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    • 1. 发明申请
    • OPTICAL DISK APPARATUS
    • 光盘设备
    • US20090034401A1
    • 2009-02-05
    • US12183250
    • 2008-07-31
    • Seiji NishiwakiKazuo MomooJun-ichi AsadaKenji OtaniYusuke Kanda
    • Seiji NishiwakiKazuo MomooJun-ichi AsadaKenji OtaniYusuke Kanda
    • G11B7/135B05D5/06C08F2/48
    • G11B7/1365G11B7/1353G11B7/1381
    • It is intended to provide an optical disk apparatus which detects a light amount greater than zero even when used in conjunction with an optical disk substrate having a large birefringence, so that it is possible to properly read a signal without errors and properly perform optical disk controls. The optical disk apparatus includes: a light source for emitting light; an objective lens for converging the light onto a signal surface of an optical disk; a polarized beam diffraction element for diffracting the light reflected from the optical disk; a photodetector for detecting the light diffracted from the polarized beam diffraction element; and a wavelength plate disposed between the optical disk and the polarized beam diffraction element. The wavelength plate has a two-dimensional array of a plurality of birefringent regions including first and second regions, the first and second regions differing in birefringent phase difference and/or optic axes from each other, and the plurality of birefringent regions including the first and second regions cause the light to have different polarization states.
    • 即使在与具有大双折射性的光盘基板结合使用的情况下,也能够提供大于零的光量的光盘装置,从而可以正确地读取无误信号,适当地执行光盘控制 。 光盘装置包括:用于发光的光源; 用于将光聚焦到光盘的信号表面上的物镜; 用于衍射从光盘反射的光的偏振光束衍射元件; 用于检测从偏振光束衍射元件衍射的光的光检测器; 以及布置在光盘和偏振光束衍射元件之间的波长板。 波长板具有包括第一和第二区域的多个双折射区域的二维阵列,第一和第二区域在双折射相位差和/或光轴上彼此不同,并且多个双折射区域包括第一和第二区域 第二区域导致光具有不同的偏振状态。
    • 2. 发明授权
    • Optical disk apparatus with a wavelength plate having a two-dimensional array of birefringent regions
    • 具有波长板的具有双折射区域的二维阵列的光盘装置
    • US07463569B2
    • 2008-12-09
    • US11112998
    • 2005-04-22
    • Seiji NishiwakiKazuo MomooJun-ichi AsadaKenji OtaniYusuke Kanda
    • Seiji NishiwakiKazuo MomooJun-ichi AsadaKenji OtaniYusuke Kanda
    • G11B7/00
    • G11B7/1365G11B7/1353G11B7/1381
    • It is intended to provide an optical disk apparatus which detects a light amount greater than zero even when used in conjunction with an optical disk substrate having a large birefringence, so that it is possible to properly read a signal without errors and properly perform optical disk controls. The optical disk apparatus includes: a light source for emitting light; an objective lens for converging the light onto a signal surface of an optical disk; a polarized beam diffraction element for diffracting the light reflected from the optical disk; a photodetector for detecting the light diffracted from the polarized beam diffraction element; and a wavelength plate disposed between the optical disk and the polarized beam diffraction element. The wavelength plate has a two-dimensional array of a plurality of birefringent regions including first and second regions, the first and second regions differing in birefringent phase difference and/or optic axes from each other, and the plurality of birefringent regions including the first and second regions cause the light to have different polarization states.
