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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
    • Flexible display device
    • 灵活的显示设备
    • US09101076B2
    • 2015-08-04
    • US13316557
    • 2011-12-12
    • Po-Wen HsiaoYuan-Chih TsaiTed-Hong Shinn
    • Po-Wen HsiaoYuan-Chih TsaiTed-Hong Shinn
    • H05K1/02H05K1/18G02F1/1333G09F9/30H05K3/28
    • H05K1/189G02F1/133305G02F2001/133388G02F2201/54G09F9/301H05K1/0281H05K3/284H05K2201/09018H05K2201/10128H05K2201/10136
    • A flexible display device includes a display panel and a plurality of curving-restricting structures. The display panel has a display surface and a bottom surface opposite thereto. The display surface has a visible region and an outer region surrounding the visible region. The curving-restricting structures is disposed on at least one of the outer region of the display surface and the bottom surface of the display panel. Each curving-restricting structure has a top surface and at least a slanted side wall. The top surfaces of adjacent curving-restricting structures are spaced with each other, and the slanted side walls of adjacent curving-restricting structures face each other. When the flexible display device are curved to a predetermined extent, adjacent curving-restricting structures may resist against with each other to prevent the display panel from being unduly curved to be damaged, and thus a use reliability of the flexible display device is improved.
    • 柔性显示装置包括显示面板和多个弯曲限制结构。 显示面板具有显示面和与其相反的底面。 显示表面具有可见区域和围绕可见区域的外部区域。 弯曲限制结构设置在显示面的外部区域和显示面板的底面的至少一个上。 每个弯曲限制结构具有顶表面和至少一个倾斜的侧壁。 相邻的弯曲限制结构的顶面彼此间隔开,相邻弯曲限制结构的倾斜侧壁彼此面对。 当柔性显示装置弯曲到预定的程度时,相邻的弯曲限制结构可以彼此抵抗以防止显示面板被过度弯曲以致损坏,从而提高了柔性显示装置的使用可靠性。
    • 8. 发明申请
    • DISPLAY PANEL
    • 显示面板
    • US20110242014A1
    • 2011-10-06
    • US12853926
    • 2010-08-10
    • Yao-Chou TsaiSung-Hui HuangPo-Wen HsiaoTed-Hong Shinn
    • Yao-Chou TsaiSung-Hui HuangPo-Wen HsiaoTed-Hong Shinn
    • G06F3/041
    • G06F3/0414
    • A display panel is provided. The display panel comprises a first substrate, a second substrate, a display control circuit and a force sensing circuit. The display control circuit is disposed on the first substrate between the first substrate and the second substrate for controlling the display panel to display an image through the second substrate. The force sensing circuit is disposed side by side with the display control circuit on the first substrate between the first substrate and second substrate, wherein the force sensing circuit comprises a plurality of force sensing elements for sensing at least one external force and correspondingly generate a plurality of force signals respectively to transform at least one touch signal corresponding to the at least one external force.
    • 提供显示面板。 显示面板包括第一基板,第二基板,显示控制电路和力感测电路。 显示控制电路设置在第一基板和第二基板之间,用于控制显示面板通过第二基板显示图像。 所述力感测电路与所述第一基板上的所述显示控制电路并排设置在所述第一基板和所述第二基板之间,其中所述力感测电路包括用于感测至少一个外力的多个力传感元件,并相应地产生多个 的力信号分别转换与至少一个外力对应的至少一个触摸信号。
    • 9. 发明授权
    • Method of fabricating electro-phoretic display
    • 电泳显示方法
    • US07869118B2
    • 2011-01-11
    • US12406962
    • 2009-03-19
    • Yi-Ching WangPo-Wen HsiaoTed-Hong Shinn
    • Yi-Ching WangPo-Wen HsiaoTed-Hong Shinn
    • G02B26/00G09G3/34
    • G02F1/167G02F2203/34
    • A method of fabricating electro-phoretic display is performed by the steps of: providing a first electrode substrate and a second electrode substrate disposed above the first electrode substrate in an electro-phoretic liquid, wherein the first electrode substrate comprises a substrate and a plurality of pixel electrodes disposed on the substrate; putting at least a charged micro-capsule between the first electrode substrate and the second electrode substrate in the electro-phoretic liquid; making the electricity of a portion of the pixel electrodes is opposite to the electricity of the charged micro-capsules for attracting the charged micro-capsules to above the portion of the pixel electrodes. Since the charged microcapsules are disposed on the pixel electrodes immediately and the micro-capsules corresponded to the same pixel electrode have a plurality of colorful charged particles with the same color, the electric-phoretic display fabricated by this method may not only have high reflectivity and transmittance, but also display a picture with single original color.
    • 通过以下步骤进行制造电泳显示的方法:提供在电解液中设置在第一电极基板上方的第一电极基板和第二电极基板,其中第一电极基板包括基板和多个 设置在基板上的像素电极; 在电解液中的第一电极基板和第二电极基板之间至少装入带电微胶囊; 使像素电极的一部分的电力与带电的微胶囊的电力相反,用于将带电的微胶囊吸引到像素电极的部分上方。 由于带电微胶囊立即设置在像素电极上,并且与相同的像素电极相对应的微胶囊具有多个具有相同颜色的彩色带电粒子,所以通过该方法制造的电泳显示器可能不仅具有高反射率, 透光率,还可以显示单一原色的图片。
    • 10. 发明授权
    • Flexible display device
    • 灵活的显示设备
    • US08199272B2
    • 2012-06-12
    • US12422162
    • 2009-04-10
    • Yi-Ching WangPo-Wen HsiaoTed-Hong Shinn
    • Yi-Ching WangPo-Wen HsiaoTed-Hong Shinn
    • G02F1/136
    • G02F1/1339G02F1/133305
    • A flexible display device includes an array substrate, a display medium layer, a transparent substrate and a first sealant. The array substrate has a display region and a sealant spread region surrounding the display region. The display medium layer is disposed on the array substrate and located in the display region. The transparent substrate is disposed above the display medium layer. The first sealant is formed between the array substrate and the transparent substrate and located in the sealant spread region of the array substrate. The first sealant has a first sidewall and a second sidewall. One of the first sidewall and the second sidewall has a plurality of fillisters arranged at intervals. Since the first sealant of the flexible display device has the fillisters arranged at intervals, the stress imposed on the first sealant may be decreased. Therefore, the life of the first sealant may be prolonged and the sealing performance of the flexible display device can be improved.
    • 柔性显示装置包括阵列基板,显示介质层,透明基板和第一密封剂。 阵列基板具有显示区域和围绕显示区域的密封剂扩展区域。 显示介质层设置在阵列基板上并位于显示区域中。 透明基板设置在显示介质层的上方。 第一密封剂形成在阵列基板和透明基板之间并且位于阵列基板的密封剂扩散区域中。 第一密封剂具有第一侧壁和第二侧壁。 第一侧壁和第二侧壁中的一个具有间隔设置的多个填充物。 由于柔性显示装置的第一密封剂具有间隔设置的填充物,所以施加在第一密封剂上的应力可能会降低。 因此,可以延长第一密封剂的寿命,并且可以提高柔性显示装置的密封性能。