会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明申请
    • METAMATERIAL ANTENNA
    • 金属天线
    • US20140292615A1
    • 2014-10-02
    • US14353028
    • 2012-04-09
    • Ruopeng LiuChunlin JiYutao YueQing Yang
    • Ruopeng LiuChunlin JiYutao YueQing Yang
    • H01Q15/14
    • H01Q15/14H01Q15/0053H01Q15/0086H01Q15/10H01Q15/23H01Q19/027H01Q19/062H01Q19/10H01Q19/18
    • The disclosure relates to a metamaterial antenna, where the metamaterial antenna includes an enclosure, a feed, a first metamaterial that clings to an aperture edge of the feed, a second metamaterial that is separated by a preset distance from the first metamaterial and is set oppositely, and a third metamaterial that clings to an edge of the second metamaterial, where the enclosure, the feed, the first metamaterial, the second metamaterial, and the third metamaterial make up a closed cavity; and a central axis of the feed penetrates center points of the first metamaterial and the second metamaterial; and a reflection layer for reflecting an electromagnetic wave is set on surfaces of the first metamaterial and the second metamaterial, where the surfaces are located outside the cavity.
    • 本发明涉及超材料天线,其中超材料天线包括外壳,馈电,粘附到馈电的孔边缘的第一超材料,与第一超材料隔开预设距离并相对设置的第二超材料 以及附着在第二超材料的边缘上的第三超材料,其中外壳,进料,第一超材料,第二超材料和第三超材料构成封闭的空腔; 并且所述进料的中心轴线穿过所述第一超材料和所述第二超材料的中心点; 并且用于反射电磁波的反射层设置在第一超材料和第二超材料的表面位于空腔外部。
    • 5. 发明授权
    • Metamaterial for diverging an electromagnetic wave
    • 用于发散电磁波的超材料
    • US09035850B2
    • 2015-05-19
    • US13521743
    • 2011-11-24
    • Ruopeng LiuChunlin JiYutao YueYunnan Hong
    • Ruopeng LiuChunlin JiYutao YueYunnan Hong
    • H01Q15/02H01Q15/00
    • H01Q15/0086
    • The present disclosure relates to a metamaterial for diverging an electromagnetic wave, which comprises at least one metamaterial sheet layer. Refractive indices of the metamaterial sheet layer are distributed in a circular form with a center of the metamaterial sheet layer, and the refractive indices remain unchanged at a same radius and increase gradually with the radius. The present disclosure changes electromagnetic parameters at each point of the metamaterial through punching or by attaching man-made microstructures so that the electromagnetic wave can be diverged after passing through the metamaterial. The metamaterial of the present disclosure features a simple manufacturing process and a low cost, and is easy to be implemented. Moreover, the metamaterial of the present disclosure has small dimensions and does not occupy a large space, so it is easy to miniaturize apparatuses made of the metamaterial of the present disclosure.
    • 本公开涉及用于发散电磁波的超材料,其包括至少一个超材料片层。 超材料片层的折射率分布为具有超材料片层的中心的圆形形状,并且折射率在相同半径处保持不变,并随着半径逐渐增加。 本公开通过冲压或通过附接人造微结构来改变超材料的每个点处的电磁参数,使得电磁波可以在通过超材料之后发散。 本公开的超材料具有简单的制造工艺和低成本,并且易于实施。 此外,本公开的超材料具有小的尺寸并且不占据大的空间,因此容易使由本公开的超材料制成的装置小型化。
    • 6. 发明授权
    • Electromagnetic wave beam splitter
    • 电磁波分束器
    • US08729511B2
    • 2014-05-20
    • US14118015
    • 2011-11-21
    • Ruopeng LiuChunlin JiYutao YueYunnan Hong
    • Ruopeng LiuChunlin JiYutao YueYunnan Hong
    • H01Q15/02
    • G21K1/062G02B1/002G02B3/0087G02B27/0927H01Q15/0086H01Q15/10H01Q19/06H01Q19/065
    • Embodiments of the present invention relate to an electromagnetic wave beam splitter, comprising a functional layer made of at least one metamaterial sheet, wherein different metamaterial sheets have the same refractive index distribution; the metamaterial sheet may be divided into a circular region and an annular region concentric to the circular region; a refractive index increases continuously as a radius increases and refractive indices at the same radius are the same within the circular region; and a refractive index decreases continuously as a radius increases and refractive indices are the same at the same radius within the annular region. The circular region of the functional layer of the beam splitter according to the present invention has the function of diverging an electromagnetic wave; the annular region has the function of converging an electromagnetic wave; the electromagnetic wave incident on the circular region of the functional layer deflects toward edges on two sides of the functional layer respectively; the electromagnetic wave incident on the annular region deflects in a direction toward a circle center; and after an electromagnetic wave emitted by a signal source is incident on the beam splitter, an emergent electromagnetic wave forms an annular radiation region. This can satisfy the requirements of, for example, avoiding an obstacle and interference.