    • 即使在与具有大双折射性的光盘基板结合使用的情况下,也能够提供大于零的光量的光盘装置,从而可以正确地读取无误信号,适当地执行光盘控制 。 光盘装置包括:用于发光的光源; 用于将光聚焦到光盘的信号表面上的物镜; 用于衍射从光盘反射的光的偏振光束衍射元件; 用于检测从偏振光束衍射元件衍射的光的光检测器; 以及布置在光盘和偏振光束衍射元件之间的波长板。 波长板具有包括第一和第二区域的多个双折射区域的二维阵列,第一和第二区域在双折射相位差和/或光轴上彼此不同,并且多个双折射区域包括第一和第二区域 第二区域导致光具有不同的偏振状态。
    • 3. 发明申请
    • Optical disk apparatus
    • 光盘装置
    • US20050237902A1
    • 2005-10-27
    • US11112998
    • 2005-04-22
    • Seiji NishiwakiKazuo MomooJun-ichi AsadaKenji OtaniYusuke kanda
    • Seiji NishiwakiKazuo MomooJun-ichi AsadaKenji OtaniYusuke kanda
    • G11B7/0065G11B7/135
    • G11B7/1365G11B7/1353G11B7/1381
    • It is intended to provide an optical disk apparatus which detects a light amount greater than zero even when used in conjunction with an optical disk substrate having a large birefringence, so that it is possible to properly read a signal without errors and properly perform optical disk controls. The optical disk apparatus includes: a light source for emitting light; an objective lens for converging the light onto a signal surface of an optical disk; a polarized beam diffraction element for diffracting the light reflected from the optical disk; a photodetector for detecting the light diffracted from the polarized beam diffraction element; and a wavelength plate disposed between the optical disk and the polarized beam diffraction element. The wavelength plate has a two-dimensional array of a plurality of birefringent regions including first and second regions, the first and second regions differing in birefringent phase difference and/or optic axes from each other, and the plurality of birefringent regions including the first and second regions cause the light to have different polarization states.
    • 即使在与具有大双折射性的光盘基板结合使用的情况下,也能够提供大于零的光量的光盘装置,从而可以正确地读取无误信号,适当地执行光盘控制 。 光盘装置包括:用于发光的光源; 用于将光聚焦到光盘的信号表面上的物镜; 用于衍射从光盘反射的光的偏振光束衍射元件; 用于检测从偏振光束衍射元件衍射的光的光检测器; 以及布置在光盘和偏振光束衍射元件之间的波长板。 波长板具有包括第一和第二区域的多个双折射区域的二维阵列,第一和第二区域在双折射相位差和/或光轴上彼此不同,并且多个双折射区域包括第一和第二区域 第二区域导致光具有不同的偏振状态。
    • 4. 发明授权
    • Wavelength plate, optical element, and optical pickup
    • 波长板,光学元件和光学拾取器
    • US07796491B2
    • 2010-09-14
    • US11237197
    • 2005-09-28
    • Jun-ichi AsadaSeiji NishiwakiKazuo Momoo
    • Jun-ichi AsadaSeiji NishiwakiKazuo Momoo
    • G11B7/135
    • G11B7/1365G11B7/1369G11B2007/0006
    • There is provided, in an optical disk apparatus which is capable of recording data to or reading data from a plurality of types of optical disks, a wavelength plate and an optical pickup which can reduce deterioration in signal quality even in the presence of a large birefringence of the substrate of an optical disk. A wavelength plate 6 according to the present invention is a wavelength plate to be placed in an optical path through which rays of a plurality of wavelengths travel back and forth, the plurality of wavelengths including a ray having a wavelength λ. The wavelength plate includes a two-dimensional array of a plurality of birefringent regions, the birefringent regions including first regions D1 and second regions D2 having different optic axis directions from each other. The relationship 240°≦Δ1≦300° is true, where Δ1 is a retardation of the wavelength plate 6 for the ray of the wavelength λ.
    • 在能够将数据记录到或从多种类型的光盘读取数据的光盘装置中,提供了即使存在大的双折射也能够降低信号质量劣化的波长板和光学拾取器 的光盘的基板。 根据本发明的波长板6是放置在多个波长的光线前后移动的光路中的波长板,多个波长包括具有波长λ的射线。 波长板包括多个双折射区域的二维阵列,双折射区域包括彼此具有不同光轴方向的第一区域D1和第二区域D2。 240°≦̸&Dgr; 1≦̸ 300°的关系为真,其中&Dgr; 1为波长λ的波长的波长板6的延迟。
    • 5. 发明申请
    • Wavelength plate, optical element, and optical pickup
    • 波长板,光学元件和光学拾取器
    • US20060077858A1
    • 2006-04-13
    • US11237197
    • 2005-09-28
    • Jun-ichi AsadaSeiji NishiwakiKazuo Momoo
    • Jun-ichi AsadaSeiji NishiwakiKazuo Momoo
    • G11B7/00
    • G11B7/1365G11B7/1369G11B2007/0006
    • There is provided, in an optical disk apparatus which is capable of recording data to or reading data from a plurality of types of optical disks, a wavelength plate and an optical pickup which can reduce deterioration in signal quality even in the presence of a large birefringence of the substrate of an optical disk. A wavelength plate 6 according to the present invention is a wavelength plate to be placed in an optical path through which rays of a plurality of wavelengths travel back and forth, the plurality of wavelengths including a ray having a wavelength λ. The wavelength plate includes a two-dimensional array of a plurality of birefringent regions, the birefringent regions including first regions D1 and second regions D2 having different optic axis directions from each other. The relationship 240°≦Δ1≦300° is true, where Δ1 is a retardation of the wavelength plate 6 for the ray of the wavelength λ.
