impedance matching between the antenna and an RFID tag chip through the second meander line.Type: ApplicationFiled: June 2, 2016Publication date: April 27, 2017Applicant: AJOU UNIVERSITY INDUSTRY-ACADEMIC COOPERATION FOUNDATIONInventors: Ikmo PARK, Tran Huy HUNG
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Publication number: 20170117633Abstract: Provided is a broadband circularly polarized antenna using a metasurface. The antenna includes a lower substrate, an upper substrate stacked on the lower substrate, a radiator, which is located between the lower substrate and the upper substrate, has a rectangular patch shape in which two triangular removed parts are formed by removing opposite corners in a triangular shape, extends so as to have a predetermined width and length from one end of a hypotenuse of one triangular removed part of the triangular removed parts, and includes an extended strip having a feed hole formed therein, and the metasurface formed on an upper surface of the upper substrate and including a plurality of unit cells. The antenna has improved performance, such as a low profile, a broadband circular polarization characteristic, a high gain characteristic, and the like.Type: ApplicationFiled: June 2, 2016Publication date: April 27, 2017Applicant: AJOU UNIVERSITY INDUSTRY-ACADEMIC COOPERATION FOUNDATIONInventors: Ikmo PARK, Son Xuat TA
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Patent number: 8395550Abstract: The invention provides a micro strip antenna used for both a near-field region and a remote-field region. A micro strip antenna comprises: a first dielectric substrate; a main patch, having a triangle shape under the first dielectric substrate, configured to feed a radiation current; a second dielectric substrate over the first dielectric substrate; and a sub patch, formed under the second dielectric substrate, configured to desert a current from the main patch to provide a vertical magnetic field.Type: GrantFiled: February 26, 2010Date of Patent: March 12, 2013Assignee: LS Industrial Systems Co., Ltd.Inventors: Jeong Ki Ryoo, Jae Yul Choo, Chu Yong Lee, Hosung Choo, Ikmo Park
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Publication number: 20110193747Abstract: The invention provides a micro strip antenna used for both a near-field region and a remote-field region. A micro strip antenna comprises: a first dielectric substrate; a main patch, having a triangle shape under the first dielectric substrate, configured to feed a radiation current; a second dielectric substrate over the first dielectric substrate; and a sub patch, formed under the second dielectric substrate, configured to desert a current from the main patch to provide a vertical magnetic field.Type: ApplicationFiled: February 26, 2010Publication date: August 11, 2011Inventors: Jeong Ki Ryoo, Jae Yul Choo, Chu Yong Lee, Hosung Choo, Ikmo Park
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Publication number: 20110006950Abstract: Disclosed relates to a microstrip antenna, particularly, relates to a dual band microstrip antenna including two slots. The microstrip antenna includes a conductor plate having a first hole and a substrate having a microstrip patch where slots of two different sizes are positioned, the substrate being located on a top of the conductor plate.Type: ApplicationFiled: November 26, 2008Publication date: January 13, 2011Applicants: Electronics and Telecommunications Research Instit, Ajou University Industry-Academic Cooperation FounInventors: Ikmo Park, Byoungchul Kim, Sung Min Han, Joon Gyu Ryu, Dae Ig Chang, Ho Jin Lee
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Publication number: 20100156737Abstract: A radio frequency identification (RFID) tag antenna in a U shape, having constant near-isotropic characteristics in a broadband. The RFID tag antenna includes a dipole antenna in a U shape, including a plurality of first conducting wires having a first width and separated from and parallel to each other with a first gap and a second conducting wire having a second width and connecting the plurality of first conducting wires; and a feed unit connected to the second conducting wire and located between the plurality of first conducting wires. The RFID tag antenna further includes the dipole antenna in a U shape and the feed unit disposed in the dipole antenna in a U shape, thereby having the constant near-isotropic characteristics in the broadband.Type: ApplicationFiled: October 8, 2009Publication date: June 24, 2010Applicant: AJOU UNIVERSITY INDUSTRY COOPERATION FOUNDATIONInventors: Ikmo Park, Sangwoon Lee, Hosung Choo
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Patent number: 7268730Abstract: A small broadband monopole antenna having a perpendicular ground plane with an electromagnetically coupled feed is provided. The small broadband monopole antenna may be realized as a small antenna having a size of 0.085?0×0.085?0×0.085?0 by positioning a folded strip line under a shorted square disc. A resonance of the shorted square disc may be coupled to a resonance of the square folded strip line so as to form a wide bandwidth of about 36.6% of a central frequency of 2.313 GHz based on a VSWR?2. Also, rectangular slits may be inserted into the perpendicular ground plane to improve a distortion of a radiation pattern that forms on the perpendicular ground plane so as to reduce a backward radiation by 3 dBi or more. The small broadband monopole antenna exhibits a forward radiation pattern similar to that of a general monopole antenna and has a gain of about 2.6 dBi within a bandwidth.Type: GrantFiled: March 16, 2006Date of Patent: September 11, 2007Assignee: Samsung Electronics Co., Ltd.Inventors: Ikmo Park, Jong-ho Jung, Young-min Moon, Seong-soo Lee, Young-eil Kim
