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    • 1. 发明授权
    • Objective lens driving device and optical disc apparatus using the same
    • 物镜驱动装置及使用其的光盘装置
    • US06680883B2
    • 2004-01-20
    • US10387386
    • 2003-03-14
    • Shinro InuiNaohiko OtoshiKatsuhiko IzumiMichio MiuraNaomitsu KurodaRyuichiro Mizuno
    • Shinro InuiNaohiko OtoshiKatsuhiko IzumiMichio MiuraNaomitsu KurodaRyuichiro Mizuno
    • G11B700
    • G11B7/1374G11B7/093G11B7/0933G11B7/0935G11B2007/0006
    • It is an object to perform a thin and compact design of the objective lens driving device. In order to achieve the above object, optical beam is passed through a space surrounded by a tracking coil and a focusing coil which are adjacent to each other and fixed in a holder. Further, it is another object to position the objective lens with high precision in an objective lens driving device for switching a plurality of objective lenses in accordance with the type of an optical disc. In order to achieve this object, magnetic substances which are radially extended with the sliding shaft at the center are provided in the lens holder, and the magnetic substances are located within a plane perpendicular to the plane constituting the magnetic gap and at the outside of the magnetic gap. Still further, in an objective lens driving device it is another object to prevent the occurrence of positional displacement of the objective lens due to resistance force of current supply means such as FPC. To achieve this object, a first objective lens and a second objective lens are arranged so that the objective lens arrangement angle at which the first and second objective lenses are arranged with respect to the shaft center of the sliding shaft is displaced, by a predetermined amount, from the magnetic circuit arrangement angle at which the magnetic substances and the magnets are arranged with respect to the shaft center of the sliding shaft.
    • 本发明的目的是实现物镜驱动装置的薄型紧凑设计。 为了实现上述目的,光束通过彼此相邻并固定在保持器中的由跟踪线圈和聚焦线圈包围的空间。 此外,另一目的是将物镜高精度地定位在用于根据光盘的类型切换多个物镜的物镜驱动装置中。 为了实现这个目的,在透镜保持器中设置有以中心的滑动轴径向延伸的磁性物质,并且磁性物质位于垂直于构成磁隙的平面的平面内,并且在 磁隙。 此外,在物镜驱动装置中,另一个目的是防止由于诸如FPC的电流供给装置的阻力而导致的物镜的位置偏移。 为了实现该目的,第一物镜和第二物镜被布置成使得第一和第二物镜相对于滑动轴的轴中心布置的物镜布置角度被移动预定量 从磁性物质和磁体相对于滑动轴的轴心配置的磁路配置角度。
    • 2. 发明授权
    • Objective lens driving device and optical disc apparatus using the same
    • 物镜驱动装置及使用其的光盘装置
    • US06195314B1
    • 2001-02-27
    • US08968753
    • 1997-08-19
    • Shinro InuiNaohiko OtoshiKatsuhiko IzumiMichio MiuraNaomitsu KurodaRyuichiro Mizuno
    • Shinro InuiNaohiko OtoshiKatsuhiko IzumiMichio MiuraNaomitsu KurodaRyuichiro Mizuno
    • G11B700
    • G11B7/1374G11B7/093G11B7/0933G11B7/0935G11B2007/0006
    • It is an object to perform a thin and compact design of the objective lens driving device. In order to achieve the above object, optical beam is passed through a space surrounded by a tracking coil and a focusing coil which are adjacent to each other and fixed in a holder. Further, it is another object to position the objective lens with high precision in an objective lens driving device for switching a plurality of objective lenses in accordance with the type of an optical disc. In order to achieve this object, magnetic substances which are radially extended with the sliding shaft at the center are provided in the lens holder, and the magnetic substances are located within a plane perpendicular to the plane constituting the magnetic gap and at the outside of the magnetic gap. Still further, in an objective lens driving device it is another object to prevent the occurrence of positional displacement of the objective lens due to resistance force of current supply means such as FPC. To achieve this object, a first objective lens and a second objective lens are arranged so that the objective lens arrangement angle at which the first and second objective lenses are arranged with respect to the shaft center of the sliding shaft is displaced, by a predetermined amount, from the magnetic circuit arrangement angle at which the magnetic substances and the magnets are arranged with respect to the shaft center of the sliding shaft.