    • 本发明的实施例涉及一种电磁波束分离器,包括由至少一个超材料片制成的功能层,其中不同的超材料片具有相同的折射率分布; 超材料片可以分为圆形区域和与圆形区域同心的环形区域; 随着半径的增加,折射率连续增加,同一半径的折射率在圆形区域内相同; 并且折射率随着半径增加而连续减小,并且折射率在环形区域内的相同半径处相同。 根据本发明的分束器的功能层的圆形区域具有发散电磁波的功能; 环形区域具有会聚电磁波的功能; 入射到功能层的圆形区域上的电磁波分别偏向功能层两侧的边缘; 入射到环形区域的电磁波在朝向圆心的方向上偏转; 并且在由信号源发射的电磁波入射到分束器上之后,出现的电磁波形成环形辐射区域。 这可以满足例如避免障碍和干扰的要求。
    • 7. 发明申请
    • METAMATERIAL FOR DIVERGING AN ELECTROMAGNETIC WAVE
    • 用于分流电磁波的元件
    • US20130050058A1
    • 2013-02-28
    • US13521743
    • 2011-11-24
    • Ruopeng LiuChunlin JiYutao YueYunnan Hong
    • Ruopeng LiuChunlin JiYutao YueYunnan Hong
    • H01Q15/02
    • H01Q15/0086
    • The present disclosure relates to a metamaterial for diverging an electromagnetic wave, which comprises at least one metamaterial sheet layer. Refractive indices of the metamaterial sheet layer are distributed in a circular form with a center of the metamaterial sheet layer, and the refractive indices remain unchanged at a same radius and increase gradually with the radius. The present disclosure changes electromagnetic parameters at each point of the metamaterial through punching or by attaching man-made microstructures so that the electromagnetic wave can be diverged after passing through the metamaterial. The metamaterial of the present disclosure features a simple manufacturing process and a low cost, and is easy to be implemented. Moreover, the metamaterial of the present disclosure has small dimensions and does not occupy a large space, so it is easy to miniaturize apparatuses made of the metamaterial of the present disclosure.
    • 本公开涉及用于发散电磁波的超材料,其包括至少一个超材料片层。 超材料片层的折射率分布为具有超材料片层的中心的圆形形状,并且折射率在相同半径处保持不变,并随着半径逐渐增加。 本公开通过冲压或通过附接人造微结构来改变超材料的每个点处的电磁参数,使得电磁波可以在通过超材料之后发散。 本公开的超材料具有简单的制造工艺和低成本,并且易于实施。 此外,本公开的超材料具有小的尺寸并且不占据大的空间,因此容易使由本公开的超材料制成的装置小型化。
    • 9. 发明申请
    • CASSEGRAIN MICROWAVE ANTENNA
    • US20150364828A1
    • 2015-12-17
    • US14235058
    • 2011-11-24
    • Ruopeng LiuChunlin JiYutao YueXiaoming Yin
    • Ruopeng LiuChunlin JiYutao YueXiaoming Yin
    • H01Q19/06
    • H01Q19/062H01Q15/0086H01Q15/10H01Q19/065
    • Disclosed is a Cassegrain microwave antenna, which comprises a radiation source, a first metamaterial panel used for radiating an electromagnetic wave emitted by the radiation source, and a second metamaterial panel having an electromagnetic wave convergence feature and used for converting into plane wave the electromagnetic wave radiated by the first metamaterial panel. Employment of the principle of metamaterial for manufacturing the antenna allows the antenna to break away from restrictions of conventional concave lens shape, convex lens shape, and parabolic shape, thereby allowing the shape of the Cassegrain microwave antenna to be panel-shaped or any shape as desired, while allowing for reduced thickness, reduced size, and facilitated processing and manufacturing, thus providing beneficial effects of reduced costs and improved gain effect.
    • 公开了一种卡塞格伦微波天线,其包括辐射源,用于辐射由辐射源发射的电磁波的第一超材料面板和具有电磁波会聚特征的第二超材料面板,用于将电磁波转换为平面波 由第一个超材料面板辐射。 采用超材料制造天线的原理可以使天线脱离常规凹透镜形状,凸透镜形状和抛物线形状的限制,从而使卡塞格伦微波天线的形状成为面板形或任何形状 期望,同时允许减小厚度,减小尺寸,并且促进加工和制造,从而提供降低成本和改善增益效果的有益效果。