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    • 1. 发明授权
    • High efficiency resonant line
    • 高效谐振线
    • US06963259B2
    • 2005-11-08
    • US10185266
    • 2002-06-27
    • William D. KillenRandy T. Pike
    • William D. KillenRandy T. Pike
    • H01P3/02H01P1/203H01P1/215H01P3/08H01P5/02H01P7/08H05K1/02H05K1/16H01P7/00
    • H01P1/2039H01P1/215H01P5/02H05K1/0239H05K1/024H05K1/162H05K1/165H05K2201/0187H05K2201/0715
    • The present invention relates to a circuit for processing radio frequency signals. The resonant circuit includes a substrate. The substrate can be a meta material and can incorporate at least one substrate layer. A resonant line and at least one ground can be coupled to the substrate. An end of the resonant line can electrically shorted to the ground or electrically open with respect to ground. The substrate layer can include a first region with a first set of substrate properties and at least a second region with a second set of substrate properties. At least a portion of the resonant line can be coupled to the second region. The first and/or second set of substrate properties can be differentially modified to vary a permittivity and/or a permeability over a selected region. A third region can be provided with a third set of substrate properties as well.
    • 本发明涉及一种用于处理射频信号的电路。 谐振电路包括基板。 衬底可以是间位材料,并且可以并入至少一个衬底层。 谐振线和至少一个接地可以耦合到衬底。 谐振线路的一端可以与地面电短路或相对于地面电开放。 衬底层可以包括具有第一组衬底特性的第一区域和具有第二组衬底特性的至少第二区域。 谐振线路的至少一部分可以耦合到第二区域。 第一和/或第二组衬底性质可以进行差异修改,以改变选定区域的介电常数和/或渗透率。 也可以向第三区域提供第三组衬底特性。
    • 2. 发明授权
    • Dipole arrangements using dielectric substrates of meta-materials
    • 使用超临界材料的电介质基板的偶极配置
    • US06753814B2
    • 2004-06-22
    • US10184332
    • 2002-06-27
    • William D. KillenRandy T. Pike
    • William D. KillenRandy T. Pike
    • H01Q138
    • H01Q9/285H01Q1/38H01Q7/00H01Q9/065
    • The invention concerns a dipole antenna of reduced size and with improved impedance bandwidth. The antenna is preferably formed on a dielectric substrate having a plurality of regions, each having a characteristic relative permeability and permittivity. First and second dipole radiating element defining conductive paths can be selectively formed on first characteristic regions of the substrate having a first characteristic permeability and first permittivity. A reactive coupling element can be interposed between the dipole radiating elements for reactively coupling the first dipole radiating element to the second dipole radiating element.
    • 本发明涉及一种尺寸减小并具有改进的阻抗带宽的偶极天线。 天线优选形成在具有多个区域的电介质基板上,每个区域具有特征相对磁导率和介电常数。 可以在具有第一特性磁导率和第一介电常数的基板的第一特征区域上选择性地形成限定导电路径的第一和第二偶极辐射元件。 可以在偶极辐射元件之间插入反应耦合元件,用于将第一偶极辐射元件反应地耦合到第二偶极辐射元件。
    • 4. 发明授权
    • Slot fed microstrip antenna having enhanced slot electromagnetic coupling
    • 插槽馈电微带天线具有增强的时隙电磁耦合
    • US06982671B2
    • 2006-01-03
    • US10373935
    • 2003-02-25
    • William D. KillenRandy T. Pike
    • William D. KillenRandy T. Pike
    • H01Q1/38
    • H01Q9/0457
    • A slot fed microstrip antenna (100) provides improved efficiency through enhanced coupling of electromagnetic energy between the feed line (117) and the slot (106). The dielectric layer (105) between the feed line (117) and the slot (106) includes magnetic particles (114), the magnetic particles (114) preferably included in the dielectric junction region (113) between the microstrip feed line (117) and the slot (106). A high dielectric region is preferably also provided in the junction constant to further enhance the field concentration effect. The slot antenna (100) can be embodied as a microstrip patch antenna (200).
    • 插槽馈送的微带天线(100)通过在馈电线(117)和插槽(106)之间增强电磁能的耦合来提供改善的效率。 馈电线(117)和槽(106)之间的电介质层(105)包括磁性颗粒(114),磁性颗粒(114)优选包括在微带馈电线(117)之间的介电接合区域(113) 和槽(106)。 优选地还在接合常数中提供高电介质区域,以进一步提高场浓度效应。 狭缝天线(100)可以被实现为微带贴片天线(200)。
    • 5. 发明授权
    • High efficiency slot fed microstrip patch antenna
    • 高效插槽馈电微带贴片天线
    • US06842140B2
    • 2005-01-11
    • US10308500
    • 2002-12-03
    • William D. KillenRandy T. PikeHeriberto Jose Delgado
    • William D. KillenRandy T. PikeHeriberto Jose Delgado
    • H01Q1/38H01Q9/04
    • H01Q9/0414H01Q1/38H01Q9/0442H01Q9/0457
    • A slot fed microstrip patch antenna (200) includes an electrically conducting ground plane (208), the ground plane (208) having at least one coupling slot (206) and at least a first patch radiator (209). An antenna dielectric substrate material (205) is disposed between the ground plane (208) and the first patch radiator (209), wherein at least a portion of the antenna dielectric (210) includes magnetic particles (214). A feed dielectric substrate (212) is disposed between a feed line (217) and the ground plane (208). Magnetic particles can also be used in the feed line (217) dielectric. Patch antennas according to the invention can be of a reduced size through use of high relative permittivity dielectric substrate portions, yet still be efficient through use of dielectrics including magnetic particles which permit impedance matching of dielectric medium interfaces, such as the feed line (217) into the slot (206).
