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    • 1. 发明授权
    • Optical information recording/reproducing apparatus
    • 光信息记录/重放装置
    • US5101389A
    • 1992-03-31
    • US561782
    • 1990-08-02
    • Shigeru OhuchidaJunichi KitabayashiHideo Maeda
    • Shigeru OhuchidaJunichi KitabayashiHideo Maeda
    • G11B7/135G11B11/105
    • G11B7/1359G11B11/10543G11B11/10576G11B7/1353G11B7/1362
    • An optical information recording/reproducing apparatus comprises a semi-reflecting means which receives a emitted laser light emitted from a light source, which reflect partially the received laser light toward an optical information recording medium in order to record an information, and which transmits a reflected laser light reflected by the optical information recording medium, a separating means which has the semi-reflecting means on one surface thereof, which diffracts a part of the transmitted laser light, transmits the other part of the transmitted laser light, and then subsequently diffracts said diffracted light again to produce twice diffracted light and transmits said transmitted light again to produce twice transmitted light, and a detecting means which detects the diffracted laser light and the transmitted laser light to thereby generate an information reproduction signal, a track error signal and a focus error signal.
    • 一种光学信息记录/再现装置,包括半反射装置,其接收从光源发射的发射的激光,其部分地将接收到的激光反射向光学信息记录介质以记录信息,并且将反射 由光学信息记录介质反射的激光,在其一个表面上具有衍射一部分透射的激光的半反射装置的透射激光的另一部分的分离装置,然后衍射所述 再次产生衍射光以产生两次衍射光并再次透射所述透射光以产生两次透射光;以及检测装置,其检测衍射激光和透射的激光,从而产生信息再现信号,轨道误差信号和焦点 误差信号。
    • 2. 发明授权
    • Optical pick-up for use with an opto-magnetic signal
    • 用于光电信号的光学拾取器
    • US5278817A
    • 1994-01-11
    • US833012
    • 1992-02-10
    • Hideo MaedaShigeru OhuchidaJunichi Kitabayashi
    • Hideo MaedaShigeru OhuchidaJunichi Kitabayashi
    • G11B7/135G11B11/105G11B7/00
    • G11B7/1353G11B11/105G11B11/10532G11B11/10543G11B11/10576
    • An optomagnetic information recording and reproducing apparatus includes an optomagnetic optical pick-up for recording or reproducing information on or from an optomagnetic information recording disc. An optomagnetic optical pick-up includes a first diffraction grating for receiving light reflected from the disc and separating the light into a first transmitting light which transmits through the first diffraction grating beam and a first diffracted light beam which is diffracted by the first diffraction grating. A second diffraction grating is disposed to receive the first transmitging and diffracted light beams and discharges a second transmitting light beam and a second diffracted light beam. A tracking error detector is provided to receive the second transmitting light beam and a focusing error detector is disposed to receive the second diffracted light beam. An optomagnetic signal is obtained as a difference between outputs from the tracking and focusing error detectors.
    • 光磁信息记录和再现装置包括用于在光磁信息记录盘上记录或再现信息的光磁拾取器。 光磁光学拾取器包括:第一衍射光栅,用于接收从盘反射的光,并将光分离成透过第一衍射光栅束的第一透射光;以及由第一衍射光栅衍射的第一衍射光束。 第二衍射光栅被设置为接收第一透射光和衍射光束并且放出第二透射光束和第二衍射光束。 提供跟踪误差检测器来接收第二透射光束,并且设置聚焦误差检测器以接收第二衍射光束。 获得作为跟踪和聚焦误差检测器的输出之间的差的光磁信号。
    • 3. 发明授权
    • Optomagnetic recording/reproducing apparatus
    • 光磁记录/再现装置
    • US5115423A
    • 1992-05-19
    • US294466
    • 1989-01-06
    • Hideo MaedaShigeru OhuchidaJunichi Kitabayashi
    • Hideo MaedaShigeru OhuchidaJunichi Kitabayashi
    • G11B7/135G11B11/105
    • G11B7/1353G11B11/105G11B11/10532G11B11/10543G11B11/10576
    • An optomagnetic information recording and reproducing apparatus includes an optomagnetic optical pick-up for recording or reproducing information on or from an optomagnetic information recording disc. An optomagnetic optical pick-up includes a first diffraction grating for receiving light reflected from the disc and separating the light into a first transmitting light which transmits through the first diffraction grating beam and a first diffracted light beam which is diffracted by the first diffraction grating. A second diffraction grating is disposed to receive the first transmitting and diffracted light beams and discharges a second transmitting light beam and a second diffracted light beam. A tracking error detector is provided to receive the second transmitting light beam and a focusing error detector is disposed to receive the second diffracted light beam. An optomagnetic signal is obtained as a difference between outputs from the tracking and focusing error detectors.
