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    • 1. 发明授权
    • Optical disc drive and objective lens for the same
    • 光盘驱动器和物镜相同
    • US07738345B2
    • 2010-06-15
    • US11456943
    • 2006-07-12
    • Daisuke KoreedaKoichi MaruyamaShuichi TakeuchiYoshiyuki Tashiro
    • Daisuke KoreedaKoichi MaruyamaShuichi TakeuchiYoshiyuki Tashiro
    • G11B7/00
    • G11B7/1374G11B2007/0006
    • There is provided an objective lens used for three types of optical discs including by selectively using one of three types of light beams. At least one of surfaces of the objective lens is provided with a first region converging the third light beam on a recoding surface of the third optical disc. The first region has a step structure configured to have concentric refractive surface zones and to give an optical path length difference to an incident beam at each step formed between adjacent refractive surface zones. The step structure is configured such that the optical path length difference given by each step is substantially equal to an odd multiple of a wavelength of a first light beam, and a value of differentiation of an optical path difference function defining the step structure crosses zero in a height ranging from 30% to 70% of an effective diameter of the first region.
    • 提供了一种用于三种类型的光盘的物镜,包括通过选择性地使用三种类型的光束之一。 物镜的至少一个表面设置有将第三光束会聚在第三光盘的记录表面上的第一区域。 第一区域具有构造成具有同心折射表面区域并且在相邻折射表面区域之间形成的每个台阶处的入射光束的光程长度差异的台阶结构。 台阶结构被配置为使得由每个步骤给出的光程长度差基本上等于第一光束的波长的奇数倍,并且限定步骤结构的光程差函数的微分值在零 高度为第一区域的有效直径的30%至70%。
    • 2. 发明授权
    • Optical disc drive and objective lens for the same
    • 光盘驱动器和物镜相同
    • US07839752B2
    • 2010-11-23
    • US11536004
    • 2006-09-28
    • Daisuke KoreedaKoichi MaruyamaShuichi TakeuchiYoshiyuki Tashiro
    • Daisuke KoreedaKoichi MaruyamaShuichi TakeuchiYoshiyuki Tashiro
    • G11B7/135
    • G11B7/1374G11B7/1275G11B7/13922G11B2007/0006
    • There is provided an optical disc drive for recordation/reproduction for three types of optical discs by selectively using one of three types of light beams. The optical disc drive comprises an objective lens. The objective lens has a step structure which gives an optical path length difference to an incident beam at each step. When the third laser beam passes through the objective lens, the objective lens produces normal diffraction order light converging to a recording surface of the third optical disc and undesired diffraction order light converging to a point deviating from the recording surface of the third optical disc. A distance from a point to which the normal diffraction order light converges to a point to which the undesired diffraction order light converges is larger than or equal to twice a pull-in range of a focus error signal obtained when the third optical disc is used.
    • 通过选择性地使用三种类型的光束之一,提供了用于三种类型的光盘的记录/再现的光盘驱动器。 光盘驱动器包括物镜。 物镜具有在每个步骤中给入射光束的光程长度差的阶梯结构。 当第三激光束通过物镜时,物镜产生会聚到第三光盘的记录表面的正常衍射级光,并且不期望的衍射级光会聚到偏离第三光盘的记录表面的点。 从法线衍射级光收敛到不期望的衍射级光会聚的点的距离大于或等于当使用第三光盘时获得的聚焦误差信号的拉入范围的两倍。
    • 3. 发明申请
    • OPTICAL DISC DRIVE AND OBJECTIVE LENS FOR THE SAME
    • 光盘驱动器和目标镜头
    • US20070014211A1
    • 2007-01-18
    • US11456943
    • 2006-07-12
    • Daisuke KoreedaKoichi MaruyamaShuichi TakeuchiYoshiyuki Tashiro
    • Daisuke KoreedaKoichi MaruyamaShuichi TakeuchiYoshiyuki Tashiro
    • G11B7/00
    • G11B7/1374G11B2007/0006
    • There is provided an objective lens used for three types of optical discs including by selectively using one of three types of light beams. At least one of surfaces of the objective lens is provided with a first region converging the third light beam on a recoding surface of the third optical disc. The first region has a step structure configured to have concentric refractive surface zones and to give an optical path length difference to an incident beam at each step formed between adjacent refractive surface zones. The step structure is configured such that the optical path length difference given by each step is substantially equal to an odd multiple of a wavelength of a first light beam, and a value of differentiation of an optical path difference function defining the step structure crosses zero in a height ranging from 30% to 70% of an effective diameter of the first region.
