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    • 3. 发明授权
    • Dual-band antenna and related wireless communication apparatus
    • 双频天线及相关无线通讯设备
    • US08669914B2
    • 2014-03-11
    • US13096436
    • 2011-04-28
    • Bo PanChing-Wei Ling
    • Bo PanChing-Wei Ling
    • H01Q11/00
    • H01Q21/30H01Q1/243H01Q1/362H01Q1/48H01Q1/521H01Q9/40H01Q11/08H01Q21/28
    • A dual-band antenna is disclosed including: a first antenna comprising: a first radiating portion including a plurality of separated radiating strips positioned on a first plane of a circuit board; a second radiating portion including a plurality of separated radiating strips positioned on a second plane of the circuit board; and a plurality of vias for coupling the plurality of radiating strips on the first plane with the plurality of radiating strips on the second plane to form a spiral radiating body; a second antenna having a radiating plane coupled with the first radiating portion or the second radiating portion; a shorting element coupled with the radiating plane and shared by the first and second antennas; and a feeding element coupled with the radiating plane and shared by the first and second antennas; wherein the width of part of the radiating plane gradually increases along a direction.
    • 公开了一种双频带天线,包括:第一天线,包括:第一辐射部分,包括位于电路板的第一平面上的多个分离的辐射带; 第二辐射部分,其包括位于所述电路板的第二平面上的多个分离的辐射带; 以及多个通孔,用于将所述第一平面上的所述多个辐射条与所述第二平面上的所述多个辐射条耦合以形成螺旋辐射体; 第二天线,其具有与所述第一辐射部分或所述第二辐射部分耦合的辐射面; 与辐射平面耦合并由第一和第二天线共享的短路元件; 以及与所述辐射平面耦合并由所述第一和第二天线共享的馈电元件; 其中所述辐射面的一部分的宽度沿着一个方向逐渐增加。
    • 4. 发明授权
    • Signal processing circuit and method thereof
    • 信号处理电路及其方法
    • US08515365B2
    • 2013-08-20
    • US13025645
    • 2011-02-11
    • Bo PanChing-Wei Ling
    • Bo PanChing-Wei Ling
    • H04B1/04
    • H04B17/11
    • A signal processing circuit is disclosed, comprising a first node for coupling with a first antenna, a second node for coupling with a second antenna, a third node for receiving a first signal from a transmitting circuit, a fourth node for coupling with a receiving circuit, a signal dividing circuit, a phase shifting circuit, and a signal combining circuit. The signal dividing circuit divides the first signal into a second signal and a third signal, and transmits the second signal to the first antenna. The phase shifting circuit shifts the phase of the third signal to generate a fourth signal for canceling at least part of a coupled signal between the third node and the fourth node. The signal combining circuit combines the fourth signal and a fifth signal received from the second antenna, and transmits the combined signal to the receiving circuit.
    • 公开了一种信号处理电路,包括用于与第一天线耦合的第一节点,用于与第二天线耦合的第二节点,用于从发射电路接收第一信号的第三节点,用于与接收电路耦合的第四节点 信号分频电路,移相电路和信号组合电路。 信号分割电路将第一信号分为第二信号和第三信号,并将第二信号发送到第一天线。 移相电路使第三信号的相位移位以产生用于抵消第三节点和第四节点之间的耦合信号的至少一部分的第四信号。 信号组合电路组合第四信号和从第二天线接收的第五信号,并将组合的信号发送到接收电路。
    • 5. 发明授权
    • High gain multiple planar reflector ultra-wide band (UWB) antenna structure
    • 高增益多平面反射器超宽带(UWB)天线结构
    • US08207904B2
    • 2012-06-26
    • US12488509
    • 2009-06-19
    • Bo PanFrederic BattagliaKuangYu LiRan-Hong YanKuan Leok Sun
    • Bo PanFrederic BattagliaKuangYu LiRan-Hong YanKuan Leok Sun
    • H01Q9/28
    • H01Q1/38H01Q5/25H01Q19/10
    • Multiple out-of-plane planar reflectors can be used to build a receive/transmit high-gain directional antenna. The driver portion and the first reflector of the antenna are formed within a metal layer of a PWB. A plurality of sets of reflector plates can be placed on the PWB, on a non-conductive low-dielectric constant material coating both opposing planar surfaces of the PWB, or on the opposing sidewalls of the product housing unit. The metal layer in the PWB is placed between the reflector plates. The plates can have either a parallel or non-parallel orientation to each another. This greatly increase the received power and thus increases the operating range of a low-power UWB system, as well as significantly improves wireless data transmission throughput. This antenna is applicable for USB communications systems.
    • 可以使用多个平面外平面反射器来构建接收/发射高增益定向天线。 天线的驱动器部分和第一反射器形成在PWB的金属层内。 可以在PWB上放置多组反射板,在不导电的低介电常数材料上涂覆PWB的两个相对的平坦表面,或者在产品外壳单元的相对的侧壁上。 PWB中的金属层位于反射板之间。 板可以具有彼此平行或非平行取向。 这大大增加了接收功率,从而增加了低功耗UWB系统的工作范围,并显着提高了无线数据传输吞吐量。 该天线适用于USB通信系统。
    • 6. 发明授权
    • Dual-band antenna and communication device using the same
    • 双频天线和通信设备使用相同
    • US08933843B2
    • 2015-01-13
    • US12957702
    • 2010-12-01
    • Bo PanChing-Wei Ling
    • Bo PanChing-Wei Ling
    • H01Q1/24H01Q5/00H01Q9/04
    • H01Q1/243H01Q5/357H01Q9/0471
    • A dual-band antenna is disclosed, comprising a radiating body, a shorting element, and a feeding element. The radiating body comprises a plurality of radiating portions located in a first, a second, a third, and a fourth planes, respectively. The shorting element and the feeding element both extend from the radiating body and are located in the first plane. The radiating portions located in the first, the second, and the third planes transmit and/or receive signals in a first frequency band. The radiating portions located in the first, the second, and the fourth planes transmit and/or receive signals in a second frequency band. A first angle between the first and the second planes, a second angle between the second and the third planes, and a third angle between the second and the fourth planes range between 80 degrees to 100 degrees.
    • 公开了一种双频天线,包括辐射体,短路元件和馈电元件。 辐射体包括分别位于第一,第二,第三和第四平面中的多个辐射部分。 短路元件和馈电元件都从辐射体延伸并且位于第一平面中。 位于第一,第二和第三平面中的辐射部分在第一频带中发射和/或接收信号。 位于第一,第二和第四平面中的辐射部分在第二频带中发射和/或接收信号。 第一和第二平面之间的第一角度,第二和第三平面之间的第二角度以及第二和第四平面之间的第三角度在80度至100度之间的范围内。