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    • 1. 发明专利
    • Spacer for recording disk drive apparatus and its manufacturing method
    • 用于记录磁盘驱动装置的分隔件及其制造方法
    • JP2006073083A
    • 2006-03-16
    • JP2004254317
    • 2004-09-01
    • Fujitsu LtdNsk Micro Precision Co LtdNskマイクロプレシジョン株式会社Sumitomo Osaka Cement Co Ltd住友大阪セメント株式会社富士通株式会社
    • UEDA MASANORIMATSUNAGA HARUYUKIKOSAKAI NORIYUKIHISATSUNE SHIGEFUMISEKIDO HARUO
    • G11B17/038G11B23/00
    • G11B17/0281G11B17/038
    • PROBLEM TO BE SOLVED: To provide a spacer for a recording disk drive apparatus and its manufacturing method in which accuracy of size and shape can be improved with less processes.
      SOLUTION: A spacer is constituted of first inorganic powder of a particle diameter 10 to 100μm, second inorganic powder of a particle diameter 0.01 to 1μm, and a mixed material including at least a resin material. The resin material is included with content of 40 capacity% or less for a whole capacity of the mixed material. Thus, different particle diameters are prescribed in the first and the second inorganic powder. The first and the second inorganic powder can be filled between the resin materials themselves with high density. In the spacer, high longitudinal elastic modulus can be established. Moreover, the resin material is included in the mixed material with content of 40 capacity% or less for the whole capacity of the mixed material. When the spacer is formed, variation from the prescribed size and shape is suppressed small as much as possible. Forming can be performed highly accurately. In manufacturing, the number of processes can be reduced.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种用于记录盘驱动装置的间隔件及其制造方法,其中通过较少的工艺可以提高尺寸和形状的精度。 解决方案:间隔物由粒径为10至100μm的第一无机粉末,粒径为0.01至1μm的第二无机粉末和至少包含树脂材料的混合材料构成。 对于混合材料的整个容量,树脂材料的含量为40容量%以下。 因此,在第一和第二无机粉末中规定了不同的粒径。 第一和第二无机粉末可以以高密度填充在树脂材料本身之间。 在间隔件中,可以建立高纵向弹性模量。 此外,对于混合材料的整个容量,树脂材料包含在容量为40容量%以下的混合材料中。 当形成间隔物时,尽可能地抑制规定尺寸和形状的变化。 可以高精度地进行成型。 在制造中,可以减少处理次数。 版权所有(C)2006,JPO&NCIPI
    • 2. 发明专利
    • Bearing manufacturing method and ball bearing device
    • 轴承制造方法和球轴承装置
    • JP2006329216A
    • 2006-12-07
    • JP2005149143
    • 2005-05-23
    • Nsk LtdNsk Micro Precision Co LtdNskマイクロプレシジョン株式会社日本精工株式会社
    • SUZUKI HIRONORIYAMAI MAKOTO
    • F16C43/04F16C19/16G11B21/02
    • PROBLEM TO BE SOLVED: To provide a low-manufacturing-cost bearing manufacturing technique for allowing the washing of a bearing in an assembled condition by restricting the axial movement of a raceway ring and for improving the rigidity of the bearing by increasing the number of rolling elements which can be incorporated.
      SOLUTION: This bearing manufacturing method comprises a step of inserting the plurality of rolling elements 12 arrayed at peripherally equal spaces near a raceway surface 10s of an outer ring 10 to arrange the rolling elements at equal spaces along the raceway surface, a step of inserting a cage 14 and a stepped inner ring 8 to incorporate the plurality of rolling elements held in pockets of the cage between the raceway surfaces of the inner and outer rings, a step of applying washing treatment in the state that a sealing plate is mounted on one side of the inner and outer rings incorporating the plurality of rolling elements, and a step of filling lubricant after finishing the washing treatment and mounting a remaining sealing plate on the other side of the inner and outer rings.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供一种低制造成本的轴承制造技术,用于通过限制滚道环的轴向运动来允许在组装状态下清洗轴承,并且通过增加轴承的刚度来提高轴承的刚度 可并入的滚动元件的数量。 解决方案:该轴承制造方法包括将多个滚动元件12插入在外圈10的滚道表面10s附近的外围相等的空间处,以沿着滚道表面等排列滚动元件的步骤, 插入保持架14和阶梯状内环8以将保持在凹槽中的多个滚动元件结合在内圈和外圈的滚道表面之间,在密封板安装的状态下进行洗涤处理的步骤 在内圈和外圈的一侧上结合有多个滚动元件,以及在完成洗涤处理之后填充润滑剂并将剩余密封板安装在内圈和外圈的另一侧上的步骤。 版权所有(C)2007,JPO&INPIT
    • 4. 发明公开
    • OPTICAL DEFLECTION ELEMENT
    • 优化ABLENKELEMENT
    • EP1887412A1
    • 2008-02-13
    • EP06746606.0
    • 2006-05-18
    • Micro Precision Co. & Ltd.