    • 提供了一种用于三种类型的光盘的物镜,包括通过选择性地使用三种类型的光束之一。 物镜的至少一个表面设置有将第三光束会聚在第三光盘的记录表面上的第一区域。 第一区域具有构造成具有同心折射表面区域并且在相邻折射表面区域之间形成的每个台阶处的入射光束的光程长度差异的台阶结构。 台阶结构被配置为使得由每个步骤给出的光程长度差基本上等于第一光束的波长的奇数倍,并且限定步骤结构的光程差函数的微分值在零 高度为第一区域的有效直径的30%至70%。
    • 4. 发明授权
    • Objective optical system and optical information recording/reproducing device having the same
    • 物镜光学系统和具有该光学系统的光学信息记录/再现装置
    • US07830772B2
    • 2010-11-09
    • US12194081
    • 2008-08-19
    • Yoshiyuki TashiroDaisuke KoreedaShuichi Takeuchi
    • Yoshiyuki TashiroDaisuke KoreedaShuichi Takeuchi
    • G11B7/00
    • G11B7/1353G11B7/13922G11B2007/0006
    • There is provided an objective optical system for an optical information recording/reproducing device. The objective optical system includes an optical element having an annular zone structure on at least one surface. The annular zone structure includes annular zones configured to have at least one step formed, at a boundary between adjacent ones of the annular zones, to extend in a direction of an optical axis. The at least one step is provided to cause a predetermined optical path length difference between a light beam passing through an outside of the boundary and a light beam passing through an inside of the boundary. The predetermined optical path length difference given to a first light beam by the at least one step is approximately equal to an odd multiple of a first wavelength λa. Abbe number of material of the optical element satisfies a condition of 15
    • 提供了一种用于光信息记录/再现装置的物镜光学系统。 物镜光学系统包括在至少一个表面上具有环形区域结构的光学元件。 环形区域结构包括环形区域,其被配置为具有在相邻环形区域之间的边界处形成的沿着光轴方向延伸的至少一个台阶。 提供至少一个步骤以使通过边界外侧的光束和通过边界内部的光束之间的预定光程长度差。 通过至少一个步骤给予第一光束的预定光程长度差近似等于第一波长λa的奇数倍。 光学元件的阿贝数量满足15 <&gt; d <35的条件。
    • 7. 发明授权
    • Optical information recording/reproducing device, optical element for the same, and design method of the same
    • 光信息记录/再现装置,用于其的光学元件及其设计方法
    • US07872958B2
    • 2011-01-18
    • US11752386
    • 2007-05-23
    • Yoshiyuki TashiroDaisuke KoreedaKoichi Maruyama
    • Yoshiyuki TashiroDaisuke KoreedaKoichi Maruyama
    • G11B7/135
    • G11B7/1374G11B7/1275G11B7/1353G11B7/13922G11B2007/0006
    • In an optical information recording/reproducing device which executes information reading or writing on multiple types of optical discs having different data densities by selectively using first through third light beams having first through third wavelengths, respectively, at least one side of an optical element is provided with a step structure including a plurality of concentric refracting surfaces and steps between them. The steps include first steps each giving a first optical path length difference specified by a first optical path difference function, second steps each giving a second optical path length difference specified by a second optical path difference function, and special steps each giving an optical path length difference obtained by the sum or difference of/between the first and second optical path length differences. Annular zone widths between adjacent steps are set at 10 times the first wavelength or more.
