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    • 11. 发明申请
    • Laminated capacitor
    • 层叠电容器
    • US20060279903A1
    • 2006-12-14
    • US11440121
    • 2006-05-25
    • Masaaki TogashiTatsuya Fukunaga
    • Masaaki TogashiTatsuya Fukunaga
    • H01G4/005
    • H01G4/35H01G4/232H01G4/30
    • A laminated capacitor includes a capacitor body and first, second, third and fourth external electrodes disposed on an external surface of the capacitor body. The capacitor body has first and second electrode patterns that are alternately laminated with dielectric layers between. The first electrode pattern provides a first internal electrode that is connected to both the first and second external electrodes. The second electrode pattern provides second and third internal electrodes. The second internal electrode is connected to both the third and fourth external electrodes. The third internal electrode is disposed in the same layer as the second internal electrode and connected to one of the third and fourth external electrodes.
    • 叠层电容器包括电容器主体和设置在电容器本体的外表面上的第一,第二,第三和第四外部电极。 电容器主体具有交替层叠有电介质层的第一和第二电极图案。 第一电极图案提供连接到第一和第二外部电极两者的第一内部电极。 第二电极图案提供第二和第三内部电极。 第二内部电极连接到第三和第四外部电极。 第三内部电极设置在与第二内部电极相同的层中,并连接到第三和第四外部电极之一。
    • 12. 发明授权
    • System for diagnosing facility apparatus, managing apparatus and diagnostic apparatus
    • 用于诊断设备装置,管理装置和诊断装置的系统
    • US07143011B2
    • 2006-11-28
    • US11330354
    • 2006-01-12
    • Osamu YoshieNobuyoshi SatoTatsuya Fukunaga
    • Osamu YoshieNobuyoshi SatoTatsuya Fukunaga
    • G06F19/00
    • G05B23/0229G05B2223/06
    • The present invention relates to a system for managing and diagnosing a state of a facility apparatus, and an object thereof is to provide a system for diagnosing the facility apparatus wherein, if information falling under a level of abnormality is extracted from gathered information on an operating state of the facility apparatus, an advanced analysis and diagnosis section on a facility diagnosis center side performs an advanced analysis and diagnosis process and promptly notifies a user side of the information on the best way of dealing with the facility apparatus determined to be abnormal, and further uploads a facility management data analysis program from the advanced analysis and diagnosis section to a facility monitoring section on the user side so that raw information of a large information amount can be analyzed on the user side without sending it to the facility diagnosis center side.
    • 本发明涉及一种用于管理和诊断设施设备的状态的系统,其目的是提供一种用于诊断设备设备的系统,其中如果从收集到的关于操作的信息中提取属于异常水平的信息 设备设备的状态,设备诊断中心侧的高级分析和诊断部分进行高级分析和诊断处理,并且迅速地向用户侧通知关于被确定为异常的设备设备的最佳处理方式的信息,以及 进一步将设备管理数据分析程序从高级分析和诊断部分上传到用户侧的设施监视部分,使得可以在用户侧分析大信息量的原始信息而不将其发送到设施诊断中心侧。
    • 13. 发明授权
    • RF module and method for arranging through holes in RF module
    • RF模块和RF模块中通孔安排的方法
    • US06992548B2
    • 2006-01-31
    • US10733349
    • 2003-12-12
    • Tatsuya Fukunaga
    • Tatsuya Fukunaga
    • H01P1/207H01P7/06
    • H01P3/121H01P3/127
    • The present invention is directed to optimize arrangement of through holes and enable electromagnetic waves to be efficiently propagated. A cylindrical waveguide has a dielectric substrate, ground electrodes which face each other, and a plurality of through holes for bringing the ground electrodes into conduction. In the case of determining arrangement of the through holes, first, the relation between a center interval and the radius of each of the through holes is obtained from required attenuance of electromagnetic waves. On the basis of the obtained relation, arrangement of the through holes is determined. Irrespective of a signal wavelength and the like conventionally used as parameters, the arrangement of the through holes can be optimized.
