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    • 135. 发明授权
    • Method of producing electrostrictive effect element
    • US4681667A
    • 1987-07-21
    • US940210
    • 1986-12-10
    • Kazuaki UtsumiAtsushi OchiMasanori SuzukiMitsuhiro Midorikawa
    • Kazuaki UtsumiAtsushi OchiMasanori SuzukiMitsuhiro Midorikawa
    • H01L41/083H01L41/23H01L41/293H01L41/22
    • H01L41/293H01L41/083
    • A method of producing a laminated type electrostrictive effect element composed of a plurality of layers of electrostrictive material and a plurality of thin internal electrodes placed between adjacent layers of the electrostrictive material. The internal electrodes are exposed in side surfaces of the electrostrictive element parallel to the direction of lamination. Alternate internal electrodes are electrically connected in common to form a first group and a second group of internal electrodes, for connection to a power supply to produce a longitudinal electrostrictive strain in the direction of lamination. The method of the invention provides an efficient technique for electrically connecting alternate internal electrodes in common. The method involves forming an insulating layer of inorganic material such as glass or glass-ceramics over the portions of the exposed internal electrodes which are not to be electrically connected. The inorganic insulating material is formed by an electrophoretic process and sintered to produce an integral body consisiting of the internal electrodes, the electrostrictive material and the inorganic insulating material. In one embodiment of the invention the laminated type electrostrictive effect element is immersed in a suspension solution containing electrically charged glass powder. A voltage is applied to the internal electrodes on which the insulating layer is to be formed and an opposing electrode plate in the suspension solution is connected to the opposite polarity supply voltage. The positively charged glass powder is thereby deposited on the exposed portions of the internal electrodes connected to the voltage supply of selected polarity. Alternatively, the laminated type electrostrictive effect element is immersed in a suspension solution containing previously charged glass powder to deposit the glass powder onto the entire surface of the laminated structure. Thereafter, an electric field is applied between the internal electrodes on which the insulating layer is not to be formed and an opposing electrode plate disposed within the suspension to remove the glass powder from the selected internal electrodes.
    • 136. 发明授权
    • Device for loading products to a predetermined location
    • 用于将产品装载到预定位置的装置
    • US4625499A
    • 1986-12-02
    • US751237
    • 1985-07-02
    • Yoshimitsu YamaguchiMasanori SuzukiTadahiko Shibata
    • Yoshimitsu YamaguchiMasanori SuzukiTadahiko Shibata
    • B23P19/00B65G47/08B65H51/08B65H51/32B65B35/30
    • B65G47/082
    • A loading device including a frame, a stopper provided along the path through which the products are fed to the predetermined location, a threaded column supported in the frame and rotating in such a manner that the upper surfaces of the threads thereof move clockwise in a direction toward the stopper, a motor rotating the threaded column, and a conveyer supplying the product to the threaded column in such a manner that the product is engaged with the portion between the screw threads. The threaded column has external screw threads turning in a direction toward the predetermined location when the threaded column rotates. The portion between the screw threads receives the product to urge the product along by frictional force from the rotation of the threaded column until the end of the product butts against the stopper. This portion also feeds the product to the predetermined location while urging the end of the product against the stopper.
