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    • 2. 发明授权
    • Nonreciprocal circuit device
    • 不可逆电路器件
    • US06420941B2
    • 2002-07-16
    • US09153687
    • 1998-09-15
    • Takekazu OkadaToshihiro MakinoAkihito MasudaTakashi Kawanami
    • Takekazu OkadaToshihiro MakinoAkihito MasudaTakashi Kawanami
    • H01P132
    • H01P1/387
    • A nonreciprocal circuit device requires less layout space when single-board capacitors are used, and meets demands for a smaller and lighter configuration. An isolator (nonreciprocal circuit device) comprises a ferrite, a permanent magnet applying a direct current magnetic field to the ferrite, a plurality of central electrodes respectively having ports disposed on the ferrite and a single-based matching capacitor with capacitor electrodes formed on both surfaces of a dielectric substrate such that the capacitor electrodes are opposed to each other and sandwich the dielectric substrate. In various embodiments, the permanent magnet and/or; the ferrite has a square shape and the capacitor electrodes of the matching capacitors are arranged at an angle of 60 to 90 degrees with respect a mounting surface and the matching capacitors are disposed so as to surround the sides of the ferrite.
    • 当使用单板电容器时,不可逆电路器件需要较少的布局空间,满足更小更轻的配置要求。 隔离器(非可逆电路器件)包括铁氧体,向铁氧体施加直流磁场的永磁体,分别具有设置在铁氧体上的端口的多个中心电极和形成在两个表面上的电容器电极的单一匹配电容器 使得电容器电极彼此相对并夹住电介质基板。 在各种实施例中,永磁体和/或 铁氧体为正方形,匹配电容器的电容器电极相对于安装面以60度〜90度的角度配置,匹配电容器配置成包围铁氧体的侧面。
    • 3. 发明授权
    • Nonreciprocal circuit device with a dielectric film between the magnet and substrate
    • 不可逆电路器件,在磁体和衬底之间具有介电膜
    • US06222425B1
    • 2001-04-24
    • US09281496
    • 1999-03-30
    • Takekazu OkadaToshihiro MakinoTakashi KawanamiTakashi Hasegawa
    • Takekazu OkadaToshihiro MakinoTakashi KawanamiTakashi Hasegawa
    • H01P1383
    • H01P1/387
    • A nonreciprocal circuit device having a circuit element on a dielectric substrate providing at least part of a low-pass filter, the nonreciprocal circuit device having less interference and irregular operation caused by spurious radiation, and in addition, with reduced insertion loss. A lumped constant isolator (an example of a nonreciprocal circuit device) includes a magnet provided for applying a DC magnetic field to a magnetic assembly, which in turn has multiple intersecting central electrodes provided adjacent to a ferrite body. A dielectric substrate is disposed in between the permanent magnet and the magnetic assembly. An inductor forming part of a &pgr;-type low-pass filter is provided as an example of a circuit element on the dielectric substrate, a dielectric layer or film being disposed between the dielectric substrate and the magnet.
    • 一种不可逆电路装置,其具有提供低通滤波器的至少一部分的电介质基板上的电路元件,该不可逆电路装置具有较少的干扰和由杂散辐射引起的不规则操作,此外,具有减小的插入损耗。 集总常数隔离器(不可逆电路器件的示例)包括用于向磁性组件施加DC磁场的磁体,磁体组件又具有邻近铁氧体的多个相交中心电极。 电介质基板设置在永磁体和磁性组件之间。 作为电介质基板上的电路元件的一个例子,设置了形成pi型低通滤波器的一部分的电感器,介电层或膜设置在电介质基片和磁体之间。
    • 6. 发明授权
    • Nonreciprocal circuit device
    • 不可逆电路器件
    • US6037844A
    • 2000-03-14
    • US170909
    • 1998-10-13
    • Toshihiro MakinoAkihito MasudaTakashi Kawanami
    • Toshihiro MakinoAkihito MasudaTakashi Kawanami
    • H01P1/36H01P1/383H01P1/387
    • H01P1/387
    • In the disclosed nonreciprocal circuit device, which employs a single-board-type capacitor, the problem of electrode peeling can be avoided. The nonreciprocal circuit device has characteristics such that attenuation is small in the direction of signal transmission and attenuation is large in the reverse direction and has matching capacitors disposed in signal input/output ports. The matching capacitors are formed of single-board-type capacitors including capacitor electrodes formed so as to be opposed each other on both main surfaces of a dielectric substrate with the substrate in between. An outer peripheral edge of a grounding electrode (or another connected electrode), to which a capacitor electrode of the single-board-type capacitor is connected, is positioned inwardly from an outer peripheral edge of the capacitor electrode.
    • 在所公开的使用单板型电容器的不可逆电路装置中,可以避免电极剥离的问题。 不可逆电路器件具有使信号传输方向衰减小的特性,反向衰减大,信号输入/输出端口配置匹配电容器。 匹配电容器由包括电容器电极的单板型电容器形成,电容器电极形成为在电介质基板的两个主表面上彼此相对,并且基板在其间。 连接有单板型电容器的电容电极的接地电极(或另一连接电极)的外周边缘从电容器电极的外周边缘向内侧设置。