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    • 5. 发明申请
    • Optical Pickup
    • 光学拾音
    • US20080232203A1
    • 2008-09-25
    • US10593649
    • 2005-03-17
    • Masakazu OgasawaraMakoto SatoIkuya Kikuchi
    • Masakazu OgasawaraMakoto SatoIkuya Kikuchi
    • G11B7/00
    • G11B7/1353G11B7/0948G11B7/1275G11B7/13927G11B2007/0006
    • An optical pickup projects laser beams having the first to the third wavelengths, in response to the type of a recording medium which is an object to which recording or reproduction is to be performed, and reflecting light from the recording medium is received by a light-detecting element. In order to reduce the sizes of the optical pickup, light of the second and the third wavelengths is generated by a single dual-wavelength light source, and reflecting light of all the wavelengths is to be received by the single light-detecting element. A hologram element giving different optical effects to light of each wavelength is arranged between the light irradiating means and the light-detecting element. Thus, appropriate information recording and reproduction can be performed by using light of each wavelength.
    • 响应于要进行记录或再现的对象的记录介质的类型,并且来自记录介质的光被反射光接收,光拾取器投射具有第一至第三波长的激光束, 检测元件。 为了减小光学拾取器的尺寸,通过单个双波长光源产生第二和第三波长的光,并且所有波长的反射光将被单个光检测元件接收。 在光照射装置和光检测元件之间布置有对每个波长的光赋予不同光学效果的全息元件。 因此,可以通过使用每个波长的光来执行适当的信息记录和再现。
    • 6. 发明授权
    • Optical pickup
    • 光学拾音
    • US07453787B2
    • 2008-11-18
    • US10593649
    • 2005-03-17
    • Masakazu OgasawaraMakoto SatoIkuya Kikuchi
    • Masakazu OgasawaraMakoto SatoIkuya Kikuchi
    • G11B7/00
    • G11B7/1353G11B7/0948G11B7/1275G11B7/13927G11B2007/0006
    • An optical pickup projects laser beams having the first to the third wavelengths, in response to the type of a recording medium which is an object to which recording or reproduction is to be performed, and reflecting light from the recording medium is received by a light-detecting element. In order to reduce the sizes of the optical pickup, light of the second and the third wavelengths is generated by a single dual-wavelength light source, and reflecting light of all the wavelengths is to be received by the single light-detecting element. A hologram element giving different optical effects to light of each wavelength is arranged between the light irradiating means and the light-detecting element. Thus, appropriate information recording and reproduction can be performed by using light of each wavelength.
    • 响应于要进行记录或再现的对象的记录介质的类型,并且来自记录介质的光被反射光接收,光拾取器投射具有第一至第三波长的激光束, 检测元件。 为了减小光学拾取器的尺寸,通过单个双波长光源产生第二和第三波长的光,并且所有波长的反射光将被单个光检测元件接收。 在光照射装置和光检测元件之间布置有对每个波长的光赋予不同光学效果的全息元件。 因此,可以通过使用每个波长的光来执行适当的信息记录和再现。
    • 10. 发明授权
    • Light emitting device including a case having an accommodating recession
    • 发光装置包括具有容纳凹陷的壳体
    • US08669584B2
    • 2014-03-11
    • US13587699
    • 2012-08-16
    • Makoto SatoSatoshi OtaMasakata Koseki
    • Makoto SatoSatoshi OtaMasakata Koseki
    • H01L33/00
    • H01L33/60H01L2933/0033
    • A light emitting device, comprises a LED chip, and a case having an accommodating recession accommodating the LED chip, wherein the light emitting device emits light from an opening portion of the accommodating recession, the case is monolithically formed by injection molding of a resin composition preparing by mixing fine grains of specular reflection material and glass fibers as diffusion reflecting material as fillers therein, an inner surface of a side wall portion of the case works as a reflector that reflects the light emitted from the LED chip so that the light is output from the opening portion, and a thickness of the side wall portion is selected to be smaller than an average length of the glass fibers.
    • 一种发光装置,包括LED芯片和具有容纳LED芯片的容纳凹部的壳体,其中,所述发光装置从所述容纳凹部的开口部发射光,所述壳体通过树脂组合物的注射成型 通过将镜面反射材料和玻璃纤维的细晶粒作为扩散反射材料作为填料来制备,壳体的侧壁部分的内表面用作反射从LED芯片发射的光以使得光输出的反射器 从所述开口部开始,所述侧壁部的厚度选择为小于所述玻璃纤维的平均长度。