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    • 5. 发明申请
    • Fabricating Method of Flexible Display Device
    • 柔性显示装置的制造方法
    • US20100323576A1
    • 2010-12-23
    • US12556654
    • 2009-09-10
    • Po-Wen HsiaoYuan Chih TsaiLee-Tyng ChenTed-Hong Shinn
    • Po-Wen HsiaoYuan Chih TsaiLee-Tyng ChenTed-Hong Shinn
    • H01J9/24
    • G02F1/133305G02F2202/28
    • In a fabricating method of flexible display device, firstly, a sacrificial layer is formed on a first rigid substrate. Secondly, a first flexible substrate is formed on the sacrificial layer. The bonding force of the sacrificial layer absorbing a breaking-bond light may be broken and the first flexible substrate is transparent for the breaking-bond light. Moreover, the transmission rate of visible light of the first flexible substrate is larger than that of the sacrificial layer. Then, the sacrificial layer is illuminated by the breaking-bond light for breaking the bonding force of the sacrificial layer to separate the first rigid substrate from the first flexible substrate. Since the first rigid substrate has a high transmission rate of visible light, may be separated from the first flexible substrate by the first breaking-bond light with low energy, the cost of fabricating the flexible display device may display the images with real color. Therefore, the chromatic performance of the flexible display device may be enhanced.
    • 在柔性显示装置的制造方法中,首先,在第一刚性基板上形成牺牲层。 其次,在牺牲层上形成第一柔性基板。 吸收断裂键的牺牲层的结合力可能被破坏,并且第一柔性基底对于断裂键光是透明的。 此外,第一柔性基板的可见光的透射率大于牺牲层的透射率。 然后,牺牲层被用于破坏牺牲层的结合力的断裂光照亮,以将第一刚性基板与第一柔性基板分开。 由于第一刚性基板具有高透射率的可见光,所以可以通过具有低能量的第一断裂键与第一柔性基板分开,制造柔性显示装置的成本可以以真实颜色显示图像。 因此,可以提高柔性显示装置的色彩性能。
    • 6. 发明授权
    • Display device with improved display performance
    • 具有改善显示性能的显示设备
    • US08537455B2
    • 2013-09-17
    • US13293064
    • 2011-11-09
    • Tzu-Ming WangLee-Tyng ChenTed-Hong Shinn
    • Tzu-Ming WangLee-Tyng ChenTed-Hong Shinn
    • G02B26/00G09G3/34
    • G02F1/167G02F2001/1672G02F2202/42
    • A display device includes a first substrate, a second substrate, a plurality of display units and a plurality of partitioning walls. The second substrate is disposed above the first substrate. The display units are disposed between the first substrate and the second substrate, and each of the display units has a dielectric solvent. The partitioning walls are disposed between adjacent display units correspondingly, and a dielectric constant of each of the partitioning walls is less than that of the dielectric solvent adjacent thereto. Because the dielectric constant of the partition walls is less than that of the dielectric solvent adjacent to the partition wall, a capacitance value induced at the partition wall by a driving voltage can be decreased. Thus, crosstalk phenomena can be avoided in the display unit that is not driven.
    • 显示装置包括第一基板,第二基板,多个显示单元和多个分隔壁。 第二基板设置在第一基板的上方。 显示单元设置在第一基板和第二基板之间,并且每个显示单元都具有介电溶剂。 分隔壁相应地设置在相邻的显示单元之间,并且每个分隔壁的介电常数小于与其相邻的介电溶剂的介电常数。 由于分隔壁的介电常数小于与分隔壁相邻的介电溶剂的介电常数,所以可以减小在分隔壁处由驱动电压引起的电容值。 因此,在未被驱动的显示单元中可以避免串扰现象。
    • 8. 发明申请
    • COLOR DISPLAY APPARATUS
    • 彩色显示设备
    • US20120229741A1
    • 2012-09-13
    • US13304771
    • 2011-11-28
    • WEI-CHEN TSAIChih-Yu PengLee-Tyng ChenTung-Liang Lin
    • WEI-CHEN TSAIChih-Yu PengLee-Tyng ChenTung-Liang Lin
    • G02F1/1335G02B27/28
    • G02F1/167G02F1/133514G02F2202/28
    • A color display apparatus includes a driving substrate, a color filter, a display layer and an adhesive. The color filter is faced to the driving substrate. The color filter includes a substrate and a filter layer, and the filter layer is disposed on the substrate and faced to the driving substrate. The display layer is disposed between the driving substrate and the color filter, and an orthographic projection of the display layer projecting on the filter layer is surrounded by a periphery boundary of the filter layer. An interval is existed between the orthographic projection of the display layer projecting on the filter layer and the periphery boundary of the filter layer. Besides, the adhesive is disposed between the display layer and the color filter, and a periphery boundary of the display layer and the periphery boundary of the filter layer are surrounded by the adhesive.
    • 彩色显示装置包括驱动基板,滤色器,显示层和粘合剂。 滤色器面向驱动基板。 滤色器包括基板和滤光层,滤光层设置在基板上并面向驱动基板。 显示层设置在驱动基板和滤色器之间,突出在滤色层上的显示层的正投影由过滤层的外围边界包围。 在过滤层上突出的显示层的正交投影与过滤层的外围边界之间存在间隔。 此外,粘合剂被布置在显示层和滤色器之间,并且显示层的外围边界和过滤层的外围边界被粘合剂包围。
    • 9. 发明授权
    • Digital X-ray detecting panel and method for manufacturing the same
    • 数字X射线检测面板及其制造方法
    • US08242495B2
    • 2012-08-14
    • US12699033
    • 2010-02-02
    • Fang-An ShuLee-Tyng ChenHenry WangWei-Chou Lan
    • Fang-An ShuLee-Tyng ChenHenry WangWei-Chou Lan
    • H01L29/10H01L29/12H01L27/01H01L27/12
    • H01L31/105H01L27/14659H01L31/1085H01L31/115
    • A digital X-ray detecting panel includes a wavelength transforming layer and a photoelectric detecting plate. The wavelength transforming layer is configured for transforming X-ray into visible light. The photoelectric detecting plate is disposed under the wavelength transforming layer. The photoelectric detecting plate includes a substrate and a number of photoelectric detecting units disposed on the substrate and arranged in an array. Each of the photoelectric detecting units includes a thin film transistor and a photodiode electrically connected to the thin film transistor. The thin film transistor has an oxide semiconductor layer. The digital X-ray detecting panel can avoid a photocurrent in the thin film transistor, and thereby improving detecting accuracy of the digital X-ray detecting panel. A method for manufacturing the digital X-ray detecting panel is also provided.
    • 数字X射线检测面板包括波长转换层和光电检测板。 波长转换层被配置为将X射线转换成可见光。 光电检测板设置在波长转换层的下方。 光电检测板包括基板和设置在基板上并排列成阵列的多个光电检测单元。 每个光电检测单元包括薄膜晶体管和与薄膜晶体管电连接的光电二极管。 薄膜晶体管具有氧化物半导体层。 数字X射线检测面板可以避免薄膜晶体管中的光电流,从而提高数字X射线检测面板的检测精度。 还提供了一种用于制造数字X射线检测面板的方法。