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    • 5. 发明授权
    • Transverse electromagnetic mode resonator
    • 横向电磁模式谐振器
    • US5321374A
    • 1994-06-14
    • US915925
    • 1992-07-17
    • Tomoki Uwano
    • Tomoki Uwano
    • H01P1/205H01P7/04H01P7/08H03B1/00H03B5/18H01P1/20
    • H01P7/082H01P1/2053H01P7/04H01P7/084H03B5/1847H03B2200/004H03B2201/0208H03B5/1805
    • Disclosed is a TEM mode resonator having as a means for adjusting the resonance frequency a simple frequency adjusting mechanism appropriate for size reduction while permitting easy mounting of a varactor diode for varying the resonance frequency thereto. Below a strip transmission line 2 is provided a slot 7 having a length L perpendicular to the transmission line as located at an outer ground conductor surface 3 of a one-fourth wavelength type microstrip line resonator having its one end short-circuited. According as increasing the slot length L, the resonance frequency of the resonator reduces, which characteristic is utilized as a means for adjusting the resonance frequency. By connecting a varactor diode at a center portion of the slot line and varying the voltage applied to the diode, the resonance frequency can be varied.
    • 公开了一种TEM模式谐振器,其作为用于调节谐振频率的装置,适合于减小尺寸的简单的频率调节机构,同时容易地安装用于改变谐振频率的变容二极管。 在带状传输线2的下方设置有狭缝7,槽7具有垂直于传输线的长度L,位于其一端短路的四分之一波长型微带线谐振器的外部接地导体表面3处。 根据增加槽长度L,谐振器的谐振频率减小,该特性被用作调整谐振频率的手段。 通过在槽线的中心部分连接变容二极管并改变施加到二极管的电压,可以改变谐振频率。
    • 6. 发明授权
    • Coaxial line-to-microstrip line transition device
    • 同轴线对微带线转换器件
    • US4656441A
    • 1987-04-07
    • US636665
    • 1984-08-01
    • Hiroshi TakahashiTomoki UwanoTakashi MachidaHirokazu Kitamura
    • Hiroshi TakahashiTomoki UwanoTakashi MachidaHirokazu Kitamura
    • H01P5/08H01P1/00
    • H01P5/085
    • A coaxial line-to-microstrip line transition device including a coaxial line, a microstrip line circuit, and a conductive connection part. The inner conductor of the coaxial line is connected with a microstrip line of the microstrip line circuit. The connection part includes a semi-cylindrical plate which is connected with the outer conductor of the coaxial line by grasping it, and a flat plate which is connected at a surface thereof with a earth layer surface of the microstrip line circuit. The microstrip line is mounted on one surface of a dielectric substrate, and the earth layer is mounted on the other surface of the dielectric substrate. The dielectric substrate is mounted on a chassis which is either provided separately or shared by the flat plate of the connection part which is extended in size. Preferably, a through-hole is provided at least one of the semi-cylindrical plate and the flat plate to be filled with a conductive material.
    • 包括同轴线,微带线电路和导电连接部件的同轴线对微带线路转换装置。 同轴线的内导体与微带线电路的微带线连接。 连接部包括通过把持其与同轴线的外导体连接的半圆柱形板,以及在其表面与微带线电路的接地层表面连接的平板。 微带线安装在电介质基板的一个表面上,并且接地层安装在电介质基板的另一个表面上。 电介质基板安装在单独设置的或由连接部分的平板共同扩大尺寸的底架上。 优选地,半导体板和平板中的至少一个设置有用于填充导电材料的通孔。
    • 7. 发明授权
    • Antenna device
    • 天线设备
    • US5274388A
    • 1993-12-28
    • US836431
    • 1992-02-18
    • Toshio IshizakiHiroaki KosugiTomoki UwanoToshio Sekiguchi
    • Toshio IshizakiHiroaki KosugiTomoki UwanoToshio Sekiguchi
    • H01Q3/24H01Q1/36H01Q9/16H01Q9/30H01Q21/29H04B7/10
    • H01Q21/29H01Q1/362
    • A small-sized antenna device is used for portable telephone equipment and is capable of preventing the receiving strength from being degraded due to a change in the application environment as well as the mounting thereof onto a small radio equipment case. The antenna device has a linear antenna for producing an electric current flux and a coil-shaped antenna for producing a magnetic current flux including a plurality of half-wavelength helical coils connected in series so as to have two adjacent coils coiled in opposite directions with respect to each other, and carries out polarization diversity. Degradation in the characteristics of both antennas due to differences in operational principle can be prevented from taking place simultaneously, resulting in realizing a good reception of a radiowave. In addition, the antenna axes of both antennas can be disposed in parallel and close to each other, thus miniaturizing the device itself.
    • 小型天线装置用于便携式电话设备,并且能够防止由于应用环境的变化以及其安装到小型无线电设备情况而导致的接收强度劣化。 天线装置具有用于产生电流通量的线性天线和用于产生包括多个串联连接的多个半波长螺旋线圈的磁通量的线圈形天线,以便具有相对于 并进行极化分集。 可以防止由于操作原理的差异导致的两个天线的特性的降低同时发生,从而实现对无线电波的良好接收。 此外,两个天线的天线轴线可以彼此并联并且彼此靠近,从而使设备本身小型化。
    • 8. 发明授权
    • Solid-state MIC oscillator
    • 固态麦克风振荡器
    • US4331940A
    • 1982-05-25
    • US156195
    • 1980-06-03
    • Tomoki Uwano
    • Tomoki Uwano
    • H03B9/12H03B5/04H03B5/18H03B7/08H03B9/14H03B7/14
    • H03B9/148H03B5/187H03B2009/126H03B2200/0032H03B5/04H03B5/1847H03B7/08
    • A solid-state MIC oscillator in the form of a planar transmission circuit has a band rejection filter as a load circuit of an oscillation device. The band rejection filter is a resonator coupled to a transmission line which connects the oscillation device with an oscillator load. The load impedance of the oscillation device is adjusted to the oscillating condition by the position of the resonator. A simple capacitive susceptance stub is connected to the transmission line near the coupling point of the resonator. Variation of the oscillator frequency characteristics versus temperature caused by variation of the oscillator load is improved in an excellent manner due to the provision of the simple capacitive susceptance stub.
    • 作为平面发送电路形式的固态MIC振荡器具有作为振荡装置的负载电路的带阻滤波器。 带阻滤波器是耦合到将振荡器件与振荡器负载连接的传输线路的谐振器。 通过谐振器的位置将振荡装置的负载阻抗调节到振荡状态。 简单的电容电纳短截线连接到谐振器耦合点附近的传输线。 由于提供简单的电容电容短截线,由于振荡器负载的变化引起的振荡器频率特性对温度的变化以极佳的方式得到改善。