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    • 1. 发明申请
    • PLANAR INVERTED F ANTENNA
    • 平面反相天线
    • US20140210674A1
    • 2014-07-31
    • US14240127
    • 2012-08-10
    • Yoshiyuki YoneiMasahiro SobuAkinori MatsuiMisao Haneishi
    • Yoshiyuki YoneiMasahiro SobuAkinori MatsuiMisao Haneishi
    • H01Q9/04
    • H01Q9/0407H01Q5/371H01Q9/0421H01Q9/045H01Q9/0471
    • Provided is a planar inverted F antenna to which a feeding line can be readily connected. Two slits are provided up to locations where input impedance is Z (=50Ω), from the open end side of a main conductive plate that functions as an excitation conductive plate. Between these slits is used as a microstrip line (MSL) and the width (w) is determined such that the characteristic impedance for the transmission line is Z. A planar inverted F antenna having a U-shaped or L-shaped cross-section is formed by folding on both sides or on one side of the MSL, along the longitudinal direction of the MSL. In other words, a planar inverted F antenna is formed that has the excitation conductive plate and the MSL arranged separated by a prescribed distance, on the outside of a ground conductive plate bent into a U-shaped or L-shaped cross-section. The positional relationship between the connection position for the feeding pin and the radiation end can be changed, by folding the planar inverted F antenna along the longitudinal direction of the MSL.
    • 提供一种平面倒F天线,馈电线可以容易地连接到该天线。 从作为激励导电板的主导电板的开口端侧,设置有两个狭缝,直到输入阻抗为Z(=50Ω)的位置。 在这些狭缝之间用作微带线(MSL),并且确定宽度(w),使得传输线的特性阻抗为Z.具有U形或L形横截面的平面倒F天线是 沿着MSL的纵向方向折叠在MSL的两侧或一侧上。 换句话说,形成平面倒F天线,其具有在弯曲成U形或L形横截面的接地导电板的外侧上分开一定距离的激励导电板和MSL。 可以通过沿着MSL的纵向方向折叠平面倒置F天线来改变馈送销的连接位置与辐射端之间的位置关系。
    • 2. 发明授权
    • Stacked microstrip antenna
    • 堆叠微带天线
    • US5124733A
    • 1992-06-23
    • US492635
    • 1990-03-13
    • Misao Haneishi
    • Misao Haneishi
    • H01Q13/08H01Q5/00H01Q9/04
    • H01Q9/0414H01Q5/378
    • The stacked microstrip antenna has a ground plane, a first dielectrical layer, a first radiating element, a second dielectric layer, a second radiating element and a short-circuiting conductor for short-circuiting between the first and second radiating elements and the ground plane. The stacked microstrip antenna attains double-channel duplex characteristics with utilizing the coupling between the first radiating element and the second radiating element, when a power is fed to the antenna. Further, the widthwise dimension of the short-circuiting conductor is controlled, whereby the antenna leads to the miniaturization of the radiating elements, namely, the miniaturization of an antenna proper, and it is permitted to be tuned to two desired frequencies with ease.
    • 叠层微带天线具有接地层,第一介电层,第一辐射元件,第二介质层,第二辐射元件和用于在第一和第二辐射元件与接地平面之间短路的短路导体。 当向天线馈送电力时,堆叠的微带天线利用第一辐射元件和第二辐射元件之间的耦合实现双通道双工特性。 此外,短路导体的宽度尺寸被控制,由此天线导致辐射元件的小型化,即天线本体的小型化,并且容易地被调谐到两个期望的频率。
    • 5. 发明授权
    • Planar inverted F antenna with improved feeding line connection
    • 平面倒F天线,改善馈线连接
    • US09531074B2
    • 2016-12-27
    • US14240123
    • 2012-08-10
    • Yoshiyuki YoneiMasahiro SobuAkinori MatsuiMisao Haneishi
    • Yoshiyuki YoneiMasahiro SobuAkinori MatsuiMisao Haneishi
    • H01Q1/38H01Q9/04H01Q5/364
    • H01Q9/0421H01Q5/364H01Q9/045
    • A planar inverted F antenna has a ground conductive plate and a main conductive plate that are short-circuited by a short circuit member. The main conductive plate connects to a feeding line for feeding power to the antenna and includes opposite side ends, a base extending from one side end to a prescribed position in the direction toward the other side end, and a slit extending from the other side end of the main conductive plate up to the prescribed position to form a microstrip line that is connected to the feeding line and at least one excitation conductive plate spaced apart from the microstrip line. The prescribed position includes a feeding point to which power is supplied from the feeding line via the microstrip line having a width such that an input impedance of the antenna at the feeding point and a characteristic impedance become Z.
