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    • 1. 发明授权
    • Dispersion-type electroluminescence element
    • 分散型电致发光元件
    • US06479930B1
    • 2002-11-12
    • US09349406
    • 1999-07-08
    • Koji TanabeHeiji IkomaNaohiro NishiokaYosuke Chikahisa
    • Koji TanabeHeiji IkomaNaohiro NishiokaYosuke Chikahisa
    • H05B3300
    • H05B33/145H05B33/22H05B33/28
    • A dispersion-type electroluminescence element composed of a plurality of light-transmitting electrode layers 12A, 12B and a plurality of luminescence layers 13A, 13B of dielectric resin having a high permittivity dispersed with fluorescent powder stacked one layer after the other over the whole region, or in a certain specific region, of one surface of a light-transmitting insulation film 1; and a back electrode layer 14 provided on the last layer of the luminescence layers formed by a printing process. The electroluminescence element is capable of producing a multiple number of luminescence colors, yet the cost is low. In other example of carrying out the present invention, a luminescence layer 23 formed of a luminous body of one single luminescence color provided over a whole region of a surface is sandwiched by a back electrode layer 25 and a light-transmitting electrode layer 22 composed of two groups of fine line comb-teeth layer coupled one tooth after the one of the other electrode layer, and a stripe-shaped color conversion layer 27 is provided in a location corresponding to one of the two groups of comb-teeth fine lines. When an AC voltage is applied on the back electrode layer 25 and each of the two respective light-transmitting electrode layers 22 independently, a multiple number of luminescence colors are produced in a homogeneous plane luminescence, without accompanying the stripes outstanding to the eyes.
    • 分散型电致发光元件由多个透光电极层12A,12B和多个具有高介电常数的发光层13A,13B构成,所述发光层具有在整个区域上彼此层叠的荧光粉分散的高介电常数, 或在某一特定区域中的透光绝缘膜1的一个表面; 以及设置在通过印刷工艺形成的发光层的最后层上的背面电极层14。 电致发光元件能够产生多种发光颜色,但成本低。 在实施本发明的其他实施例中,由设置在表面的整个区域上的由单个发光颜色的发光体形成的发光层23被背电极层25和透光电极层22夹在中间 在另一个电极层中的一个之后耦合一个齿的两组细线梳齿层,并且在与两组梳齿细线中的一组对应的位置处设置条形颜色转换层27。 当背电极层25和两个相应的透光电极层22中的每一个独立地施加AC电压时,在均匀的平面发光中产生多个发光颜色,而不伴随着对眼睛突出的条纹。
    • 5. 发明授权
    • Electroluminescent lamp having luminescent layer with phosphor particles fixed uniformly
    • 电致发光灯具有荧光粉颗粒均匀固定的发光层
    • US06831411B2
    • 2004-12-14
    • US10634832
    • 2003-08-06
    • Koji TanabeAkito KawasumiShinji OkumaYosuke ChikahisaNaohiro Nishioka
    • Koji TanabeAkito KawasumiShinji OkumaYosuke ChikahisaNaohiro Nishioka
    • H05B3300
    • H05B33/145H05B33/10H05B33/12
    • An electroluminescent lamp (EL lamp) is formed by stacking a light-transmitting electrode-layer, an adhesive synthetic resin layer, a luminescent layer formed of the synthetic resin layer with phosphor particles fixed uniformly, a dielectric layer and a back electrode-layer on a transparent substrate sequentially. By this structure, a uniform EL lamp having improved brightness can be produced. A method for manufacturing the EL lamp includes following steps for fixing the phosphor particles in the synthetic resin layer uniformly. (1) sinking the phosphor particles in the synthetic resin layer by heating and pressing, after spraying the phosphor particles. (2) blowing the phosphor particles to the synthetic resin layer with heated air. As a result, the phosphor particles are uniformly fixed in the synthetic resin layer having uniform thickness.
    • 电致发光灯(EL灯)通过将透光电极层,粘合合成树脂层,由合成树脂层形成的发光层与均匀地固定的荧光体颗粒,电介质层和背面电极层堆叠在一起而形成 依次是透明基板。 通过这种结构,可以产生亮度提高的均匀的EL灯。 制造EL灯的方法包括以下步骤,用于均匀地将荧光体颗粒固定在合成树脂层中。 (1)在喷射荧光体颗粒之后通过加热和压制将磷光体颗粒沉积在合成树脂层中。 (2)用加热的空气将荧光体颗粒吹入合成树脂层。 结果,荧光体颗粒均匀地固定在具有均匀厚度的合成树脂层中。
    • 6. 发明授权
    • EL element
    • EL元件
    • US07083861B2
    • 2006-08-01
    • US09894885
    • 2001-06-29
    • Koji TanabeYosuke ChikahisaNaohiro Nishioka
    • Koji TanabeYosuke ChikahisaNaohiro Nishioka
    • H01J63/04H01J1/62
    • H05B33/20H05B33/22Y10S428/917
    • An EL element comprising a light transmitting substrate, a light transmitting electrode formed on the substrate, a light emitting layer containing a positive ion absorber, a dielectric layer and a back electrode. Further, an EL element of the present invention contains a positive ion absorber in the dielectric layer. An EL element in accordance with an embodiment comprises a light emitting layer formed of a resin, a phosphor and a positive ion absorber, the positive ion absorber being 1-400 parts by weight to a 100 parts of the resin in the light emitting layer. An EL element in another embodiment comprises a dielectric layer formed of a resin, a high dielectric constant inorganic filler and a positive ion absorber, the positive ion absorber being 0.5-50 to a 100 parts of a total amounts of the resin and the filler.
