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    • 2. 发明授权
    • Thermally-assisted magnetic recording head
    • 热辅助磁记录头
    • US08300503B2
    • 2012-10-30
    • US12997201
    • 2009-06-03
    • Satoshi AraiNaoki MatsushimaIrizo NaniwaJunichiro Shimizu
    • Satoshi AraiNaoki MatsushimaIrizo NaniwaJunichiro Shimizu
    • G11B11/10
    • G11B5/314G11B5/4833G11B5/4866G11B2005/0005G11B2005/0021
    • In a thermally assisted magnetic recording head having a light source and a waveguide to lead a laser beam radiated from the light source to a front end of the magnetic head, while blocking an adverse effect of heat generated in the light source and securing a good floating characteristic, the light source and the magnetic head are optically coupled with high efficiency and the magnetic head itself is reduced in size. This invention provides a reflection mirror that is formed of a part or whole of one inclined end surface of the semiconductor laser mounted on the first submount. Near one end surface of the slider is provided the optical waveguide that pierces through the slider in a direction of the thickness thereof. The slider is mounted on the second submount and the positions of the first submount and the second submount are adjusted to practically align the light axis of the beam emitted from the mirror with the light axis of the optical waveguide, thereby realizing a novel thermally assisted magnetic recording head.
    • 在具有光源和波导的热辅助磁记录头中,将从光源辐射的激光束引导到磁头的前端,同时阻挡在光源中产生的热的不利影响并确保良好的浮动 特性,光源和磁头的光学耦合效率高,磁头本身尺寸减小。 本发明提供一种由安装在第一基座上的半导体激光器的一个倾斜端面的一部分或全部形成的反射镜。 在滑块的一个端面附近设置有穿过滑块的厚度方向的光波导。 滑块安装在第二基座上,并且调整第一基座和第二基座的位置以实际地将从反射镜发射的光束的光轴与光波导的光轴对准,从而实现新颖的热辅助磁 录音头。
    • 6. 发明申请
    • Thermally-Assisted Magnetic Recording Head
    • 热辅助磁记录头
    • US20110141862A1
    • 2011-06-16
    • US12997201
    • 2009-06-03
    • Satoshi AraiNaoki MatsushimaIrizo NaniwaJunichiro Shimizu
    • Satoshi AraiNaoki MatsushimaIrizo NaniwaJunichiro Shimizu
    • G11B13/08G11B13/04
    • G11B5/314G11B5/4833G11B5/4866G11B2005/0005G11B2005/0021
    • In a thermally assisted magnetic recording head having a light source and a waveguide to lead a laser beam radiated from the light source to a front end of the magnetic head, while blocking an adverse effect of heat generated in the light source and securing a good floating characteristic, the light source and the magnetic head are optically coupled with high efficiency and the magnetic head itself is reduced in size. This invention provides a reflection mirror that is formed of a part or whole of one inclined end surface of the semiconductor laser mounted on the first submount. Near one end surface of the slider is provided the optical waveguide that pierces through the slider in a direction of the thickness thereof. The slider is mounted on the second submount and the positions of the first submount and the second submount are adjusted to practically align the light axis of the beam emitted from the mirror with the light axis of the optical waveguide, thereby realizing a novel thermally assisted magnetic recording head.
    • 在具有光源和波导的热辅助磁记录头中,将从光源辐射的激光束引导到磁头的前端,同时阻挡在光源中产生的热的不利影响并确保良好的浮动 特性,光源和磁头的光学耦合效率高,磁头本身尺寸减小。 本发明提供一种由安装在第一基座上的半导体激光器的一个倾斜端面的一部分或全部形成的反射镜。 在滑块的一个端面附近设置有穿过滑块的厚度方向的光波导。 滑块安装在第二基座上,并且调整第一基座和第二基座的位置以实际地将从反射镜发射的光束的光轴与光波导的光轴对准,从而实现新颖的热辅助磁 录音头。
    • 7. 发明申请
    • RECORDING HEAD
    • 记录头
    • US20080056073A1
    • 2008-03-06
    • US11778189
    • 2007-07-16
    • Junichiro Shimizu
    • Junichiro Shimizu
    • G11B11/00
    • G11B5/314G11B5/105G11B7/124G11B7/1387G11B2005/0021
    • It is an objective that the optical loss and the number of optical components are reduced in an optical recording head using a near-field where a laser beam is guided from a light source to the tip of the head and a thermally assisted magnetic recording head. A structure where the traveling direction of emitted beam is rotated in the direction of the cavity of the laser diode element and a reflector for guiding the beam to the surface of the surface of the laser diode element is monolithically integrated in the laser diode element is mounted over the slider so that the direction of the cavity of the laser diode element is parallel to the surface of the recording medium, and the substrate side of the laser diode element is mounted to be in the direction opposite the face adjacent to the upper face of the slider.
    • 目的是使用激光束从光源引导到头部的尖端的近场和热辅助磁记录头,在光学记录头中光学损耗和光学部件的数量减少。 发射光束的行进方向沿着激光二极管元件的腔的方向旋转的结构和用于将光束引导到激光二极管元件的表面的反射器被整体地集成在激光二极管元件中 使得激光二极管元件的腔的方向平行于记录介质的表面,并且激光二极管元件的衬底侧被安装成与靠近上表面的面相反的方向 滑块。
    • 10. 发明授权
    • Recording head
    • 录音头
    • US07864635B2
    • 2011-01-04
    • US11778189
    • 2007-07-16
    • Junichiro Shimizu
    • Junichiro Shimizu
    • G11B11/00
    • G11B5/314G11B5/105G11B7/124G11B7/1387G11B2005/0021
    • It is an objective that the optical loss and the number of optical components are reduced in an optical recording head using a near-field where a laser beam is guided from a light source to the tip of the head and a thermally assisted magnetic recording head. A structure where the traveling direction of emitted beam is rotated in the direction of the cavity of the laser diode element and a reflector for guiding the beam to the surface of the surface of the laser diode element is monolithically integrated in the laser diode element is mounted over the slider so that the direction of the cavity of the laser diode element is parallel to the surface of the recording medium, and the substrate side of the laser diode element is mounted to be in the direction opposite the face adjacent to the upper face of the slider.
    • 目的是使用激光束从光源引导到头部的尖端的近场和热辅助磁记录头,在光学记录头中光学损耗和光学部件的数量减少。 发射光束的行进方向沿着激光二极管元件的腔的方向旋转的结构和用于将光束引导到激光二极管元件的表面的反射器被整体地集成在激光二极管元件中 使得激光二极管元件的腔的方向平行于记录介质的表面,并且激光二极管元件的衬底侧被安装成与靠近上表面的面相反的方向 滑块。