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    • 1. 发明授权
    • Array-type photo module
    • 阵列型照片模块
    • US08744223B2
    • 2014-06-03
    • US13410131
    • 2012-03-01
    • Yuto YamashitaKeiichi SasakiEtsuo OginoYasuaki TamuraYuji AkahoriYuichi Suzuki
    • Yuto YamashitaKeiichi SasakiEtsuo OginoYasuaki TamuraYuji AkahoriYuichi Suzuki
    • G02B6/32
    • G02B6/425G02B6/4215
    • The present invention provides an array-type photo module including a filter, which, in each channel, transmits therethrough a portion of emitted light from an incident optical fiber on the opposite side of a gradient-index lens array and reflects another portion of the emitted light from the incident optical fiber toward the gradient-index lens array, and a light-shielding member which is arranged on the opposite side of the filter from the gradient-index lens array, so as to be spaced from the filter and, in each channel, has an opening passing therethrough transmitted light from the filter on the opposite side of the filter. The array-type photo module is easily and inexpensively manufactured, and may be used in a high-density array, with low crosstalk.
    • 本发明提供了一种阵列型照相模块,它包括一个滤光器,它在每个通道中透过其中一部分来自入射光纤的发射光,在入射光纤位于相反的一个梯度折射率透镜阵列上, 从入射光纤到达梯度折射率透镜阵列的光;以及遮光构件,其设置在与滤光镜相反的一侧,与滤光镜相隔离,并且每个 通道具有穿过过滤器相对侧上的来自过滤器的透射光的开口。 阵列型光模块容易且廉价地制造,并且可以以低串扰的高密度阵列使用。
    • 2. 发明申请
    • ARRAY-TYPE PHOTO MODULE
    • 阵列型照片模块
    • US20120257855A1
    • 2012-10-11
    • US13410131
    • 2012-03-01
    • Yuto YamashitaKeiichi SasakiEtsuo OginoYasuaki TamuraYuji AkahoriYuichi Suzuki
    • Yuto YamashitaKeiichi SasakiEtsuo OginoYasuaki TamuraYuji AkahoriYuichi Suzuki
    • G02B6/32
    • G02B6/425G02B6/4215
    • PROBLEMAn object of the present invention is to easily and inexpensively manufacture an array-type photo module and, in addition, coexist high-density array and low crosstalk.SOLUTIONThe present invention provides an array-type photo module M including a filter 31, which, in each channel, transmits therethrough a portion of emitting light from an incident optical fiber 11 on the opposite side of a gradient-index lens array 2 and reflects another portion of the emitting light from the incident optical fiber 11 toward the gradient-index lens array 2, and a light-shielding member 32 (33) which is arranged on the opposite side of the gradient-index lens array 2 of the filter 31 so as to be spaced from the filter 31 and, in each channel, has an opening 34 (35) passing therethrough transmitted light from the filter 31 on the opposite side of the filter 31.
    • 发明内容本发明的目的在于容易且廉价地制造阵列型照相模块,另外共存高密度阵列和低串扰。 解决方案本发明提供一种阵列型光模块M,其包括滤光器31,滤光器31在每个通道中透过其中一部分发射光,该入射光纤11位于梯度折射率透镜阵列2的相对侧并反射 来自入射光纤11的发光的另一部分朝向梯度折射率透镜阵列2,以及设置在滤光器31的梯度折射率透镜阵列2的相反侧的遮光部件32(33) 与过滤器31隔开,并且在每个通道中具有穿过过滤器31的相反侧上的来自过滤器31的透射光的开口34(35)。
    • 3. 发明授权
    • Photo module
    • 照片模块
    • US08977083B2
    • 2015-03-10
    • US14113828
    • 2012-04-03
    • Yuto YamashitaEtsuo OginoKeiichi Sasaki
    • Yuto YamashitaEtsuo OginoKeiichi Sasaki
    • G02B6/32G02B6/42
    • G02B6/32G02B6/4206G02B6/425
    • The photo module is provided with an incident light fiber guiding light, a gradient index lens having an optical axis different from the incident light fiber, having a period length larger than a ¼ period length and smaller than a ½ period length with respect to the wavelength of the incident light, joined to the incident light fiber on a surface forming a finite angle with a surface vertical to the optical axis, and having, as a light exit surface of emitting light, a surface substantially vertical to the optical axis, and a light receiving element disposed at a position where the emitting light is collected and measuring the strength of the emitting light.
