Antenna with tunable high band parasitic element
    32.
    发明授权
    Antenna with tunable high band parasitic element 有权
    具有可调谐高频带寄生元件的天线

    公开(公告)号:US09337537B2

    公开(公告)日:2016-05-10

    申请号:US13890013

    申请日:2013-05-08

    Applicant: Apple Inc.

    CPC classification number: H01Q5/30 H01Q1/243 H01Q5/321 H01Q5/378 H01Q9/0421

    Abstract: Electronic devices may be provided that include radio-frequency transceiver circuitry and antennas. An antenna may be formed from an antenna resonating element and an antenna ground. The antenna resonating element may have a shorter portion that resonates at higher communications band frequencies and a longer portion that resonates at lower communications band frequencies. The resonating element may be formed from a peripheral conductive electronic device housing structure that is separated from the antenna ground by an opening. A parasitic monopole antenna resonating element or parasitic loop antenna resonating element may be located in the opening. Antenna tuning in the higher communications band may be implemented using an adjustable inductor in the parasitic element. Antenna tuning in the lower communications band may be implemented using an adjustable inductor that couples the antenna resonating element to the antenna ground.

    Abstract translation: 可以提供包括射频收发器电路和天线的电子设备。 天线可以由天线谐振元件和天线接地形成。 天线谐振元件可以具有在较高通信频带频率下谐振的较短部分和在较低通信频带频率下谐振的较长部分。 谐振元件可以由外部导电电子器件外壳结构形成,该外壳由天线与开口隔开。 寄生单极天线谐振元件或寄生环形天线谐振元件可以位于开口中。 可以使用寄生元件中的可调电感器来实现较高通信频带中的天线调谐。 可以使用将天线谐振元件耦合到天线地的可调节电感器来实现较低通信频带中的天线调谐。

    Electronic device with shared antenna structures and balun
    33.
    发明授权
    Electronic device with shared antenna structures and balun 有权
    具有共享天线结构和平衡 - 不平衡变换器的电子设备

    公开(公告)号:US09325080B2

    公开(公告)日:2016-04-26

    申请号:US14195130

    申请日:2014-03-03

    Applicant: Apple Inc.

    Abstract: An electronic device may be provided with shared antenna structures that can be used to form both a near-field-communications antenna such as a loop antenna and a non-near-field communications antenna such as an inverted-F antenna. The antenna structures may include conductive structures such as metal traces on printed circuits or other dielectric substrates, internal metal housing structures, or other conductive electronic device housing structures. A main resonating element arm may be separated from an antenna ground by an opening. A non-near-field communications antenna return path and antenna feed path may span the opening. A balun may have first and second electromagnetically coupled inductors. The second inductor may have terminals coupled across differential signal terminals in a near-field communications transceiver. The first inductor may form part of the near-field communications loop antenna.

    Abstract translation: 电子设备可以设置有共享天线结构,其可以用于形成诸如环形天线的近场通信天线和诸如倒F天线的非近场通信天线。 天线结构可以包括导电结构,例如印刷电路或其它电介质基板上的金属迹线,内部金属外壳结构或其它导电电子器件外壳结构。 主谐振元件臂可以通过开口与天线接地分开。 非近场通信天线返回路径和天线馈送路径可以跨越开口。 平衡 - 不平衡转换器可以具有第一和第二电磁耦合电感器。 第二电感器可以具有耦合在近场通信收发器中的差分信号端子上的端子。 第一电感器可以形成近场通信环形天线的一部分。

    Electronic device antenna with multiple feeds for covering three communications bands
    34.
    发明授权
    Electronic device antenna with multiple feeds for covering three communications bands 有权
    具有多个馈线的电子设备天线,用于覆盖三个通信频带

    公开(公告)号:US09276319B2

    公开(公告)日:2016-03-01

    申请号:US13889987

    申请日:2013-05-08

    Applicant: Apple Inc.