    • 在能够将数据记录到或从多种类型的光盘读取数据的光盘装置中,提供了即使存在大的双折射也能够降低信号质量劣化的波长板和光学拾取器 的光盘的基板。 根据本发明的波长板6是放置在多个波长的光线前后移动的光路中的波长板,多个波长包括具有波长λ的射线。 波长板包括多个双折射区域的二维阵列,双折射区域包括具有与每个双折射区域不同的光轴方向的第一区域D 1 1和第二区域D 2&lt; 2&gt; 其他。 对于波长λ的光线,相位差240°<=> 1°<= 300°为真,其中Δ1≤1是波长板6的延迟。
    • 6. 发明授权
    • Optical pickup and optical read/write apparatus
    • 光学拾取和光学读/写设备
    • US08619522B2
    • 2013-12-31
    • US13535633
    • 2012-06-28
    • Yuichi TakahashiKazuo MomooJun-ichi Asada
    • Yuichi TakahashiKazuo MomooJun-ichi Asada
    • G11B7/00
    • G11B7/00458G11B7/003G11B7/133G11B7/1353
    • In one embodiment, an optical pickup includes an optical system which forms multiple light beams based on the light emitted from a light source and which converges a write beam and a read beam, thereby forming a main spot and a sub-spot, respectively, on an optical storage medium. This optical system converges the write and read beams onto the optical storage medium so that the main spot moves through the same region on the optical storage medium ahead of the sub-spot. The optical pickup further includes a detector for sensing the write and read beams reflected from the storage medium. The detector includes a first photodiode 10 that receives the reflected light from the main spot 50R on the storage medium and a second photodiode 11 that receives a portion of the reflected light from the sub-spot 51R.
    • 在一个实施例中,光学拾取器包括基于从光源发射的光形成多个光束并且会聚写入光束和读取光束的光学系统,从而分别形成主光点和子光点 光学存储介质。 该光学系统将写入和读取光束会聚到光学存储介质上,使得主光点移动到子光点之前的光学存储介质上的相同区域。 光学拾取器还包括用于感测从存储介质反射的写入和读出光束的检测器。 检测器包括接收来自存储介质上的主光斑50R的反射光的第一光电二极管10和接收来自子光点51R的一部分反射光的第二光电二极管11。
    • 7. 发明授权
    • Optical pickup device and optical disc device
    • 光拾取装置和光盘装置
    • US08462596B2
    • 2013-06-11
    • US13511017
    • 2010-11-24
    • Yuichi TakahashiKazuo MomooHiroaki MatsumiyaJun-ichi Asada
    • Yuichi TakahashiKazuo MomooHiroaki MatsumiyaJun-ichi Asada
    • G11B7/00
    • G11B7/131G11B7/0903G11B7/1353G11B7/1381G11B2007/0013
    • When performing recording/reproduction of information for a given recording layer of an optical disc having three recording layers, influences of reflected light from other recording layers are reduced or removed, thus making it possible to obtain a more stable RF signal or focus error signal.An optical pickup device includes a light source, a collimator lens, an objective lens, a photodetector, and a light shielding member. Among the recording layers of the optical disc, a first layer and a second layer adjoining each other are disposed in the order of the first layer and second layer from near the objective lens. The light shielding member is disposed at a position satisfying the condition d>d1 to block a part of reflected light from the second layer when light is converged on the first layer, where d is an optical path length from the photodetector to the light shielding member; and d1 is a distance from the photodetector to a position at which reflected light from the second layer becomes focused between the collimator lens and the photodetector.
