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    • 1. 发明授权
    • Multiband antenna with grounded element
    • 具有接地元件的多频带天线
    • US09118109B2
    • 2015-08-25
    • US12971444
    • 2010-12-17
    • Sung-Hoon OhThomas LiuThorsten Hertel
    • Sung-Hoon OhThomas LiuThorsten Hertel
    • H01Q1/24H01Q9/42H01Q5/371
    • H01Q1/243H01Q5/371H01Q9/42
    • Various embodiments of an antenna structure for mobile devices are described. In one or more embodiments a multi-band antenna includes a grounded parasitic element. In some embodiments, a high band arm is provided, and is fed off-center, so that the resonating arms are not symmetrical in length. In some embodiments, a coupled ground resonator is included to add a differential resonating mode. A ground leg may be included to offer facilitate impedance and inductance matching. The combination of these structures creates four distinct resonance modes for the high band, which creases a wide effective bandwidth for the disclosed antenna. Other embodiments are described and claimed.
    • 描述用于移动设备的天线结构的各种实施例。 在一个或多个实施例中,多频带天线包括接地寄生元件。 在一些实施例中,提供高带臂,并且偏心地进给,使得谐振臂的长度不对称。 在一些实施例中,包括耦合的接地谐振器以添加差分谐振模式。 可以包括地脚以提供阻抗和电感匹配。 这些结构的组合为高频带产生了四种不同的谐振模式,这为所公开的天线带来了广泛的有效带宽。 描述和要求保护其他实施例。
    • 4. 发明授权
    • Method and apparatus for transmit beamformer system
    • 发射波束形成系统的方法和装置
    • US06363033B1
    • 2002-03-26
    • US09649813
    • 2000-08-28
    • Christopher R. ColeAlbert GeeThomas Liu
    • Christopher R. ColeAlbert GeeThomas Liu
    • G03B4206
    • G10K11/345G01S7/52017G01S7/52026G01S7/52028G01S7/52046G01S7/52049G01S7/52066G01S7/5209G01S7/52095G01S15/8915G01S15/8979G01S15/8988G10K11/341
    • A digital transmit beamformer system with multiple beam transmit capability has a plurality of multi-channel transmitters, each channel with a source of sampled, complex-valued initial waveform information representative of the ultimate desired waveform to be applied to one or more corresponding transducer elements for each beam. Each multi-channel transmitter applies beamformation delays and apodization to each channel's respective initial waveform information digitally, digitally modulates the information by a carrier frequency, and interpolates the information to the DAC sample rate for conversion to an analog signal and application to the associated transducer element(s). The beamformer transmitters can be programmed per channel and per beam with carrier frequency, delay, apodization and calibration values, For pulsed wave operation, pulse waveform parameters can be specified to the beamformer transmitters on a per firing basis, without degrading the scan frame rate to non-useful diagnostic levels. Waveform parameters can be specified to the transmitters by an external central control system which is responsible for higher level flexibility, such as scan formats, focusing depths and fields of view. The transmit pulse delay specified per-channel to each transmitter is applied in at least two components: a focusing time delay component and a focusing phase component. The carrier frequency can be specified for each transmit beam, to any desired frequency within a substantially continuous predefined range of frequencies, and a beam-interleaved signal processing path permits operation in any of several predefined processing modes, which define different parameter sets in a trade-off among (1) the number of beams produced; (2) per-beam initial waveform sample interval; and (3) transmit frequency.
    • 具有多波束传输能力的数字发射波束形成器系统具有多个多信道发射机,每个信道具有采样的复值初始波形信息源,其代表要应用于一个或多个相应的换能器元件的最终期望波形, 每个梁。 每个多通道发射机以数字方式对每个通道的相应初始波形信息应用波束形成延迟和变迹,以载波频率对信息进行数字调制,并将该信息内插到DAC采样率以转换为模拟信号并应用于相关联的换能器元件 (s)。 波束形成器发射器可以每个通道和每个波束编程,具有载波频率,延迟,变迹和校准值。对于脉冲波操作,可以在每次触发的基础上向波束形成器发射机指定脉搏波形参数,而不会将扫描帧速率降至 非有用的诊断水平。 可以通过负责更高级别灵活性的外部中央控制系统向发射机指定波形参数,如扫描格式,聚焦深度和视场。 至少两个组件:每个通道指定给每个发射机的发射脉冲延迟:聚焦时间延迟分量和聚焦相位分量。 可以将载波频率指定为每个发射波束到基本上连续的预定频率范围内的任何期望的频率,并且波束交织的信号处理路径允许在若干预定义的处理模式中的任何一种中进行操作,这些模式在交易中定义不同的参数集 (1)产生的梁数; (2)每波束初始波形采样间隔; 和(3)发射频率。
    • 5. 发明授权
    • Method and apparatus for transmit beamformer system
    • US5995450A
    • 1999-11-30
    • US67269
    • 1998-04-27
    • Christopher R. ColeAlbert GeeThomas Liu
    • Christopher R. ColeAlbert GeeThomas Liu
    • G01S7/52G01S15/89G03B42/06G10K11/34
    • G01S15/8988G01S15/8915G01S15/8979G01S7/52019G01S7/52026G01S7/52046G01S7/52066G01S7/5209G01S7/52095G10K11/341G10K11/345G01S7/52049
    • A digital transmit beamformer system with multiple beam transmit capability has a plurality of multi-channel transmitters, each channel with a source of sampled, complex-valued initial waveform information representative of the ultimate desired waveform to be applied to one or more corresponding transducer elements for each beam. Each multi-channel transmitter applies beamformation delays and apodization to each channel's respective initial waveform information digitally, digitally modulates the information by a carrier frequency, and interpolates the information to the DAC sample rate for conversion to an analog signal and application to the associated transducer element(s). The beamformer transmitters can be programmed per channel and per beam with carrier frequency, delay, apodization and calibration values. For pulsed wave operation, pulse waveform parameters can be specified to the beamformer transmitters on a per firing basis, without degrading the scan frame rate to non-useful diagnostic levels. Waveform parameters can be specified to the transmitters by an external central control system which is responsible for higher level flexibility, such as scan formats, focusing depths and fields of view. The transmit pulse delay specified per-channel to each transmitter is applied in at least two components: a focusing time delay component and a focusing phase component. The carrier frequency can be specified for each transmit beam, to any desired frequency within a substantially continuous predefined range of frequencies, and a beam-interleaved signal processing path permits operation in any of several predefined processing modes, which define different parameter sets in a trade-off among (1) the number of beams produced; (2) per-beam initial waveform sample interval; and (3) transmit frequency.