    Abstract: Electronic devices may be provided that include radio-frequency transceiver circuitry and antennas. An antenna may be formed from an antenna resonating element and an antenna ground. The antenna resonating element may have a shorter portion that resonates at higher communications band frequencies and a longer portion that resonates at lower communications band frequencies. An extended portion of the antenna ground may form an inverted-F antenna resonating element portion of the antenna resonating element. The antenna resonating element may be formed from a peripheral conductive electronic device housing structure that is separated from the antenna ground by an opening. A first antenna feed may be coupled between the peripheral conductive electronic device housing structures and the antenna ground across the opening. A second antenna feed may be coupled to the inverted-F antenna resonating element portion of the antenna resonating element.

    Abstract translation: 可以提供包括射频收发器电路和天线的电子设备。 天线可以由天线谐振元件和天线接地形成。 天线谐振元件可以具有在较高通信频带频率下谐振的较短部分和在较低通信频带频率下谐振的较长部分。 天线接地的延伸部分可以形成天线谐振元件的倒F天线谐振元件部分。 天线谐振元件可以由外部导电电子器件外壳结构形成,该外壳导电电子器件壳体结构通过开口与天线接地分开。 第一天线馈电可以耦合在外围导电电子器件外壳结构和穿过开口的天线接地之间。 第二天线馈送可以耦合到天线谐振元件的倒F天线谐振元件部分。

    Electronic Device With Shared Antenna Structures and Balun
    35.
    发明申请
    Electronic Device With Shared Antenna Structures and Balun 有权
    具有共享天线结构和平衡 - 不平衡变换器的电子设备

    公开(公告)号:US20150249292A1

    公开(公告)日:2015-09-03

    申请号:US14195130

    申请日:2014-03-03

    Applicant: Apple Inc.

    Abstract: An electronic device may be provided with shared antenna structures that can be used to form both a near-field-communications antenna such as a loop antenna and a non-near-field communications antenna such as an inverted-F antenna. The antenna structures may include conductive structures such as metal traces on printed circuits or other dielectric substrates, internal metal housing structures, or other conductive electronic device housing structures. A main resonating element arm may be separated from an antenna ground by an opening. A non-near-field communications antenna return path and antenna feed path may span the opening. A balun may have first and second electromagnetically coupled inductors. The second inductor may have terminals coupled across differential signal terminals in a near-field communications transceiver. The first inductor may form part of the near-field communications loop antenna.

    Abstract translation: 电子设备可以设置有共享天线结构,其可以用于形成诸如环形天线的近场通信天线和诸如倒F天线的非近场通信天线。 天线结构可以包括导电结构,例如印刷电路或其它电介质基板上的金属迹线,内部金属外壳结构或其它导电电子器件外壳结构。 主谐振元件臂可以通过开口与天线接地分开。 非近场通信天线返回路径和天线馈送路径可以跨越开口。 平衡 - 不平衡转换器可以具有第一和第二电磁耦合电感器。 第二电感器可以具有耦合在近场通信收发器中的差分信号端子上的端子。 第一电感器可以形成近场通信环形天线的一部分。

    Shared Antenna Structures for Near-Field Communications and Non-Near-Field Communications Circuitry
    36.
    发明申请
    Shared Antenna Structures for Near-Field Communications and Non-Near-Field Communications Circuitry 有权
    用于近场通信和非近场通信电路的共享天线结构

    公开(公告)号:US20140139380A1

    公开(公告)日:2014-05-22

    申请号:US13681138

    申请日:2012-11-19

    Applicant: APPLE INC.

    Abstract: Electronic devices may be provided that contain wireless communications circuitry. The wireless communications circuitry may include radio-frequency transceiver circuitry and antenna structures. The antenna structures may include conductive housing structures such as a peripheral conductive housing member. The antenna structures may be based on an inverted-F antenna resonating element or other types of antenna resonating element. An electronic device may have near field communications circuitry and non-near-field communications circuitry such as cellular telephone, satellite navigation system, or wireless local area network transceiver circuitry. Antenna structures may be configured to handle signals associated with the non-near-field communications circuitry. The antenna structures may also have portions that form a near field communications loop antenna for handling signals associated with the near field communications circuitry.

