会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 57. 发明申请
    • DISPLAY
    • 显示
    • US20100149628A1
    • 2010-06-17
    • US12419307
    • 2009-04-07
    • Shih-Kang FanCheng-Pu ChiuChing-Hsiang HsuChi-Neng MoMei-Tsao Chiang
    • Shih-Kang FanCheng-Pu ChiuChing-Hsiang HsuChi-Neng MoMei-Tsao Chiang
    • G02F1/19
    • G02F1/172
    • A display includes a first substrate, a first electrode, a second substrate, a second electrode and a display material layer. The first electrode is disposed on the first substrate and the second electrode is disposed on the second substrate. The display material layer is disposed between the first electrode and the second electrode. The display material layer of the invented display includes a solution and a plurality of first micro beads, wherein each of the first micro beads further has a plurality of different axis lengths in different axis directions, and the axis length in at least an axis direction is different from the axis lengths in the rest axis directions so that the first micro beads present different arrangement densities in different driving frequencies under the influence of polarized self-arrangement effect.
    • 显示器包括第一基板,第一电极,第二基板,第二电极和显示材料层。 第一电极设置在第一基板上,第二电极设置在第二基板上。 显示材料层设置在第一电极和第二电极之间。 本发明的显示器的显示材料层包括溶液和多个第一微珠,其中,所述第一微珠中的每一个在不同轴向上还具有多个不同的轴长,并且至少在轴向上的轴长为 不同于其余轴方向上的轴长度,使得第一微珠在极化自动排列效应的影响下在不同的驱动频率中呈现不同的排列密度。
    • 58. 发明授权
    • Display
    • 显示
    • US07724419B1
    • 2010-05-25
    • US12419307
    • 2009-04-07
    • Shih-Kang FanCheng-Pu ChiuChing-Hsiang HsuChi-Neng MoMei-Tsao Chiang
    • Shih-Kang FanCheng-Pu ChiuChing-Hsiang HsuChi-Neng MoMei-Tsao Chiang
    • G02B26/00G09G3/34
    • G02F1/172
    • A display includes a first substrate, a first electrode, a second substrate, a second electrode and a display material layer. The first electrode is disposed on the first substrate and the second electrode is disposed on the second substrate. The display material layer is disposed between the first electrode and the second electrode. The display material layer of the invented display includes a solution and a plurality of first micro beads, wherein each of the first micro beads further has a plurality of different axis lengths in different axis directions, and the axis length in at least an axis direction is different from the axis lengths in the rest axis directions so that the first micro beads present different arrangement densities in different driving frequencies under the influence of polarized self-arrangement effect.
    • 显示器包括第一基板,第一电极,第二基板,第二电极和显示材料层。 第一电极设置在第一基板上,第二电极设置在第二基板上。 显示材料层设置在第一电极和第二电极之间。 本发明的显示器的显示材料层包括溶液和多个第一微珠,其中,所述第一微珠中的每一个在不同轴向上还具有多个不同的轴长,并且至少在轴向上的轴长为 不同于其余轴方向上的轴长度,使得第一微珠在极化自动排列效应的影响下在不同的驱动频率中呈现不同的排列密度。
    • 60. 发明授权
    • Light source module and optical projection system
    • 光源模块和光学投影系统
    • US07334903B2
    • 2008-02-26
    • US11161434
    • 2005-08-03
    • Hun-Wei ChenShih-Min WuChi-Neng Mo
    • Hun-Wei ChenShih-Min WuChi-Neng Mo
    • G03B21/20F21V9/16
    • G03B21/204H04N9/315
    • A light source module is provided. The light source module includes a reflector, a light source, a transparent cover, a fluorescent material layer, and an optical lens. The light source is disposed inside the reflector, and the light source is suitable for emitting light including white light. The light source is enveloped with the transparent cover and the reflector. The fluorescent material layer is disposed on the transparent cover and the light emitted from the light source is suitable for exciting the fluorescent material layer to emit red light. The optical lens is disposed on an optical path of the light source, and the transparent cover is located between the optical lens and the light source. By utilizing the aforementioned structures, the intensity of the red light can be increased. Moreover, an optical projection system is also provided.
    • 提供光源模块。 光源模块包括反射器,光源,透明盖,荧光材料层和光学透镜。 光源设置在反射器内部,并且光源适合于发射包括白光的光。 光源被透明盖和反光罩包围。 荧光材料层设置在透明盖上,从光源发射的光适于激发荧光材料层发出红光。 光学透镜设置在光源的光路上,透明盖位于光学透镜和光源之间。 通过利用上述结构,可以提高红光的强度。 此外,还提供了光学投影系统。