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    • 51. 发明授权
    • Thickness extensional vibration mode piezoelectric resonator and
piezoelectric resonator component
    • 厚度拉伸振动模式压电谐振器和压电谐振器元件
    • US06051910A
    • 2000-04-18
    • US75901
    • 1998-05-11
    • Hiroaki KaidaMitsuhiro YamadaJiro Inoue
    • Hiroaki KaidaMitsuhiro YamadaJiro Inoue
    • H03H9/05H03H9/56H01L41/04
    • H03H9/178H03H9/0547
    • A thickness extensional piezoelectric resonator utilizes harmonics of a thickness extensional vibration mode and has a significantly reduced size and significantly increased capacitance while not being susceptible to the effects of the stray capacitance of a circuit board upon which the resonator is mounted. The resonator includes a piezoelectric strip, first and second excitation electrodes located on one of two respective major surfaces of the piezoelectric strip, and internal electrodes disposed inside the piezoelectric strip. The first and second excitation electrodes are located on opposite sides of the piezoelectric strip. The internal electrodes are located opposite to the first and second excitation electrodes to thereby define a vibrating portion. Vibration-attenuating portions are located on opposite sides of the vibrating portion only along the longitudinal direction of the piezoelectric strip. No vibration-attenuating portions are located in the lateral direction of the piezoelectric strip.
    • 厚度延伸压电谐振器利用厚度延伸振动模式的谐波,并且具有显着减小的尺寸和显着增加的电容,同时不会受到安装谐振器的电路板的杂散电容的影响。 谐振器包括压电条,位于压电条的两个相应主表面中的一个上的第一和第二激励电极以及设置在压电条内部的内部电极。 第一和第二激励电极位于压电条的相对侧上。 内部电极与第一和第二激励电极相对设置,从而限定振动部分。 振动衰减部仅沿着压电条的长度方向位于振动部的相对侧。 没有振动衰减部分位于压电条的横向方向上。
    • 53. 发明授权
    • Piezoelectric component
    • 压电元件
    • US6016024A
    • 2000-01-18
    • US832072
    • 1997-04-02
    • Toshihiko UnamiJiro InoueTakashi YamamotoTetsuo Takeshima
    • Toshihiko UnamiJiro InoueTakashi YamamotoTetsuo Takeshima
    • H01L41/08H03H9/09H03H9/10H03H9/17H03H9/60
    • H03H9/178H03H9/1014H03H9/605
    • A piezoelectric component achieves a desired Qm by using a presently available piezoelectric material. The piezoelectric component includes a supporting substrate on which pattern electrodes are provided. Electroconductive supporting members are disposed on the pattern electrodes, and a piezoelectric resonator is mounted on the supporting members. External electrodes of the piezoelectric resonator and the pattern electrodes are electrically connected to each other by the supporting members. Gaps between the piezoelectric resonator and the supporting substrate are filled with a first elastic material element. A second material element may be provided on the surface of the piezoelectric resonator disposed opposite to the surface of the resonator facing the supporting substrate. Only one of these elastic material elements or both these elastic material elements may be used.
    • 压电元件通过使用当前可用的压电材料来实现所需的Qm。 压电部件包括支撑基板,在其上设置有图案电极。 导电支撑构件设置在图案电极上,并且压电谐振器安装在支撑构件上。 压电谐振器的外部电极和图案电极通过支撑构件彼此电连接。 压电谐振器和支撑基板之间的间隙填充有第一弹性材料元件。 可以在与面向支撑基板的谐振器的表面相对设置的压电谐振器的表面上设置第二材料元件。 可以仅使用这些弹性材料元件中的一种或这两种弹性材料元件。
    • 54. 发明授权
    • Method of manufacturing a piezoelectric element
    • 制造压电元件的方法
    • US5991988A
    • 1999-11-30
    • US754839
    • 1996-11-22
    • Jun TabotaToshihiko UnamiJiro Inoue
    • Jun TabotaToshihiko UnamiJiro Inoue
    • G01P15/09H01L41/113H01L41/22
    • H01L41/1132G01P15/0922Y10T29/42
    • In a piezoelectric element (21), an internal electrode (31) is embedded in a piezoelectric ceramic body (22) to extend in its longitudinal direction, first to third surface electrodes (23 to 25, 27 to 29) are formed on upper and lower surfaces of the piezoelectric ceramic body (22) in first to third portions along the longitudinal direction, connecting electrodes (26, 30) are formed to connect the first to third surface electrodes (23 to 25, 27 to 29) with each other, the first to third portions are so polarized that the second portion is oppositely polarized to the first to third portions, and regions located above and under the internal electrode are polarized in opposite directions in the respective ones of the first to third portions.
