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    • 1. 发明申请
    • Method for fabricating organic light emitting display
    • 制造有机发光显示器的方法
    • US20080176476A1
    • 2008-07-24
    • US11788968
    • 2007-04-23
    • Jung-Lung HuangChien-Ting LaiJia-Pang Pang
    • Jung-Lung HuangChien-Ting LaiJia-Pang Pang
    • H01J9/02
    • H01L51/5259
    • An exemplary method for fabricating an organic light emitting display (OLED) (200) includes: providing a first substrate (210); providing moisture absorber (240) on the first substrate; processing the moisture absorber by using hydrogen plasma; providing a second substrate (220) having an organic light emitting unit (250) formed thereat; and attaching the first and second substrates together with a sealant, such that the moisture absorber and the organic light emitting unit are hermetically sealed between the first and second substrates, with the moisture absorber facing the organic light emitting unit. Because the moisture absorber is finished during the method for fabricating the OLED, and is sealed in the space between the first substrate and the second substrate soon after being finished, the moisture absorber is difficult to react with air. Thus, the OLED has improved quality.
    • 一种制造有机发光显示器(OLED)(200)的示例性方法包括:提供第一衬底(210); 在第一基板上提供吸湿剂(240); 通过使用氢等离子体处理吸湿剂; 提供具有在其上形成的有机发光单元(250)的第二基板(220) 以及用密封剂将第一和第二基板连接在一起,使得吸湿剂和有机发光单元气密地密封在第一和第二基板之间,吸湿剂面向有机发光单元。 由于在制造OLED的方法中吸湿剂被完成,并且在完成之后不久将其密封在第一基板和第二基板之间的空间中,所以吸湿剂难以与空气反应。 因此,OLED具有改进的质量。
    • 6. 发明申请
    • Single-acid compensating system
    • 单酸补偿系统
    • US20050274696A1
    • 2005-12-15
    • US11151872
    • 2005-06-13
    • Chang HuangJung-Lung HuangChen-Hsien OuSheng-Chou Gau
    • Chang HuangJung-Lung HuangChen-Hsien OuSheng-Chou Gau
    • B44C1/22
    • H01L21/67086H01L21/67253
    • A single-acid compensating system (20) includes an etching unit (201), and a monitoring and compensating unit (202). The etching unit includes an acid-mixing tank (212). The monitoring and compensating unit includes a measuring element (213), a compensating calculator (214), and a single-acid compensating tank (215). The acid-mixing tank, the measuring element, the calculator, and the compensating tank are connected to cooperatively form a compensating loop. When the measuring element measures that the concentration of the single-acid is lower than a lower limit, it transmits this information to the calculator. After processing the information and performing a calculation, the calculator determines a certain quantity of the single-acid which should be compensated in the acid-mixing tank. All these actions are automated, and they ensure that the concentration of the single-acid is constantly maintained very close to the optimal value. Therefore, the single-acid compensating system conveniently allows the etching process to continue steadily.
    • 单酸补偿系统(20)包括蚀刻单元(201)和监视和补偿单元(202)。 蚀刻单元包括酸混合罐(212)。 监测和补偿单元包括测量元件(213),补偿计算器(214)和单酸补偿罐(215)。 酸搅拌槽,测量元件,计算器和补偿槽相连,形成补偿回路。 当测量元件测量单酸浓度低于下限时,它将该信息传输到计算器。 在处理信息并执行计算之后,计算器确定在酸性混合罐中应补偿的一定量的单酸。 所有这些操作都是自动化的,它们确保单酸浓度始终保持非常接近最佳值。 因此,单酸补偿系统方便地允许蚀刻过程稳定地继续。
    • 7. 发明授权
    • Reflective type electro-wetting display device
    • 反光型电润湿显示装置
    • US08106861B2
    • 2012-01-31
    • US12229638
    • 2008-08-25
    • Rei-Yun LeeJung-Lung Huang
    • Rei-Yun LeeJung-Lung Huang
    • G09G3/34
    • G02B26/005G09G3/3433G09G2300/04H01J9/241
    • An electro-wetting display device includes a first substrate; a second substrate opposite to the first substrate; a plurality of side walls interposed between the first and second substrates, the side walls being arranged in a matrix and cooperating with the first and second substrates to form a plurality of spaces; a first polar liquid disposed in each of the spaces; a second, colored, non-polar liquid disposed in each of the spaces. The second liquid is immiscible with the first liquid. The second substrate includes a reflective electrode and a hydrophobic insulating layer disposed on the reflective electrode. The reflective electrode includes a first metal layer and a transparent protective layer, and the transparent protective layer is interposed between the metal layer and the hydrophobic insulating layer.
    • 电润湿显示装置包括第一基板; 与第一基板相对的第二基板; 插入在所述第一和第二基板之间的多个侧壁,所述侧壁布置成矩阵并与所述第一和第二基板配合以形成多个空间; 设置在每个空间中的第一极性液体; 第二,着色的非极性液体,设置在每个空间中。 第二液体与第一液体不混溶。 第二基板包括设置在反射电极上的反射电极和疏水绝缘层。 反射电极包括第一金属层和透明保护层,并且透明保护层介于金属层和疏水性绝缘层之间。
    • 10. 发明授权
    • Electro-wetting display device
    • 电润湿显示装置
    • US08325316B2
    • 2012-12-04
    • US12231523
    • 2008-09-02
    • Rei-Yun LeeJung-Lung Huang
    • Rei-Yun LeeJung-Lung Huang
    • G02F1/13
    • G02B26/005
    • An exemplary electro-wetting display (EWD) device (30) includes a first substrate (31), a second substrate (38), a driving circuit layer (32) provided on the second substrate, a plurality of partition walls (34), a first fluid (35) and a second fluid (36). The first and second fluids immiscible with each other are disposed between the driving circuit layer and the first substrate. The partition walls are provided on the driving circuit layer, thereby defining a plurality of pixel regions (R). Each pixel region has two short sides and two long sides. The second fluid is electro-conductive or polar and the first fluid is provided between the driving circuit layer and the second fluid. The driving circuit layer corresponding to each pixel region includes a pixel electrode (325) and a switch element (324) connected thereto. The pixel electrode is continuously disposed between the switch element and the two short sides.
    • 示例性电润湿显示器(EWD)装置(30)包括第一基板(31),第二基板(38),设置在第二基板上的驱动电路层(32),多个分隔壁(34) 第一流体(35)和第二流体(36)。 彼此不混溶的第一和第二流体设置在驱动电路层和第一基板之间。 分隔壁设置在驱动电路层上,从而限定多个像素区域(R)。 每个像素区域具有两个短边和两个长边。 第二流体是导电的或极性的,并且第一流体设置在驱动电路层和第二流体之间。 对应于每个像素区域的驱动电路层包括与其连接的像素电极(325)和开关元件(324)。 像素电极连续地设置在开关元件和两个短边之间。