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    • 1. 再颁专利
    • Multiple wavelength light emitting device, electronic apparatus, and interference mirror
    • 多波长发光器件,电子设备和干涉镜
    • USRE45442E1
    • 2015-03-31
    • US13085129
    • 2011-04-12
    • Tatsuya ShimodaTomoko KoyamaTakeo KanekoJeremy Henley Burroughes
    • Tatsuya ShimodaTomoko KoyamaTakeo KanekoJeremy Henley Burroughes
    • H05B33/00
    • A multiple wavelength light emitting device is provided wherewith the resonance strength and directivity between colors can be easily adjusted for balance. This light emitting device comprises a light emission means 4 for emitting light containing wavelength components to be output, and a semi-reflecting layer group 2 wherein semi-reflecting layers 2R, 2G, and 2B that transmit some light having specific wavelengths emitted from the light emission means and reflect the remainder are stacked up in order in the direction of light advance in association with wavelengths of light to be output. Light emission regions AR, AG, and AB are determined in association with the wavelengths of light to be output. The configuration is such that, in the light emission regions, the distances LR, LG and LB between a reflecting surface for fight from the light emission means side of the semi-reflecting layers 2R, 2G, and 2B that reflect light output from those light emission regions and a point existing in an interval from the end of the light emitting layer on the semi-reflecting layer group side to the reflecting layer are adjusted so as to have an optical path length at which that light resonates.
    • 提供了多波长发光器件,其中可以容易地调节颜色之间的共振强度和方向性。 该发光装置包括用于发射包含要输出的波长分量的光的发光装置4和半反射层组2,其中透射从光发射的具有特定波长的一些光的半反射层2R,2G和2B 发射装置和反射余下部分依次输出的光的波长与光的前进方向重叠。 与要输出的光的波长相关联地确定发光区域AR,AG和AB。 该配置使得在发光区域中,从反射从这些光输出的光的半反射层2R,2G和2B的发光装置侧的反射面之间的距离LR,LG和LB 发光区域和从半反射层组侧的发光层的端部到反射层的间隔中存在的点被调节为具有该光共振的光程长度。
    • 2. 发明授权
    • Multiple wavelength light emitting device, electronic apparatus, and interference mirror
    • 多波长发光器件,电子设备和干涉镜
    • US06791261B1
    • 2004-09-14
    • US09980100
    • 2002-03-08
    • Tatsuya ShimodaTomoko KoyamaTakeo KanekoJeremy Henley Burroughes
    • Tatsuya ShimodaTomoko KoyamaTakeo KanekoJeremy Henley Burroughes
    • H01L5120
    • H01L51/5265G02B5/285H01L27/3211H01L27/3281H01L51/5036
    • A multiple wavelength light emitting device is provided wherewith the resonance strength and directivity between colors can be easily adjusted for balance. This light emitting device comprises a light emission means 4 for emitting light containing wavelength components to be output, and a semi-reflecting layer group 2 wherein semi-reflecting layers 2R, 2G, and 2B that transmit some light having specific wavelengths emitted from the light emission means and reflect the remainder are stacked up in order in the direction of light advance in association with wavelengths of light to be output. Light emission regions AR, AG, and AB are determined in association with the wavelengths of light to be output. The configuration is such that, in the light emission regions, the distances LR, LG and LB between a reflecting surface for fight from the light emission means side of the semi-reflecting layers 2R, 2G, and 2B that reflect light output from those light emission regions and a point existing in an interval from the end of the light emitting layer on the semi-reflecting layer group side to the reflecting layer are adjusted so as to have an optical path length at which that light resonates.
    • 提供了多波长发光器件,其中可以容易地调节颜色之间的共振强度和方向性。 该发光装置包括用于发射包含要输出的波长分量的光的发光装置4和半反射层组2,其中透射从光发射的具有特定波长的一些光的半反射层2R,2G和2B 发射装置和反射余下部分依次输出的光的波长与光的前进方向重叠。 与要输出的光的波长相关联地确定发光区域AR,AG和AB。 该配置使得在发光区域中,从反射从这些光输出的光的半反射层2R,2G和2B的发光装置侧的反射面之间的距离LR,LG和LB 发光区域和从半反射层组侧的发光层的端部到反射层的间隔中存在的点被调节为具有该光共振的光程长度。
    • 4. 再颁专利
    • Multiple wavelength light emitting device, electronic apparatus, and interference mirror
    • 多波长发光器件,电子设备和干涉镜
    • USRE43759E1
    • 2012-10-23
    • US13016767
    • 2000-06-02
    • Tatsuya ShimodaTomoko KoyamaTakeo KanekoJeremy Henley Burroughes
    • Tatsuya ShimodaTomoko KoyamaTakeo KanekoJeremy Henley Burroughes
    • H01J33/00H01L51/20
    • H01L51/5265G02B5/285H01L27/3211H01L27/3281H01L51/5036
    • A multiple wavelength light emitting device is provided wherewith the resonance strength and directivity between colors can be easily adjusted for balance. This light emitting device comprises a light emission means 4 for emitting light containing wavelength components to be output, and a semi-reflecting layer group 2 wherein semi-reflecting layers 2R, 2G, and 2B that transmit some light having specific wavelengths emitted from the light emission means and reflect the remainder are stacked up in order in the direction of light advance in association with wavelengths of light to be output. Light emission regions AR, AG, and AB are determined in association with the wavelengths of light to be output. The configuration is such that, in the light emission regions, the distances LR, LG and LB between a reflecting surface for fight from the light emission means side of the semi-reflecting layers 2R, 2G, and 2B that reflect light output from those light emission regions and a point existing in an interval from the end of the light emitting layer on the semi-reflecting layer group side to the reflecting layer are adjusted so as to have an optical path length at which that light resonates.