    • 本发明的目的是实现物镜驱动装置的薄型紧凑设计。 为了实现上述目的,光束通过彼此相邻并固定在保持器中的由跟踪线圈和聚焦线圈包围的空间。 此外,另一目的是将物镜高精度地定位在用于根据光盘的类型切换多个物镜的物镜驱动装置中。 为了实现这个目的,在透镜保持器中设置有以中心的滑动轴径向延伸的磁性物质,并且磁性物质位于垂直于构成磁隙的平面的平面内,并且在 磁隙。 此外,在物镜驱动装置中,另一个目的是防止由于诸如FPC的电流供给装置的阻力而导致的物镜的位置偏移。 为了实现该目的,第一物镜和第二物镜被布置成使得第一和第二物镜相对于滑动轴的轴中心布置的物镜布置角度被移动预定量 从磁性物质和磁体相对于滑动轴的轴心配置的磁路配置角度。
    • 3. 发明授权
    • Objective lens driving device and optical disc apparatus using the same
    • 物镜驱动装置及使用其的光盘装置
    • US06567352B1
    • 2003-05-20
    • US09634548
    • 2000-08-08
    • Shinro InuiNaohiko OtoshiKatsuhiko IzumiMichio MiuraNaomitsu KurodaRyuichiro Mizuno
    • Shinro InuiNaohiko OtoshiKatsuhiko IzumiMichio MiuraNaomitsu KurodaRyuichiro Mizuno
    • G11B700
    • G11B7/1374G11B7/093G11B7/0933G11B7/0935G11B2007/0006
    • It is an object to perform a thin and compact design of the objective lens driving device. In order to achieve the above object, optical beam is passed through a space surrounded by a tracking coil and a focusing coil which are adjacent to each other and fixed in a holder. Further, it is another object to position the objective lens with high precision in an objective lens driving device for switching a plurality of objective lenses in accordance with the type of an optical disc. In order to achieve this object, magnetic substances which are radially extended with the sliding shaft at the center are provided in the lens holder, and the magnetic substances are located within a plane perpendicular to the plane constituting the magnetic gap and at the outside of the magnetic gap. Still further, in an objective lens driving device it is another object to prevent the occurrence of positional displacement of the objective lens due to resistance force of current supply means such as FPC. To achieve this object, a first objective lens and a second objective lens are arranged so that the objective lens arrangement angle at which the first and second objective lenses are arranged with respect to the shaft center of the sliding shaft is displaced, by a predetermined amount, from the magnetic circuit arrangement angle at which the magnetic substances and the magnets are arranged with respect to the shaft center of the sliding shaft.
    • 本发明的目的是实现物镜驱动装置的薄型紧凑设计。 为了实现上述目的,光束通过彼此相邻并固定在保持器中的由跟踪线圈和聚焦线圈包围的空间。 此外,另一目的是将物镜高精度地定位在用于根据光盘的类型切换多个物镜的物镜驱动装置中。 为了实现这个目的,在透镜保持器中设置有以中心的滑动轴径向延伸的磁性物质,并且磁性物质位于垂直于构成磁隙的平面的平面内,并且在 磁隙。 此外,在物镜驱动装置中,另一个目的是防止由于诸如FPC的电流供给装置的阻力而导致的物镜的位置偏移。 为了实现该目的,第一物镜和第二物镜被布置成使得第一和第二物镜相对于滑动轴的轴中心布置的物镜布置角度被移动预定量 从磁性物质和磁体相对于滑动轴的轴心配置的磁路配置角度。
    • 4. 发明授权
    • Photodetector, diffraction grating, optical pickup and optical disc apparatus
    • 光电检测器,衍射光栅,光学拾取器和光盘装置
    • US07936658B2
    • 2011-05-03
    • US12709613
    • 2010-02-22
    • Tomoto KawamuraKunikazu OhnishiMasayuki InoueKatsuhiko Izumi
    • Tomoto KawamuraKunikazu OhnishiMasayuki InoueKatsuhiko Izumi
    • G11B7/00
    • G11B7/131G11B7/1275G11B7/1353G11B2007/0006
    • The present invention provides a photodetector capable of generating highly accurate tracking and focusing error signals free of variations in light quantity caused by interference, in an optical pickup with a two-wavelength multilaser. The photodetector comprises first three light receiving areas arranged linearly to receive three light beams respectively resulting from splitting of a light beam emitted from a laser light source of a first wavelength and second three light receiving areas arranged linearly to receive three light beams respectively resulting from splitting of a light beam emitted from a laser light source of a second wavelength longer than the first wavelength. The distance between both-end light receiving areas out of the first three light receiving areas is longer than the distance between both-end light receiving areas out of the second three light receiving areas.
