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    • 3. 发明申请
    • Antennas for Near-Field and Non-Near-Field Communications
    • 近场和非近场通信天线
    • US20150303568A1
    • 2015-10-22
    • US14254604
    • 2014-04-16
    • Apple Inc.
    • Salih YargaMiroslav SamardzijaRobert W. Schlub
    • H01Q5/00
    • H01Q7/005H01Q1/2266H01Q1/243H01Q1/245H01Q5/321H01Q9/0421H01Q9/42H01Q21/28
    • An electronic device may be provided with antenna structures. The antenna structures may be coupled to non-near-field communications circuitry such as cellular telephone transceiver circuitry or wireless local area network circuitry. When operated at non-near-field communication frequencies, the antenna structures may be configured to serve as one or more inverted-F antennas or other antennas for supporting far field wireless communications. Proximity sensor circuitry and near-field communications circuitry may also be coupled to the antenna structures. When operated at proximity sensor frequencies, the antenna structures may be used in forming capacitive proximity sensor electrode structures. When operated at near-field communications frequencies, the antenna structures may be used in forming an inductive near-field communications loop antenna.
    • 电子设备可以设置有天线结构。 天线结构可以耦合到非近场通信电路,例如蜂窝电话收发机电路或无线局域网电路。 当在非近场通信频率下操作时,天线结构可以被配置为用作一个或多个倒F天线或用于支持远场无线通信的其它天线。 接近传感器电路和近场通信电路也可以耦合到天线结构。 当在接近传感器频率下操作时,天线结构可以用于形成电容式接近传感器电极结构。 当在近场通信频率下操作时,天线结构可用于形成感应式近场通信环形天线。
    • 4. 发明申请
    • Electronic Device With Antennas Isolated Using Phase Shifter
    • 使用移相器隔离天线的电子设备
    • US20150099474A1
    • 2015-04-09
    • US14050023
    • 2013-10-09
    • Apple Inc.
    • Salih YargaMiroslav SamardzijaQingxiang LiRobert W. Schlub
    • H01Q1/52H04B1/00
    • H04B1/0064H01Q1/2266H01Q1/243H01Q1/521H01Q5/371H01Q9/42H01Q21/28
    • An electronic device may be provided with a primary antenna that is used for transmitting and receiving signals and a secondary antenna that is used for receiving signals. The primary and secondary antennas may be used together in a diversity arrangement when receiving signals. The electronic device may have a transceiver. A phase shifter may be interposed between the transceiver and the secondary antenna. Control circuitry may select a communications band of interest for transmitting signals with the primary antenna. The control circuitry can adjust the phase shifter in real time based on which communications band of interest has been selected for transmission with the primary antenna. The phase shifter may impose a phase shift on signals carried between the secondary antenna and the transceiver that ensures that primary antenna efficiency degradation associated with the presence of the secondary antenna in the vicinity of the primary antenna is avoided.
    • 电子设备可以设置有用于发送和接收信号的主天线和用于接收信号的辅助天线。 当接收信号时,主和次天线可以以分集布置一起使用。 电子设备可以具有收发器。 可以在收发器和辅助天线之间插入移相器。 控制电路可以选择用于与主天线发射信号的感兴趣的通信频带。 控制电路可以基于已经选择感兴趣的通信频带来实时地调整移相器以与主天线进行传输。 移相器可以在辅助天线和收发器之间携带的信号上施加相移,从而确保与主天线附近的辅助天线的存在相关联的主要天线效率降低被避免。
    • 6. 发明申请
    • Electronic Device With Tunable Hybrid Antennas
    • 具有可调混合天线的电子装置
    • US20160336643A1
    • 2016-11-17
    • US14710377
    • 2015-05-12
    • Apple Inc.
    • Mattia PascoliniUmar AzadRodney A. Gomez AnguloErdinc IrciQingxiang LiMatthew A. MowHarish RajagopalanMiroslav SamardzijaMing-Ju Tsai
    • H01Q1/24H01Q9/04H01Q13/10
    • H01Q1/243H01Q5/328H01Q9/0421H01Q9/0442H01Q13/103H01Q21/30
    • An electronic device may have hybrid antennas that include slot antenna resonating elements formed from slots in a ground plane and planar inverted-F antenna resonating elements. The planar inverted-F antenna resonating elements may each have a planar metal member that overlaps one of the slots. The slot of each slot antenna resonating element may divide the ground plane into first and second portions. A return path and feed may be coupled in parallel between the planar metal member and the first portion of the ground plane. Tunable components such as tunable inductors may be used to tune the hybrid antennas. A tunable inductor may bridge the slot in hybrid antenna, may be coupled between the planar metal member of the planar inverted-F antenna resonating element and the ground plane, or multiple tunable inductors may bridge the slot on opposing sides of the planar inverted-F antenna resonating element.
    • 电子设备可以具有混合天线,其包括由接地平面中的槽形成的缝隙天线谐振元件和平面倒F天线谐振元件。 平面倒F天线谐振元件可各自具有与其中一个槽重叠的平面金属部件。 每个缝隙天线谐振元件的槽可以将接地平面分成第一和第二部分。 返回路径和进给可以平行耦合在平面金属构件和接地平面的第一部分之间。 诸如可调谐电感器的可调组件可用于调谐混合天线。 可调电感器可以桥接混合天线中的槽,可以耦合在平面倒F天线谐振元件的平面金属构件和接地平面之间,或者多个可调电感器可以将平面倒F的相对侧上的槽 天线谐振元件