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    • 3. 发明申请
    • Microstrip array antenna
    • 微带阵列天线
    • US20100026584A1
    • 2010-02-04
    • US12462112
    • 2009-07-29
    • Kento NakabayashiKunio Sakakibara
    • Kento NakabayashiKunio Sakakibara
    • H01Q1/38H01Q21/00
    • H01Q21/0075H01Q21/065
    • The microstrip array antenna includes a dielectric substrate formed with a conductive ground plate at a back surface thereof, and strip conductors formed on a front surface of the dielectric substrate. The strip conductors includes a linear main feeding strip line, and a plurality of array elements connected to the main feeding strip line, the array elements being disposed at least one of both sides of the main feeding strip line at a predetermined interval along a longitudinal direction of the main feeding strip line. Each of the array elements includes a sub-feeding strip line connected to the main feeding strip line, a rectangular radiating antenna element connected to a terminal end of the sub-feeding strip line, and a stub connected to the sub-feeding strip line. The stub is disposed between the main feeding strip line and the radiating antenna element.
    • 微带阵列天线包括在其背面形成有导电接地板的电介质基板,以及形成在电介质基板的前表面上的带状导体。 带状导体包括线性主馈送带线和连接到主馈线条线的多个阵列元件,阵列元件沿着纵向方向以预定间隔布置在主馈线条线的两侧中的至少一个 的主喂带条。 每个阵列元件包括连接到主馈线条的副馈电带状线,连接到副供电带状线的终端的矩形辐射天线元件和连接到副供电带状线的短截线。 短截线位于主馈线和辐射天线元件之间。
    • 4. 发明授权
    • Microstrip array antenna
    • 微带阵列天线
    • US08193990B2
    • 2012-06-05
    • US12462112
    • 2009-07-29
    • Kento NakabayashiKunio Sakakibara
    • Kento NakabayashiKunio Sakakibara
    • H01Q1/38
    • H01Q21/0075H01Q21/065
    • The microstrip array antenna includes a dielectric substrate formed with a conductive ground plate at a back surface thereof, and strip conductors formed on a front surface of the dielectric substrate. The strip conductors includes a linear main feeding strip line, and a plurality of array elements connected to the main feeding strip line, the array elements being disposed at least one of both sides of the main feeding strip line at a predetermined interval along a longitudinal direction of the main feeding strip line. Each of the array elements includes a sub-feeding strip line connected to the main feeding strip line, a rectangular radiating antenna element connected to a terminal end of the sub-feeding strip line, and a stub connected to the sub-feeding strip line. The stub is disposed between the main feeding strip line and the radiating antenna element.
    • 微带阵列天线包括在其背面形成有导电接地板的电介质基板,以及形成在电介质基板的前表面上的带状导体。 带状导体包括线性主馈送带线和连接到主馈线条线的多个阵列元件,阵列元件沿着纵向方向以预定间隔布置在主馈线条线的两侧中的至少一个 的主喂带条。 每个阵列元件包括连接到主馈线条的副馈电带状线,连接到副供电带状线的终端的矩形辐射天线元件和连接到副供电带状线的短截线。 短截线设置在主馈线和辐射天线元件之间。
    • 6. 发明申请
    • Transmission line transition
    • 传输线转换
    • US20070182505A1
    • 2007-08-09
    • US11703811
    • 2007-02-07
    • Akihisa FujitaKunio Sakakibara
    • Akihisa FujitaKunio Sakakibara
    • H01P5/107
    • H01P5/107
    • A transmission line transition for coupling electromagnetic energy between different transmission lines includes first and second dielectric substrates laminated to each other and a waveguide tube attached to the first dielectric substrate. The laminated dielectric substrate provides a dielectric waveguide having a first end short-circuited and a second end communicating with a hollow interior of the waveguide tube. An antenna connected to a planar line is disposed in the dielectric waveguide and spaced from the short-circuited end of the dielectric waveguide by a predetermined distance in a longitudinal direction of the waveguide tube to excite and to be excited by the waveguide tube. The dielectric waveguide has a cross-sectional area smaller than that of the interior of the waveguide tube and coincides with the interior of the waveguide tube in the longitudinal direction.