    • 光磁信息记录和再现装置包括用于在光磁信息记录盘上记录或再现信息的光磁拾取器。 光磁光学拾取器包括:第一衍射光栅,用于接收从盘反射的光,并将光分离成透过第一衍射光栅束的第一透射光;以及由第一衍射光栅衍射的第一衍射光束。 第二衍射光栅被设置为接收第一透射和衍射光束并且放出第二透射光束和第二衍射光束。 提供跟踪误差检测器来接收第二透射光束,并且设置聚焦误差检测器以接收第二衍射光束。 获得作为跟踪和聚焦误差检测器的输出之间的差的光磁信号。
    • 7. 发明授权
    • Wavelength converting element and system for recording and reproducing
optical information
    • 用于记录和再现光学信息的波长转换元件和系统
    • US5325348A
    • 1994-06-28
    • US878421
    • 1992-05-04
    • Hideo MaedaEiji NodaShigeru Ohuchida
    • Hideo MaedaEiji NodaShigeru Ohuchida
    • G11B7/006G11B7/125G11B7/08
    • G11B7/127G11B7/006
    • In a wavelength converting element, an oscillation line at a predetermined wavelength is excited on the basis of excited light having a predetermined wavelength. Frequencies of the excited light and light on the oscillation line are mixed with each other in a nonlinear optical medium to generate light having a sum frequency. The wavelength converting element has resonators for the oscillation line and the excited light. A system for recording and reproducing optical information has a first light source capable of being directly modulated, and a second light source for emitting light having a wavelength shorter than that of a light beam emitted from the first light source. The first beam from the first light source is superposed on the short wavelength light from the second light source to record and reproduce the optical information. This system uses an overwrite recording system in which a writing operation of data is performed by emitting and superposing a modulated light beam from the first light source on the short wavelength light, and data indicative of value "0" are equivalently written to a memory medium by erasing data therefrom in this writing operation.
    • 在波长转换元件中,基于具有预定波长的激发光来激发预定波长的振荡线。 振荡线上的激发光和光的频率在非线性光学介质中彼此混合,以产生具有和频的光。 波长转换元件具有用于振荡线和激发光的谐振器。 用于记录和再现光学信息的系统具有能够被直接调制的第一光源,以及用于发射波长短于从第一光源发射的光束的波长的光的第二光源。 来自第一光源的第一光束被叠加在来自第二光源的短波长光上以记录和再现光学信息。 该系统使用覆盖记录系统,其中通过在短波长光上发射和叠加来自第一光源的调制光束并且将表示值“0”的数据等效地写入存储介质来执行数据的写入操作 通过在该写入操作中从其中擦除数据。
    • 10. 发明授权
    • Non-sticky water-based conformal coating material
    • 非粘性水性保形涂料
    • US07642325B2
    • 2010-01-05
    • US11399468
    • 2006-04-07
    • Masashi HashimotoHideo Maeda
    • Masashi HashimotoHideo Maeda
    • C08F118/02B05D5/12
    • H05K3/285C08F265/04C09D151/003H05K3/284C08F212/08
    • A non-sticky water-based coating material in the form of a film applied to the face of a circuit board that is loaded with electronic parts; which comes into contact with the outside environment. The coating material can be formed into the film at room temperature without using a coalescence, does not contain a solvent and forms a membrane having flexibility, low Young's modulus, favorable adhesive properties, moisture resistance and insulating properties. Specifically, the non-sticky water-based conformal coating material includes a resin wherein a flexible acrylic resin having glass transition temperature of at most 0° C. is the main chain and a vinyl polymer having a glass transition temperature of at least 20° C. is grafted to the flexible acrylic resin; the content of the vinyl polymer being 10 to 70% by weight based on the flexible acrylic resin.
    • 将一种薄膜形式的非粘性水性涂料施加到装有电子部件的电路板的表面上; 这与外部环境接触。 涂层材料可以在室温下形成膜而不使用聚结,不含溶剂并形成具有柔软性,低杨氏模量,良好的粘合性,耐湿性和绝缘性的膜。 具体而言,非粘性水性保形涂敷材料包括玻璃化转变温度为0℃以下的柔性丙烯酸树脂为主链,玻璃化转变温度为20℃以上的乙烯基聚合物 接枝到柔性丙烯酸树脂上; 基于柔性丙烯酸树脂,乙烯基聚合物的含量为10〜70重量%。