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    • 13. 发明授权
    • Method for manufacturing a piezoelectric device
    • 制造压电元件的方法
    • US06604267B2
    • 2003-08-12
    • US09887366
    • 2001-06-22
    • Kunio SawaiMotohide YonemuraSyuji Fujii
    • Kunio SawaiMotohide YonemuraSyuji Fujii
    • H04R1700
    • H03H9/56H03H9/0561H03H9/1035Y10T29/42Y10T29/49126Y10T29/49128Y10T29/4913
    • A method for manufacturing a piezoelectric device includes the steps of providing a piezoelectric substrate having a piezoelectric driving unit and laminating outer coating substrates on major surfaces thereof via adhesive layers. Each of the adhesive layers includes a first layer of an adhesive having a Shore D hardness after curing of not more than approximately 60 and disposed so as not to be exposed in a region of lateral side surfaces of the layered body provided with the external electrodes, second and third layers of an adhesive having a Shore D hardness of at least approximately 60, and the third layer of having a viscosity before curing of at least approximately 3.0×105 mPas at a temperature of 25° C. The third layer is disposed between the periphery of the first layer and the region of the lateral side surfaces of the layered body provided with the external electrodes.
    • 一种压电器件的制造方法包括以下步骤:提供具有压电驱动单元的压电基片,并通过粘合层在其主表面层压外涂层基片。 每个粘合剂层包括固化后的肖氏D硬度不大于约60的第一粘合剂层,并且被设置为不暴露在设置有外部电极的层叠体的侧面的区域中, 第二层和第三层具有至少约60的肖氏D硬度的粘合剂,并且在25℃的温度下具有至少约3.0×10 5 mPas的固化前的粘度的第三层。第三层设置在 第一层的周边和设置有外部电极的层叠体的侧面的区域。
    • 15. 发明授权
    • Method for manufacturing a ceramic resonator
    • 陶瓷谐振器的制造方法
    • US06568053B1
    • 2003-05-27
    • US09680014
    • 2000-10-05
    • Nak Cheol SungMin Soo KimJeong Ho Cho
    • Nak Cheol SungMin Soo KimJeong Ho Cho
    • H04R1700
    • H03H9/562H03H3/02Y10T29/42Y10T29/43Y10T29/435Y10T29/49121Y10T29/49146Y10T29/49169Y10T29/49171Y10T29/49789Y10T29/49798
    • A method for manufacturing a ceramic resonator is disclosed. The method comprises the steps of forming a ceramic piezoelectric device, a capacitor chip and a lead frame, assembling the piezoelectric device and the capacitor chip into the lead frame, and molding the assembled chip by using epoxy resin. A process for making the capacitor includes the steps of cutting a ceramic wafer into a plurality of sub-wafers, printing electrodes on one face of the sub-wafer in a dual-striped form, drying the sub-wafer thus printed, printing another electrode on a central part of another face of the sub-wafer so as to be overlapped with the electrodes of the one face of the sub-wafer, drying the sub-wafer thus printed, baking the sub-wafer thus dried; and cutting the sub-wafer thus baked into a plurality of capacitors.
    • 公开了陶瓷谐振器的制造方法。 该方法包括以下步骤:形成陶瓷压电器件,电容器芯片和引线框架,将压电器件和电容器芯片组装到引线框架中,并使用环氧树脂模制组装的芯片。 一种制造电容器的方法包括以下步骤:将陶瓷晶片切割成多个子晶片,在双晶片形式的印刷电极的一个面上印刷电极,干燥所述印刷的子晶片,印刷另一个电极 在子晶片的另一个面的中心部分上,与副晶片的一个面的电极重叠,干燥这样印刷的子晶片,烘烤被干燥的子晶片; 并将这样烘烤的子晶片切割成多个电容器。
    • 17. 发明授权
    • Method for manufacturing ink jet print head
    • 制造喷墨打印头的方法
    • US06481073B1
    • 2002-11-19
    • US09133372
    • 1998-08-13
    • Hiroto Sugahara
    • Hiroto Sugahara
    • H04R1700
    • B41J2/1632B41J2/1609B41J2/1623Y10T29/42Y10T29/49156Y10T29/49401
    • In the manufacture of an ink jet print head which ejects ink from ink jet grooves through nozzles by applying voltage to walls of the ink jet grooves that are formed of a piezoelectric material so as to deform the walls, a plurality of ejection factors, such as a groove width, groove depth, width of partition walls, and a piezoelectric constant of the piezoelectric material, which influence ejection of the ink, are selected as a combination and controlled so that the ink is ejected from the print head in a desired ejection state. When the groove depth and groove width of the jet ink grooves, for example, are selected as the combination of the ejection factors, the groove depth is corrected or controlled according to the groove width. Accordingly, the tolerances or allowable ranges of the ejection factors can be increased when manufacturing actuator substrates capable of ejecting ink in a desired ejection state, with a result of an improved yield of print heads.