    • 用于在不同传输线之间耦合电磁能的传输线转变包括彼此层叠的第一和第二电介质基片以及附接到第一介质基片的波导管。 叠层电介质基片提供了具有第一端短路的电介质波导和与波导管的中空内部连通的第二端。 连接到平面线的天线设置在电介质波导中,并且与介质波导的短路端在波导管的纵向方向上预定距离间隔开以激发并由波导管激发。 介质波导的横截面积小于波导管内部的横截面面积,并且在纵向方向上与波导管的内部重合。
    • 8. 发明授权
    • Transmission line transition
    • 传输线转换
    • US07750755B2
    • 2010-07-06
    • US11703811
    • 2007-02-07
    • Akihisa FujitaKunio Sakakibara
    • Akihisa FujitaKunio Sakakibara
    • H01P5/107
    • H01P5/107
    • A transmission line transition for coupling electromagnetic energy between different transmission lines includes first and second dielectric substrates laminated to each other and a waveguide tube attached to the first dielectric substrate. The laminated dielectric substrate provides a dielectric waveguide having a first end short-circuited and a second end communicating with a hollow interior of the waveguide tube. An antenna connected to a planar line is disposed in the dielectric waveguide and spaced from the short-circuited end of the dielectric waveguide by a predetermined distance in a longitudinal direction of the waveguide tube to excite and to be excited by the waveguide tube. The dielectric waveguide has a cross-sectional area smaller than that of the interior of the waveguide tube and coincides with the interior of the waveguide tube in the longitudinal direction.
    • 用于在不同传输线之间耦合电磁能的传输线转变包括彼此层叠的第一和第二电介质基片以及附接到第一介质基片的波导管。 叠层电介质基片提供了具有第一端短路的电介质波导和与波导管的中空内部连通的第二端。 连接到平面线的天线设置在电介质波导中,并且与介质波导的短路端在波导管的纵向方向上预定距离间隔开以激发并由波导管激发。 介质波导的横截面积小于波导管内部的横截面面积,并且在纵向方向上与波导管的内部重合。
    • 10. 发明授权
    • Waveguide-transmission line transition having a slit and a matching element
    • 具有狭缝和匹配元件的波导传输线转变
    • US06580335B1
    • 2003-06-17
    • US09471470
    • 1999-12-23
    • Hideo IizukaKunio SakakibaraKunitoshi NishikawaKazuo SatoToshiaki Watanabe
    • Hideo IizukaKunio SakakibaraKunitoshi NishikawaKazuo SatoToshiaki Watanabe
    • H01P5107
    • H01P5/107
    • In a waveguide-transmission line transition, a short-circuiting metal layer is formed on one surface of a dielectric substrate, and the short-circuiting metal layer has a slit in which a strip line is disposed. The short-circuiting metal layer and the strip line are disposed on the same plane with a predetermined gap formed therebetween. A grounding metal layer having a shape substantially congruent with the cross-sectional shape of the opening surface of the waveguide is formed on the other surface of the dielectric substrate. The short-circuiting metal layer, the grounding metal layer, and the waveguide are maintained at the same potential by metal embedded in through-holes provided along the circumferential edge of the dielectric substrate. Further, a matching element is disposed on the surface of the dielectric substrate on which the grounding metal layer is formed. This structure enables formation of substantially the entirety of the transition, except the waveguide, on the same substrate on which a microwave or millimeter-wave circuit or a planar antenna are formed.
    • 在波导 - 传输线转变中,在电介质基片的一个表面上形成短路金属层,短路金属层具有设置有带状线的狭缝。 短路金属层和带状线设置在同一平面上,其间形成有预定的间隙。 在电介质基板的另一个表面上形成具有与波导的开口表面的横截面形状基本一致的形状的接地金属层。 短路金属层,接地金属层和波导通过嵌入在沿着电介质基板的周缘设置的通孔中的金属保持在相同的电位。 此外,在形成有接地金属层的电介质基板的表面上配置有匹配元件。 该结构能够在形成有微波或毫米波电路或平面天线的同一基板上形成基本上除了波导之外的整个过渡部分。