    • 在通过选择性地使用具有第一至第三波长的第一至第三光束执行信息读取或写入具有不同数据密度的多种类型的光盘的光学信息记录/再现装置中,分别提供光学元件的至少一侧 具有包括多个同心折射表面和它们之间的台阶的台阶结构。 这些步骤包括第一步骤,每个步骤给出由第一光程差函数指定的第一光程长度差,每个给出由第二光程差函数指定的第二光程长度差的第二步,以及各自给出光程长度 通过第一和第二光程长度差的和/之差获得的差。 相邻步骤之间的环带宽度设定为第一波长的10倍以上。
    • 8. 发明申请
    • Method of optical element and objective lens
    • 光学元件和物镜的方法
    • US20060114796A1
    • 2006-06-01
    • US11289386
    • 2005-11-30
    • Koichi MaruyamaYoshiyuki TashiroDaisuke Koreeda
    • Koichi MaruyamaYoshiyuki TashiroDaisuke Koreeda
    • G11B7/00
    • G11B7/1367G02B27/42G02B27/4238G02B27/4294G11B7/1374G11B7/13922G11B2007/0006
    • A method of designing an optical element to be used for an optical system in which each of a plurality of light beams having different design wavelengths passes through the optical element is provided. The method includes determining at least two types of optical path difference functions including first and second optical path difference functions in such a manner that proportion, brought by the first optical path difference function, between diffraction orders at which diffraction efficiencies of the plurality of light beams are maximized is different from proportion, brought by the second optical path difference function, between diffraction orders at which diffraction efficiencies of the plurality of light beams are maximized, and obtaining a shape defined by combining the at least two types of optical path difference functions so as to apply the obtained shape to at least one surface of surfaces of the optical element.
    • 提供一种设计用于光学系统的光学元件的方法,其中具有不同设计波长的多个光束中的每一个通过光学元件。 该方法包括确定包括第一和第二光程差函数的至少两种类型的光程差函数,使得由第一光程差函数带来的比例在衍射级之间,衍射级之间的多个光束的衍射效率 最大化不同于由第二光程差函数引起的比例,在多个光束的衍射效率最大化的衍射级之间,并且获得通过组合至少两种类型的光程差函数而定义的形状 以将获得的形状应用于光学元件的表面的至少一个表面。
    • 9. 发明授权
    • Assembling method for optical system of optical pick-up
    • 光学拾取光学系统组装方法
    • US07920444B2
    • 2011-04-05
    • US12117202
    • 2008-05-08
    • Yoshiyuki TashiroKoichi MaruyamaToshihiro Tanaka
    • Yoshiyuki TashiroKoichi MaruyamaToshihiro Tanaka
    • G11B7/00
    • G11B7/22
    • There is provided an assembling method for expanding a maximum admissible astigmatism of objective lens which includes defining a maximum admissible astigmatism for the entire optical system, installing the collimator lens on the optical system to cause a predetermined amount of astigmatism lying within a range of up to the maximum admissible astigmatism by tilting the collimator lens from a condition where a point source of the semiconductor laser lies on an optical axis of the collimator lens, and installing the objective lens on the body case of the optical system to bring a total amount of astigmatism of the entire optical system to a level smaller than or equal to the maximum admissible astigmatism for the entire optical system by rotating the objective lens from a condition where the point source of the semiconductor laser and the center of the collimator lens lie on the optical axis of the objective lens.
    • 提供了一种用于扩大物镜的最大允许散光的组装方法,其包括为整个光学系统定义最大允许散光,将准直透镜安装在光学系统上,以使预定量的像散位于直到 通过使准直透镜从半导体激光器的点光源位于准直透镜的光轴上的状态倾斜准直透镜的最大允许散光,以及将物镜安装在光学系统的主体壳体上以产生散光总量 通过从半导体激光器的点源和准直透镜的中心位于光轴上的状态旋转物镜,将整个光学系统的整个光学系统的最大允许散光的最大允许像散的等级 的物镜。