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Patent number: 7215288Abstract: A small broadband monopole antenna including a shorted patch and a probe with a strip line that are electromagnetically coupled with each other. The probe with a strip line has a length of about ?/4, where ? is a wavelength. The strip line may be one of a spiral type, a folded type and a helix type. A resonance frequency of the antenna can be adjusted by varying the inductance and the capacitance of the resonance circuits. In addition, a double-band antenna or a single-band antenna having a broad bandwidth can be designed in accordance with application purpose of the antenna.Type: GrantFiled: September 8, 2004Date of Patent: May 8, 2007Assignees: Samsung Electronics Co., Ltd., Ajou University Industry Cooperation FoundationInventors: Ikmo Park, Jong-Ho Jung, Young-Min Moon, Seong-Soo Lee, Young-Il Kim
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Publication number: 20060256015Abstract: A small broadband monopole antenna having a perpendicular ground plane with an electromagnetically coupled feed is provided. The small broadband monopole antenna may be realized as a small antenna having a size of 0.085?0×0.085?0×0.085?0 by positioning a folded strip line under a shorted square disc. A resonance of the shorted square disc may be coupled to a resonance of the square folded strip line so as to form a wide bandwidth of about 36.6% of a central frequency of 2.313 GHz based on a VSWR?2. Also, rectangular slits may be inserted into the perpendicular ground plane to improve a distortion of a radiation pattern that forms on the perpendicular ground plane so as to reduce a backward radiation by 3 dBi or more. The small broadband monopole antenna exhibits a forward radiation pattern similar to that of a general monopole antenna and has a gain of about 2.6 dBi within a bandwidth.Type: ApplicationFiled: March 16, 2006Publication date: November 16, 2006Inventors: Ikmo Park, Jong-ho Jung, Young-min Moon, Seong-soo Lee, Young-eil Kim
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Patent number: 6967631Abstract: Disclosed is a multiple meander strip monopole antenna, which can have a broad bandwidth and easily miniaturize the antenna by using a meander structure. A grounding conductor plate is coupled to the under face of a dielectric base plate. A radial cross-strip is disposed symmetrically at the center of the upper surface of the dielectric base plate. Each radiating member of a multiple radiator is connected to the end portion of each corresponding branch of the radial cross-strip and stands substantially perpendicular to the base plate. Each radiating member is composed of a vertical strip section having a tapered structure, in which its width is progressively widened upwardly for an impedance matching and at least one meander strip section connected integrally to the upper end of the vertical strip section.Type: GrantFiled: October 22, 2004Date of Patent: November 22, 2005Inventors: Ikmo Park, Yun Ho Lee
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Publication number: 20050248499Abstract: Disclosed is a multiple meander strip monopole antenna, which can have a broad bandwidth and easily miniaturize the antenna by using a meander structure. A grounding conductor plate is coupled to the under face of a dielectric base plate. A radial cross-strip is disposed symmetrically at the center of the upper surface of the dielectric base plate. Each radiating member of a multiple radiator is connected to the end portion of each corresponding branch of the radial cross-strip and stands substantially perpendicular to the base plate. Each radiating member is composed of a vertical strip section having a tapered structure, in which its width is progressively widened upwardly for an impedance matching and at least one meander strip section connected integrally to the upper end of the vertical strip section.Type: ApplicationFiled: October 22, 2004Publication date: November 10, 2005Inventors: Ikmo Park, Yun Ho Lee
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Publication number: 20050116867Abstract: A small broadband monopole antenna including a shorted patch and a probe with a strip line that are electromagnetically coupled with each other. The probe with a strip line has a length of about ?/4, where ? is a wavelength. The strip line may be one of a spiral type, a folded type and a helix type. A resonance frequency of the antenna can be adjusted by varying the inductance and the capacitance of the resonance circuits. In addition, a double-band antenna or a single-band antenna having a broad bandwidth can be designed in accordance with application purpose of the antenna.Type: ApplicationFiled: September 8, 2004Publication date: June 2, 2005Applicants: SAMSUNG ELECTRONICS CO., LTD., DAEWOO EDUCATIONAL FOUNDATIONInventors: Ikmo Park, Jong-Ho Jung, Young-Min Moon, Seong-Soo Lee, Young-Il Kim
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Patent number: 5786793Abstract: A compact antenna for circular polarization comprises a substrate of a dielectric material which is formed on its bottom surface with a ground plane and on its top surface with four planar rectangular patches of an electrically conductive material. The four patches are mounted in a coplanar relation on the top surface of the substrate, and arranged along four sides of a square pattern with the length of each patch angled at 90.degree. with respect to the length of the two adjacent patches. Each of the four patches is short-circuited to the ground plane at a shorting point located at a corner of the square pattern. A 90.degree. hybrid circuit is connected to directly feed only the two adjacent patches with a phase difference of 90.degree. to thereby define these two patches as active antenna elements which are fed with 0.degree. and 90.degree. signals, respectively.Type: GrantFiled: August 8, 1997Date of Patent: July 28, 1998Assignee: Matsushita Electric Works, Ltd.Inventors: Shuji Maeda, Tsutomu Kobayashi, Munehiko Itoh, Raj Mittra, Ikmo Park, Supriyo Dey