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    • 1. 发明授权
    • Organic electroluminescent device
    • 有机电致发光器件
    • US5457565A
    • 1995-10-10
    • US153924
    • 1993-11-18
    • Tohru NamikiHitoshi SatoKenichi NagayamaTeruichi Watanabe
    • Tohru NamikiHitoshi SatoKenichi NagayamaTeruichi Watanabe
    • H05B33/22H01L51/50H05B33/12H05B33/14H05B33/28G02F1/153
    • H05B33/12H01L51/5092H05B33/14H05B33/28H01L51/5234
    • An organic electroluminescent device comprises an anode, a positive-hole transport layer made of an organic compound, an emitting layer made of an organic compound, and a cathode which are layered in sequence, further comprising an electron-injecting layer containing at least one of alkaline earth metal oxides and disposed between the emitting layer and the cathode. This device emits light at a high luminance and a high efficiency upon application of a low voltage together with reduction of the decrement of luminance in the running of emitting light of the device. Selection scope for cathode materials is expanded because of the device is free from the restriction of a low work function for the cathode layer. The cathode can be made a transparent electrode such as ITO. Anode and cathode lines may be formed with low resistance material. As a result, emitting efficiency and life time of the device is improved.
    • 一种有机电致发光器件包括阳极,由有机化合物制成的正空穴传输层,由有机化合物制成的发射层和依次层叠的阴极,还包括电子注入层,该电子注入层包含至少一个 碱土金属氧化物并且设置在发光层和阴极之间。 该装置在施加低电压的同时以高亮度和高效率发光,同时降低器件发射光的运行中的亮度减少。 阴极材料的选择范围扩大,因为该器件没有限制阴极层的低功函数。 阴极可以制成诸如ITO的透明电极。 阳极和阴极线可以用低电阻材料形成。 结果,提高了器件的发光效率和寿命。
    • 2. 发明申请
    • Self-emitting panel and method of manufacturing self-emitting panel
    • 自发光面板及自发光面板制造方法
    • US20060197445A1
    • 2006-09-07
    • US11366605
    • 2006-03-03
    • Teruichi Watanabe
    • Teruichi Watanabe
    • H05B33/04H05B33/10
    • H01L51/5259H01L27/3244H01L27/3295
    • In a self-emitting panel, self-emitting devices are arranged on a substrate in an array. Each self-emitting device includes a pair of electrodes and an emitting layer arranged between the electrodes. An insulating film insulates each of the self-emitting devices from others of the self-emitting devices on the substrate, by separating the emitting layer and at least one of the electrodes from those of the others. A sealing member is arranged to form a sealing region for shielding the self-emitting devices from the air, between the sealing member and the substrate. A sipe is provided at a portion beside an outermost self-emitting device arranged at an outermost part in the array such that the sipe is positioned closer to an edge of the substrate than the outermost self-emitting device is. The sipe has a depth in a direction of a thickness of the insulating film to divide the insulating film.
    • 在自发光面板中,将自发光器件布置在阵列中的衬底上。 每个自发射器件包括一对电极和布置在电极之间的发射层。 绝缘膜通过将发射层和至少一个电极与其它电极分离而使每个自发射器件与衬底上的自发射器件的其它部件绝缘。 密封构件被布置成形成用于将密封构件和基底之间的自发射装置与空气屏蔽的密封区域。 刀槽花纹设置在布置在阵列中的最外侧部分的最外面的自发射装置的旁边,使得刀槽花纹位于比最外面的自发射装置更靠近基底的边缘。 刀槽花纹在绝缘膜的厚度方向上具有深度以分隔绝缘膜。
    • 4. 发明授权
    • Self-emission display apparatus and method of driving the same
    • 自发射显示装置及其驱动方法
    • US07847766B2
    • 2010-12-07
    • US11483563
    • 2006-07-11
    • Teruichi WatanabeTakayoshi Yoshida
    • Teruichi WatanabeTakayoshi Yoshida
    • G09G3/32
    • G09G3/3208G09G2320/0242G09G2320/029G09G2320/043G09G2330/02
    • It is an object of the present invention to inhibit a collapse of a color balance possibly caused due to deterioration of self-emission elements when performing a color displaying by virtue of several different colors. A self-emission display apparatus comprises: a display element section consisting of self-emission elements; a monitor element section consisting of self-emission elements of different colors formed in the same manner as the self-emission elements of the display element section; a power supply circuit which supplies driving voltages to the display element section; monitor detecting units for detecting an operating state of the monitor element section; driving voltage control units which control driving voltages in accordance with a detected operating state; and a display control section for supplying display signal to the display element section. Further, the self-emission display apparatus has monitor control units which perform lighting controls of the foregoing different colors on the monitor element section, as well as a monitor load adjusting unit which adjusts a load state of each of the foregoing different colors in lighting control so as to maintain a color balance of the display element section.