    • 一种EL元件,包括透光基板,形成在基板上的透光电极,含有正离子吸收体的发光层,电介质层和背面电极。 此外,本发明的EL元件在电介质层中含有正离子吸收体。 根据实施例的EL元件包括由树脂,荧光体和正离子吸收剂形成的发光层,正离子吸收剂相对于发光层中的树脂的100份为1-400重量份。 另一个实施例中的EL元件包括由树脂,高介电常数无机填料和正离子吸收剂形成的电介质层,正离子吸收剂为树脂和填料总量的0.5-50至100重量份。
    • 7. 发明授权
    • Electroluminescent lamp and method for manufacturing the same
    • 电致发光灯及其制造方法
    • US06835112B2
    • 2004-12-28
    • US10095104
    • 2002-03-12
    • Koji TanabeAkito KawasumiShinji OkumaYosuke ChikahisaNaohiro Nishioka
    • Koji TanabeAkito KawasumiShinji OkumaYosuke ChikahisaNaohiro Nishioka
    • H01J900
    • H05B33/145H05B33/10H05B33/12
    • An electroluminescent lamp (EL lamp) is formed by stacking a light-transmitting electrode-layer, an adhesive synthetic resin layer, a luminescent layer formed of the synthetic resin layer with phosphor particles fixed uniformly, a dielectric layer and a back electrode-layer on a transparent substrate sequentially. By this structure, a uniform EL lamp having improved brightness can be produced. A method for manufacturing the EL lamp includes following steps for fixing the phosphor particles in the synthetic resin layer uniformly. (1) sinking the phosphor particles in the synthetic resin layer by heating and pressing, after spraying the phosphor particles. (2) blowing the phosphor particles to the synthetic resin layer with heated air. As a result, the phosphor particles are uniformly fixed in the synthetic resin layer having uniform thickness.
    • 电致发光灯(EL灯)通过将透光电极层,粘合合成树脂层,由合成树脂层形成的发光层与均匀地固定的荧光体颗粒,电介质层和背面电极层堆叠在一起而形成 依次是透明基板。 通过这种结构,可以产生亮度提高的均匀的EL灯。 制造EL灯的方法包括以下步骤,用于均匀地将荧光体颗粒固定在合成树脂层中。 (1)在喷射荧光体颗粒之后通过加热和压制将磷光体颗粒沉积在合成树脂层中。 (2)用加热的空气将荧光体颗粒吹入合成树脂层。 结果,荧光体颗粒均匀地固定在具有均匀厚度的合成树脂层中。
    • 10. 发明授权
    • Wiring board with bending section
    • 带弯曲部分的接线板
    • US07108515B2
    • 2006-09-19
    • US11039876
    • 2005-01-24
    • Koji TanabeShoji FujiiYosuke Chikahisa
    • Koji TanabeShoji FujiiYosuke Chikahisa
    • H01R12/00
    • H05K1/118H01R12/62H05K2201/055
    • A wiring substrate to be used in a variety of electronic apparatuses, and an input device, such as an optically transparent touch panel, using the same wiring substrate, and a method of manufacturing the same input device are disclosed. The invention simplifies a construction of the wiring substrate, reduces the number of manufacturing steps of the substrate, and makes all the connectors of the substrate in a single-sheet structure. The electrical and mechanical connections of those connectors to other connecting means can be thus highly reliable. Plural wiring patterns 22, 23, 24 and 25, and connectors 22A, 23A, 24A and 25A are formed on a first principal surface of wiring substrate 20. Substrate 20 includes flexible bending section P—P, and when substrate 20 is bend along bending section P—P, some connectors such as 24A, 25A are placed on a second principal surface opposite to the first one, so that wiring substrate 20 is formed.
    • 公开了用于各种电子设备的布线基板以及使用相同布线基板的诸如光学透明的触摸面板的输入设备,以及制造该输入设备的方法。 本发明简化了布线基板的结构,减少了基板的制造步骤的数量,并且使基板的所有连接器成为单片结构。 因此,这些连接器与其他连接装置的电气和机械连接可以高度可靠。 多个配线图案22,23,24,25以及连接器22A,23A,24A,25A形成在布线基板20的第一主面上。 基板20包括柔性弯曲部P-P,并且当基板20沿着弯曲部P-P弯曲时,一些连接器如24A,25A被放置在与第一主面相反的第二主表面上,从而形成布线基板20。