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    • 2. 发明授权
    • Stripline filter and manufacturing method thereof
    • 带状过滤器及其制造方法
    • US08008995B2
    • 2011-08-30
    • US12794084
    • 2010-06-04
    • Nobuyoshi HondaTatsuya TsujiguchiYasunori Takei
    • Nobuyoshi HondaTatsuya TsujiguchiYasunori Takei
    • H01P1/205H01P1/203H01P7/08
    • H01P1/20354H01P1/20381H01P11/007
    • The element size of a stripline filter that achieves a high efficiency percentage with optional stable filter characteristics, is reduced. A stripline filter includes substantially L-shaped top surface resonant lines. The top surface resonant lines include connection electrode parts, first line parts, and second line parts. The connection electrode parts are formed so as to have a width greater than line widths of side surface resonant lines. Each line part faces an edge of a corner portion of a central top surface resonant line at an interval. An edge of each first line part on an edge side of a dielectric substrate, other than a connection portion with the connection electrode part, faces an edge of the dielectric substrate at an interval.
    • 实现具有可选的稳定滤波器特性的高效率百分比的带状线滤波器的元件尺寸减小。 带状线滤波器包括基本上L形的顶表面谐振线。 顶面谐振线包括连接电极部分,第一线部分和第二线部分。 连接电极部形成为具有大于侧面谐振线的线宽的宽度。 每个线部分以间隔面对中心顶面谐振线的角部的边缘。 除了与连接电极部分的连接部分之外,电介质基板的边缘侧上的每个第一线部分的边缘以一定间隔面对电介质基板的边缘。
    • 3. 发明申请
    • STRIPLINE FILTER
    • 条带过滤器
    • US20100182104A1
    • 2010-07-22
    • US12752433
    • 2010-04-01
    • Yasunori TakeiTatsuya TsujiguchiNobuyoshi Honda
    • Yasunori TakeiTatsuya TsujiguchiNobuyoshi Honda
    • H01P1/203
    • H01P1/20327H01P1/20381
    • A stripline filter includes a ground electrode, input and output electrodes, top-surface resonant lines, side-surface resonant lines, side-surface line portions, connection electrode portions, and top-surface line portions. The ground electrode is provided on the bottom side of a dielectric substrate. The input and output electrodes are provided on the bottom surface of the substrate so as to be separate from the ground electrode. The top-surface resonant lines are provided on the top surface of the substrate. The side-surface line portions, the connection electrode portions, and the top-surface line portions connect two of the top-surface resonant lines to the input and output electrodes. The line width of the two top-surface resonant lines is smaller than the line width of the remainder of the top-surface resonant lines.
    • 带状线滤波器包括接地电极,输入和输出电极,顶表面谐振线,侧表面谐振线,侧表面线部分,连接电极部分和顶表面线部分。 接地电极设置在电介质基板的底侧。 输入和输出电极设置在基板的底表面上以与接地电极分离。 顶表面谐振线设置在基板的顶表面上。 侧表面线部分,连接电极部分和顶表面线部分将两个顶表面谐振线连接到输入和输出电极。 两个顶表面谐振线的线宽小于顶表面谐振线的其余部分的线宽。
    • 6. 发明授权
    • Characteristic adjusting method for dielectric filter using a grinding
tool
    • 使用研磨工具的介质过滤器特性调整方法
    • US6078230A
    • 2000-06-20
    • US843433
    • 1997-04-15
    • Haruo MatsumotoYasuo YamadaYukihiro KitaichiTadahiro YoritaHideyuki KatoTatsuya TsujiguchiHisashi MoriHitoshi Tada
    • Haruo MatsumotoYasuo YamadaYukihiro KitaichiTadahiro YoritaHideyuki KatoTatsuya TsujiguchiHisashi MoriHitoshi Tada
    • H01P1/205H01P1/201H01P11/00
    • H01P1/2056Y10T29/49016
    • A method of adjusting characteristics of a dielectric filter having integral electromagnetic shielding, the dielectric filter comprises a dielectric body having an outer surface including first and second end surfaces and side surfaces extending between the first and second end surfaces; an external conductor disposed on the outer surface of the dielectric body and providing integral electromagnetic shielding of the dielectric filter; at least one hole extending through the dielectric body between the first and second end surfaces; a respective pair of internal conductors provided in the at least one hole and conductively connected to the external conductor at respective ends of the hole, a respective non-conductive portion in the hole being spaced from both ends and thereby separating the pair of internal conductors and defining a respective capacitance between the pair of internal conductors; and signal input and output electrodes provided on the outer surface of the dielectric body and electrically isolated from the external conductor. According to the method, a portion of the dielectric material is removed, for example by grinding, to form the respective non-conductive portion in the hole. The hole may have a changing diameter along its length, due to a hollow formed in one end surface, the non-conductive portion being adjacent to the hollow; or due to a narrowed throttle portion formed at or near the end surface, the non-conductive portion being formed on the throttle portion. Alternatively, the hole may have a substantially constant cross-section, and the non-conductive portion may be substantially flush with the inner surface of the hole. The dielectric body may be regular in shape or may have a side surface with portions spaced from the resonator hole by different respective distances.
