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公开(公告)号:US11923587B2
公开(公告)日:2024-03-05
申请号:US17433916
申请日:2019-02-25
Applicant: Huawei Technologies Co., Ltd.
Inventor: Alexander Khripkov , Ville Viikari , Resti Montoya Moreno , Juha Ala-Laurinaho , Janne Ilvonen , Jari Kristian Van Wonterghem
CPC classification number: H01P1/20363 , H01Q1/243 , H01Q1/521 , H01Q5/307 , H01Q21/28
Abstract: A transmission line for transmitting radiofrequency range current between a first conductive element and a second conductive element, the transmission line comprising a signal current line and at least one return current line, the signal current line and the return current line(s) extending in parallel. Each current line comprises at least one first segment and at least one second segment. Each first segment is partially aligned with at least one adjacent second segment, aligned segments being separated by a first dielectric gap, and each aligned first segment and second segment forming a capacitive coupling across the first dielectric gap. This solution enables a transmission line which provides only small capacitive loading onto its surroundings, and which therefore can extend, e.g., through an antenna element without significantly affecting the performance of the antenna element.
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公开(公告)号:US11855350B2
公开(公告)日:2023-12-26
申请号:US17678695
申请日:2022-02-23
Applicant: Huawei Technologies Co., Ltd.
Inventor: Jari Kristian Van Wonterghem , Alexander Khripkov , Dong Liu , Janne Ilvonen , Jian Ou , Ruiyuan Tian , Changnian Xu , Wei Huang , Zlatoljub Milosavljevic
CPC classification number: H01Q21/0025 , H01Q1/24 , H01Q21/00
Abstract: A millimeter-wave (mmWave) assembly (1) comprising a first mmWave module (2), a second mmWave module (3), and a connector (4) configured to releasably interconnect the first mmWave module (2) and the second mmWave module (3). The connector (4) comprises a first connector element (5) associated with the first mmWave module (2). The first mmWave module (2) comprises a first substrate (7) and an mmWave radio frequency integrated circuit (RFIC) (8), and the second mmWave module (3) comprises a second substrate (9) and an mmWave antenna array (10). The connector (4) is configured to transmit at least one signal between the mmWave RFIC (8) and the mmWave antenna array (10) when the first mmWave module (2) and the second mmWave module (3) are interconnected.
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公开(公告)号:US20230097704A1
公开(公告)日:2023-03-30
申请号:US17958065
申请日:2022-09-30
Applicant: HUAWEI TECHNOLOGIES CO., LTD.
Inventor: Vladimir Lenets , Ana Diaz Rubio , Francisco Cuesta Soto , Sergei Tretyakov , Xuchen Wang , Alexander Khripkov , Janne Ilvonen , Antti Karilainen
Abstract: The disclosure relates to suppressing surface waves in a communication device for a wireless communication system. The communication device includes a dielectric layer extending along a plane between a chassis and a glass layer, an antenna element configured to emit a radio wave, and a retroreflective structure extending inside the dielectric layer and being located adjacent to the antenna element, and where the retroreflective structure is configured to reflect the radio wave in an angle non-parallel to the plane. The retroreflective structure hence prevents parasitic channeling of the antenna energy into surface waves in and behind the glass layer and directs the radiation into the desired direction.
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公开(公告)号:US11296422B2
公开(公告)日:2022-04-05
申请号:US17237845
申请日:2021-04-22
Applicant: Huawei Technologies Co., Ltd.
Inventor: Jari Kristian Van Wonterghem , Alexander Khripkov , Dong Liu , Janne Ilvonen , Jian Ou , Ruiyuan Tian , Changnian Xu , Wei Huang , Zlatoljub Milosavljevic
Abstract: A millimeter-wave (mmWave) assembly (1) comprising a first mmWave module (2), a second mmWave module (3), and a connector (4) configured to releasably interconnect the first mmWave module (2) and the second mmWave module (3). The connector (4) comprises a first connector element (5) associated with the first mmWave module (2). The first mmWave module (2) comprises a first substrate (7) and an mmWave radio frequency integrated circuit (RFIC) (8), and the second mmWave module (3) comprises a second substrate (9) and an mmWave antenna array (10). The connector (4) is configured to transmit at least one signal between the mmWave RFIC (8) and the mmWave antenna array (10) when the first mmWave module (2) and the second mmWave module (3) are interconnected.
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公开(公告)号:US11228094B2
公开(公告)日:2022-01-18
申请号:US16979267
申请日:2018-04-05
Applicant: HUAWEI TECHNOLOGIES CO., LTD.
Inventor: Janne Ilvonen , Ruiyuan Tian , Changnian Xu , Li Dong
Abstract: An antenna arrangement for a user equipment is disclosed. The antenna arrangement comprises a first antenna element configured to operate at frequencies above a limit frequency, a second antenna element configured to operate at frequencies below the limit frequency, and a wave trap configured to resonate within a frequency band above the limit frequency. The wave trap is connected to the second antenna element.
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公开(公告)号:US20250062528A1
公开(公告)日:2025-02-20
申请号:US18820756
申请日:2024-08-30
Applicant: HUAWEI TECHNOLOGIES CO., LTD.