    • 提供了多波长发光器件,其中可以容易地调节颜色之间的共振强度和方向性。 该发光装置包括用于发射包含要输出的波长分量的光的发光装置4和半反射层组2,其中透射从光发射的具有特定波长的一些光的半反射层2R,2G和2B 发射装置和反射余下部分依次输出的光的波长与光的前进方向重叠。 与要输出的光的波长相关联地确定发光区域AR,AG和AB。 该配置使得在发光区域中,从反射从这些光输出的光的半反射层2R,2G和2B的发光装置侧的反射面之间的距离LR,LG和LB 发光区域和从半反射层组侧的发光层的端部到反射层的间隔中存在的点被调节为具有该光共振的光程长度。
    • 5. 发明授权
    • Multiple-wavelength light emitting device and electronic apparatus
    • 多波长发光装置及电子设备
    • US06639250B1
    • 2003-10-28
    • US09807754
    • 2001-06-18
    • Tatsuya ShimodaTomoko KoyamaTakeo KanekoJeremy Henry Burroughes
    • Tatsuya ShimodaTomoko KoyamaTakeo KanekoJeremy Henry Burroughes
    • H01L3300
    • H01L51/5036H01L27/3211H01L51/5265
    • An efficient multiple-wavelength light emitting device is provided. This multiple-wavelength light emitting device comprises a light emitting layer 4 for emitting light containing wavelength components to be output, a negative electrode 5 that is positioned at the back surface of the light emitting layer and that transmits at least a portion of the light, reflecting layers 7R, 7G, and 7B, positioned at the back surface of the negative electrode, for reflecting, of the light emitted through the negative electrode to the back surface, light having specific wavelengths, which reflecting layers are stacked up in order perpendicularly to the light axis, in correspondence with the wavelengths of the light to be reflected, thus configuring a reflecting layer group 7. In the direction perpendicular to the light axis, divisions are made in any of at least two or more light emission regions which reflect light of different wavelengths. In each light emission region, the distance between the reflecting surface of the reflecting layer 7 on the semi-transparent side and the reflecting surface in the semi-reflecting layer 2 is adjusted in this configuration so that it becomes a resonating optical path length for the light that is emitted in the light emission region.
    • 提供了一种有效的多波长发光装置。 该多波长发光器件包括用于发射包含要输出的波长分量的光的发光层4,位于发光层的背面并且透射至少一部分光的负极5, 反射层7R,7G和7B位于负极的背面,用于将通过负极发射的光反射到背面,具有特定波长的光,该反射层按垂直于 光轴与要反射的光的波长相对应,因此构成反射层组7.在垂直于光轴的方向上,在反射光的至少两个或更多个发光区域中的任一个中进行分割 的不同波长。 在每个发光区域中,半透明侧的反射层7的反射面与半反射层2的反射面之间的距离被调整为这样的结构,使得其成为 在发光区域发射的光。
    • 8. 发明授权
    • Methods for fabricating distributed reflection multi-layer film mirrors
    • 分布反射多层膜镜的制作方法
    • US06337222B1
    • 2002-01-08
    • US09402986
    • 1999-10-14
    • Tatsuya ShimodaTakeo KanekoSatoru Miyashita
    • Tatsuya ShimodaTakeo KanekoSatoru Miyashita
    • H01L2100
    • G02B5/0833G02B5/0825H01S5/18361
    • In a method for fabricating distributed reflection multi-layered film mirrors consisting of a plurality of laminated thin films having a different refractive index, the thin films are formed using a liquid phase film formation method. The liquid phase film formation method includes a step of applying thin film materials forming the thin films, and a step of drying the applied the thin film materials. The liquid phase film formation method utilizes an ink jet method. Thin films can be formed in fine patterns with ease and in a short amount of time. Laminated layers with high reliability can be obtained in very fine patterns. The reflection properties such as film thickness and reflectance of distributed reflection multi-layered film mirrors can be controlled with ease.
    • 在由多个具有不同折射率的层叠薄膜构成​​的分布反射多层膜反射镜的制造方法中,使用液相成膜法形成薄膜。 液相膜形成方法包括施加形成薄膜的薄膜材料的步骤以及施加薄膜材料的步骤。 液相成膜法利用喷墨法。 薄膜可以在短时间内容易地形成为精细图案。 可以以非常精细的图案获得具有高可靠性的层压层。 可以容易地控制分布式反射多层膜反射镜的膜厚度和反射率等反射特性。