    • 当对具有三个记录层的光盘的给定记录层执行信息的记录/再现时,减少或去除来自其它记录层的反射光的影响,从而可以获得更稳定的RF信号或聚焦误差信号。 光学拾取装置包括光源,准直透镜,物镜,光电检测器和遮光构件。 在光盘的记录层中,邻接的第一层和第二层以物镜附近的第一层和第二层的顺序设置。 光遮蔽构件设置在满足条件d> d1的位置,以便当光聚焦在第一层上时阻挡来自第二层的反射光的一部分,其中d是从光电检测器到遮光构件的光路长度 ; d1是从光电检测器到第二层的反射光在准直透镜和光电检测器之间聚焦的位置的距离。
    • 8. 发明授权
    • Optical pickup and optical read/write drive
    • 光学拾取和光学读/写驱动器
    • US08659985B2
    • 2014-02-25
    • US13398934
    • 2012-02-17
    • Jun-ichi AsadaKazuo MomooYohichi Saitoh
    • Jun-ichi AsadaKazuo MomooYohichi Saitoh
    • G11B7/1353G11B7/1263
    • G11B7/00458G11B7/003G11B7/1353
    • In one embodiment of the present invention, an optical pickup for writing and reading data on an optical storage medium comprises a diffractive element for diffracting a light beam to split it into multiple light beams. The diffracted light beams includes a zero-order diffracted light beam for writing data on a track of the land or the groove of the optical storage medium and non-zero-order diffracted light beams for reading the data from the track. The diffractive element has first and second diffraction gratings that have mutually different grating vector directions and pitches. The first diffraction grating forms light beam spots on the same track by the non-zero-order and zero-order diffracted light beams. The second diffraction grating forms a light beam spot to extend to both sides of said track, or forms a light beam spot on one side of said track, by the non-zero-order diffracted light beams.
    • 在本发明的一个实施例中,用于在光学存储介质上写入和读取数据的光学拾取器包括用于衍射光束以将其分成多个光束的衍射元件。 衍射光束包括用于在光存储介质的焊盘或凹槽的轨道上写入数据的零级衍射光束和用于从轨道读取数据的非零级衍射光束。 衍射元件具有第一和第二衍射光栅,其具有相互不同的光栅矢量方向和间距。 第一衍射光栅通过非零级和零级衍射光束在同一轨道上形成光束点。 第二衍射光栅形成光束点,以延伸到所述轨道的两侧,或者通过非零级衍射光束在所述轨道的一侧上形成光束点。
    • 10. 发明申请
    • OPTICAL PICKUP DEVICE AND OPTICAL DISC DEVICE
    • 光学拾取装置和光盘装置
    • US20120287766A1
    • 2012-11-15
    • US13511017
    • 2010-11-24
    • Yuichi TakahashiKazuo MomooHiroaki MatsumiyaJun-ichi Asada
    • Yuichi TakahashiKazuo MomooHiroaki MatsumiyaJun-ichi Asada
    • G11B7/135G11B20/10
    • G11B7/131G11B7/0903G11B7/1353G11B7/1381G11B2007/0013
    • When performing recording/reproduction of information for a given recording layer of an optical disc having three recording layers, influences of reflected light from other recording layers are reduced or removed, thus making it possible to obtain a more stable RF signal or focus error signal.An optical pickup device includes a light source, a collimator lens, an objective lens, a photodetector, and a light shielding member. Among the recording layers of the optical disc, a first layer and a second layer adjoining each other are disposed in the order of the first layer and second layer from near the objective lens. The light shielding member is disposed at a position satisfying the condition d>d1 to block a part of reflected light from the second layer when light is converged on the first layer, where d is an optical path length from the photodetector to the light shielding member; and d1 is a distance from the photodetector to a position at which reflected light from the second layer becomes focused between the collimator lens and the photodetector.
    • 当对具有三个记录层的光盘的给定记录层执行信息的记录/再现时,减少或去除来自其它记录层的反射光的影响,从而可以获得更稳定的RF信号或聚焦误差信号。 光学拾取装置包括光源,准直透镜,物镜,光电检测器和遮光构件。 在光盘的记录层中,邻接的第一层和第二层以物镜附近的第一层和第二层的顺序设置。 光遮蔽构件设置在满足条件d> d1的位置,以便当光聚焦在第一层上时阻挡来自第二层的反射光的一部分,其中d是从光电检测器到遮光构件的光路长度 ; d1是从光电检测器到第二层的反射光在准直透镜和光电检测器之间聚焦的位置的距离。