    • 本发明提供了一种能够在具有双波长多光盘的光学拾取器中产生高精度的跟踪和聚焦误差信号的光检测器,该误差信号不受干扰引起的光量的变化。 光电检测器包括前三个光接收区域,线性地布置以接收三个光束,分别由从第一波长的激光光源发射的光束分裂,并且第二三个光线接收区域被线性地分配以接收分别由分裂产生的三个光束 从比第一波长长的第二波长的激光光源发射的光束。 在前三个光接收区域中的两端光接收区域之间的距离比第二三个光接收区域中的两端光接收区域之间的距离长。
    • 5. 发明申请
    • PHOTODETECTOR, DIFFRACTION GRATING, OPTICAL PICKUP AND OPTICAL DISC APPARATUS
    • 光电转换器,衍射光栅,光学拾取器和光盘设备
    • US20100148045A1
    • 2010-06-17
    • US12709613
    • 2010-02-22
    • Tomoto KAWAMURAKunikazu OhnishiMasayuki InoueKatsuhiko Izumi
    • Tomoto KAWAMURAKunikazu OhnishiMasayuki InoueKatsuhiko Izumi
    • H01L31/0232H01L31/09
    • G11B7/131G11B7/1275G11B7/1353G11B2007/0006
    • The present invention provides a photodetector capable of generating highly accurate tracking and focusing error signals free of variations in light quantity caused by interference, in an optical pickup with a two-wavelength multilaser. The photodetector comprises first three light receiving areas arranged linearly to receive three light beams respectively resulting from splitting of a light beam emitted from a laser light source of a first wavelength and second three light receiving areas arranged linearly to receive three light beams respectively resulting from splitting of a light beam emitted from a laser light source of a second wavelength longer than the first wavelength. The distance between both-end light receiving areas out of the first three light receiving areas is longer than the distance between both-end light receiving areas out of the second three light receiving areas.
    • 本发明提供了一种能够在具有双波长多光盘的光学拾取器中产生高精度的跟踪和聚焦误差信号的光检测器,该误差信号不受干扰引起的光量的变化。 光电检测器包括前三个光接收区域,线性地布置以接收三个光束,分别由从第一波长的激光光源发射的光束分裂,并且第二三个光线接收区域被线性地分配以接收分别由分裂产生的三个光束 从比第一波长长的第二波长的激光光源发射的光束。 在前三个光接收区域中的两端光接收区域之间的距离比第二三个光接收区域中的两端光接收区域之间的距离长。
    • 6. 发明申请
    • Optical Disc Drive, Optical Pickup and Optical Component Used Therefor
    • 光盘驱动器,光拾取器和用于其的光学元件
    • US20090086611A1
    • 2009-04-02
    • US12053797
    • 2008-03-24
    • Fumio ISSHIKIKatsuhiko Izumi
    • Fumio ISSHIKIKatsuhiko Izumi
    • G11B7/135
    • G11B7/1275G11B7/1356G11B7/22G11B2007/0006G11B2007/0013
    • Provided are an optical pick up and an optical component used for the optical pickup which are capable of preventing or restraining occurrence of deviation and unbalance which are caused by assembly errors during manufacturing of optical components, a temperature variation or the like. The optical pickup comprises a laser, a polarization changeover element for changing over a direction of polarization of an optical beam emitted from the laser, a beam splitting element for splitting the laser beam into a plurality of optical paths in accordance with a direction of a polarization, a plurality of objective lenses for focusing laser beams onto a recording layer of the optical disc, a rise-up mirror, and a plurality of coupling lenses arranged respectively intermediate of the plurality of optical paths led to the plurality of objective lenses. The rise-up mirror is arranged intermediate of the plurality of optical paths led to the plurality of objective lenses and adapted to be used common to respective optical beams on the plurality of optical paths. The plurality of the coupling lenses are coupled to and held on one and the same drive portion.
