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    • 3. 发明授权
    • Organic electroluminescent device and method for producing the same
    • 有机电致发光器件及其制造方法
    • US06933522B2
    • 2005-08-23
    • US10657170
    • 2003-09-09
    • Ming-Der LinFeng-Ju ChuangJwo-Huei JouYen-Shih Huang
    • Ming-Der LinFeng-Ju ChuangJwo-Huei JouYen-Shih Huang
    • H05B33/14H01L51/00H01L51/30H01L51/50H01L25/24H01J1/62
    • H01L51/5036H01L51/005H01L51/0059H01L51/0078H01L51/0081H01L51/0084H01L51/0085H01L51/5016H01L51/5096
    • An organic electroluminescent device with the feature of three-wavelength luminescence is provided. The device includes a hole transporting layer, an electron blocking layer, a first host material layer, a second host material layer, a hole blocking layer, and an electron transporting layer placed between an anode and a cathode in turn. In which, the first host material layer has a first guest luminous substance mixed therein for projecting a first color light source (B), while the second host material layer correspondingly has a second guest luminous substance and a third guest luminous substance mixed therein for projecting a second color light source (G) and a third color light source (R), respectively, under the effect of an external bias voltage, wherein said second guest luminous substance or said third guest luminous substance may be a phosphorescence substance. Thus, not only a continuously full-band, full-colored light source featuring three-wavelength may be acquired directly by means of the combination of RGB colors, but also an effective utilization of phosphorescence substance and thus significantly raised luminescence efficiency may be obtained.
    • 提供具有三波长发光特征的有机电致发光器件。 该装置依次包括空穴传输层,电子阻挡层,第一主体材料层,第二主体材料层,空穴阻挡层和放置在阳极和阴极之间的电子传输层。 其中,第一主体材料层具有混合在其中的用于投射第一颜色光源(B)的第一客体发光物质,而第二主体材料层相应地具有第二客体发光物质和混合在其中的第三客体发光物质,用于突出 第二颜色光源(G)和第三颜色光源(R),其中所述第二客体发光物质或所述第三客体发光物质可以是磷光物质。 因此,不仅可以通过RGB颜色的组合直接获得具有三波长的连续全频带全色光源,而且可以有效利用磷光物质,从而可以获得显着提高的发光效率。
    • 4. 发明授权
    • Organic electro-luminescent device
    • 有机电致发光器件
    • US06894433B2
    • 2005-05-17
    • US10291410
    • 2002-11-12
    • Feng-Ju Chuang
    • Feng-Ju Chuang
    • H01L27/32H01L51/52H05B33/04H01J1/62
    • H01L51/5259H01L27/3211H01L27/3246H01L27/3283H01L51/525H01L51/529H05B33/04
    • An organic electro-luminescent (EL) device is provided. The present invention discloses that the number of moisture-absorbing channels is increased to prevent the generation of dark spots and to improve the luminescence quality of the organic EL device. The organic electro-luminescent (EL) device comprises: a substrate; at least a bottom electrode, formed on the substrate, a plurality of isolation ribs for moisture-absorption and insulation, formed on a surface of the bottom electrode, intersecting the bottom electrode, wherein regions between every two of the isolation ribs are pre-determined light-emitting regions; at least an organic layer comprising an organic electro-luminescent layer, formed on a surface of the bottom electrode in the pre-determined light-emitting region; and at least an opposed electrode, formed on a surface of the organic layer. The isolation ribs are formed of PSG for removing the moisture generated during the processing of the organic EL device so as to prevent the generation of dark spots. Furthermore, the isolation ribs are helpful to achieve fine patterns of the device and avoid display crosstalk.
    • 提供了一种有机电致发光(EL)装置。 本发明公开了增加吸湿通道的数量,以防止产生黑点并提高有机EL器件的发光质量。 有机电致发光(EL)装置包括:基板; 形成在基板上的至少一个底部电极,形成在底部电极的与底部电极相交的表面上的用于吸湿和绝缘的多个隔离肋,其中每两个隔离肋之间的区域被预先确定 发光区域; 至少包含形成在所述预定发光区域中的所述底部电极的表面上的有机电致发光层的有机层; 至少形成在有机层的表面上的相对电极。 隔离肋由PSG形成,用于去除在有机EL器件的处理期间产生的湿气,以防止产生黑点。 此外,隔离肋有助于实现设备的精细图案并避免显示串扰。
    • 5. 发明授权
    • White light emitting organic electro-luminescent device and method for fabricating the same
    • 白色发光有机电致发光器件及其制造方法
    • US06893312B1
    • 2005-05-17
    • US10641044
    • 2003-08-15
    • Feng-Ju Chuang
    • Feng-Ju Chuang
    • H01L27/32H01L51/50H05B33/00
    • H01L51/5036H01L27/322
    • A white light emitting organic electro-luminescent (EL) device and a method for fabricating the same are provided. The device comprises: a substrate; a bottom electrode formed on a top surface of the substrate; at least an organic layer comprising an organic emitting layer formed on a surface of the bottom electrode to emit a first-color light; at least a transparent opposed electrode formed on a surface of the organic layer; and a sealing cap layer covering the organic layer and the transparent opposed electrode, wherein a color conversion layer is disposed on an inner surface of the sealing cap layer for converting a percentage of the first-color light into a second-color light and a third-color light. Therefore, a white light source is achieved by mixing the three primary colors.
