Wireless devices having antenna isolation structures

    公开(公告)号:US11594815B2

    公开(公告)日:2023-02-28

    申请号:US17032823

    申请日:2020-09-25

    Applicant: Apple Inc.

    Abstract: An electronic device may be provided with wireless circuitry and a housing with upper and lower ends. The upper end may include first and second inverted-F antennas formed from portions of conductive peripheral housing structures separated from an antenna ground by a slot. The upper end may include an open slot antenna formed from a portion of the slot. The upper end may include an additional inverted-F antenna that overlap the slot. A parasitic element may be disposed between the open slot antenna and the additional inverted-F antenna and coupled to the antenna ground at a proximal end. A tuning component may be coupled between the parasitic element and the antenna ground.

    Electronic Device With Peripheral Hybrid Antenna
    7.
    发明申请
    Electronic Device With Peripheral Hybrid Antenna 有权
    具有外围混合天线的电子设备

    公开(公告)号:US20160308271A1

    公开(公告)日:2016-10-20

    申请号:US14691304

    申请日:2015-04-20

    Applicant: Apple Inc.

    Abstract: An electronic device may have wireless circuitry with antennas. An antenna resonating element arm for an antenna may be formed from peripheral conductive structures running along the edges of a device housing. Elongated conductive members may longitudinally divide openings between the peripheral conductive housing structures and the ground. The elongated conductive members may extend from an internal ground to outer ends of the elongated conductive members that are located adjacent to the gaps. Transmission lines may extend along the elongated conductive members to antenna feeds at the outer ends. The elongated conductive members may form open slots that serve as slot antenna resonating elements for the antenna.

    Abstract translation: 电子设备可以具有带天线的无线电路。 用于天线的天线谐振元件臂可以由沿设备壳体的边缘延伸的周边导电结构形成。 细长的导电构件可以在周边导电外壳结构和地面之间纵向分开开口。 细长导电构件可以从位于邻近间隙的细长导电构件的内部地面延伸到外端。 传输线可以沿着细长导电构件延伸到外端处的天线馈电。 细长导电构件可以形成用作天线的缝隙天线谐振元件的开放狭缝。

    Electronic Device Antenna Carrier Coupled to Printed Circuit and Housing Structures
    8.
    发明申请
    Electronic Device Antenna Carrier Coupled to Printed Circuit and Housing Structures 有权
    耦合到印刷电路和外壳结构的电子装置天线载体

    公开(公告)号:US20150311579A1

    公开(公告)日:2015-10-29

    申请号:US14262486

    申请日:2014-04-25

    Applicant: Apple Inc.

    CPC classification number: H01Q1/243 H01Q9/42 H01Q13/10

    Abstract: Electronic device antenna structures may include first and second antennas. A housing may have a periphery that is surrounded by peripheral conductive structures such as a segmented peripheral metal member. A segment of the peripheral metal member may be separated from a ground by an opening. An antenna feed for the first antenna may have a positive antenna terminal coupled to the peripheral metal member and a ground terminal coupled to the ground. A return path for the first antenna may span the opening in parallel with the antenna feed. A plastic carrier may be mounted to a printed circuit and a metal housing structure using screws. The plastic carrier may support an antenna resonating element for the second antenna and may support the return path for the first antenna. The screws may short metal structures on the plastic carrier to the metal structures and traces on the printed circuit.

    Abstract translation: 电子设备天线结构可以包括第一和第二天线。 壳体可以具有被诸如分段的外围金属构件的外围导电结构包围的周边。 外围金属构件的一段可以通过开口与地面分离。 用于第一天线的天线馈电可以具有耦合到外围金属构件的正天线端子和耦合到地的接地端子。 第一天线的返回路径可以与天线馈线平行地跨越开口。 塑料载体可以使用螺钉安装到印刷电路和金属外壳结构。 塑料载体可以支撑用于第二天线的天线谐振元件,并且可以支撑用于第一天线的返回路径。 螺钉可能使塑料载体上的金属结构短于印刷电路上的金属结构和迹线。

    Wireless devices having co-existing antenna structures

    公开(公告)号:US12062835B2

    公开(公告)日:2024-08-13

    申请号:US17222557

    申请日:2021-04-05

    Applicant: Apple Inc.

    CPC classification number: H01Q1/243 H01Q5/35 H01Q13/10

    Abstract: An electronic device may be provided with first, second, and third antennas and a dock flex. A first feed terminal for the first antenna may be coupled to a second feed terminal for the second antenna over a first path. The first path may be coupled to ground over a second path. Tuning components may be interposed on the first and second paths. The third antenna may be patterned on a first portion of the dock flex. Front end components for the first antenna may be mounted to a second portion of the dock flex. The first and second portions may extend from a tail of the dock flex. The tail may be wrapped around a plastic support block to hold the second portion over the first portion. The plastic support block may have a snap hook clip that holds the second portion in place.

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