    • 平面倒F天线具有由短路构件短路的接地导电板和主导电板。 主导电板连接到馈电线,用于向天线供电,并且包括相对的侧端,从另一侧端部朝向另一侧端部的方向从一个侧端延伸到规定位置的基部,以及从另一侧端部延伸的狭缝 的主导电板直到规定位置,以形成连接到馈电线的微带线和与微带线间隔开的至少一个激励导电板。 规定位置包括馈电点,馈电线通过微带线供电,其宽度使得馈电点处的天线的输入阻抗和特征阻抗变为Z。
    • 6. 发明授权
    • Planar inverted F antenna with improved feeding line connection
    • 平面倒F天线,改善馈线连接
    • US09293826B2
    • 2016-03-22
    • US14240127
    • 2012-08-10
    • Yoshiyuki YoneiMasahiro SobuAkinori MatsuiMisao Haneishi
    • Yoshiyuki YoneiMasahiro SobuAkinori MatsuiMisao Haneishi
    • H01Q9/46H01Q9/04H01Q5/371
    • H01Q9/0407H01Q5/371H01Q9/0421H01Q9/045H01Q9/0471
    • A planar inverted F antenna has a ground conductive plate and a main conductive plate that are short-circuited by a short circuit member. The main conductive plate connects to a feeding line for feeding power to the antenna and includes opposite side ends, a base extending from one side end to a prescribed position in the direction toward the other side end, and at least one slit extending from the other side end up to the prescribed position to form a microstrip line to which the feeding line is connected and at least one excitation conductive plate spaced apart from the microstrip line. Power is supplied to a feeding point at the prescribed position from the feeding line via the microstrip line which has a width selected so that both an input impedance of the antenna at the feeding point and a characteristic impedance of the transmission line become Z.
    • 平面倒F天线具有由短路构件短路的接地导电板和主导电板。 主导电板连接到馈电线,用于向天线供电,并且包括相对的侧端,从另一侧端部朝向另一侧端的方向上从一个侧端延伸到规定位置的基部以及从另一侧延伸的至少一个狭缝 侧端到达规定位置,以形成馈送线连接到的微带线和与微带线间隔开的至少一个激励导电板。 电源通过微带线从供电线供给至规定位置的馈电点,微带线被选择为使得馈电点处的天线的输入阻抗和传输线的特性阻抗都变为Z。
    • 7. 发明申请
    • PLANAR INVERTED F ANTENNA
    • 平面反相天线
    • US20140197996A1
    • 2014-07-17
    • US14240123
    • 2012-08-10
    • Yoshiyuki YoneiMasahiro SobuAkinori MatsuiMisao Haneishi
    • Yoshiyuki YoneiMasahiro SobuAkinori MatsuiMisao Haneishi
    • H01Q9/04
    • H01Q9/0421H01Q5/364H01Q9/045
    • Provided is a planar inverted F antenna to which a feeding line can be readily connected. Two slits are provided from the open end side of a main conductive plate that functions as an excitation conductive plate up to locations where input impedance is Z (=50Ω). Between these slits is used as a microstrip line (MSL) and the width (w) is determined such that the characteristic impedance for the transmission line is Z. Power can be supplied by the MSL to the locations where input impedance is Z, by providing the slits from the radiation end side of the main conductive plate and using part of the main conductive plate as the MSL. For connection of the feeding line from the outside, a characteristic impedance (Z) connection line, for example the central conductor for a coaxial line, is used and connected as the feeding pin to the open end of the MSL. The connection position for the feeding pin is not a feeding point as required for position precision, because there is no need to consider position precision and connection can, therefore, be readily made. In addition, the connection end and the radiation end of the feeding pin can be provided on the same side.
    • 提供一种平面倒F天线,馈电线可以容易地连接到该天线。 从作为激励导电板的主导电板的开放端侧设置有两个狭缝,直到输入阻抗为Z(=50Ω)的位置。 在这些狭缝之间用作微带线(MSL),并且确定宽度(w),使得传输线的特性阻抗为Z.通过提供输入阻抗为Z的位置,MSL可以提供功率 从主导电板的辐射端侧的狭缝和主导电板的一部分作为MSL。 为了从外部连接馈线,使用特性阻抗(Z)连接线,例如用于同轴线的中心导体,并将其作为馈送引脚连接到MSL的开路端。 由于不需要考虑位置精度和连接能力,因此进给销的连接位置不是位置精度要求的进给点。 此外,馈电销的连接端和辐射端可以设置在同一侧。