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公开(公告)号:US20170299812A1
公开(公告)日:2017-10-19
申请号:US15587468
申请日:2017-05-05
Applicant: HUAWEI TECHNOLOGIES CO., LTD.
CPC classification number: G02B6/14 , G02B6/12 , G02B6/124 , G02B6/125 , G02B6/126 , G02B6/13 , G02B6/2821 , G02B6/3885 , G02B2006/121 , H04B10/2581 , H04J14/04
Abstract: A mode converter provided in the present invention includes an input multimode waveguide, an output multimode waveguide, and a first conversion waveguide, where the input multimode waveguide is configured to receive a first signal which mode is a first mode; the first conversion waveguide has an input coupling waveguide with a first effective refractive index, and has an output coupling waveguide with a second effective refractive index: the first conversion waveguide is configured to perform, by using the input coupling waveguide, evanescent wave coupling on the first signal that is in the first mode and that is transmitted in the input multimode waveguide, and couple the first signal to the second mode of the output multimode waveguide by using the output coupling waveguide, so as to obtain the first signal in the second mode; and the output multimode waveguide is configured to output the first signal in the second mode.
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公开(公告)号:US20180059324A1
公开(公告)日:2018-03-01
申请号:US15795626
申请日:2017-10-27
Applicant: HUAWEI TECHNOLOGIES CO., LTD.
Inventor: Xin TU , Yuming WEI , Hongyan FU
CPC classification number: G02B6/2766 , G02B6/14 , G02B6/34
Abstract: A polarization rotator and an optical signal processing method are disclosed. A first transceiving waveguide includes a first end and a second end; a polarization rotation region waveguide includes a first waveguide and a second waveguide, where the first waveguide is located above the second waveguide, the first waveguide is connected to the second end of the first transceiving waveguide, the first waveguide and the second waveguide are non-linear profile waveguides; a mode conversion region waveguide includes a third waveguide and a fourth waveguide, where the third waveguide is connected to the second waveguide, the fourth waveguide is on a same horizontal plane as the third waveguide and the second waveguide, the third waveguide and the fourth waveguide are non-linear profile waveguides; and the second transceiving waveguide includes a third end and a fourth end, where the third end of the second transceiving waveguide is connected to the fourth waveguide.
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公开(公告)号:US20190137692A1
公开(公告)日:2019-05-09
申请号:US16238220
申请日:2019-01-02
Applicant: HUAWEI TECHNOLOGIES CO., LTD.
Inventor: Xin TU
Abstract: This application discloses an optical switch and an optical switching system. Both a first waveguide and a second waveguide of the optical switch are immovable relative to a substrate and are located in a first plane. A first deformable waveguide is also located in the first plane. A first section of the first deformable waveguide is fixed relative to the substrate, and a second section other than the first section can deform under control of a first actuator. When the first deformable waveguide is in a first state, the first deformable waveguide is optically decoupled from the first waveguide and the second waveguide, and the optical switch is in a through state. When the first deformable waveguide is in a second state, the first deformable waveguide is optically coupled to the first waveguide and the second waveguide, and the optical switch is in a drop state.
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公开(公告)号:US20170227711A1
公开(公告)日:2017-08-10
申请号:US15495583
申请日:2017-04-24
Applicant: Huawei Technologies Co., Ltd.
Inventor: Xin TU , Dongyu GENG , Fei ZHAO
CPC classification number: G02B6/12007 , G02B6/12 , G02B6/125 , G02B6/14 , G02B6/29331 , G02B6/30 , H04J14/04
Abstract: The present invention discloses a mode multiplexer/demultiplexer and a switching node. The mode multiplexer/demultiplexer includes a multi-mode optical waveguide, a first transmission optical waveguide, and a second transmission optical waveguide. The multi-mode optical waveguide includes a first mode channel and a second mode channel. The first transmission optical waveguide includes a first coupling region that includes a first fundamental-mode channel, and the first fundamental-mode channel performs optical mode coupling with the first mode channel in the multi-mode optical waveguide. The second transmission optical waveguide includes a second coupling region that includes a second fundamental-mode channel, and the second fundamental-mode channel performs optical mode coupling with the second mode channel in the multi-mode optical waveguide. An effective refractive index of a fundamental-mode optical signal in the first coupling region is different from an effective refractive index of the same fundamental-mode optical signal in the second coupling region.
