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    • 8. 发明申请
    • REMOTELY FED MODULE
    • 远程FED模块
    • US20100157859A1
    • 2010-06-24
    • US12645829
    • 2009-12-23
    • Ralph OppeltMarkus Vester
    • Ralph OppeltMarkus Vester
    • H04B7/185H04L5/00
    • G08C15/02G01R33/341G01R33/3415G01R33/3657H04J1/08
    • In a method and device for the transmission of a multiplicity of signals having different frequencies between a base station and a module situated at a location remote from the base station via a single, common cable connection, some of the signals being transmitted from the electronic assembly to the module and, in general simultaneously, the remaining signals are transmitted in the opposite direction. Each of the base station and the module has bandpass filter bank therein having a multiplicity of bandpass filters, the number thereof being a function of the number of channels to be transmitted, with which the respectively received signals are spectrally separated from one another so that they are available for further signal processing in the base station, or for further use in the module.
    • 在用于通过单个公共电缆连接在位于远离基站的位置的基站和模块之间传输具有不同频率的多个信号的方法和装置中,一些信号从电子组件传送 并且通常同时地,剩余的信号以相反方向传输。 基站和模块中的每一个具有带通滤波器组,其中具有多个带通滤波器,其数量是要发送的信道数量的函数,分别接收的信号彼此频谱分离,使得它们 可用于在基站中进一步的信号处理,或用于模块中的进一步使用。
    • 9. 发明申请
    • DIPLEX FILTER AND METHOD TO FILTER SIGNALS
    • DIPLEX过滤器和滤波信号的方法
    • US20100117653A1
    • 2010-05-13
    • US12616855
    • 2009-11-12
    • Ralph Oppelt
    • Ralph Oppelt
    • H03H7/46G01V3/00H03H7/38
    • H03H7/463H03H7/38
    • A diplex filter is formed by two impedance-transforming filters with separate transmission frequency ranges and with separate cut-off frequency ranges and a connection node at which two series elements of the two filters are connected. These two series elements are each fashioned as a parallel oscillating circuit, each parallel oscillating circuit exhibiting a predetermined reactance in a midband of the respective transmission frequency range and a parallel resonance in a midband of the respective cut-off frequency range. The diplex filter can be realized in a simple and cost-effective manner without ferrite-containing special components, for instance inductively coupled coils or tapped coils thereby allowing use thereof in a magnetic resonance tomograph, for example.
    • 双工滤波器由具有单独的传输频率范围和分离的截止频率范围的两个阻抗变换滤波器以及两个滤波器的两个串联元件连接的连接节点形成。 这两个串联元件各自被形成为并联振荡电路,每个并联振荡电路在相应的发送频率范围的中间带中呈现预定的电抗,并且在相应截止频率范围的中间带中呈现并联谐振。 双工滤波器可以以简单且成本有效的方式实现,不含铁素体的特殊部件,例如电感耦合线圈或抽头线圈,从而允许在例如磁共振断层扫描仪中使用它们。
    • 10. 发明授权
    • Controller for a radio-frequency amplifier
    • 射频放大器控制器
    • US07672649B2
    • 2010-03-02
    • US11744291
    • 2007-05-04
    • Klaus HuberRalph Oppelt
    • Klaus HuberRalph Oppelt
    • H01Q11/12H04B1/00
    • H03G3/3036G01R33/3621H03F1/3247H03F1/3282H03F1/3294H03F2200/195H03F2200/207H03F2200/336H03F2200/451H03G1/04
    • A controller for an RF amplifier, in particular for a RF amplifier of an MR tomography apparatus, has an IQ control element for adjusting the magnitude and phase an RF signal that is be fed to the RF amplifier. The IQ control element has a signal splitter that splits the RF signal into two partial signals having a 90° phase offset in an I path and a Q path, each having a multiplier for multiplying the partial signal by an I factor in the I path and a Q factor in the Q path. A summing unit recombines the partial signals. A detector determines the actual phase difference and actual amplification between the RF signal fed to the IQ control element and the RF signal amplified by the RF amplifier. An IQ controller determines the I factor and the Q factor from the actual difference and a desired phase difference and the actual amplifier and a desired amplification. The IQ controller has an operating point at which the I factor and the Q factor are the same magnitude if the actual and desired phase differences and the actual and desired amplifications are the same.
    • 用于RF放大器的控制器,特别是用于MR断层摄影装置的RF放大器的控制器具有用于调整幅度和相位的IQ控制元件,RF信号被馈送到RF放大器。 IQ控制元件具有信号分离器,其将RF信号分解成在I路径和Q路径中具有90°相位偏移的两个部分信号,每个具有用于将该部分信号乘以I路径中的I因子的乘法器和Q路径, Q路径中的Q因子。 求和单元重新组合部分信号。 检测器确定馈送到IQ控制元件的RF信号与由RF放大器放大的RF信号之间的实际相位差和实际放大。 IQ控制器根据实际差异和所需的相位差以及实际的放大器和所需的放大率来确定I因子和Q因子。 如果实际和所需的相位差以及实际和所需的放大倍数相同,则IQ控制器具有I因子和Q因子的幅度相同的工作点。