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    • 1. 发明申请
    • Integrated Luminous Keyboard
    • 集成发光键盘
    • US20100300854A1
    • 2010-12-02
    • US12276347
    • 2008-11-23
    • Shih-Chou CHENYuh-Sheng LinKung-Yeh TouChien-Hua Chiu
    • Shih-Chou CHENYuh-Sheng LinKung-Yeh TouChien-Hua Chiu
    • H01H9/00
    • H01H13/83H01H2219/014H01H2219/054H01H2219/06H01H2219/062
    • The present invention relates to an integrated luminous keyboard, and includes a plurality of keys, light sources, a flexible circuit board, a light guide plate and a reflector plate, wherein the flexible circuit board, which enables detecting key signals from the keys, is located underneath the keys. A plurality of slots, used to fixedly secure the keys, are defined in the light guide plate corresponding to the keyboard. Moreover, the light guide plate enables the incoming of light rays produced by the light sources, and the reflector plate is located underneath the light guide plate. Accordingly, use of the light guide plate of the present invention simultaneously provides the effectiveness to fixedly secure the keys and realize a luminescent effect, thereby eliminating disposition of a bottom plate structure of prior art luminous keyboards, and achieves the practical advancements of simplification and lightweighting of the structure, and saving on costs.
    • 本发明涉及集成发光键盘,其包括多个按键,光源,柔性电路板,导光板和反射板,其中能够检测琴键的键信号的柔性电路板是 位于钥匙下面。 在对应于键盘的导光板中限定用于固定键的多个槽。 此外,导光板能够进入由光源产生的光线,反射板位于导光板的下方。 因此,本发明的导光板的使用同时提供了固定键并实现发光效果的效果,从而消除了现有技术的发光键盘的底板结构的布置,并且实现了简化和轻量化的实际进步 的结构,节省成本。
    • 4. 发明授权
    • Light guide and stamper production method
    • 光导和压模生产方法
    • US06719930B2
    • 2004-04-13
    • US09912465
    • 2001-07-24
    • Shih-Chou ChenChung-Kuang HsiehChih-Han FangYuh-Sheng Lin
    • Shih-Chou ChenChung-Kuang HsiehChih-Han FangYuh-Sheng Lin
    • B29D1100
    • G02B6/0053G02B6/0055
    • A production method of a light guide and a stamper, combining anisotropic etching and isotropic etching. First a plurality of microstructures is formed on a back surface and a front surface of the substrate. By electroforming, rear and front stampers are made from the back and front surfaces of the substrate. Light guides are produced using the rear and front stampers. Anisotropic etching is performed on the front surface of the substrate, forming V-shaped, U-shaped or pyramid like microstructures. Isotropic etching is performed on the back surface of the substrate, forming quadratic, bowl like, oval or semicircular microstructures. If a transparent substrate is used, then after finishing the etching of microstructures, a light source, a reflector, a diffusion sheet and a prism sheet are added, simulating a back light module for performing a test of luminosity, uniformity of light intensity and light emission angle, so that optical properties are known before proceeding with inverse-forming of the stampers.
    • 光导和压模的制造方法,组合各向异性蚀刻和各向同性蚀刻。 首先,在基板的背面和前表面上形成多个微结构。 通过电铸,后和后压模由基板的后表面和前表面制成。 导光板采用后压模和正面压模生产。 在基板的正面进行各向异性蚀刻,形成V字状,U字状或棱锥状的微观结构。 在基板的背面进行各向同性蚀刻,形成二次,碗形,椭圆形或半圆形微结构。 如果使用透明基板,则在完成微结构的蚀刻之后,添加光源,反射板,扩散片和棱镜片,模拟用于进行亮度测试,光强度和光的均匀性的背光模块 发射角度,使得在进行压模成型之前光学特性是已知的。