    • KAGAWA, KenichiASADA, Norihiro
    • G02B26/10B41J2/44B81B3/00G02B26/08
    • G02B26/085G02B26/105
    • The present invention can provide a downsized optical deflecting element having less operating fluctuations at low cost and further it can be actuated at lower frequencies and at wider deflecting angles. The optical deflecting element comprises a base component having magnets therein; a soft resin component comprising a fixed part adhered to the base component and a movable part having a coil therein supported by the fixed part via a pair of beams; and a reflector plate 3 adhered on to the movable part. The soft resin component consists of a first insulating resin part 2-1 and second conductive resin part 2-2 for electrical wiring.
    • 本发明可以以低成本提供具有较少工作波动的小尺寸的光学偏转元件,并且还可以在较低频率和较宽的偏转角度下被致动。 光学偏转元件包括其中具有磁体的基座部件; 软树脂部件,其包括固定部分,所述固定部分粘附到所述基部部件;以及可动部件,其具有线圈,其经由一对梁由所述固定部件支撑; 以及附着在可动部上的反射板3。 软树脂部件由用于电线的第一绝缘树脂部分2-1和第二导电树脂部分2-2组成。
    • 5. 发明公开
    • VARIABLE RESONANCE FREQUENCY RESONATOR AND METHOD FOR VARYING ITS RESONANCE FREQUENCY
    • FREQUENZRESONATOR MIT VARIABLER RESONANZ UND VERFAHREN ZUM VARIIEREN SEINER RESONANZFREQUENZ
    • EP1923995A1
    • 2008-05-21
    • EP06767411.9
    • 2006-06-27
    • Micro Precision Co. & Ltd.
    • Asada, Norihiro
    • H03H9/02B81B3/00H01L41/09H01L41/12H01P7/08H02N2/00
    • H01P7/06
    • The present invention provides a resonator capable of varying its resonance frequency of good performance with a low dispersion at a high manufacturing yield and a low cost. The resonator comprises a fixed electrode 1; a movable electrode 3 arranged with a predetermined distance apart from and parallel to the fixed electrode; a plurality of conductive leaf springs 2 with conductive property, all of which are bent outward or inward beforehand, arranged parallel apart from each other wherein, one end of each leaf spring is integrated into the fixed electrode and the other end of each leaf spring is integrated into the movable electrode; and an actuator 6 attached to the movable electrode for deforming the leaf springs by pushing or pulling the movable electrode.
    • 本发明提供一种能够以高制造成品率和低成本以低分散度改变其良好性能的谐振频率的谐振器。 谐振器包括固定电极1; 以与固定电极平行的方式配置的可动电极3; 具有导电性的多个导电板簧2,其全部都预先向外或向内弯曲,彼此平行布置,其中每个板簧的一端集成在固定电极中,每个板簧的另一端为 集成到可动电极中; 以及附接到可动电极的致动器6,用于通过推动或拉动可动电极使片簧变形。
    • 6. 发明公开
    • Electromagnetically actuating optical deflecting element
    • Elektromagnetischausgelöstesoptisches Ablenkungselement
    • EP1887407A2
    • 2008-02-13
    • EP07015165.9
    • 2007-08-02
    • Micro Precision Co. & Ltd.
    • Kagawa, KenichiAsada, Norihiro
    • G02B26/08
    • G02B26/085
    • The present invention provides an electromagnetically actuating optical deflecting elements which can be manufactured out of reduced number of components and are capable of being actuated at lower frequencies and at wider deflecting angles without causing mechanical influences of the metal wiring on beams of the optical deflecting element.
