会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 33. 发明授权
    • Aberration correcting apparatus and optical apparatus using the same
    • 畸变校正装置和使用其的光学装置
    • US06320699B1
    • 2001-11-20
    • US09501309
    • 2000-02-10
    • Takanori MaedaIkuya Kikuchi
    • Takanori MaedaIkuya Kikuchi
    • G02B2714
    • G02B27/0025G02B5/3083G02B26/0875G11B7/0948G11B7/1367G11B7/13927
    • An aberration correcting apparatus and an optical pickup apparatus using this apparatus, in which a spherical aberration based on a thickness error of an optical disc substrate can be preferably eliminated and a thickness error permission range of the optical disc substrate can be widened even if an objective lens of a high numerical aperture is used. The aberration correcting apparatus is arranged on an optical axis of an optical path in an optical apparatus, the aberration correcting apparatus comprises a pair of light transmitting substrates each of which is arranged so as to intersect perpendicularly to the optical axis, wherein at least one of the light transmitting substrates is held rotatably around the optical axis, each of the light transmitting substrates has distributions of optical path lengths which mutually complementarily decrease or increase within a predetermined range on a concentric circle in which the optical axis is set to the center, and the distribution of the total optical path length of the pair of light transmitting substrates is uniformly changed within the predetermined range on the concentric circle in which the optical axis is set to the center in accordance with the rotation of the light transmitting substrate, thereby applying a phase difference to the transmitted light beam.
    • 使用该装置的像差校正装置和光拾取装置,其中可以优选地消除基于光盘基板的厚度误差的球面像差,并且即使目标方式也可以扩大光盘基板的厚度误差允许范围 使用高数值孔径的透镜。 像差校正装置配置在光学装置的光路的光轴上,像差校正装置包括一对透光基板,每个透光基板布置成垂直于光轴交叉,其中至少一个 透光基板保持围绕光轴可旋转地保持,每个透光基板具有在光轴被设定为中心的同心圆上在预定范围内相互互补地减小或增加的光程长度的分布,以及 根据透光基板的旋转,使一对透光基板的总光路长度的分布在光轴被设定为中心的同心圆上的规定范围内均匀地变化, 相对于透射光束的相位差。
    • 34. 发明授权
    • Magnetic optical disk player having improved servoresponse sensitivity
    • 具有改进的伺服响应灵敏度的磁性光盘播放机
    • US5333124A
    • 1994-07-26
    • US524932
    • 1990-05-18
    • Ikuya KikuchiRyo Sato
    • Ikuya KikuchiRyo Sato
    • G11B11/10G11B11/105G11B13/04G11B11/12
    • G11B11/10576G11B11/10552
    • A magnetic optical disk player comprises a turn table for turning a magnetic optical disk, a recording head and an erasing head movable along two different radial directions of the turn table respectively, and bias magnets for generating bias magnetic fields distributed along moving areas of the recording and erasing heads and having the directions opposite to each other, wherein the recording head and the erasing head each includes an objective, movable coils coupled with the objective, and drive magnet for generating a drive magnetic field interlinking the movable coils in the same direction as that of the bias magnetic fields. The directions of the bias magnetic fields for erasing and recording heads are opposite to each other. The magnetic fields for generating electromagnetic forces to drive the objective in the erasing head and the recording head are also opposite to each other. The bias magnetic field and the magnetic field for generating the electromagnetic force are additively coupled with each other in each head.
    • 磁性光盘播放器包括用于转动磁光盘的转台,记录头和可沿着转台的两个不同径向方向移动的擦除头,以及用于产生沿着记录的移动区域分布的偏置磁场的偏置磁体 以及擦除头部并且具有彼此相反的方向,其中记录头和擦除头各自包括物镜,与物镜耦合的可动线圈和驱动磁体,用于产生驱动磁场,该驱动磁场将可动线圈与 偏磁场的。 用于擦除和记录头的偏置磁场的方向彼此相反。 用于产生用于驱动擦除头和记录头中的物镜的电磁力的磁场也彼此相反。 用于产生电磁力的偏置磁场和磁场在每个磁头中相互耦合。
    • 36. 发明授权
    • Optical pick-up unit
    • 光学拾取单元
    • US5007712A
    • 1991-04-16
    • US234547
    • 1988-08-22
    • Ikuya KikuchiRyo Sato
    • Ikuya KikuchiRyo Sato
    • G11B7/085G11B7/09
    • G11B7/08582G11B7/0932
    • In an optical pick-up unit, there is provided with a structure for supporting a holder holding at least an objective lens through a spring support assembly so that said holder is movable in both of a focusing direction and a tracking direction, carried on a carriage capable of traveling at a high speed in the tracking direction, a spring constant of the spring support assembly is so set as to be larger in the tracking direction than in the focusing direction, whereby an amount of a positioning error of the objective lens produced in the tracking direction when the carriage is driven at a high speed is reduced. As a result, by the thus reduced amount of the positioning error of the objective lens, the optical pick-up unit is improved in access time in comparison with the conventional optical pick-up unit.
    • 在光学拾取单元中,设置有用于支撑通过弹簧支撑组件保持至少物镜的保持器的结构,使得所述保持器可以在聚焦方向和跟踪方向上移动,承载在托架 能够沿跟踪方向高速行进,弹簧支承组件的弹簧常数在跟踪方向上比聚焦方向大,由此产生的物镜的定位误差量 当滑架以高速驱动时的跟踪方向减小。 结果,与传统的光学拾取单元相比,由于物镜的定位误差量的减少,光拾取单元的存取时间得以改善。