    Abstract translation: 可以提供包含无线通信电路的电子设备。 无线通信电路可以包括射频收发器电路和天线结构。 天线结构可以包括诸如外围导电外壳构件的导电外壳结构。 天线结构可以基于倒F天线谐振元件或其他类型的天线谐振元件。 电子设备可以具有近场通信电路和非近场通信电路,例如蜂窝电话,卫星导航系统或无线局域网收发器电路。 天线结构可以被配置为处理与非近场通信电路相关联的信号。 天线结构还可以具有形成用于处理与近场通信电路相关联的信号的近场通信环形天线的部分。

    Methods and Apparatus for Performing Coexistence Testing for Multi-Antenna Electronic Devices
    37.
    发明申请
    Methods and Apparatus for Performing Coexistence Testing for Multi-Antenna Electronic Devices 有权
    用于多天线电子设备共存测试的方法和装置

    公开(公告)号:US20140087668A1

    公开(公告)日:2014-03-27

    申请号:US13629414

    申请日:2012-09-27

    Applicant: APPLE INC

    CPC classification number: H04W24/08 H04B17/318 H04B17/345 H04W24/06

    Abstract: Radio frequency test systems for characterizing antenna performance in various radio coexistence scenarios are provided. In one suitable arrangement, a test system may be used to perform passive radio coexistence characterization. During passive radio coexistence characterization, at least one signal generator may be used to feed aggressor signals directly to antennas within an electronic device under test (DUT). The aggressor signals may generate undesired interference signals in a victim frequency band, which can then be received and analyzed using a spectrum analyzer. During active radio coexistence characterization, at least one radio communications emulator may be used to communicate with a DUT via a first test antenna. While the DUT is communicating with the at least one radio communications emulator, test signals may also be conveyed between DUT 10 and a second test antenna. Test signals conveyed through the second test antenna may be used in obtaining signal interference level measurements.

    Abstract translation: 提供了用于在各种无线电共存场景中表征天线性能的射频测试系统。 在一种合适的布置中,可以使用测试系统来执行被动无线电共存表征。 在被动无线电共存表征期间,可以使用至少一个信号发生器将攻击者信号直接馈送到被测电子设备(DUT)内的天线。 攻击者信号可能在受害频段中产生不期望的干扰信号,然后使用频谱分析仪接收和分析。 在有源无线电共存表征期间,可以使用至少一个无线电通信仿真器来经由第一测试天线与DUT进行通信。 当DUT正在与至少一个无线电通信仿真器进行通信时,也可以在DUT 10和第二测试天线之间传送测试信号。 通过第二测试天线传送的测试信号可用于获得信号干扰电平测量。

    Electronic device antennas having switchable feed terminals

    公开(公告)号:US11205834B2

    公开(公告)日:2021-12-21

    申请号:US16019322

    申请日:2018-06-26

    Applicant: Apple Inc.

    Abstract: An electronic device may include a conductive housing and an antenna. The antenna may include an arm formed from a first segment of the housing. A gap may separate the first segment from a second segment. The antenna may include a feed coupled to a transmission line having a signal conductor. The feed may include first and second positive terminals on the first segment and a third positive terminal on the second segment. An adjustable component may be coupled between the first and third terminals. The signal conductor may be coupled to the first terminal. A wide conductive trace may be coupled between the signal conductor and the second terminal. A switch may be interposed on the signal conductor. The second terminal may cover a cellular low band when the switch is open. The first terminal may cover the cellular low band and higher bands when the switch is closed.

    Multiple-Input and Multiple-Output Antenna Structures

    公开(公告)号:US20210044012A1

    公开(公告)日:2021-02-11

    申请号:US17079284

    申请日:2020-10-23

    Applicant: Apple Inc.

    Abstract: An electronic device may include a housing and four antennas at respective corners of the housing. Cellular telephone transceiver circuitry may concurrently convey signals at one or more of the same frequencies over one or more of the four antennas using a multiple-input multiple-output (MIMO) scheme. In order to isolate adjacent antennas, dielectric-filled openings may be formed in conductive walls of the housing to divide the walls into segments that are used to form resonating element arms for the antennas. If desired, first and second antennas may include resonating element arms formed from a wall without any gaps. The first and second antennas may include adjacent return paths. A magnetic field associated with currents for the first antenna may cancel out with a magnetic field associated with currents for the second antenna at the adjacent return paths, thereby serving to electromagnetically isolate the first and second antennas.

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