    • 光模块设置有入射光纤引导光,具有不同于入射光纤的光轴的梯度折射率透镜,其周期长度大于1/4周期长度并且小于相对于波长的1/2周期长度 的入射光在与垂直于光轴的表面形成有限角度的表面上接合入射光纤,并且具有作为发光的光出射面,基本上垂直于光轴的表面,以及 光接收元件设置在收集发光的位置并测量发光的强度。
    • 4. 发明申请
    • PHOTO MODULE
    • 照片模组
    • US20140112620A1
    • 2014-04-24
    • US14113828
    • 2012-04-03
    • Yuto YamshitaEtsuo OginoKeiichi Sasaki
    • Yuto YamshitaEtsuo OginoKeiichi Sasaki
    • G02B6/32
    • G02B6/32G02B6/4206G02B6/425
    • A photo module which measures a signal strength in a transmission path, and this technique collects a signal light, guided to a photo module, on a light receiving element without increasing the number of manufacturing processes and the cost and, at the same time, prevents reflected light returned from the photo module from entering inside the transmission path again.The photo module is provided with an incident light fiber guiding incident light, a gradient index lens having an optical axis different from the incident light fiber, having a period length larger than a ¼ period length and smaller than a ½ period length with respect to the wavelength of the incident light, joined to the incident light fiber on a surface forming a finite angle with a surface vertical to the optical axis, and having, as a light exit surface of emitting light, a surface substantially vertical to the optical axis, and a light receiving element disposed at a position where the emitting light is collected and measuring the strength of the emitting light.
    • 测量传输路径中的信号强度的照片模块,并且该技术在不增加制造工艺数量和成本的情况下收集被引导到光接收元件上的照相模块的信号光,并且同时防止 从照相模块返回的反射光再次进入传输路径内。 光模块设置有引入入射光的入射光纤,具有不同于入射光纤的光轴的渐变折射率透镜,其周期长度大于1/4周期长度,并且小于相对于 入射光的波长,在与光轴垂直的表面形成有限角度的表面上接合入射光纤,并且具有作为发光的光出射面,基本上垂直于光轴的表面,以及 设置在收集发光的位置处的光接收元件,并测量发光的强度。
    • 5. 发明申请
    • Method for forming thin film on synthetic resin and multilayer film
    • 在合成树脂和多层膜上形成薄膜的方法
    • US20050158575A1
    • 2005-07-21
    • US10495077
    • 2002-11-06
    • Kenji HattoriEtsuo Ogino
    • Kenji HattoriEtsuo Ogino
    • G02B5/02B32B15/08C23C14/06C23C14/20G02B5/08G02B5/20G02F1/1333G02F1/1335G02F1/13357C23C14/32
    • G02B1/14C23C14/20G02B1/10G02B5/0833G02B5/0858G02F1/133553Y10T428/12569
    • An object of the invention, in the formation of a thin film on a synthetic resin, is to improve adhesiveness between the synthetic resin and the thin film by a relatively simple method. In the invention, a protective metallic layer is formed on a synthetic resin, and one thin film of (1) a semi-transmitting metallic mirror, (2) a total reflection metallic mirror, or (3) a transparent conductive film is formed. The material of the protective metallic layer is preferably selected from the group of Ti, Zr, Nb, Si, In, and Sn, and for sake of ensuring adhesiveness between the synthetic resin and the thin film, the film thickness of the protective metal layer is preferably 1 nm or more. Also, when the film thickness of the protective metallic layer is large, transmittance of the whole of the laminated film is lowered due to light absorption by the protective metallic layer, and hence, the film thickness of the protective metallic layer is preferably not more than 5 nm.
    • 本发明的目的在于在合成树脂上形成薄膜的方法是通过相对简单的方法改善合成树脂和薄膜之间的粘附性。 在本发明中,在合成树脂上形成保护金属层,形成(1)半透射金属镜,(2)全反射金属镜,或(3)透明导电膜的一个薄膜。 保护金属层的材料优选选自Ti,Zr,Nb,Si,In和Sn中的一种,为了确保合成树脂和薄膜之间的粘附性,保护金属层的膜厚度 优选为1nm以上。 此外,当保护金属层的膜厚大时,由于保护金属层的光吸收,整个层压膜的透光率降低,因此保护金属层的膜厚优选不大于 5nm。