    • 一种调节具有整体电磁屏蔽的介质滤波器的特性的方法,所述介质滤波器包括具有包括第一和第二端面以及在所述第一和第二端面之间延伸的侧表面的外表面的电介质体; 设置在电介质体的外表面上并提供介质滤波器的整体电磁屏蔽的外部导体; 至少一个孔延伸穿过第一和第二端面之间的电介质体; 设置在所述至少一个孔中的相应的一对内部导体,并且在所述孔的相应端处导电地连接到所述外部导体,所述孔中的相应的非导电部分与两端间隔开,从而将所述一对内部导体和 限定所述一对内部导体之间的相应电容; 以及设置在电介质体的外表面上并与外部导体电隔离的信号输入和输出电极。 根据该方法,例如通过研磨去除介电材料的一部分,以在孔中形成相应的非导电部分。 由于在一个端面形成的中空孔,孔的长度可以具有变化的直径,非导电部分与中空部相邻; 或者由于形成在端面处或附近的节流部分变窄,所以非导电部分形成在节流部分上。 或者,孔可以具有基本上恒定的横截面,并且非导电部分可以与孔的内表面基本上齐平。 电介质体的形状可以是规则的,也可以具有不同的距离的与谐振器孔隔开的侧面。
    • 7. 发明授权
    • Dielectric filter
    • 介质过滤器
    • US5905420A
    • 1999-05-18
    • US783074
    • 1997-01-15
    • Tatsuya TsujiguchiHaruo MatsumotoHideyuki Kato
    • Tatsuya TsujiguchiHaruo MatsumotoHideyuki Kato
    • H01P1/205H01P1/213H01P1/202H01P5/12
    • H01P1/2136H01P1/2056
    • A dielectric filter is provided which permits one to obtain desired external coupling easily without lowering Qo of resonators. The filter comprises a dielectric block having an open end surface and a shorted end surface and provided with resonator holes. Excitation holes are formed in the block outside the resonator holes, respectively. Input/output electrodes are formed on the open end-surface. The electrodes are electrically connected with conductors formed inside the excitation holes but isolated from an outer conductor. The conductors inside the excitation holes are electrically connected with the outer conductor on the shorted end surface. The excitation holes are electromagnetically coupled to the respective adjacent resonator holes, thus providing external coupling.
    • 提供了一种介质滤波器,其允许在容易地获得期望的外部耦合而不降低谐振器的Qo。 该滤波器包括具有开放端面和短路端面并具有谐振孔的电介质块。 在谐振器孔外部的块中分别形成激励孔。 输入/输出电极形成在开口端面上。 电极与形成在激发孔内部但与外部导体隔离的导体电连接。 励磁孔内的导体与短路端面上的外导体电连接。 励磁孔电磁耦合到各个相邻的谐振器孔,从而提供外部耦合。
    • 8. 发明授权
    • Dielectric filter
    • 介质过滤器
    • US5841331A
    • 1998-11-24
    • US799276
    • 1997-02-13
    • Tatsuya Tsujiguchi
    • Tatsuya Tsujiguchi
    • H01P1/205H01P7/04H01P1/202
    • H01P1/2056
    • Resonance holes whose inner surfaces are covered with an inner conductor (or other inner conductor structures) are formed in a dielectric block such that the resonance holes extend between two opposing end faces. The outer surface of the dielectric block is covered with an outer conductor. Input/output electrodes are formed out of part of the outer conductor at predetermined locations on the surface of the dielectric block. A slot is formed near one end face of the dielectric block so that the inner conductors are separated by the slot into isolated parts. By means of the slot, an electrically open end of each resonator is formed at a location spaced inward from the physical end face. Thus it is possible to produce a low-cost high-performance dielectric filter in which an electrically open end is formed with high accuracy at a location spaced inward from the physical end face of a dielectric block.
    • 其内表面被内部导体(或其它内部导体结构)覆盖的谐振孔形成在介质块中,使得谐振孔在两个相对的端面之间延伸。 介质块的外表面被外导体覆盖。 在介质块表面的预定位置处,外部导体的一部分形成输入/输出电极。 在介质块的一个端面附近形成槽,使得内部导体由槽分隔成隔离部分。 通过该槽,每个谐振器的电开路端形成在与物理端面向内隔开的位置处。 因此,可以生产一种低成本的高性能介质滤波器,其中在与介质块的物理端面向内隔开的位置处以高精度形成电开放端。
    • 10. 发明授权
    • Dielectric bandpass filter
    • 介质带通滤波器
    • US5633617A
    • 1997-05-27
    • US397485
    • 1995-03-02
    • Tatsuya TsujiguchiHaruo Matsumoto
    • Tatsuya TsujiguchiHaruo Matsumoto
    • H01P1/205H01P1/212
    • H01P1/2056
    • To reduce the number of components and enable the mounting work of a filter unit onto a printed substrate without using a metal case, a filter unit of three-state structure with resonators is constructed in which an electrode is formed on an inner peripheral surface of each through-hole and an outer peripheral surface of a dielectric member except for one end face, and connector terminals each composed of a pin and an insert member are inserted into opening portion of the end face of the through-holes to form a dielectric bandpass filter. An enlarged insert portion is formed in the opening portion of each through-hole so as to form a stepped portion between the insert portion and a non-insert portion. The insert member has the same configuration as that of the insert portion and is inserted and fitted in the insert portion without projecting from the end face. At the same time, the movement of the insert member toward the non-insert portion is restricted by the stepped portion. The connector terminals are mounted in a stationary manner in a predetermined position within the through-holes.
    • 为了减少部件的数量并且能够在不使用金属外壳的情况下将过滤器单元安装到印刷基板上,构造了具有谐振器的三态结构的滤波器单元,其中在每个的内周面上形成电极 通孔和除了一个端面之外的电介质构件的外周表面,并且每个由销和插入构件构成的连接器端子插入到通孔的端面的开口部分中,以形成介质带通滤波器 。 在每个通孔的开口部分中形成扩大的插入部分,以在插入部分和非插入部分之间形成阶梯部分。 插入构件具有与插入部分相同的构造,并且插入和装配在插入部分中而不从端面突出。 同时,插入构件向非插入部分的移动受到台阶部分的限制。 连接器端子以静止的方式安装在通孔内的预定位置。