    • 提供了一种白色发光有机电致发光(EL)器件及其制造方法。 该装置包括:基板; 底部电极,形成在所述基板的顶表面上; 至少一个有机层,包括形成在所述底部电极的表面上以发射第一色光的有机发光层; 至少形成在所述有机层的表面上的透明相对电极; 以及覆盖所述有机层和所述透明相对电极的密封盖层,其中,在所述密封盖层的内表面上设置颜色转换层,用于将所述第一颜色光的百分比转换为第二颜色的光和第三颜色光 彩灯。 因此,通过混合三原色实现白光源。
    • 6. 发明授权
    • White light emitting organic electro-luminescent device and method for fabricating the same
    • 白色发光有机电致发光器件及其制造方法
    • US06717176B1
    • 2004-04-06
    • US10291489
    • 2002-11-12
    • Feng-Ju Chuang
    • Feng-Ju Chuang
    • H01L3524
    • H01L51/5036H01L27/322H01L51/524H01L51/5262
    • A white light emitting organic electro-luminescent (EL) device and a method for fabricating the same are provided. The device comprises: a substrate; a bottom electrode formed on a top surface of the substrate; at least an organic layer comprising an organic emitting layer formed on a surface of the bottom electrode to emit a first-color light; at least a transparent opposed electrode formed on a surface of the organic layer; and a sealing cap layer covering the organic layer and the transparent opposed electrode, wherein a color conversion layer is disposed on an inner surface of the sealing cap layer for converting a percentage of the first-color light into a second-color light and a third-color light. Therefore, a white light source is achieved by mixing the three primary colors.
    • 提供了一种白色发光有机电致发光(EL)器件及其制造方法。 该装置包括:基板; 底部电极,形成在所述基板的顶表面上; 至少一个有机层,包括形成在所述底部电极的表面上以发射第一色光的有机发光层; 至少形成在所述有机层的表面上的透明相对电极; 以及覆盖所述有机层和所述透明相对电极的密封盖层,其中,在所述密封盖层的内表面上设置颜色转换层,用于将所述第一颜色光的百分比转换为第二颜色的光和第三颜色光 彩灯。 因此,通过混合三原色实现白光源。
    • 7. 发明授权
    • Structure of the sensing element of a platinum resistance thermometer
and method for manufacturing the same
    • 铂电阻温度计的感测元件的结构及其制造方法
    • US6004471A
    • 1999-12-21
    • US19434
    • 1998-02-05
    • Feng-Ju Chuang
    • Feng-Ju Chuang
    • H01C7/02H01C7/22H01C17/075H01B1/14
    • H01C17/075H01C7/021H01C7/22Y10T29/49099
    • The structure of the sensing element of a platinum resistance thermometer and method for manufacturing the same, in which the silicon wafer is used as a substrate. A silicon substrate is etched to form a desired wiring pattern, then a silicon dioxide layer is grown as a layer of thermal oxide on the silicon substrate by heating the etched substrate in an oxygen-containing atmosphere. After a platinum film is deposited onto the surface of the silicon dioxide layer, the platinum-coated substrate is subject to gentle polishing. The platinum membrane outside the etched groove is easily detached while the platinum layer inside the etched groove remains attached. Thus a platinum circuit with a desired circuit pattern is formed on the substrate. After heat treatment in a temperature range of 750.degree. C..about. 1500.degree. C. and further processing, the sensing element of a platinum resistance thermometer is obtained. The platinum circuit thus formed is submerged in an groove and has a substantially bulk structure.
    • 铂电阻温度计的感测元件的结构及其制造方法,其中硅晶片用作衬底。 蚀刻硅衬底以形成所需的布线图案,然后通过在含氧气氛中加热蚀刻的衬底,在硅衬底上生长二氧化硅层作为热氧化层。 在将铂膜沉积到二氧化硅层的表面上之后,对铂镀层的基板进行轻微的抛光。 蚀刻槽外部的铂膜容易分离,而蚀刻槽内的铂层保持附着。 因此,在衬底上形成具有所需电路图案的铂电路。 在750℃的温度范围内进行热处理,差分1500℃,进一步处理,得到铂电阻温度计的感测元件。 如此形成的铂电路浸没在凹槽中并具有大体积的结构。