    • 本发明旨在优化通孔的布置,并且能够有效地传播电磁波。 圆柱形波导具有电介质基板,彼此面对的接地电极和用于使接地电极导通的多个通孔。 在确定通孔的布置的情况下,首先,通过电磁波的所需衰减获得每个通孔的中心间隔和半径之间的关系。 根据获得的关系,确定通孔的布置。 不管传统上用作参数的信号波长等,可以优化通孔的布置。
    • 15. 发明授权
    • Signal transmission device, filter, and inter-substrate communication device
    • 信号传输装置,滤波器和基板间通信装置
    • US08810338B2
    • 2014-08-19
    • US13221525
    • 2011-08-30
    • Tatsuya Fukunaga
    • Tatsuya Fukunaga
    • H01P1/12H01P3/08
    • H01P1/20H01P1/20327H01P1/20345
    • A signal transmission device includes substrates and resonance sections resonating at the predetermined resonance frequency. At least one of the substrates is formed with two or more resonators in the second direction, and the remaining one or two or more of the substrates are each formed with one or more resonators in the second direction, and at least one of the resonance sections is configured by a plurality of resonators opposing one another in the first direction between the substrates, the opposing resonators form a coupled resonator resonating as a whole at the predetermined resonance frequency through electromagnetic coupling in a hybrid resonance mode, and in a state that the substrates are separated away from one another to fail to establish electromagnetic coupling thereamong, the resonators forming the coupled resonator resonate at any other resonance frequency different from the predetermined resonance frequency on the substrate basis.
    • 信号传输装置包括以预定谐振频率谐振的衬底和谐振区。 至少一个基板在第二方向上形成有两个或更多个谐振器,并且剩余的一个或两个或更多个基板在第二方向上分别形成有一个或多个谐振器,并且至少一个谐振段 由在基板之间的第一方向上彼此相对的多个谐振器构成,相对的谐振器通过电磁耦合以混合谐振模式形成以预定谐振频率整体谐振的耦合谐振器,并且在基板 在彼此分离的情况下不能建立电磁耦合,形成耦合谐振器的谐振器在基于衬底的基础上以与预定谐振频率不同的任何其它谐振频率谐振。
    • 16. 发明授权
    • Signal transmission device, filter, and inter-substrate communication device
    • 信号传输装置,滤波器和基板间通信装置
    • US08674791B2
    • 2014-03-18
    • US13233323
    • 2011-09-15
    • Tatsuya Fukunaga
    • Tatsuya Fukunaga
    • H01P3/08H01P7/08
    • H01P1/20345H01P3/003
    • A signal transmission device includes: a first substrate and a second substrate; a first resonance section including a first resonator and a second resonator electromagnetically coupled to each other; a second resonance section disposed side-by-side relative to the first resonance section, and electromagnetically coupled to the first resonance section to perform a signal transmission between the first and second resonance sections; and a first shielding electrode disposed between the first resonator and the second substrate and partially covering the first resonator to allow at least an open end of the first resonator to be covered therewith, and a second shielding electrode disposed between the second resonator and the first substrate and partially covering the second resonator to allow at least an open end of the second resonator to be covered therewith.
    • 信号传输装置包括:第一基板和第二基板; 第一谐振部分,包括彼此电磁耦合的第一谐振器和第二谐振器; 第二谐振部分,其相对于所述第一谐振部分并排布置,并且电磁耦合到所述第一谐振部分,以在所述第一和第二谐振部分之间执行信号传输; 以及第一屏蔽电极,设置在所述第一谐振器和所述第二基板之间并且部分地覆盖所述第一谐振器以允许所述第一谐振器的至少一个开口端被覆盖,以及设置在所述第二谐振器和所述第一基板之间的第二屏蔽电极 并且部分地覆盖所述第二谐振器以允许所述第二谐振器的至少一个开口端被覆盖。
    • 18. 发明授权
    • Triplexer circuit
    • 三路电路
    • US07495528B2
    • 2009-02-24
    • US11436024
    • 2006-05-18
    • Tatsuya Fukunaga
    • Tatsuya Fukunaga
    • H01P5/12H03H7/46
    • H04B1/52H03H2250/00H04B1/0053H04L25/0278
    • The present invention provides a triplexer circuit obtaining an impedance matching in each of frequency bands with a simple configuration and separating a signal excellently. Three filters are connected in parallel with each other and, for signals in a pass frequency band of one of the filters, the other two filters form a parallel resonant circuit. In this case, the total impedance of the whole parallel resonant circuit becomes infinite (∞) and the other two filters can be made open to the pass frequency band of the one filter. With the simple configuration in which the three filters are connected in parallel with each other, an impedance matching is obtained in each of the frequency bands, and excellent signal separation can be performed.
