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    • 1. 发明授权
    • Apparatus for wireless device charging using radio frequency (RF) energy and device to be wirelessly charged
    • 用于使用射频(RF)能量和装置进行无线充电的无线设备充电的装置
    • US09236756B2
    • 2016-01-12
    • US13481826
    • 2012-05-26
    • Jatupum JenwatanavetErnest T. OzakiZhen Ning Low
    • Jatupum JenwatanavetErnest T. OzakiZhen Ning Low
    • H02J7/00H02J7/02H02J5/00H02J17/00
    • H02J50/10H02J5/005H02J7/025H02J17/00H02J50/40
    • An apparatus for wireless charging using radio frequency (RF) energy includes a first charger portion having first and second charging areas. The first and second charging areas are located in a common plane, each having at least one coil for wirelessly charging a charge-receiving device placed in proximity thereto. The coils include respective windings, which are wound in opposing directions, each coil being connected in series, each coil configured to charge at least one charge-receiving device. A second charger portion has a third charging area having at least one coil including a winding for wirelessly charging a charge-receiving device placed in proximity to the third charging area, the coil in the third charging area being connected in series with the coils in the first and second charging areas, the third charging area located in a plane that is orthogonal to the plane of the first and second charging areas.
    • 一种使用射频(RF)能量的无线充电装置包括具有第一和第二充电区域的第一充电器部分。 第一和第二充电区域位于公共平面中,每个平面具有至少一个线圈,用于对放置在其附近的充电接收装置进行无线充电。 线圈包括以相反方向缠绕的各个绕组,每个线圈串联连接,每个线圈构造成对至少一个电荷接收装置充电。 第二充电器部分具有第三充电区域,其具有至少一个线圈,该线圈包括用于无线充电放置在第三充电区域附近的电荷接收装置的绕组,第三充电区域中的线圈与线圈中的线圈串联连接 第一和第二充电区域,第三充电区域位于与第一和第二充电区域的平面正交的平面中。
    • 7. 发明授权
    • Compact antenna system
    • 紧凑型天线系统
    • US09219302B2
    • 2015-12-22
    • US13594571
    • 2012-08-24
    • Jatupum Jenwatanavet
    • Jatupum Jenwatanavet
    • H01Q21/00H01Q1/24H01Q5/01H01Q1/38H01Q1/27H01Q9/42H01Q21/28H01Q5/371
    • H01Q1/273H01Q5/371H01Q9/42H01Q21/28
    • The various embodiments include multiple antenna system designs for use in smaller sized mobile computing devices where spatial isolation of antennas may not be feasible. The various embodiments include at least an embodiment first antenna having a first arm and a second arm. The first arm and the second arm are positioned proximate to one another in an intersecting perpendicular configuration. The at least first arm and second arm may be formed a plane that is laterally offset from a plane containing a printed circuit board operating as a ground plane. The at least first arm and second arm may also be positioned in a corner of the printed circuit board. Additional embodiments include a second monopole antenna formed in the same plane as the printed circuit board and having a feed contact positioned proximate to a feed and ground contact of the first antenna.
    • 各种实施例包括用于较小尺寸的移动计算设备的多天线系统设计,其中天线的空间隔离可能不可行。 各种实施例包括具有第一臂和第二臂的至少一个实施例的第一天线。 第一臂和第二臂以相交的垂直构型彼此靠近地定位。 所述至少第一臂和第二臂可以形成为从包含作为接地平面操作的印刷电路板的平面横向偏移的平面。 所述至少第一臂和第二臂也可以位于印刷电路板的角部中。 另外的实施例包括形成在与印刷电路板相同的平面中的第二单极天线,并且具有靠近第一天线的馈电和接地触点定位的馈电触点。
    • 8. 发明授权
    • Tri-band antenna
    • 三频天线
    • US07019696B2
    • 2006-03-28
    • US10818063
    • 2004-04-05
    • Jatupum Jenwatanavet
    • Jatupum Jenwatanavet
    • H01Q1/38H01Q1/36
    • H01Q9/40H01Q1/38H01Q5/357
    • A tri-band antenna and method for forming the same are disclosed. The antenna comprises a meander line radiator, a tapered line radiator coupled to the meander line radiator, a straight line radiator coupled to the tapered line radiator, and a dielectric layer. Exemplary meander line, tapered line, and straight line radiators are formed as microstrip structures overlying the dielectric layer surfaces. According to one embodiment, the meander line radiator is formed on the dielectric top surface and is connected to the tapered line radiator on the dielectric bottom surface through a via. The straight line radiator is connected to the tapered line radiator output on the bottom surface, and is unterminated. In one aspect, the combination of the meander line radiator, tapered line radiator, and straight line radiator forms effective electrical lengths corresponding to the cellular frequency band, the GPS frequency band, and the PCS frequency band.
    • 公开了一种三波段天线及其形成方法。 天线包括曲折线辐射器,耦合到曲折线辐射器的锥形线辐射器,耦合到锥形线辐射器的直线辐射器和电介质层。 形成示例性曲折线,锥形线和直线散热器作为覆盖在电介质层表面上的微带结构。 根据一个实施例,曲折线辐射器形成在电介质顶表面上,并且通过通孔连接到电介质底表面上的锥形线辐射器。 直线散热器连接到底面的锥形线散热器输出,并且是无端接的。 在一个方面,曲折线辐射器,锥形线辐射器和直线辐射器的组合形成对应于蜂窝频带,GPS频带和PCS频带的有效电长度。
    • 9. 发明授权
    • Method for an antenna ground plane extension
    • 天线接地平面扩展方法
    • US08692728B2
    • 2014-04-08
    • US13342095
    • 2012-01-01
    • Jatupum Jenwatanavet
    • Jatupum Jenwatanavet
    • H01Q1/12
    • H01Q1/48H01Q1/242H01Q1/273H01Q1/38H04M1/0277H05K3/4691H05K2201/10098Y10T29/49124
    • The various embodiments include methods and apparatus relating to manufacturing a PCB assembly. The layers in a stacked arrangement forming the PCB assembly include at least one RF ground layer that extends in a unitary manner beyond the plurality of stacked layers to form an antenna ground plane that spans the portion of the layer within the PCB assembly and the portion of the layer extending beyond the PCB assembly. The extended conductive layer forms a continuous ground plane element along a width of the PCB assembly. The antenna ground plane extension extending beyond the PCB assembly may be flexible, enabling it to be fit within or extend beyond the casing of a small device, such as a watch telephone.
    • 各种实施例包括与制造PCB组件相关的方法和装置。 形成PCB组件的堆叠布置中的层包括至少一个RF接地层,其以整体方式延伸超过多个堆叠层,以形成跨越PCB组件内的层的部分的天线接地平面, 该层延伸超出PCB组件。 延伸的导电层沿着PCB组件的宽度形成连续的接地平面元件。 延伸超过PCB组件的天线接地平面延伸部可以是柔性的,使得其能够适配在小型装置(例如手表电话)的外壳内或延伸超出小型装置的外壳。