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    • 3. 发明授权
    • Stripline-to-waveguide transition including metamaterial layers and an aperture ground plane
    • 包括超材料层和孔径接地平面的平行至波导过渡
    • US08576023B1
    • 2013-11-05
    • US12763683
    • 2010-04-20
    • Michael J. BuckleyWajih A. El SallalBrian J. HertingJohn C. Mather
    • Michael J. BuckleyWajih A. El SallalBrian J. HertingJohn C. Mather
    • H01P5/107
    • H01P3/121H01P5/107H01Q15/0086
    • The present invention is directed to an interface for connecting a waveguide manifold of a transition to a stripline manifold of the transition. The interface may include a plurality of metamaterial layers, each including a metamaterial(s). The interface may further include a ground plane layer which may be connected to both the plurality of metamaterial layers and to the stripline manifold. Further, the interface may include a plurality of ground vias which may form channels through each of the layers of the interface and through the stripline manifold for providing a ground structure for the interface. The interface is further configured for forming a resonant structure which provides a low-loss, broadband conversion between a stripline mode and a waveguide mode for electromagnetic energy traversing through the interface between the waveguide manifold and the stripline manifold.
    • 本发明涉及一种用于将过渡的波导歧管连接到过渡段的带状排歧管的接口。 界面可以包括多个超材料层,每个超材料层包括超材料。 界面还可以包括可以连接到多个超材料层和带状线歧管两者的接地平面层。 此外,接口可以包括多个接地通孔,其可以形成通过接口的每个层的通道并且通过带状线歧管,用于为接口提供接地结构。 该界面还被配置用于形成谐振结构,该谐振结构在带状线模式和波导模式之间提供低损耗的宽带转换,以使电磁能量穿过波导歧管和带状线歧管之间的界面。
    • 6. 发明授权
    • System and method for providing a non-planar stripline transition
    • 用于提供非平面带状线过渡的系统和方法
    • US07605679B1
    • 2009-10-20
    • US12070432
    • 2008-02-19
    • Jonathan P. DoaneJeremiah D. WolfLee M. PaulsenBrian J. Herting
    • Jonathan P. DoaneJeremiah D. WolfLee M. PaulsenBrian J. Herting
    • H01P3/08H01P5/02
    • H01P1/02H01P1/047
    • The present invention is a system including a first transmission line oriented in a first plane and a second transmission line oriented in a second plane. Both the first transmission line and the second transmission line include a pair of rigid substrate layers, a pair of flexible substrate layers and a trace portion, the trace portion being located between the pair of flexible substrate layers, the pair of flexible substrate layers being located between the pair of rigid substrate layers. The system further includes a transition transmission line which is connected between the first transmission line and the second transmission line. The transition transmission line includes a pair of flexible substrate layers and a trace portion, the trace portion of the transition transmission line being located between the pair of flexible substrate layers of the transition transmission line. The transition transmission line is configured for delivering energy from the first transmission line to the second transmission line and from the second transmission line to the first transmission line.
    • 本发明是一种包括在第一平面中定向的第一传输线和在第二平面中定向的第二传输线的系统。 第一传输线和第二传输线都包括一对刚性衬底层,一对柔性衬底层和迹线部分,迹线部分位于该对柔性衬底层之间,该对柔性衬底层位于 在一对刚性衬底层之间。 该系统还包括连接在第一传输线和第二传输线之间的过渡传输线。 过渡传输线包括一对柔性衬底层和迹线部分,过渡传输线的迹线部分位于过渡传输线的一对柔性衬底层之间。 过渡传输线被配置为将能量从第一传输线传送到第二传输线,并且从第二传输线传送到第一传输线。