    • 本发明的目的是抑制由于几种不同颜色进行彩色显示时可能由于自发光元件的劣化而引起的色平衡的崩溃。 自发射显示装置包括:由自发射元件构成的显示元件部; 监视器元件部分由与显示元件部分的自发射元件相同的方式形成的具有不同颜色的自发射元件组成; 向显示元件部供给驱动电压的电源电路; 用于检测监视元件部分的操作状态的监视器检测单元; 驱动电压控制单元,其根据检测到的运行状态来控制驱动电压; 以及显示控制部分,用于向显示元件部分提供显示信号。 此外,自发光显示装置具有监视器控制单元,其在监视元件部分上执行上述不同颜色的照明控制,以及监视器负载调整单元,其调节照明控制中的每种上述不同颜色的负载状态 以便保持显示元件部分的颜色平衡。
    • 5. 发明申请
    • Self-emission display apparatus and method of driving the same
    • 自发射显示装置及其驱动方法
    • US20070013619A1
    • 2007-01-18
    • US11483563
    • 2006-07-11
    • Teruichi WatanabeTakayoshi Yoshida
    • Teruichi WatanabeTakayoshi Yoshida
    • G09G3/30
    • G09G3/3208G09G2320/0242G09G2320/029G09G2320/043G09G2330/02
    • It is an object of the present invention to inhibit a collapse of a color balance possibly caused due to deterioration of self-emission elements when performing a color displaying by virtue of several different colors. A self-emission display apparatus comprises: a display element section consisting of self-emission elements; a monitor element section consisting of self-emission elements of different colors formed in the same manner as the self-emission elements of the display element section; a power supply circuit which supplies driving voltages to the display element section; monitor detecting units for detecting an operating state of the monitor element section; driving voltage control units which control driving voltages in accordance with a detected operating state; and a display control section for supplying display signal to the display element section. Further, the self-emission display apparatus has monitor control units which perform lighting controls of the foregoing different colors on the monitor element section, as well as a monitor load adjusting unit which adjusts a load state of each of the foregoing different colors in lighting control so as to maintain a color balance of the display element section.
    • 本发明的目的是抑制由于几种不同颜色进行彩色显示时可能由于自发光元件的劣化而引起的色平衡的崩溃。 自发射显示装置包括:由自发射元件构成的显示元件部; 监视器元件部分由与显示元件部分的自发射元件相同的方式形成的具有不同颜色的自发射元件组成; 向显示元件部供给驱动电压的电源电路; 用于检测监视元件部分的操作状态的监视器检测单元; 驱动电压控制单元,其根据检测到的运行状态来控制驱动电压; 以及显示控制部分,用于向显示元件部分提供显示信号。 此外,自发光显示装置具有监视器控制单元,其在监视元件部分上执行上述不同颜色的照明控制,以及监视器负载调整单元,其调节照明控制中的每种上述不同颜色的负载状态 以便保持显示元件部分的颜色平衡。
    • 8. 发明授权
    • Organic electroluminescent display device
    • 有机电致发光显示装置
    • US07745987B2
    • 2010-06-29
    • US10620354
    • 2003-07-17
    • Isamu OhshitaTeruichi WatanabeGen SuzukiKunizo OgoshiTeruo Tohma
    • Isamu OhshitaTeruichi WatanabeGen SuzukiKunizo OgoshiTeruo Tohma
    • H05B33/00
    • H01L27/3206H01L27/322
    • An organic electroluminescent display device includes organic electroluminescent films, each containing organic electroluminescent materials and sandwiched by a pair of electrodes, each forming a plurality of light-emitting elements above a substrate. Each pixel of the display device is composed of two different colors light-emitting elements, and the chromaticity of each color is controlled by changing the concentration of organic electroluminescent materials or by adding foreign materials thereto. For example, if the chromaticity of the red light-emitting element is set to a value shifted toward green side, various colors including white can be produced by mixing this red with blue of the blue light-emitting element. Then, the organic electroluminescent display device can produce high-quality quasi-color images by mixing two colors of which chromaticity values are properly controlled. By virtue of a two-color structure, the aperture ratio becomes high and the manufacturing process becomes simple.
    • 有机电致发光显示装置包括有机电致发光膜,每个有机电致发光膜均含有有机电致发光材料,并夹在一对电极之间,每个电极在基板上形成多个发光元件。 显示装置的每个像素由两种不同颜色的发光元件组成,并且通过改变有机电致发光材料的浓度或通过添加异物来控制每种颜色的色度。 例如,如果将红色发光元件的色度设定为朝向绿色侧移动的值,则可以通过将该红色与蓝色发光​​元件的蓝色混合来生成包括白色的各种颜色。 然后,有机电致发光显示装置可以通过混合适当地控制色度值的两种颜色来产生高质量的准彩色图像。 凭借双色结构,孔径比变高,制造工艺变得简单。
    • 9. 发明授权
    • Organic EL display device and method for manufacturing the same
    • 有机EL显示装置及其制造方法
    • US07247982B2
    • 2007-07-24
    • US10701439
    • 2003-11-06
    • Isamu OhshitaTeruichi WatanabeKunizo Ogoshi
    • Isamu OhshitaTeruichi WatanabeKunizo Ogoshi
    • H05B33/00
    • H01L27/3276H01L27/3258H01L27/3288
    • There is provided an organic EL display device comprising: an underlying layer, including at least one layer formed of organic materials, formed on a substrate; organic EL elements formed thereon; and each leading electrode from the organic EL element for an electrical interconnection to an electrode of an interconnection object. In the display device, each connecting region is formed by removing the layers formed of organic materials, of the underlying layer, at a location of a thermocompression bonding for the electrical interconnection. This enables a reliable electrical interconnection between the leading electrode and the electrode of the interconnection object, thereby allowing a good display performance of each organic EL element to be kept.
    • 提供一种有机EL显示装置,包括:形成在基板上的包括由有机材料形成的至少一层的下层; 在其上形成有机EL元件; 以及来自有机EL元件的每个引导电极,用于与互连对象的电极进行电互连。 在显示装置中,通过在用于电互连的热压接的位置处去除由下层的有机材料形成的层来形成每个连接区域。 这使得引导电极和互连对象的电极之间的可靠的电互连,从而允许保持每个有机EL元件的良好的显示性能。