    • 提供了一种用于光学拾取器的光拾取器和光学部件,其能够防止或限制由光学部件制造期间的组装误差,温度变化等引起的偏差和不平衡的发生。 光拾取器包括激光器,用于切换从激光器发射的光束的偏振方向的偏振转换元件,用于根据偏振方向将激光束分成多个光路的分束元件 用于将激光束聚焦到光盘的记录层上的多个物镜,上升反射镜和分别设置在被引导到多个物镜的多个光路之间的多个耦合透镜。 上升反射镜被布置在被引导到多个物镜的多个光路中间,并且适用于多个光路上的相应光束共同使用。 多个耦合透镜联接并保持在同一个驱动部分上。
    • 8. 发明授权
    • Photodetector, diffraction grating, optical pickup and optical disc apparatus
    • 光电检测器,衍射光栅,光学拾取器和光盘装置
    • US07706220B2
    • 2010-04-27
    • US11369077
    • 2006-03-07
    • Tomoto KawamuraKunikazu OhnishiMasayuki InoueKatsuhiko Izumi
    • Tomoto KawamuraKunikazu OhnishiMasayuki InoueKatsuhiko Izumi
    • G11B7/00
    • G11B7/131G11B7/1275G11B7/1353G11B2007/0006
    • The present invention provides a photodetector capable of generating highly accurate tracking and focusing error signals free of variations in light quantity caused by interference, in an optical pickup with a two-wavelength multilaser. The photodetector comprises first three light receiving areas arranged linearly to receive three light beams respectively resulting from splitting of a light beam emitted from a laser light source of a first wavelength and second three light receiving areas arranged linearly to receive three light beams respectively resulting from splitting of a light beam emitted from a laser light source of a second wavelength longer than the first wavelength. The distance between both-end light receiving areas out of the first three light receiving areas is longer than the distance between both-end light receiving areas out of the second three light receiving areas.
    • 本发明提供了一种能够在具有双波长多光盘的光学拾取器中产生高精度的跟踪和聚焦误差信号的光检测器,该误差信号不受干扰引起的光量的变化。 光电检测器包括前三个光接收区域,线性地布置以接收三个光束,分别由从第一波长的激光光源发射的光束分裂,并且第二三个光线接收区域被线性地分配以接收分别由分裂产生的三个光束 从比第一波长长的第二波长的激光光源发射的光束。 在前三个光接收区域中的两端光接收区域之间的距离比第二三个光接收区域中的两端光接收区域之间的距离长。
    • 9. 发明申请
    • Optical pickup and optical disc unit
    • 光学拾取器和光盘单元
    • US20080219119A1
    • 2008-09-11
    • US12074968
    • 2008-03-07
    • Katsuhiko IzumiKazuyoshi YamazakiTomoto KawamuraKunikazu Ohnishi
    • Katsuhiko IzumiKazuyoshi YamazakiTomoto KawamuraKunikazu Ohnishi
    • G11B5/58
    • G11B7/1353G11B7/0903G11B7/0912G11B7/131G11B7/133G11B2007/0013
    • Provided is an optical pickup which can eliminate a problem of causing a focus error signal and a tracking error signal to fluctuate due to interference of a signal light beam with a return light beam from another recording surface of a multi-layer optical disc during reproduction,comprising: a laser source for emitting an optical beam, an objective lens for focusing the light beam onto the multi-layer optical disc, a polarizing grating located at a position through which a reflected light beam from the multi-layer optical disc passes, for branching the reflected beam into at least two light beams, that is, a 0-order light beam and a +1-order light beam having a direction of polarization which is orthogonal to that of the 0-order light beam, an optical detector for receiving the two light beams, a first light receiving zone which is provided in the optical detector, and onto which the 0-order light is irradiated, and a second light receiving zone which is provided in the optical detector and onto which the +1-order light beam is irradiated, wherein the optical detector is capable of delivering a push-pull signal obtained from the first light receiving zone, and a signal obtained by a computation formula similar to the push-pull signal, from the second light receiving zone, and for delivering signals capable of creating a tracking error signal and a focus error signal from a difference signal between the two delivered signals.
    • 提供了一种光学拾取器,其可以消除由于在再现期间由于信号光束与来自多层光盘的另一记录表面的返回光束的干涉而导致聚焦误差信号和跟踪误差信号的波动的问题, 包括:用于发射光束的激光源,用于将光束聚焦到多层光盘上的物镜,位于多层光盘反射光束经过的位置的偏振光栅,用于 将反射光束分成至少两个光束,即具有正交于0阶光束的偏振方向的0级光束和+ 1级光束,光检测器 接收两个光束,设置在光学检测器中的第一光接收区,其上照射0次光的第一光接收区和设置在光学检测器中的第二光接收区 并且其上照射了+ 1级光束,其中光学检测器能够传递从第一光接收区获得的推挽信号,以及通过类似于推挽信号的计算公式获得的信号 ,并且用于从两个传送的信号之间的差分信号传送能够产生跟踪误差信号和聚焦误差信号的信号。