    • 一种装载装置,包括框架,沿着产品被供给到预定位置的路径设置的止动件,支撑在框架中并以这样的方式旋转的螺纹柱,使得其螺纹的上表面沿着方向顺时针方向 朝向止动件,旋转螺纹柱的马达和将产品供应到螺纹柱的输送机,使得产品与螺纹之间的部分接合。 当螺纹柱旋转时,螺纹柱具有朝向预定位置的方向转动的外螺纹。 螺纹之间的部分接收产品,以通过螺纹柱的旋转的摩擦力来推动产品,直到产品的端部抵靠塞子。 该部分还将产品馈送到预定位置,同时将产品的端部抵靠塞子。
    • 138. 发明授权
    • Multilayer ceramic substrate with interlayered capacitor
    • 带层间电容器的多层陶瓷基板
    • US4567542A
    • 1986-01-28
    • US603109
    • 1984-04-23
    • Yuzo ShimadaKazuaki UtsumiTeruyuki IkedaMasanori Suzuki
    • Yuzo ShimadaKazuaki UtsumiTeruyuki IkedaMasanori Suzuki
    • H05K1/03H05K1/09H05K1/16H05K3/46H01G4/10
    • H05K3/4611H05K1/162H05K3/4629H05K1/0306H05K1/092H05K3/4688
    • A multilayer ceramic substrate with an interlayered capacitor has a large electrostatic capacity and a high flexural strength, such as 1,500 Kg/cm.sup.2 or more, and yet is manufactured at a relatively low firing or sintering temperature. A first ceramic body includes a plurality of laminated first ceramic sheets with a high dielectric constant and with a plurality of internal electrodes sandwiching the respective first ceramic sheets to form capacitors therebetween. A second ceramic body is laminated over one side of the first ceramic body and has a plurality of laminated second ceramic sheets with a low dielectric constant. A plurality of first wiring layers are sandwiched between the second ceramic sheets. A third ceramic body is laminated over the other side of the first ceramic body and has a plurality of laminated third ceramic sheets formed of the same ceramic material that is used to make the second ceramic sheets. The second and third ceramic bodies are thicker than the first ceramic body. A second embodiment of the invention is a hybrid ceramic structure made of glass-ceramic insulator layers sandwiching at least one dielectric layer with interposed circuit patterns formed thereon.
    • 具有层间电容器的多层陶瓷基板具有大的静电容量和高弯曲强度,例如1500Kg / cm 2以上,并且在相对低的烧制或烧结温度下制造。 第一陶瓷体包括具有高介电常数的多个叠层的第一陶瓷片和多个内部电极,夹着各自的第一陶瓷片以在它们之间形成电容器。 第二陶瓷体层压在第一陶瓷体的一侧上,并且具有多个具有低介电常数的叠层的第二陶瓷片。 多个第一布线层被夹在第二陶瓷片之间。 第三陶瓷体层叠在第一陶瓷体的另一侧上,并且具有由用于制造第二陶瓷片的相同陶瓷材料形成的多个叠层的第三陶瓷片。 第二陶瓷体和第三陶瓷体比第一陶瓷体厚。 本发明的第二实施例是由玻璃 - 陶瓷绝缘体层制成的混合陶瓷结构,其夹持形成在其上的插入的电路图案的至少一个电介质层。
    • 140. 发明申请
    • PLASMA DISPLAY PANEL AND REAR PLATE FOR PLASMA DISPLAY PANEL
    • 等离子显示面板和等离子体显示面板的后板
    • US20130187838A1
    • 2013-07-25
    • US13574722
    • 2012-01-24
    • Kenji KiriyamaKoichi MizunoKoichi MatsumotoMasanori Suzuki
    • Kenji KiriyamaKoichi MizunoKoichi MatsumotoMasanori Suzuki
    • G09G3/28
    • H01J11/12H01J11/46
    • A rear plate has a display region, and a non-display region provided around the display region. The rear plate further has a plurality of connection terminal parts, a plurality of middle connection wiring groups, a plurality of electrodes, an insulating layer, and a barrier rib. The plurality of connection terminal parts is provided in the non-display region so as to be spaced out each other. The plurality of middle connection wiring groups is provided in the non-display region so as to be spaced out each other. The middle connection wiring group includes a plurality of middle connection wirings. A dummy part is provided between the plurality of middle connection wiring groups. A lower layer of the barrier rib has the electrode and at least one part of the middle connection wiring group and at least one part of the dummy part.
    • 后板具有显示区域和设置在显示区域周围的非显示区域。 后板还具有多个连接端子部,多个中间连接配线组,多个电极,绝缘层和隔壁。 多个连接端子部分设置在非显示区域中以便彼此间隔开。 多个中间连接配线组被设置在非显示区域中以彼此间隔开。 中间连接配线组包括多个中间连接配线。 在多个中间连接配线组之间设置有虚拟部。 隔壁的下层具有电极和中间连接配线组的至少一部分和虚拟部的至少一部分。