Optical pickup apparatus
    1.
    发明授权
    Optical pickup apparatus 有权
    光拾取装置

    公开(公告)号:US08059515B2

    公开(公告)日:2011-11-15

    申请号:US12581434

    申请日:2009-10-19

    IPC分类号: G11B7/135

    摘要: Provided is an optical pickup apparatus that can be made compact and is capable of producing stable push-pull signals. The optical pickup apparatus includes a light source, an objective lens, a diffraction element, a light-receiving element, and a control-driving section. The diffraction element receives light reflected from an optical recording medium. The light-receiving element receives light beams diffracted by the diffraction element. The light-receiving element has a plurality of light-receiving regions. The light-receiving region produces an output signal responsive to the quantity of the incident light beam. The control-driving section obtains differences among the output signals from a plurality of the light-receiving regions by calculation to derive a push-pull signal, and drives the objective lens under control on the basis of the push-pull signal.

    摘要翻译: 提供一种可以制造得紧凑并且能够产生稳定的推挽信号的光学拾取装置。 光拾取装置包括光源,物镜,衍射元件,光接收元件和控制驱动部。 衍射元件接收从光记录介质反射的光。 光接收元件接收由衍射元件衍射的光束。 光接收元件具有多个光接收区域。 光接收区域响应入射光束的量产生输出信号。 控制驱动部通过计算得到来自多个受光区域的输出信号之间的差异,得到推挽信号,并根据推挽信号驱动物镜进行控制。

    OPTICAL PICKUP APPARATUS
    2.
    发明申请

    公开(公告)号:US20100097919A1

    公开(公告)日:2010-04-22

    申请号:US12581434

    申请日:2009-10-19

    IPC分类号: G11B7/135

    摘要: Provided is an optical pickup apparatus that can be made compact and is capable of producing stable push-pull signals. The optical pickup apparatus includes a light source, an objective lens, a diffraction element, a light-receiving element, and a control-driving section. The diffraction element receives light reflected from an optical recording medium. The light-receiving element receives light beams diffracted by the diffraction element. The light-receiving element has a plurality of light-receiving regions. The light-receiving region produces an output signal responsive to the quantity of the incident light beam. The control-driving section obtains differences among the output signals from a plurality of the light-receiving regions by calculation to derive a push-pull signal, and drives the objective lens under control on the basis of the push-pull signal.

    摘要翻译: 提供一种可以制造得紧凑并且能够产生稳定的推挽信号的光学拾取装置。 光拾取装置包括光源,物镜,衍射元件,光接收元件和控制驱动部。 衍射元件接收从光记录介质反射的光。 光接收元件接收由衍射元件衍射的光束。 光接收元件具有多个光接收区域。 光接收区域响应入射光束的量产生输出信号。 控制驱动部通过计算得到来自多个受光区域的输出信号之间的差异,得到推挽信号,并根据推挽信号驱动物镜进行控制。

    SEMICONDUCTOR LASER DEVICE, OPTICAL PICKUP APPARATUS, AND METHOD OF MANUFACTURING SEMICONDUCTOR LASER DEVICE
    4.
    发明申请
    SEMICONDUCTOR LASER DEVICE, OPTICAL PICKUP APPARATUS, AND METHOD OF MANUFACTURING SEMICONDUCTOR LASER DEVICE 有权
    半导体激光器件,光学拾取器件和制造半导体激光器件的方法

    公开(公告)号:US20120063281A1

    公开(公告)日:2012-03-15

    申请号:US13228222

    申请日:2011-09-08

    IPC分类号: G11B7/125 H01L21/68 G02B27/42

    CPC分类号: G11B7/1353 G11B7/1275

    摘要: In a diffractive element, its grating pattern is so configured that a diffraction angle of a diffracted light beam of a light source that is subject to the first-order diffraction in a diffraction area is matched with an angle of a light beam passing through the diffractive area emitted from a light source and a light source position is matched with a light originating point of the light source that emits a light beam to be transmitted, and the center of light intensity distribution is matched with that of the light source passing through the diffractive element by inclining an optical axis of the light source. A position of the diffractive element is adjusted based on an electric current value generated when a reflected return path light beam of the light source is diffracted by the diffractive element and enters the light source.