    • 在制造喷墨打印头时,喷墨打印头通过将由压电材料形成的喷墨槽的壁施加电压以使壁变形,从喷墨槽中喷射墨水,从而喷射多个喷射因子,例如 选择影响喷墨的压电材料的凹槽宽度,槽深度,分隔壁的宽度和压电常数,并且进行控制,使得墨以所需的喷射状态从打印头喷射 。 当例如喷射墨水槽的凹槽深度和凹槽宽度被选择为喷射因子的组合时,根据凹槽宽度校正或控制凹槽深度。 因此,当制造能够以期望的喷射状态喷射墨水的致动器基板时,喷墨系数的公差或允许范围可以增加,结果是打印头的产量提高。
    • 19. 发明授权
    • Manufacturing method of actuator for ink jet printer head
    • 喷墨打印头执行器的制造方法
    • US06457221B1
    • 2002-10-01
    • US09553124
    • 2000-04-19
    • Sung June Park
    • Sung June Park
    • H04R1700
    • B41J2/161B41J2/1623B41J2/1628B41J2/1629B41J2/1642B41J2/1646H04R17/00Y10T29/42
    • A method for manufacturing an actuator for ink jet printer head is disclosed. The method comprises steps of providing a silicon wafer; forming an etching stop layer on bottom side of said silicon wafer; forming a vibration plate made of silicic material; bonding said vibration plate onto bottom side of said etching stop layer by way of heat treatment; forming a chamber plate made of silicic material; forming a chamber on said chamber plate by way of full etching of said chamber plate; bonding said chamber plate where said chamber is formed, onto bottom side of the vibration plate by way of heat treatment; completing an actuator infrastructure by removing said silicon wafer; forming a lower electrode on said infrastructure; forming a piezoelectric/electrostrictive film which actuates when electrified, in a definite pattern upon said lower electrode; and forming an upper electrode upon said piezoelectric/electrostrictive film.
    • 公开了一种制造用于喷墨打印机头的致动器的方法。 该方法包括提供硅晶片的步骤; 在所述硅晶片的底侧上形成蚀刻停止层; 形成由硅材料制成的振动板; 通过热处理将所述振动板粘合到所述蚀刻停止层的底侧; 形成由硅材料制成的室板; 通过完全蚀刻所述室板在所述室板上形成室; 通过热处理将形成所述室的所述腔室板结合到振动板的底侧; 通过去除所述硅晶片来完成致动器基础设施; 在所述基础设施上形成下电极; 形成压电/电致伸缩膜,所述压电/电致伸缩膜在所述下电极上以确定的图案通电时致动; 并在所述压电/电致伸缩膜上形成上电极。
    • 20. 发明授权
    • Method of manufacturing a piezoelectric torque sensor
    • 制造压电扭矩传感器的方法
    • US06442812B1
    • 2002-09-03
    • US09517828
    • 2000-03-02
    • John A. KovacichWayne S. KaboordFred J. BegaleRobert R. BrzyckiBirger PahlJames E. Hansen
    • John A. KovacichWayne S. KaboordFred J. BegaleRobert R. BrzyckiBirger PahlJames E. Hansen
    • H04R1700
    • G01L1/162G01L1/16G01L3/10Y10T29/42Y10T29/49103Y10T29/49146Y10T29/49171Y10T29/49766
    • A method of manufacturing a piezoelectric torque transducer is provided, comprising the steps of (a) forming a prepared area on a surface of a torsion member adapted to be strained by an applied torque; (b) providing a piezoelectric element having an axis of maximum strain sensitivity and disposing first and second electrodes on opposite faces of the element, respectively, and attaching an electrical lead to each electrode; (c) connecting electrical leads to the electrodes; and (d) disposing the element on the prepared area and orienting the axis of maximum strain sensitivity on the member and securing the element to the prepared area with a material selected from a group consisting of (i) adhesive material and (ii) potting material. The step of disposing the piezoelectric element includes configuring the piezoelectric element in a plate-shaped configuration and disposing a resilient annular member on each opposite face of the plate-shaped element and overlaying each of the annular members with a protective cover.
    • 提供一种制造压电扭矩传感器的方法,包括以下步骤:(a)在适于被施加的扭矩应变的扭转部件的表面上形成准备区域; (b)提供具有最大应变灵敏度轴的压电元件,并分别在元件的相对面上设置第一和第二电极,并将电导线附接到每个电极; (c)将电引线连接到电极; 和(d)将该元件放置在准备的区域上并将该最大应变敏感度轴定向在该构件上并用选自以下的材料将元件固定到准备区域:(i)粘合剂材料和(ii)灌封材料 。 设置压电元件的步骤包括将压电元件构造成板状构造,并且在板状元件的每个相对面上设置弹性环形构件,并用保护盖覆盖每个环形构件。