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The First Higher Mode Strip Transmission Line as a Loss-Reduced and Mass-Productive Printed Circuit at Millimeter-Wavelength

机译:第一条高模带式传输线,它是毫米波损耗降低且批量生产的印刷电路

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A higher mode tri-plate strip transmission line, in which the first higher mode propagates, was developed to realize mass production of millimeter-wave integrated circuits for application in intelligent transport systems, and its transmission characteristics were investigated. The design diagram of this guided mode was determined and a higher mode tri-plate strip transmission line was fabricated at 30 GHz. The dispersion curve was found to be similar to that of a rectangular waveguide and a low transmission loss of less than 10dB/m was obtained. For construction of some functional devices, two types of basic reactance components, such as a gap and a slot, were expressed by equivalent circuits. The former was expressed by capacitive parameters, and the latter was expressed by an ideal transformer with inductive parameters. The gap-coupled circuit was successfully employed for a 3-pole 0.1 dB Chebyshev ripple band-pass filter with a small excess insertion loss of less than 1 dB at a center frequency of 32 GHz, as well as no spurious response in a bandwidth from 26.5 GHz to 40 GHz. The slot element acted as a matching circuit and a suppressor of the lowest mode, which is the TEM mode in the tri-plate strip transmission line. Moreover, this element was applied to a mode transformer between the lowest mode and the first higher mode.
机译:研发了一种高模三板带状传输线,其中第一个高模传播于其中,以实现批量生产用于智能运输系统的毫米波集成电路,并研究了其传输特性。确定了该引导模式的设计图,并在30 GHz下制造了更高模式的三板带状传输线。发现色散曲线与矩形波导的色散曲线相似,并且获得了小于10dB / m的低传输损耗。为了构造某些功能器件,用等效电路表示两种类型的基本电抗组件,例如间隙和缝隙。前者由电容参数表示,后者由具有电感参数的理想变压器表示。间隙耦合电路已成功用于3极0.1 dB Chebyshev纹波带通滤波器,在中心频率为32 GHz时,插入损耗很小,小于1 dB,并且在带宽范围内没有寄生响应。 26.5 GHz至40 GHz缝隙元件用作最低模式的匹配电路和抑制器,最低模式是三板带状传输线中的TEM模式。而且,该元件被应用于最低模式和第一较高模式之间的模式变换器。

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