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    • 1. 发明授权
    • Method of making magnetic transducer
    • 制造磁换能器的方法
    • US4999905A
    • 1991-03-19
    • US437928
    • 1989-11-17
    • Katsuhiro KuriyamaKoji FunamiYuji UesugiMasashi Makino
    • Katsuhiro KuriyamaKoji FunamiYuji UesugiMasashi Makino
    • G11B5/53G11B5/105G11B5/127
    • G11B5/105Y10T29/4903
    • A method of making a magnetic recording and/or reproducing head having a head support and a head core. The head core is inserted in a slit defined in the head support and is retained in position on the head support by means of a fixing jig to hold the head core immovable relative to the head support. Thereafter, a glass frit for temporarily fixing the head core relative to the head support is fused by the application of a laser beam to partially connect the head core and the head support together. After the fixing jig has been removed and a glass frit has been mounted on the head support so as to cover the slit above the head core, the assembly is loaded into a heating furnace to fuse the glass frit thereby to permanently interlock the head core and the head support together.
    • 制造具有头部支撑件和头部芯部的磁性记录和/或再现头部的方法。 头部芯部插入限定在头部支撑件中的狭缝中,并且通过固定夹具保持在头部支撑件上的适当位置,以保持头部芯部相对于头部支撑件不可移动。 此后,通过施加激光束将头芯相对于头部支撑件临时固定的玻璃料熔合,以将头部芯部和头部支撑件部分地连接在一起。 在移除固定夹具并且将玻璃料安装在头部支撑件上以覆盖头部芯部上方的狭缝之后,将该组件装载到加热炉中以熔合玻璃料,从而永久地将头部芯部和 头支撑在一起
    • 2. 发明授权
    • Method for manufacturing lens array optical system
    • 透镜阵列光学系统的制造方法
    • US5200010A
    • 1993-04-06
    • US794054
    • 1991-11-19
    • Koji FunamiYuji UesugiYukio Nishikawa
    • Koji FunamiYuji UesugiYukio Nishikawa
    • G02B3/00B29D11/00
    • B29D11/00009B29D11/00278Y10T156/1092
    • A method is disclosed for manufacturing a lens array optical system including a flat glass plate and lenses each of which has a flat surface and a curved surface. The method includes the steps of removably fixing each lens with a first adhesive agent to a lens holder having lens holding portions corresponding to the curved surfaces of the lenses, polishing the flat surface of the lenses and the lens holder so that the polished flat surface of the lenses are flush with a polished flat surface of the lens holder, fixing the lenses to said flat glass plate with a second adhesive agent by pressing the lenses against the flat glass plate and hardening the second adhesive agent, and removing the lens holder from the lenses.
    • 公开了一种用于制造包括平板玻璃板和透镜的透镜阵列光学系统的方法,每个透镜阵列光学系统具有平坦表面和弯曲表面。 该方法包括以下步骤:将具有第一粘合剂的每个透镜可拆卸地固定到具有对应于透镜的曲面的透镜保持部分的透镜保持器,抛光透镜的平坦表面和透镜保持器,使得抛光的平坦表面 透镜与透镜保持器的抛光平面平齐,用第二粘合剂将透镜固定到所述平板玻璃板上,通过将透镜压靠在平板玻璃板上并硬化第二粘合剂,并将透镜保持器从 镜头
    • 7. 发明授权
    • Laser apparatus and manufacturing method of a battery
    • 电池的激光装置和制造方法
    • US07646794B2
    • 2010-01-12
    • US12102135
    • 2008-04-14
    • Tsutomu SakuraiKoji Funami
    • Tsutomu SakuraiKoji Funami
    • H01S3/10
    • H01M2/08B23K26/0613B23K26/0622B23K26/0736B23K26/206H01M10/052H01M2010/0495Y10T29/4911
    • A laser apparatus is provided which is capable of achieving deep penetration into an aluminum-like metal material without causing welding defects such as spatters or cracks and performing high-speed pulse seam welding. The laser apparatus includes a pulse power source that generates a current signal and a mask signal for masking a fluctuation component included in the current signal, and which supplies a current signal in which a fluctuation component has been masked by the mask signal to a YAG pulsed laser oscillator. In addition, the laser apparatus sets the spot shape of a CW laser light oscillated by a CW laser oscillator to a rhombic streamlined shape, and causes a focus spot of the CW laser light to include a circular focus spot of a pulsed laser light.
    • 提供一种能够实现深入到铝状金属材料中而不引起诸如飞溅或裂纹等焊接缺陷并进行高速脉冲焊缝的激光装置。 该激光装置包括产生电流信号的脉冲电源和用于屏蔽包括在当前信号中的波动分量的屏蔽信号,并且将其中具有掩模信号的波动成分已被掩蔽的电流信号提供给YAG脉冲 激光振荡器。 此外,激光装置将由CW激光振荡器振荡的CW激光的光斑形状设定为菱形流线型,并使CW激光的聚焦点包括脉冲激光的圆形聚焦点。