      For that purpose, the electromagnetically actuating optical deflecting element comprises: a movable part having a light reflecting plane and a coil; a base component having a magnetic field generating means; and a pair of beams which axially support said movable part on to the base component, The movable part is actuated by an electromagnetic force generated by an electric current flowing through the coil and the magnetic field generating means. The beams 108 are constituted by one material having functions to perform as conductors for supplying electric current to the coil, to support the movable part, to perform as springs for returning the movable part to a starting position.
    • 本发明提供了一种电磁致动的光学偏转元件,其可以由数量较少的部件制造并且能够在较低频率和较宽的偏转角度下被致动,而不会引起金属布线对光学偏转元件的光束的机械影响。 为此,电磁致动光学偏转元件包括:具有光反射面和线圈的可动部; 具有磁场产生装置的基座部件; 以及将所述可移动部件轴向地支撑在基部部件上的一对梁。可动部分由通过线圈和磁场产生装置的电流产生的电磁力致动。 梁108由具有作为向线圈提供电流的导体的功能的一种材料构成,以支撑可动部分,作为使可动部件返回到起始位置的弹簧而执行。
    • 8. 发明申请
    • Electromagnetically actuating optical deflecting element
    • 电磁致动光学偏转元件
    • US20080285107A1
    • 2008-11-20
    • US11890608
    • 2007-08-07
    • Norihiro AsadaKenichi Kagawa
    • Norihiro AsadaKenichi Kagawa
    • G02B26/08
    • G02B26/085
    • The present invention provides an electromagnetically actuating optical deflecting elements which can be manufactured out of reduced number of components and are capable of being actuated at lower frequencies and at wider deflecting angles without causing mechanical influences of the metal wiring on beams of the optical deflecting element.For that purpose, the electromagnetically actuating optical deflecting element comprises: a movable part having a light reflecting plane and a coil; a base component having a magnetic field generating means; and a pair of beams which axially support said movable part on to the base component, The movable part is actuated by an electromagnetic force generated by an electric current flowing through the coil and the magnetic field generating means. The beams 108 are constituted by one material having functions to perform as conductors for supplying electric current to the coil, to support the movable part, to perform as springs for returning the movable part to a starting position.
    • 本发明提供了一种电磁致动的光学偏转元件,其可以由数量较少的部件制造,并且能够以较低的频率和较宽的偏转角度被致动,而不会引起金属布线对光学偏转元件的光束的机械影响。 为此,电磁致动光学偏转元件包括:具有光反射面和线圈的可动部; 具有磁场发生装置的基座部件; 以及一对梁,其将所述可动部件轴向地支撑在基部部件上。可动部分由通过线圈和磁场产生装置的电流产生的电磁力致动。 梁108由具有作为向线圈提供电流的导体的功能的一种材料构成,以支撑可移动部分,作为将可动部分返回到起始位置的弹簧来执行。
    • 9. 发明授权
    • Method for manufacturing anisotropic conductive sheet
    • 各向异性导电片的制造方法
    • US07442560B2
    • 2008-10-28
    • US10581852
    • 2004-11-30
    • Norihiro Asada
    • Norihiro Asada
    • G01R31/26
    • H01R13/2414H01R13/035
    • In order to provide an anisotropic conductive sheet which can be applied to more finely and more narrowly pitched electrodes and also to provide spring electrodes applied for the anisotropic conductive sheet, the spring electrodes manufactured as follows. A part having a bending leaf spring shape is formed out of a monocrystal silicon by anisotropic etching and gold is plated on the surface of the part so as to obtain a silicon spring electrode 1. The silicon spring electrodes 1 are inserted in through holes formed on a silicone rubber sheet and fixed to the through holes.
    • 为了提供可应用于更精细和更窄的俯仰电极并且还提供用于各向异性导电片的弹簧电极的各向异性导电片,如下制造的弹簧电极。 通过各向异性蚀刻由单晶硅形成具有弯曲板簧形状的部分,并且在部件的表面上镀金,以获得硅弹簧电极1。 硅弹簧电极1插入形成在硅橡胶片上的通孔中并固定到通孔。