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    • 1. 发明公开
    • Light emitting device using organic electroluminescent element
    • 电子元器件电子元器件
    • EP1737275A2
    • 2006-12-27
    • EP06115798.8
    • 2006-06-21
    • KABUSHIKI KAISHA TOYOTA JIDOSHOKKI
    • Okabe, TakanoriMiura, HiroyukiIwata, HiromuNoritake, KazutoIto, Hironori
    • H05B33/08
    • H05B33/0896
    • A light emitting device (10) may comprise a constant current source (12), a first organic electroluminescent element (16), switches (14, 20), and a second organic electroluminescent element (18). The first organic electroluminescent element (16) may be connected to the constant current source (12). The switches (14, 20) may switch the direction of a voltage applied from the constant current source (12) to the first electroluminescent element (16). The second organic electroluminescent element (18) may be connected in parallel with the first organic electroluminescent element (16). When reverse voltage is applied to the first organic electroluminescent element (16), electric current from the constant current source (12) flows to the second organic electroluminescent element (18) and the second organic electroluminescent element (18) generates an electric potential.
    • 发光器件(10)可以包括恒流源(12),第一有机电致发光元件(16),开关(14,20)和第二有机电致发光元件(18)。 第一有机电致发光元件(16)可以连接到恒流源(12)。 开关(14,20)可以将从恒定电流源(12)施加的电压的方向切换到第一电致发光元件(16)。 第二有机电致发光元件(18)可以与第一有机电致发光元件(16)并联连接。 当向第一有机电致发光元件(16)施加反向电压时,来自恒流源(12)的电流流向第二有机电致发光元件(18),第二有机电致发光元件(18)产生电位。
    • 3. 发明公开
    • EL device
    • EL器件
    • EP1511093A2
    • 2005-03-02
    • EP04018468.1
    • 2004-08-04
    • Kabushiki Kaisha Toyota Jidoshokki
    • Kato, YoshifumiIto, Hironori
    • H01L51/20
    • H01L51/5259H01L51/5253
    • A dam member is formed around a light emitting region of an El element so as to surround the entire outer periphery of the light emitting region. The dam member is formed on an interface between a glass substrate and a sealing layer in a portion where neither a first electrode extraction portion of an anode nor a second electrode extraction portion of a cathode are formed, an interface between the sealing layer and the first electrode extraction portion in a portion where the first electrode extraction portion is formed, and an interface between the second electrode extraction portion and the glass substrate in a portion where the second electrode extraction portion is formed. Even if moisture or gas intrudes into those interfaces, the dam member absorbs the moisture or gas and prevents further intrusion beyond the dam member.
    • 围绕E1元件的发光区域形成阻挡构件以围绕发光区域的整个外围。 所述堰构件形成在玻璃基板和密封层之间的界面上,所述部分不形成阳极的第一电极引出部分或阴极的第二电极引出部分,所述密封层和第一电极引出部分之间的界面 形成有第一电极引出部的部分中的电极引出部以及形成有第二电极引出部的部分中的第二电极引出部与玻璃基板之间的界面。 即使湿气或气体侵入这些界面,坝部件吸收湿气或气体并防止进一步侵入超过坝部件。
    • 6. 发明公开
    • Organic electroluminescent element
    • 有机电子元器件
    • EP1510563A2
    • 2005-03-02
    • EP04020312.7
    • 2004-08-26
    • Kabushiki Kaisha Toyota Jidoshokki
    • Hieda, MasatoYamashita, KentaroHarada, MasayukiIto, HironoriKato, Yoshifumi
    • C09K11/06H05B33/14H01L51/30
    • H01L51/5203H01L2251/5361
    • An organic electroluminescent element has a first electrode, a second electrode and an organic electroluminescent layer. The first electrode has a first luminescent region and a first terminal extending from the first luminescent region. The second electrode has a second luminescent region and a second terminal extending from the second luminescent region. The first electrode is made of a material having a higher volume resistivity than the second electrode. The organic electroluminescent layer is interposed between the first electrode and the second electrode. The first luminescent region and the second luminescent region respectively contact the organic electroluminescent layer. A length of a boundary between the first luminescent region and the first terminal is greater than a length of a boundary between the second luminescent region and the second terminal.
    • 有机电致发光元件具有第一电极,第二电极和有机电致发光层。 第一电极具有第一发光区域和从第一发光区域延伸的第一端子。 第二电极具有第二发光区域和从第二发光区域延伸的第二端子。 第一电极由具有比第二电极更高的体积电阻率的材料制成。 有机电致发光层介于第一电极和第二电极之间。 第一发光区域和第二发光区域分别接触有机电致发光层。 第一发光区域和第一端子之间的边界的长度大于第二发光区域和第二端子之间的边界的长度。