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    • 11. 发明申请
    • STRUCTURES FOR FORMING CONDUCTIVE PATHS IN ANTENNAS AND OTHER ELECTRONIC DEVICE STRUCTURES
    • 在天线和其他电子设备结构中形成导电波纹的结构
    • US20120176279A1
    • 2012-07-12
    • US13024300
    • 2011-02-09
    • Nicholas G. L. MerzDaniel W. JarvisSawyer I. Cohen
    • Nicholas G. L. MerzDaniel W. JarvisSawyer I. Cohen
    • H01Q1/12H02G3/00
    • H01Q1/50H01Q1/243H01Q1/48H01Q9/42H01Q13/10
    • Electronic devices may be provided that contain conductive paths. A conductive path may be formed from an elongated metal member that extends across a dielectric gap in an antenna. The antenna may be formed from conductive structures that form an antenna ground and conductive structures that are part of a peripheral conductive housing member in the electronic device. The gap may separate the peripheral conductive housing member from the conductive structures. A conductive path may also be formed using one or more springs. A spring may be welded to a conductive member and may have prongs that press against an additional conductive member when the spring is compressed. The prongs may have narrowed tips, curved shapes, and burrs that help form a satisfactory electrical contact between the spring prongs and the additional conductive member.
    • 可以提供包含导电路径的电子设备。 导电路径可以由延伸穿过天线中的电介质间隙的细长金属构件形成。 天线可以由形成天线接地的导电结构和作为电子设备中的外围导电外壳构件的一部分的导电结构形成。 间隙可以将外围导电壳体构件与导电结构分离。 也可以使用一个或多个弹簧形成导电路径。 弹簧可以焊接到导电构件上,并且当弹簧被压缩时可以具有压靠附加的导电构件的插脚。 尖头可能具有变窄的尖端,弯曲形状和毛刺,这有助于在弹簧插脚和附加导电构件之间形成令人满意的电接触。
    • 16. 发明授权
    • Component mounting structures with breakaway support tabs
    • 具有分离支撑片的组件安装结构
    • US08988890B2
    • 2015-03-24
    • US13598308
    • 2012-08-29
    • Michael B. WittenbergJared M. KoleSawyer I. CohenShayan Malek
    • Michael B. WittenbergJared M. KoleSawyer I. CohenShayan Malek
    • H05K7/00
    • H05K3/341H05K3/0052H05K2201/0394H05K2201/09063H05K2201/1031H05K2201/1034Y02P70/611Y02P70/613Y10T29/4913Y10T29/49144
    • Components may be mounted to printed circuit substrates using solder. A breakaway support tab may be detachably connected to a component and may help prevent the component from shifting or toppling over during reflow operations. The component and breakaway support tab may be formed from sheet metal. The interface that links the component to the breakaway support tab may be perforated or half sheared to allow the breakaway support tab to be easily separated from the component following reflow operations. The breakaway support tab may be fixed in place during reflow operations by mechanically coupling the breakaway support tab to a fixture or by mounting the breakaway support tab to an unused portion of a panel of printed circuit substrates. A breakaway support tab may be mechanically coupled between two components on a printed circuit substrate and may be used to maintain a distance between the components during reflow operations.
    • 组件可以使用焊料安装到印刷电路基板上。 分离的支撑片可以可拆卸地连接到部件,并且可以有助于防止在回流操作期间部件移动或翻倒。 部件和分离支撑片可以由金属片形成。 将组件连接到分离支撑片的接口可以是穿孔的或半剪切的,以允许分离支撑片在回流操作之后容易地与部件分离。 分离式支撑片可以在回流操作期间通过将分离支撑片机械地联接到固定装置或通过将分离的支撑片安装到印刷电路板的面板的未使用部分来固定到位。 分离的支撑片可以机械耦合在印刷电路基板上的两个部件之间,并且可以用于在回流操作期间保持部件之间的距离。
    • 18. 发明申请
    • SPEAKER MAGNET THERMAL MANAGEMENT
    • 扬声器磁控管理
    • US20130089231A1
    • 2013-04-11
    • US13253900
    • 2011-10-05
    • Christopher Raymond WilkRuchir M. DaveSawyer I. Cohen
    • Christopher Raymond WilkRuchir M. DaveSawyer I. Cohen
    • H04R1/00H04R31/00
    • H04M1/03H04R9/022
    • In one embodiment, a mobile device including a magnet unit that is thermally coupled to the heat sink portion of a housing of the mobile device is disclosed. The mobile device comprises a speaker driver that includes a magnet unit, a housing having a heat sink portion that is made of a material having a high thermal conductivity, and a thermal component. The heat sink portion has a first face that is coupled to the speaker driver and a second face that is exposed to the exterior of the mobile device. The thermal component binds the speaker driver to the first face of the heat sink portion to create a cooling path from the magnet unit to the exterior of the mobile device. Other embodiments are also described.
    • 在一个实施例中,公开了一种移动设备,其包括热耦合到移动设备的壳体的散热部分的磁体单元。 移动装置包括扬声器驱动器,其包括磁体单元,壳体,具有由具有高导热性的材料制成的散热部分和热部件。 散热部分具有耦合到扬声器驱动器的第一面和暴露于移动装置的外部的第二面。 扬声器驱动器将扬声器驱动器结合到散热器部分的第一面以形成从磁体单元到移动设备外部的冷却路径。 还描述了其它实施例。
    • 20. 发明授权
    • Speaker magnet thermal management
    • 扬声器磁体热管理
    • US08682020B2
    • 2014-03-25
    • US13253900
    • 2011-10-05
    • Christopher Raymond WilkRuchir M. DaveSawyer I. Cohen
    • Christopher Raymond WilkRuchir M. DaveSawyer I. Cohen
    • H04R1/02H04R9/06
    • H04M1/03H04R9/022
    • In one embodiment, a mobile device including a magnet unit that is thermally coupled to the heat sink portion of a housing of the mobile device is disclosed. The mobile device comprises a speaker driver that includes a magnet unit, a housing having a heat sink portion that is made of a material having a high thermal conductivity, and a thermal component. The heat sink portion has a first face that is coupled to the speaker driver and a second face that is exposed to the exterior of the mobile device. The thermal component binds the speaker driver to the first face of the heat sink portion to create a cooling path from the magnet unit to the exterior of the mobile device. Other embodiments are also described.
    • 在一个实施例中,公开了一种移动设备,其包括热耦合到移动设备的壳体的散热部分的磁体单元。 移动装置包括扬声器驱动器,其包括磁体单元,壳体,具有由具有高导热性的材料制成的散热部分和热部件。 散热部分具有耦合到扬声器驱动器的第一面和暴露于移动装置的外部的第二面。 扬声器驱动器将扬声器驱动器结合到散热器部分的第一面以形成从磁体单元到移动设备外部的冷却路径。 还描述了其它实施例。