Inventor: Vladimir Lenets , Ana Diaz Rubio , Francisco Cuesta Soto , Sergei Tretyakov , Xuchen Wang , Alexander Khripkov , Janne Ilvonen , Antti Karilainen
Abstract: The disclosure relates to suppressing surface waves in a communication device for a wireless communication system. The communication device includes a dielectric layer extending along a plane between a chassis and a glass layer, an antenna element configured to emit a radio wave, and a retroreflective structure extending inside the dielectric layer and being located adjacent to the antenna element, and where the retroreflective structure is configured to reflect the radio wave in an angle non-parallel to the plane. The retroreflective structure hence prevents parasitic channeling of the antenna energy into surface waves in and behind the glass layer and directs the radiation into the desired direction.
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公开(公告)号:US12224504B2
公开(公告)日:2025-02-11
申请号:US17975253
申请日:2022-10-27
Applicant: HUAWEI TECHNOLOGIES CO., LTD.
Inventor: Janne Ilvonen , Jari-Matti Hannula , Riku Kormilainen , Anu Lehtovuori , Rasmus Luomaniemi , Ville Viikari , Alexander Khripkov , Joonas Krogerus
Abstract: An antenna arrangement for a communication device comprises a top conductive patch comprising at least a first coupling point and a second coupling point coupled to one or more feed circuits carrying a radio frequency (RF) signal to or from the top conductive patch. The RF signal has a first phase in the first coupling point and a second phase in the second coupling point. A first slot extends in the conductive patch between the first coupling point and the second coupling point. The antenna arrangement according enables a desired current distribution to be realized in the antenna in a controlled and systematic manner. A communication device includes such an antenna arrangement.
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公开(公告)号:US12009599B2
公开(公告)日:2024-06-11
申请号:US17310359
申请日:2019-01-30
Applicant: HUAWEI TECHNOLOGIES CO., LTD.
Inventor: Alexander Khripkov , Ville Viikari , Resti Montoya Moreno , Juha Ala-Laurinaho , Janne Ilvonen
CPC classification number: H01Q21/08 , H01Q9/0435 , H01Q13/106
Abstract: Embodiments of the present invention provide a dual-polarization antenna array that includes: a conductive structure having an aperture pattern including at least one first aperture and at least one second aperture, the first aperture(s) being directly interconnected with at least one second aperture. At least one first coupling element is connected to a first antenna feed line to excite a first electrical field having a first polarization. At least one second coupling element is connected to a second antenna feed line to excite a second electrical field having a second polarization. Each first coupling element is at least partially juxtaposed with one first aperture, allowing said first electrical field to be transmitted and/or received through said first aperture. Each second coupling element being at least partially juxtaposed with one second aperture, allowing said second electrical field to be transmitted and/or received through said second aperture.
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公开(公告)号:US11996629B2
公开(公告)日:2024-05-28
申请号:US17298397
申请日:2018-11-30
Applicant: Huawei Technologies Co., Ltd.
Inventor: Alexander Khripkov , Janne Ilvonen , Jari Kristian Van Wonterghem , Ruiyuan Tian
CPC classification number: H01Q3/46 , H01Q19/108 , H04M1/0266 , H04M1/0277
Abstract: A beam steering antenna structure comprising a printed circuit board and a conductive component, a first wall and a second wall of the printed circuit board being juxtaposed with a first surface of the conductive component, the second wall abutting and being galvanically connected to the first surface. A second surface of the conductive component extends at an angle from the first surface. A connecting surface extends between the first wall and the second wall such that a groove is formed, the groove being partially juxtaposed to the first surface. The groove comprises a first antenna array and a second antenna array transmitting or receiving, respectively, a first radiation beam and a second radiation beam having orthogonal polarizations. The second surface steers at least one of the first or second radiation beam in a direction away from or towards the connecting surface.
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公开(公告)号:US11881630B2
公开(公告)日:2024-01-23
申请号:US17420612
申请日:2019-01-03
Applicant: Huawei Technologies Co., Ltd.
Inventor: Alexander Khripkov , Janne Ilvonen , Ruiyuan Tian , Jari Kristian Van Wonterghem , Jian Ou , Dongxing Tu , Zlatoljub Milosavljevic , Hongting Luo
CPC classification number: H01Q3/26 , H04M1/0266 , H01Q1/288 , H01Q3/00 , H01Q3/24
Abstract: A beam steering antenna structure comprises a stacked antenna module and a first conductive component. The antenna module comprises a first substrate and a second substrate arranged superjacent such that main planes of the substrates extend in parallel. The first substrate comprises a first antenna array transmitting and receiving a first radiation beam. The second substrate comprises a second antenna array transmitting and receiving a second radiation beam. The first conductive component extends adjacent to the antenna module and is at least partially separated from the antenna module in a first direction perpendicular to the main plane of the conductive component. The antenna module is coupled to the conductive component by means of at least one of a galvanic, capacitive, or inductive coupling. At least one of the first and the second radiation beams is at least partially steered away from the other one by the first conductive component.
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