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公开(公告)号:US20190296850A1
公开(公告)日:2019-09-26
申请号:US16441658
申请日:2019-06-14
Applicant: HUAWEI TECHNOLOGIES CO., LTD.
Inventor: Ruiqiang JI , Xin TU , Yanbo LI , Shengmeng FU
Abstract: Examples of a polarization independent optical device are described. One example polarization independent optical device includes an input/output preprocessing optical path and M add/drop optical paths. Any add/drop optical path can be configured to drop a first QTE and a first PTE that meet a resonance condition of a microring included in the add/drop optical path such that each add/drop optical path can be configured to drop a desired optical signal. Any add/drop optical path can also be configured to transmit an input optical signal to the input/output preprocessing optical path. Therefore, when any of the M add/drop optical paths is configured to drop a desired optical signal, another add/drop optical path can be configured to add a desired optical signal.
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公开(公告)号:US20190235172A1
公开(公告)日:2019-08-01
申请号:US16382206
申请日:2019-04-12
Applicant: HUAWEI TECHNOLOGIES CO., LTD.
Inventor: Xin TU
Abstract: Embodiments of the present invention relate to a microring resonator control method and apparatus. The method includes: receiving an instruction, where the instruction is used to configure an operating wavelength of a microring resonator; determining whether the operating wavelength of the microring resonator is less than or equal to a center wavelength of a channel spectrum; and when the operating wavelength of the microring resonator is less than or equal to the center wavelength of the channel spectrum, configuring thermode power of the microring resonator based on a spacing between the operating wavelength and a first wavelength; or when the operating wavelength of the microring resonator is greater than the center wavelength of the channel spectrum, configuring thermode power of the microring resonator based on a spacing between the operating wavelength and a second wavelength.
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公开(公告)号:US20190170946A1
公开(公告)日:2019-06-06
申请号:US16262585
申请日:2019-01-30
Applicant: HUAWEI TECHNOLOGIES CO., LTD.
Inventor: Xin TU
Abstract: This application discloses an optical switch and an optical switching system. The optical switch includes a first waveguide, a second waveguide, and a first movable waveguide. The first waveguide and the second waveguide are immovable relative to a substrate. The first waveguide and the second waveguide are located in a first plane, and the first waveguide and the second waveguide do not intersect. The first movable waveguide is movable relative to the substrate. If the first movable waveguide is at a first location, the first movable waveguide is optically decoupled from the first waveguide and the second waveguide, and the optical switch is in a through state. If the first movable waveguide is at a second location, the first movable waveguide is optically coupled to the first waveguide and the second waveguide, and the optical switch is in a drop state.
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公开(公告)号:US20190154921A1
公开(公告)日:2019-05-23
申请号:US16251172
申请日:2019-01-18
Applicant: HUAWEI TECHNOLOGIES CO., LTD.
Inventor: Jiejiang XING , Xin TU , Ming LI
CPC classification number: G02B6/3502 , G02B6/35 , G02B6/3508 , G02B6/3536 , G02B6/354 , G02B6/3584
Abstract: This application discloses an optical switch and an optical switching system. The optical switch includes a first waveguide, a second waveguide, and a movable waveguide, the first waveguide and the second waveguide are immovable relative to a substrate and are located in a plane, and an optical coupling relationship exists between the first waveguide and the second waveguide; the movable waveguide is movable relative to the substrate, and the movable waveguide is optically coupled to an input section or an output section of the first waveguide; when the movable waveguide is located at a first location, the movable waveguide is optically decoupled from the first waveguide, and the optical switch is in a through state; and when the movable waveguide is located at a second location, the movable waveguide is optically coupled to the input section or the output section, and the optical switch is in a drop state.
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