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    • 2. 发明授权
    • Optical pickup apparatus
    • 光拾取装置
    • US5694385A
    • 1997-12-02
    • US311050
    • 1994-09-23
    • Yoshitaka TakahashiHiroshi AkiyamaMasami Emoto
    • Yoshitaka TakahashiHiroshi AkiyamaMasami Emoto
    • G11B7/00G11B7/12G11B7/135
    • G11B7/1356G11B11/10543G11B7/123G11B7/1359G11B7/22
    • Small-sized and light-weighted optical pickup apparatus capable of eliminating the effect due to the flaring light rays and performing the signal detection of high reliability is provided. In the apparatus, the quarter-wave (.lambda./4) plate and the reflection-type birefringent prism provided with the deflecting function of deflecting the reflection light rays reflected on the optical information recording medium and the light rays flux separating function of separating the reflected light rays from the outgoing light rays are disposed in the optical path between the semiconductor laser constructing the optical pickup portion and the objective lens, and the light-receiving element for receiving the reflection light rays from the optical information recording medium which are defleced and separated by the reflection-type birefringent prism is disposed on a single (same) substrate together with the semiconductor laser.
    • 提供了能够消除由于扩张光线引起的影响并执行高可靠性的信号检测的小型和轻量级的光学拾取装置。 在该装置中,四分之一波长(λ/ 4)板和反射型双折射棱镜具有使在光信息记录介质上反射的反射光线偏转的偏转功能和分离反射的光线通量分离功能 来自出射光线的光线设置在构成光学拾取部分的半导体激光器和物镜之间的光路中,以及用于接收来自光信息记录介质的反射光线的光接收元件,其被去除和分离 通过反射型双折射棱镜与半导体激光器一起设置在单个(相同)基板上。
    • 4. 发明授权
    • Coupling lens, illuminating device, and electronic device
    • 耦合透镜,照明装置和电子装置
    • US09223140B2
    • 2015-12-29
    • US13140732
    • 2009-12-15
    • Yoshitaka TakahashiHiroshi Akiyama
    • Yoshitaka TakahashiHiroshi Akiyama
    • G02B27/09G02B3/10G02B27/10G02B27/14
    • G02B27/0905G02B3/10G02B27/104G02B27/145G02B27/148
    • A coupling lens for coupling first light having a first wavelength from a first light source with a second light having a second wavelength from a second light source disposed adjacent to the first light source in substantially the same direction includes a first surface disposed to face the first and second light sources, the first surface including a first region transmitting the first light and having a first region curvature and a second region transmitting the second light and having a second region curvature, and a second surface opposite to the first surface and having a second-surface curvature. A position of a center of the first region curvature differs from a position of a center of the second region curvature. A center of the second surface curvature and the center of the first region curvature are disposed on an optical axis of the first or second light source.
    • 用于将具有来自第一光源的第一波长的第一光与具有第二波长的第二光耦合的耦合透镜,所述第二光具有与第一光源相邻设置的第二光源基本相同的方向,包括设置成面对第一光源的第一光 和第二光源,所述第一表面包括透射所述第一光并具有第一区域曲率的第一区域和透射所述第二光并具有第二区域曲率的第二区域以及与所述第一表面相对的第二表面,并且具有第二光源 表面曲率。 第一区域曲率的中心的位置与第二区域曲率的中心的位置不同。 第二表面曲率的中心和第一区域曲率的中心设置在第一或第二光源的光轴上。
    • 5. 发明授权
    • Optical pickup apparatus
    • 光拾取装置
    • US5870370A
    • 1999-02-09
    • US895511
    • 1997-07-16
    • Yoshitaka TakahashiHiroshi AkiyamaMasami Emoto
    • Yoshitaka TakahashiHiroshi AkiyamaMasami Emoto
    • G11B7/00G11B7/12G11B7/135
    • G11B7/1356G11B11/10543G11B7/123G11B7/1359G11B7/22
    • Small-sized and light-weighted optical pickup apparatus capable of eliminating the effect due to the flaring light rays and performing the signal detection of high reliability is provided.In the apparatus, the quarter-wave (.lambda./4) plate and the reflection-type birefringent prime provided with the deflecting function of deflecting the reflection light rays reflected on the optical information recording medium and the light rays flux separating function of separating the reflected light rays from the outgoing light rays are disposed in the optical path between the semiconductor laser constructing the optical pickup portion and the objective lens, and the light-receiving element for receiving the reflection light rays from the optical information recording medium which are defleced and separated by the reflection-type birefringent prism is disposed on a single (same) substrate together with the semiconductor laser.
    • 提供了能够消除由于扩张光线引起的影响并执行高可靠性的信号检测的小型和轻量级的光学拾取装置。 在该装置中,四分之一波长(λ/ 4)板和反射型双折射源具有偏转反射光反射的光学信息记录介质上的反射光的偏转功能和分离反射的光线通量分离功能 来自出射光线的光线设置在构成光学拾取部分的半导体激光器和物镜之间的光路中,以及用于接收来自光信息记录介质的反射光线的光接收元件,其被去除和分离 通过反射型双折射棱镜与半导体激光器一起设置在单个(相同)基板上。
    • 10. 发明申请
    • COUPLING LENS, ILLUMINATING DEVICE, AND ELECTRONIC DEVICE
    • 耦合透镜,照明装置和电子装置
    • US20110249240A1
    • 2011-10-13
    • US13140732
    • 2009-12-15
    • Yoshitaka TakahashiHiroshi Akiyama
    • Yoshitaka TakahashiHiroshi Akiyama
    • G02B27/12G03B21/14F21V13/04F21V5/04F21V5/02
    • G02B27/0905G02B3/10G02B27/104G02B27/145G02B27/148
    • A coupling lens for coupling first light having a first wavelength from a first light source with a second light having a second wavelength from a second light source disposed adjacent to the first light source in substantially the same direction includes a first surface disposed to face the first and second light sources, the first surface including a first region transmitting the first light and having a first region curvature and a second region transmitting the second light and having a second region curvature, and a second surface opposite to the first surface and having a second-surface curvature. A position of a center of the first region curvature differs from a position of a center of the second region curvature. A center of the second surface curvature and the center of the first region curvature are disposed on an optical axis of the first or second light source.
    • 用于将具有来自第一光源的第一波长的第一光与具有第二波长的第二光耦合的耦合透镜,所述第二光具有与第一光源相邻设置的第二光源基本相同的方向,包括设置成面对第一光源的第一光 和第二光源,所述第一表面包括透射所述第一光并具有第一区域曲率的第一区域和透射所述第二光并具有第二区域曲率的第二区域以及与所述第一表面相对的第二表面,并且具有第二光源 表面曲率。 第一区域曲率的中心的位置与第二区域曲率的中心的位置不同。 第二表面曲率的中心和第一区域曲率的中心设置在第一或第二光源的光轴上。