    • 插槽馈送微带贴片天线(200)包括导电接地平面(208),接地平面(208)具有至少一个耦合槽(206)和至少第一贴片辐射器(209)。 天线电介质基板材料(205)设置在接地平面(208)和第一贴片辐射器(209)之间,其中天线电介质(210)的至少一部分包括磁性颗粒(214)。 馈电电介质基片(212)设置在馈电线(217)和接地平面(208)之间。 磁性颗粒也可用于馈电线(217)电介质。 根据本发明的贴片天线可以通过使用高相对介电常数电介质基底部分而减小尺寸,但仍然通过使用包括允许电介质界面(例如馈线(217))的阻抗匹配的磁性粒子的电介质仍然是有效的, 进入狭槽(206)。
    • 6. 发明授权
    • High efficiency printed circuit LPDA
    • 高效印刷电路LPDA
    • US06734827B2
    • 2004-05-11
    • US10185275
    • 2002-06-27
    • William D. KillenRandy T. Pike
    • William D. KillenRandy T. Pike
    • H01Q1110
    • H01Q9/0442H01Q11/105
    • A printed circuit log periodic dipole array (LPDA) includes dipole elements with arms having reduced size through use of high effective permittivity substrate portions. The radiation efficiency degradation generally associated with use of a high permittivitty substrate can be reduced through addition of magnetic particles to provide enhanced permeability in the high permittivity regions. The substrate preferably includes meta-materials. The feed line can provide a broadband transformation by being configured as a plurality of segments having quarter wave electrical lengths.
    • 印刷电路对数周期偶极子阵列(LPDA)包括通过使用高有效介电常数衬底部分而具有尺寸减小的臂的偶极元件。 通常通过添加磁性颗粒来降低通常与使用高许可性底物相关的辐射效率降低,以在高介电常数区域中提供增强的渗透性。 基材优选包括超临界材料。 馈线可以通过配置为具有四分之一波电长度的多个段来提供宽带变换。
    • 8. 发明授权
    • High efficiency low pass filter
    • 高效低通滤波器
    • US06794952B2
    • 2004-09-21
    • US10185187
    • 2002-06-27
    • William D. KillenRandy T. Pike
    • William D. KillenRandy T. Pike
    • H01P500
    • H01P1/2039H05K1/024H05K1/165
    • A printed circuit (100) for processing radio frequency signals includes a substrate (110) including substrate regions (101, 103, 105, 111, and 119) upon which the printed circuit can be placed. The circuit is a lowpass filter including a transformer line section (112), at least a first stub section (114 or 116), and transmission line sections (117) interconnecting the transformer line section with at least the first stub section. The transformer line section, the transmission line sections, and at least the first stub section are coupled to respective substrate regions that have substrate characteristics that are each independently customizable. The circuit further comprises at least one ground or ground plane (120) coupled to the substrate.
    • 一种用于处理射频信号的印刷电路(100)包括:衬底(110),其包括能够放置印刷电路的衬底区域(101,103,105,111和119)。 该电路是包括变压器线部分(112),至少第一短截线部分(114或116)和将变压器线部分与至少第一短截线部分互连的传输线部分(117)的低通滤波器。 变压器线部分,传输线部分和至少第一短截段耦合到具有各自独立可定制的衬底特性的相应衬底区域。 电路还包括耦合到衬底的至少一个接地或接地平面(120)。
    • 9. 发明授权
    • High efficiency stepped impedance filter
    • 高效率阶梯式阻抗滤波器
    • US06781486B2
    • 2004-08-24
    • US10184854
    • 2002-06-27
    • William D. KillenRandy T. Pike
    • William D. KillenRandy T. Pike
    • H01P120
    • H01P1/2039H01P1/215
    • An RF filter that includes a substrate having a plurality of regions, each having respective substrate properties including a relative permeability and a relative permittivity. At least one filter section is coupled to one of the regions of the substrate which has different substrate properties in comparison to other regions. Other filter sections can be coupled to other substrate regions having different substrate properties. The permeability and/or permittivity can be controlled by the addition of meta-materials to the substrate and/or by the creation of voids in the substrate. The RF filter can be a stepped impedance filter. One filter section includes a transmission line section having an impedance influenced by the region of the substrate on which the filter section is disposed. The transmission line section construction can be a microstrip, buried microstrip, or stripline. A supplemental layer of the substrate can be disposed beneath the filter section.
    • 一种RF滤波器,包括具有多个区域的基板,每个区域各自具有包括相对磁导率和相对介电常数的基板特性。 与其他区域相比,至少一个过滤器部分耦合到具有不同衬底性质的衬底的一个区域。 其它过滤器部分可以耦合到具有不同衬底特性的其它衬底区域。 渗透性和/或介电常数可以通过向衬底中添加超临界材料和/或通过在衬底中产生空隙来控制。 RF滤波器可以是阶梯式阻抗滤波器。 一个滤波器部分包括具有受基板的区域影响的阻抗的传输线部分,滤波器部分设置在该区域上。 传输线段结构可以是微带线,埋入微带线或带状线。 衬底的补充层可以设置在过滤器部分下方。