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    • 13. 发明申请
    • MEMS RESONATOR AND MANUFACTURING METHOD OF THE SAME
    • MEMS谐振器及其制造方法
    • US20100109815A1
    • 2010-05-06
    • US12684336
    • 2010-01-08
    • Shogo INABAAkira SATOToru WATANABETakeshi MORI
    • Shogo INABAAkira SATOToru WATANABETakeshi MORI
    • H01P7/00
    • H03H3/0073H03H9/1057Y10S977/721
    • A method is for manufacturing a microelectromechanical system resonator having a semiconductor device and a microelectromechanical system structure unit formed on a substrate. The method includes: forming a lower electrode of an oxide-nitride-oxide capacitor unit included in the semiconductor device using a first silicon layer; forming, using a second silicon layer, a substructure of the microelectromechanical system structure unit and an upper electrode of the oxide-nitride-oxide capacitor unit included in the semiconductor device; and forming, using a third silicon layer, a superstructure of the microelectromechanical system structure unit and a gate electrode of a complementary metal oxide semiconductor circuit unit included in the semiconductor device.
    • 一种用于制造具有形成在基板上的半导体器件和微机电系统结构单元的微机电系统谐振器的方法。 该方法包括:使用第一硅层形成包括在半导体器件中的氧化物 - 氮化物 - 氧化物电容器单元的下电极; 使用第二硅层形成微机电系统结构单元的子结构和包括在半导体器件中的氧化物 - 氮化物 - 氧化物电容器单元的上电极; 以及使用第三硅层形成所述微机电系统结构单元的上部结构和包括在所述半导体器件中的互补金属氧化物半导体电路单元的栅电极。
    • 14. 发明授权
    • MEMS resonator and manufacturing method of the same
    • MEMS谐振器及其制造方法相同
    • US07671430B2
    • 2010-03-02
    • US11928519
    • 2007-10-30
    • Shogo InabaAkira SatoToru WatanabeTakeshi Mori
    • Shogo InabaAkira SatoToru WatanabeTakeshi Mori
    • H01L21/66
    • H03H3/0073H03H9/1057Y10S977/721
    • A method is for manufacturing a microeletromechanical system resonator having a semiconductor device and a microelectromechanical system structure unit formed on a substrate. The method includes: forming a lower electrode of an oxide-nitride-oxide capacitor unit included in the semiconductor device using a first silicon layer; forming, using a second silicon layer, a substructure of the microelectromechanical system structure unit and an upper electrode of the oxide-nitride-oxide capacitor unit included in the semiconductor device; and forming, using a third silicon layer, a superstructure of the microelectromechanical system structure unit and a gate electrode of a complementary metal oxide semiconductor circuit unit included in the semiconductor device.
    • 一种用于制造具有半导体器件和形成在衬底上的微机电系统结构单元的微机械系统谐振器的方法。 该方法包括:使用第一硅层形成包括在半导体器件中的氧化物 - 氮化物 - 氧化物电容器单元的下电极; 使用第二硅层形成微机电系统结构单元的子结构和包括在半导体器件中的氧化物 - 氮化物 - 氧化物电容器单元的上电极; 以及使用第三硅层形成所述微机电系统结构单元的上部结构和包括在所述半导体器件中的互补金属氧化物半导体电路单元的栅电极。
    • 15. 发明申请
    • EXTERNAL SKIN PATCH
    • 外用皮肤护理
    • US20100003312A1
    • 2010-01-07
    • US12428663
    • 2009-04-23
    • Makoto KanebakoGou YanagimotoToru WatanabeShouichi Hasegawa
    • Makoto KanebakoGou YanagimotoToru WatanabeShouichi Hasegawa
    • A61K9/70A61K47/30A61P43/00
    • A61K9/7061A61K9/7076
    • An object of the invention is to provide a hydrous external skin patch, which has adherence sufficient for adhering to an affected area for several times without using an auxiliary tape or the like and is excellent in utility so that the patch can be easily peeled off even if the paste adheres to itself before application to the affected area.The hydrous external skin patch is characterized in that a paste of the patch comprises 0.1 to 10 wt % of a drug, 0.1 to 20 wt % of an adhesive base, 0.001 to 3.0 wt % of a crosslinker, 15 to 60 wt % of water, 2 to 20 wt % of a tackifier resin, 0.4 to 10 wt % of a dissolving agent for the tackifier resin, 0.1 to 30 wt % of an oil absorbing inorganic powder, and 0.1 to 20 wt % of a dextrin fatty acid ester and has a thickness of 100 to 1,000 μm.
