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    • 22. 发明授权
    • Transparent conductor thin film formation
    • 透明导体薄膜形成
    • US08956718B2
    • 2015-02-17
    • US12488432
    • 2009-06-19
    • Shih Chang ChangLili HuangSueng Jae HongJohn Z. Zhong
    • Shih Chang ChangLili HuangSueng Jae HongJohn Z. Zhong
    • B32B7/02G06F3/041H01B1/08
    • G06F3/0412G06F2203/04103H01B1/08Y10T428/24612Y10T428/24868Y10T428/24917Y10T428/24942
    • Substantially transparent conductor layers in touch sensing systems may be formed by forming a barrier layer between an organic layer and a substantially transparent conductive layer. For example, a barrier layer can be formed over the organic layer, and the transparent conductor layer can be formed over the barrier layer. The barrier layer can reduce or prevent outgassing of the organic layer, to help increase the quality of the transparent conductor layer. In another example, a combination layer of two different types of a transparent conductor may be formed over the organic layer by forming a barrier layer of the transparent conductor, and forming a second layer of the transparent conductor on the barrier layer. Outgassing that can occur when forming the barrier layer can cause the transparent conductor of the barrier layer to be of lower-quality, but can result in a higher-quality transparent conductor of the second layer.
    • 可以通过在有机层和基本上透明的导电层之间形成阻挡层来形成触摸感测系统中的基本透明的导体层。 例如,可以在有机层上形成阻挡层,并且可以在阻挡层上形成透明导体层。 阻挡层可以减少或防止有机层的除气,有助于提高透明导体层的质量。 在另一示例中,可以通过形成透明导体的阻挡层,并在阻挡层上形成透明导体的第二层,在有机层上形成两种不同类型的透明导体的组合层。 在形成阻挡层时可能发生的除气可能导致阻挡层的透明导体质量较差,但是可以产生更高质量的第二层透明导体。
    • 24. 发明申请
    • CURVED TOUCH SENSOR
    • 弯曲触摸传感器
    • US20120111491A1
    • 2012-05-10
    • US12940544
    • 2010-11-05
    • Lili HUANGSeung Jae HongJohn Z. Zhong
    • Lili HUANGSeung Jae HongJohn Z. Zhong
    • H05K3/00
    • G06F3/044G06F2203/04103H05K1/028H05K3/0014H05K2201/057
    • A method of forming a curved touch surface is disclosed. The method can include depositing and patterning a conductive thin film on a flexible substrate to form at least one touch sensor pattern, while the flexible substrate is in a flat state. According to certain embodiments, the method can include supporting the flexible substrate in the flat state on at least one curved forming substrate having a predetermined curvature; and performing an anneal process, or an anneal-like high-heat process, on the conductive thin film, wherein the anneal process can cause the flexible substrate to conform to the predetermined curvature of the at least one curved forming substrate. According to an embodiment, the curved forming substrate can include a first forming substrate having a first predetermined curvature and a second forming substrate having a second predetermined curvature complementing the first predetermined curvature.
    • 公开了一种形成弯曲的触摸表面的方法。 该方法可以包括在柔性基板上沉积和图案化导电薄膜以形成至少一个触摸传感器图案,同时柔性基板处于平坦状态。 根据某些实施例,该方法可以包括在至少一个具有预定曲率的弯曲成形衬底上支撑处于平坦状态的柔性衬底; 以及对所述导电薄膜进行退火处理或类似于退火的高热处理,其中所述退火工艺可使所述柔性衬底符合所述至少一个弯曲成形衬底的预定曲率。 根据实施例,弯曲成形基板可以包括具有第一预定曲率的第一成形基板和具有补充第一预定曲率的第二预定曲率的第二成形基板。
    • 29. 发明授权
    • Electronic devices with flexible glass polarizers
    • 带柔性玻璃偏光片的电子设备
    • US08525405B2
    • 2013-09-03
    • US13415780
    • 2012-03-08
    • Masato KuwabaraCheng ChenBenjamin M. RappoportRoland LueJohn Z. Zhong
    • Masato KuwabaraCheng ChenBenjamin M. RappoportRoland LueJohn Z. Zhong
    • H01J1/62
    • G02F1/1333B32B17/08G02B5/305G02B5/3083G02F1/133305G02F1/133528G02F2201/086
    • Electronic devices may be provided with displays having polarizer structures. Polarizer structures may incorporate flexible layers of glass. The flexible glass layers may be laminated to other sheets of material in the polarizer structures using roll-to-roll lamination equipment. After the polarizer structures are cut into panels, the panels may be laminated to liquid crystal display structures, organic light-emitting-diode display structures or other display structures using sheet-to-sheet lamination tools. Ultraviolet-light-blocking material may be incorporated into a display to prevent damage to the polarizer layers in the polarizer structures. Coatings such as antireflection coatings, antistatic coating, and anti-smudge coatings may be provided on the polarizer structures. Displays may use the flexible glass layers and additional protective layers to prevent a polarizer layer from being exposed to excessive moisture. A birefringent layer may be incorporated into a display and may serve as a protective layer for a polarizer.
    • 电子设备可以设置有具有偏振器结构的显示器。 偏振器结构可以结合柔性玻璃层。 柔性玻璃层可以使用卷对卷层压设备层压到偏振器结构中的其它材料片材上。 在将偏振器结构切割成面板之后,可以使用片对层压工具将面板层压到液晶显示结构,有机发光二极管显示结构或其他显示结构。 紫外线阻挡材料可以结合到显示器中以防止在偏振器结构中对偏振器层的损坏。 可以在偏振器结构上提供诸如抗反射涂层,抗静电涂层和防污涂层的涂层。 显示器可以使用柔性玻璃层和附加的保护层来防止偏振器层暴露于过度的水分。 双折射层可以结合到显示器中,并且可以用作偏振器的保护层。