    • 本发明提供一种在三频多重器电路中获得具有简单配置的频带中的阻抗匹配并且极好地分离信号的三工器电路。 三个滤波器彼此并联连接,并且对于滤波器之一的通过频带中的信号,另外两个滤波器形成并联谐振电路。 在这种情况下,整个并联谐振电路的总阻抗变为无穷大(∞),另外两个滤波器可以对一个滤波器的通过频带开放。 利用三个滤波器彼此并联连接的简单配置,在每个频带中获得阻抗匹配,并且可以执行优异的信号分离。
    • 19. 发明申请
    • Stacked resonator
    • 堆叠谐振器
    • US20070171005A1
    • 2007-07-26
    • US11656540
    • 2007-01-23
    • Tatsuya Fukunaga
    • Tatsuya Fukunaga
    • B08B7/00H01P1/203
    • H01P1/20345
    • Provided are a stacked resonator capable of achieving miniaturization and minimum loss, and a stacked resonator capable of suppressing any unnecessary resonance mode due to interdigital-coupling. The stacked resonator includes a first conductor group having a plurality of conductor lines in a stacking arrangement, and a second conductor group having a plurality of other conductor lines in a stacking arrangement so as to be alternately provided opposing to the conductor lines in the first conductor group, thereby establishing an interdigital-coupling together with the first conductor group.
    • 提供能够实现小型化和最小损耗的堆叠谐振器,以及能够抑制由于叉指耦合而引起的不必要的共振模式的层叠谐振器。 堆叠谐振器包括具有堆叠布置中的多条导体线的第一导体组和具有堆叠布置中的多条其它导体线的第二导体组,以便与第一导体中的导体线交替设置 从而与第一导体组一起建立叉指耦合。
    • 20. 发明授权
    • System for diagnosing facility apparatus, managing apparatus and diagnostic apparatus
    • US07139681B2
    • 2006-11-21
    • US11330266
    • 2006-01-12
    • Osamu YoshieNobuyoshi SatoTatsuya Fukunaga
    • Osamu YoshieNobuyoshi SatoTatsuya Fukunaga
    • G06F19/00
    • G05B23/0229G05B23/0272G05B23/0275G05B2219/31205G05B2219/31434G05B2219/31448
    • The present invention relates to a system for managing and diagnosing a state of a facility apparatus, and an object thereof is to provide a system for diagnosing the facility apparatus wherein, if information falling under a level of abnormality is extracted from gathered information on an operating state of the facility apparatus, an advanced analysis and diagnosis section on a facility diagnosis center side performs an advanced analysis and diagnosis process and promptly notifies a user side of the information on the best way of dealing with the facility apparatus determined to be abnormal, and further uploads a facility management data analysis program from the advanced analysis and diagnosis section to a facility monitoring section on the user side so that raw information of a large information amount can be analyzed on the user side without sending it to the facility diagnosis center side.A facility management data processing section (3a) signal-processes facility state detecting information detected by facility state detectors (2a, 2b) mounted on a facility apparatus (1), a facility state determining section (4) determines a level of the signal-processed information comparing with a management reference value and outputs it, the facility monitoring section (5) gathers and processes the information related to the level-determined facility apparatus (1) and sends it to the advanced analysis and diagnosis section (6) via a communication network (10), and the advanced analysis and diagnosis section (6) performs an advanced analysis of the information and identifies a cause of the abnormality of the facility apparatus (1) concerned and improvement measures thereof to send the identified results to the facility monitoring section (5). In addition, it is characterized in that the facility management data analysis program is uploaded from the advanced analysis and diagnosis section (6) to the facility monitoring section (5) so that the advanced analysis can be performed on the user side B.