    摘要翻译: 在衍射元件中,其光栅图案被配置为使得衍射区域中经受一次衍射的光源的衍射光束的衍射角与通过衍射的光束的角度相匹配 从光源和光源位置发射的区域与发射要透射的光束的光源的发光点相匹配,并且光强度分布的中心与通过衍射的光源的光中心匹配 元件通过倾斜光源的光轴。 基于当光源的反射返回路径光束被衍射元件衍射并进入光源时产生的电流值来调节衍射元件的位置。

    Semiconductor laser device, optical pickup apparatus, and method of manufacturing semiconductor laser device
    5.
    发明授权
    Semiconductor laser device, optical pickup apparatus, and method of manufacturing semiconductor laser device 有权
    半导体激光装置,光学拾取装置以及半导体激光装置的制造方法

    公开(公告)号:US08547814B2

    公开(公告)日:2013-10-01

    申请号:US13228222

    申请日:2011-09-08

    IPC分类号: G11B7/00

    CPC分类号: G11B7/1353 G11B7/1275

    摘要: In a diffractive element, its grating pattern is so configured that a diffraction angle of a diffracted light beam of a light source that is subject to the first-order diffraction in a diffraction area is matched with an angle of a light beam passing through the diffractive area emitted from a light source and a light source position is matched with a light originating point of the light source that emits a light beam to be transmitted, and the center of light intensity distribution is matched with that of the light source passing through the diffractive element by inclining an optical axis of the light source. A position of the diffractive element is adjusted based on an electric current value generated when a reflected return path light beam of the light source is diffracted by the diffractive element and enters the light source.

    摘要翻译: 在衍射元件中,其光栅图案被配置为使得衍射区域中经受一次衍射的光源的衍射光束的衍射角与通过衍射的光束的角度相匹配 从光源和光源位置发射的区域与发射要透射的光束的光源的发光点相匹配,并且光强度分布的中心与通过衍射的光源的光中心匹配 元件通过倾斜光源的光轴。 基于当光源的反射返回路径光束被衍射元件衍射并进入光源时产生的电流值来调节衍射元件的位置。

    Semiconductor laser device and optical pickup device
    6.
    发明授权
    Semiconductor laser device and optical pickup device 失效
    半导体激光器件和光学拾取器件

    公开(公告)号:US07136409B2

    公开(公告)日:2006-11-14

    申请号:US10812317

    申请日:2004-03-30

    IPC分类号: H01S3/08 G11B7/12

    摘要: In this semiconductor laser device, a polarization hologram transmits an outgoing beam directed from a semiconductor laser chip to an optical disk as a forward beam without diffracting the beam, and diffracts a backward beam of the laser beam, which is a return beam of the forward beam that has been reflected by the optical disk, so that the backward beam is deflected from a direction directed toward the semiconductor laser chip part and further directed toward first, second photoreception parts. Therefore, optical loss on the forward way from the semiconductor laser chip to the optical disk can be reduced, and return light to the semiconductor laser chip can be suppressed, so that a high-power, high-sensitivity semiconductor laser device can be realized.

    摘要翻译: 在该半导体激光器件中,偏振全息图将来自半导体激光器芯片的出射光束作为前向光束传输到光盘而不衍射光束,并且衍射作为向前的返回光束的激光束的反向光束 光束被反射的光束,使得反射光束从朝向半导体激光器芯片部分的方向偏转并进一步朝向第一,第二光接收部分。 因此,可以减少从半导体激光器芯片向光盘的正向移动的光损耗,并且可以抑制向半导体激光器芯片的返回光,从而可以实现高功率,高灵敏度的半导体激光器件。

    Optical pickup device using polarizing hologram element and hologram laser therefor
    8.
    发明授权
    Optical pickup device using polarizing hologram element and hologram laser therefor 失效
    使用偏光全息元件和全息激光的光学拾取装置

    公开(公告)号:US07483360B2

    公开(公告)日:2009-01-27

    申请号:US10954923

    申请日:2004-09-29

    IPC分类号: G11B7/00

    摘要: To read information from a target information recording surface reliably by canceling DC offsets in tracking-signal detection signals is provided. In effecting tracking servo by 3-beam method, auxiliary light receiving domains D3—1, D3—2, D8—1, D8—2 are provided. The auxiliary light receiving domain receives images formed by the light returned from a different information recording surface from the one targeted for reading. Sub beams of ± first-order diffracted light enter the light receiving domains D3, D8, D1, D10. With respect to the diffraction direction of the hologram, the auxiliary light receiving domains D3—1, D3—2 (D8—1, D8—2) are provided on both sides of the light receiving domain D3 (D8). Since signals are computed as: D8−(D8—1+D8—2); and D3−(D3—1+D3—2) with the internal connection, DC offsets can be canceled in RES signals (D1+D3, D8+D10) used in the DPP method.

    摘要翻译: 提供通过消除跟踪信号检测信号中的DC偏移来可靠地从目标信息记录表面读取信息。 通过三光束法实现跟踪伺服,提供辅助光接收域D3-1,D3-2,D8-1,D8-2。 辅助光接收区域接收由不同信息记录表面返回的光从与读取对象相对应的光形成的图像。 ±一级衍射光的子光进入光接收域D3,D8,D1,D10。 对于全息图的衍射方向,辅助光接收区域D3-1,D3-2(D8-1,D8-2)设置在光接收区域D3(D8)的两侧。 由于信号计算如下:D8-(D8-1 + D8-2); 和D3-(D3-1 + D3-2)内部连接时,可以在DPP方式中使用的RES信号(D1 + D3,D8 + D10)中取消DC偏移。