    • 本发明的目的是提供一种含水的外用皮肤贴剂,其具有足以粘附到受影响区域上几次的粘附性,而不使用辅助带等,并且具有优异的效用,使得贴剂可以容易地剥离甚至 如果膏剂在应用于受影响的区域之前粘附于自身。 含水外皮肤的特征在于,贴剂的糊剂含有0.1〜10重量%的药物,0.1〜20重量%的粘合剂基质,0.001〜3.0重量%的交联剂,15〜60重量%的水 ,增粘树脂2〜20重量%,增粘树脂用溶解剂0.4〜10重量%,吸油性无机粉末0.1〜30重量%,糊精脂肪酸酯0.1〜20重量%,糊精 厚度为100〜1000μm。
    • 19. 发明授权
    • Magnetic head assembly having thin-film dummy patterns provided on surface of gimbal spring
    • 磁头组件,其具有设置在万向弹簧表面上的薄膜虚拟图案
    • US06940694B2
    • 2005-09-06
    • US10901063
    • 2004-07-29
    • Takeshi OhweToru WatanabeRyosuke KoishiSeizi Yoneoka
    • Takeshi OhweToru WatanabeRyosuke KoishiSeizi Yoneoka
    • G11B5/48
    • G11B5/4853
    • A magnetic head assembly equipped with a slider having a magnetic head and a gimbal spring on which the slider is mounted with an adhesive. The gimbal spring is supported by beam portions of a load beam. A thin-film wiring pattern formed on the load beam extends to a surface of the gimbal spring. A tip of the wiring pattern acts as a terminal portion that is connected to input/output terminals integrally formed on the slider. The slider is locked on the gimbal spring by electrically conducting bonding and an adhesive. A plurality of dummy patterns having the same height as the wiring pattern are provided at a position corresponding to where the adhesive is dropped on the surface of the gimbal spring. The adhesive is placed in an area sandwiched by the dummy patterns on the gimbal spring.
    • 一种磁头组件,其配备有具有磁头和万向弹簧的滑块,滑动器上用粘合剂安装。 万向弹簧由负载梁的梁部分支撑。 形成在负载梁上的薄膜布线图案延伸到万向弹簧的表面。 布线图案的尖端用作连接到一体地形成在滑块上的输入/输出端子的端子部分。 滑块通过导电接合和粘合剂被锁定在万向弹簧上。 在与万向弹簧的表面上的粘合剂落下的位置相对应的位置处设置有与布线图案相同高度的多个虚设图案。 将粘合剂放置在万向弹簧上的虚拟图案夹着的区域中。
    • 20. 发明申请
    • Magnetic head assembly of magnetic disk drive for stabilizing flying height of head
    • 用于稳定磁头高度的磁盘驱动器磁头组件
    • US20050002125A1
    • 2005-01-06
    • US10901063
    • 2004-07-29
    • Takeshi OhweToru WatanabeRyosuke KoishiSeizi Yoneoka
    • Takeshi OhweToru WatanabeRyosuke KoishiSeizi Yoneoka
    • G11B5/48G11B5/60
    • G11B5/4853
    • A magnetic head assembly equipped with a slider and a gimbal spring to which the slider is secured with an adhesive agent. According to one aspect, at least one slit is formed in the gimbal spring opposing the adhesion surface of the slider, so that expansion and contraction of the gimbal spring caused by a change in the temperature is hardly transferred to the slider. According to a second aspect, the Young's modulus after hardening of the adhesive agent applied onto the adhesion surface of the slider is selected to be smaller than about {fraction (1/13000)} of the Young's modulus of the slider material or of the gimbal spring material. According to the first aspect, therefore, the area of the gimbal spring on which the adhesive agent is applied is limited by the slit. According to the second aspect, the Young's modulus of the adhesive agent after hardening is so small that the warping amount of the slider caused by a change in the temperature lies within a predetermined range. The warping amount of the slider in the magnetic head assembly is hence suppressed to lie within an allowable range despite a change in the temperature, and floating performance of the slider is stabilized.
    • 具有滑块和万向弹簧的磁头组件,滑块用粘合剂固定到该磁头组件上。 根据一个方面,在与向滑块的粘合表面相对的万向弹簧中形成至少一个狭缝,使得由温度变化引起的万向弹簧的膨胀和收缩几乎不传递到滑块。 根据第二方面,施加到滑块的粘合表面上的粘合剂硬化后的杨氏模量被选择为小于大约{部分(滑块材料或万向弹簧材料的杨氏模量的1/13000) 因此,根据第一方面,施加了粘合剂的万向弹簧的面积受到狭缝的限制,根据第二方面,硬化后的粘合剂的杨氏模量小至翘曲量 由于温度变化引起的滑动件在预定的范围内,因此即使温度变化,磁头组件中的滑块的翘曲量也被抑制在容许范围内,滑动件的浮动性能为 稳定