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    • 3. 发明授权
    • Objective lens drive device with support system
    • 物镜驱动装置带支撑系统
    • US5446721A
    • 1995-08-29
    • US138014
    • 1993-10-19
    • Yoshihiro SekimotoToshiharu InuiYasuo NakataNobuo OgataHideaki Sato
    • Yoshihiro SekimotoToshiharu InuiYasuo NakataNobuo OgataHideaki Sato
    • G11B7/09G02B7/02G11B7/00
    • G11B7/0932
    • In an objective lens driving apparatus used in an optical information recording and reproducing apparatus or the like, a vibration is suppressed and a resonance peak on transfer function is suppressed when movable portions are moved in focusing and tracking directions and when these portions are turned around focusing and tracking directions. An elastic body which supports the movable portions movably in two directions, i.e., focusing direction and tracking direction to a fixed portion includes a bent portion in an intermediate portion between the side of movable portion and the side of fixed portion. A damper member is adhered to bridge a gap between a branched arm portion branching from a linear portion extending from the side of movable portion, and a fixed portion. The bent portion couples two linear portions and which are not on the same line.
    • 在用于光信息记录和再现装置等的物镜驱动装置中,当可移动部分在聚焦和跟踪方向上移动时,并且当这些部分转向聚焦时,抑制振动并抑制传递函数上的共振峰值 和跟踪方向。 支撑可移动部分的弹性体在朝向固定部分的聚焦方向和跟踪方向的两个方向上可移动地包括在可动部分的侧面和固定部分侧之间的中间部分中的弯曲部分。 阻尼构件被粘接以桥接从从可动部分的侧面延伸的直线部分分支的分支臂部分与固定部分之间的间隙。 弯曲部分连接两个线性部分,并且不在同一条线上。
    • 9. 发明授权
    • Optical information recording and reproducing device
    • 光信息记录和再现装置
    • US5428595A
    • 1995-06-27
    • US9911
    • 1993-01-27
    • Yoshio YoshidaHideaki SatoYukio KurataHiroyuki YamamotoNobuo OgataKatsuhiro Kubo
    • Yoshio YoshidaHideaki SatoYukio KurataHiroyuki YamamotoNobuo OgataKatsuhiro Kubo
    • G11B7/09G11B7/135G11B17/32
    • G11B7/1353
    • An optical information recording and reproducing device is provided. The device includes a light source for emitting a light beam, a first diffraction element for splitting the light beam into at least three diffracted beams, an optical system guiding the diffracted beams to a recording medium, and a second diffraction element including at least one division line and a diffraction surface from which the diffracted beams are diffracted. The diffraction surface is divided into at least two regions by the division line or lines. One of the division lines is at a predetermined angle against the direction of a track on the recording medium, and the regions split each of the diffracted beams into at least two parts to diffract the parts in different directions. The device also includes an optical detecting element for detecting the light beams diffracted with the second diffraction element.
    • 提供了一种光信息记录和再现装置。 该装置包括用于发射光束的光源,用于将光束分成至少三个衍射光束的第一衍射元件,将衍射光束引导到记录介质的光学系统,以及包括至少一个分割部分的第二衍射元件 线衍射面和衍射光束衍射的衍射面。 通过划分线或线将衍射面分成至少两个区域。 分割线之一与记录介质上的轨道的方向成预定角度,并且区域将每个衍射光束分成至少两个部分,以在不同方向上衍射该部分。 该装置还包括用于检测与第二衍射元件衍射的光束的光学检测元件。
    • 10. 发明授权
    • Light source unit and method of adjusting for maximizing focus and
tracking errors thereby
    • 光源单元和调整最大化焦点和跟踪误差的方法
    • US5442616A
    • 1995-08-15
    • US16456
    • 1993-02-11
    • Nobuo OgataHideaki Sato
    • Nobuo OgataHideaki Sato
    • G11B7/08G11B7/09G11B7/12G11B7/125G11B7/135G11B7/22
    • G11B7/22G11B7/123G11B7/1353
    • A diffraction element is positionally adjusted on a substitute optical head arrangement while an objective lens is positionally adjusted so as to maximize a total signal calculated in a photodetector, whereby predetermined focusing error signal and tracking error signal are obtained. The thus adjusted diffraction element is adhesively secured on a package housing a light source and a photodetector to form a light source unit. The thus prepared light source unit is positioned on and assembled into an optical head by angularly adjusting the light source and an objective lens on the optical head individually so that both the optical axis of the light, emitted from the light source, and incident on a recording medium and the axis of the objective lens are aligned normal to the recording medium and by coinciding the optical axis of the objective lens with the center of intensity distribution of the incident light on the objective lens. This configuration eliminates the necessity of mechanical parts on the optical head for adjusting the diffraction element and the necessity of a space for the adjustment, so that it is possible to promote the optical head small and light-weighted. In addition, by effecting the optical adjustment when the light source unit is assembled into the optical head, error signals can be adjusted. Therefore, the adjustment step can be omitted.
    • 衍射元件在替代光学头装置上进行位置调整,同时物镜被位置调节,以使在光电检测器中计算的总信号最大化,从而获得预定的聚焦误差信号和跟踪误差信号。 这样调节的衍射元件被粘合地固定在容纳光源和光电检测器的封装件上以形成光源单元。 由此制备的光源单元通过将光源和物镜上的物镜单独地角度地调节并组装成光学头,使光源的光轴从光源发射并入射到 记录介质,并且物镜的轴线与记录介质垂直对准,并且通过使物镜的光轴与入射光在物镜上的强度分布的中心重合。 这种结构消除了光学头上用于调节衍射元件的机械部件的必要性和调整空间的必要性,使得可以促进光学头小型化和轻量化。 此外,通过在将光源单元组装到光头中时进行光学调整,可以调整误差信号。 因此,可以省略调整步骤。