    • 在压电元件(21)中,将内部电极(31)嵌入到压电陶瓷体(22)中,在其长度方向上延伸,第一至第三表面电极(23〜25,27〜29)形成在上部 压电陶瓷体(22)的沿着长度方向的第一至第三部分的下表面形成连接电极(26,30),以将第一至第三表面电极(23至25,27至29)彼此连接, 第一至第三部分被极化,使得第二部分与第一至第三部分相反地极化,并且位于第一至第三部分中的相应方向上位于内部电极上下的区域被偏振。
    • 56. 发明授权
    • Piezoelectric resonator and electronic component containing same
    • 压电谐振器和含有它的电子元件
    • US5912601A
    • 1999-06-15
    • US846740
    • 1997-04-30
    • Toshihiko UnamiJiro Inoue
    • Toshihiko UnamiJiro Inoue
    • H03H9/17H03H20060101H03H9/10H03H9/13H03H9/15H03H9/205H03H9/54H03H9/58H03H9/60
    • H03H9/178H03H9/1014H03H9/605
    • A piezoelectric resonator has a substantially rectangular-parallelpiped-shaped base member. The base member includes a plurality of laminated piezoelectric layers. The piezoelectric layers are polarized in the longitudinal direction of the base member such that the direction of polarization differs at adjacent piezoelectric layers. At opposite major surfaces of the plurality of piezoelectric layers, internal electrodes are disposed. The internal electrodes have surface areas with different sizes and therefore, areas of pairs of opposing electrodes have different sizes. The internal electrodes are alternately covered by at least two insulating films provided on opposing side surfaces of the base member. The at least two insulating films cover different internal electrodes. External electrodes are disposed on the same or the opposing side surfaces of the base member and the external electrodes are connected to the internal electrodes.
    • 一种压电谐振器具有基本上矩形的平行形状的基底构件。 基底构件包括多个层压压电层。 压电层在基体的纵向被极化,使得偏振方向在相邻的压电层处不同。 在多个压电层的相对的主表面上设置有内部电极。 内部电极具有不同尺寸的表面区域,因此,相对电极对的面积具有不同的尺寸。 内部电极交替地被设置在基体的相对侧面上的至少两个绝缘膜覆盖。 至少两个绝缘膜覆盖不同的内部电极。 外部电极设置在基体的相同或相对侧面上,外部电极与内部电极连接。
    • 57. 发明授权
    • Anti-theft mechanism for a vehicle door lock device
    • 车门锁装置的防盗机构
    • US5666834A
    • 1997-09-16
    • US358559
    • 1994-12-14
    • Jiro Inoue
    • Jiro Inoue
    • E05B85/24E05B77/28E05B79/04E05B79/10E05B79/22E05B81/04B60R25/00
    • E05B77/28E05B81/16E05B81/06Y10S292/27Y10T70/5889
    • An anti-theft mechanism for a vehicle door lock device comprises a latch mechanism having a latch engaging with a striker, an opening means for releasing the engagement of the latch and the striker, and a lock lever connected to a key cylinder of a door and changed between a locked position and an unlocked position, and a relay mechanism having a sill knob lever connected to a sill knob of the door, an anti-theft member arranged to be changed between an anti-theft cancelled position and an anti-theft position, and an actuator for anti-theft operation for changing the anti-theft member. The sill knob lever is arranged to be pushed by the anti-theft member to return to the locked position, if the anti-theft member switches from the anti-theft position to the cancelled position when the sill knob lever is in the unlocked position.
    • 一种用于车门锁装置的防盗机构包括具有与撞针啮合的闩锁的闩锁机构,用于释放闩锁和撞针的接合的开启装置,以及连接到门的钥匙筒的锁定杆, 在锁定位置和解锁位置之间改变,以及具有连接到门的门槛钮的门槛杠杆的中继机构,设置成在防盗取消位置和防盗位置之间改变的防盗构件 以及用于改变防盗构件的用于防盗操作的致动器。 如果在门槛控制柄处于解锁位置时,如果防盗构件从防盗位置切换到取消位置,则门槛钮杆被布置成被防盗构件推动以返回到锁定位置。