Yang, Xiamen
Bing-Bing Yang, Xiamen CN
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20140003617 | WIRELESS AUDIO/VIDEO SYSTEM FOR AUDIO SIGNAL REPRODUCTION AND CONTROL METHOD FOR CONTROLLING THE SAME | 01-02-2014 |
Cong-Hao Yang, Xiamen CN
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20140320982 | Imaging Lens, and Electronic Apparatus Including the Same - An imaging lens includes first to fifth lens elements arranged from an object side to an image side in the given order. The first lens element has a positive refractive power and a convex object-side surface. The second lens element has a negative refractive power and an image-side surface with a concave peripheral portion. The third lens element has an object-side surface with a concave peripheral portion. The fourth lens element has an image-side surface with a concave portion in a vicinity of an optical axis. The fifth lens element has an image-side surface with a concave portion in the vicinity of the optical axis and a convex peripheral portion. | 10-30-2014 |
Hebo Yang, Xiamen CN
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20150371076 | TOUCH PANEL WITH FUNCTION OF FINGERPRINT IDENTIFICATION - A touch panel includes a substrate, a touch sensing structure and a fingerprint identification module. The touch sensing structure is disposed on the substrate. The fingerprint identification module is directly adhered to the substrate. The touch sensing structure and the fingerprint identification module are located at the same side of the substrate. | 12-24-2015 |
Jinjin Yang, Xiamen CN
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20150187336 | DRIVING CIRCUIT AND DRIVING METHOD FOR A DISPLAY DEVICE - A driving circuit includes first and second source driving circuits, and first and second control units. Each of the first and second control units includes multiple first control subunits. Each of the first control subunits includes a control end, an input end, and an output end. The control end receives a control signal to turn on or off the first control subunit. The input end receives a clock signal. The output end is connected with the associated source driving circuit. The first and second control units enable switching between the unilateral driving mode and the bilateral driving mode for the clock signal. | 07-02-2015 |
Kangpeng Yang, Xiamen CN
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20140211134 | LIQUID CRYSTAL DISPLAY PANEL AND METHOD FOR MANUFACTURING THE SAME - An LCD panel and a method for manufacturing the LCD panel are disclosed. The LCD panel comprises: an array substrate, a color filter substrate, and a liquid crystal layer filled between the array substrate and the color filter substrate. The color filter substrate comprises: a transparent conductive metal oxide film, and first and second conductive metal strips electrically connected with the transparent conductive metal oxide film. The first and second conductive metal strips are configured to conduct a current, which flows through the transparent conductive metal oxide film, causing the transparent conductive metal oxide film to heat the liquid crystal layer. | 07-31-2014 |
20150138462 | LIQUID CRYSTAL DISPLAY PANEL - A liquid crystal display panel includes a TFT array substrate, a color filter substrate, and a liquid crystal layer encapsulated between the TFT array substrate and the color filter substrate. The TFT array substrate, the color filter substrate and the liquid crystal layer collectively form a display area, and a margin area surrounding the display area, where the display area includes sub-pixel units surrounded by data lines and scanning lines. Either of the TFT array substrate and the color filter substrate includes heating metal members, and a pair of connection electrodes electrically connected to the plurality of heating metal members, where the heating metal members are formed on an inner side of the TFT array substrate and/or the color filter substrate and are located in the display area, and where the pair of connection electrodes are configured to provide a voltage to the heating metal members. | 05-21-2015 |
Lixun Yang, Xiamen CN
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20150108514 | FLIP-CHIP LIGHT EMITTING DIODE AND FABRICATION METHOD - A flip-chip LED includes a substrate, having a surface with a p-region metal portion and an n-region metal portion separated from each other; a p-type epitaxial layer, an active layer and an n-type epitaxial layer successively laminated on the substrate; a reflection layer between the substrate and the p-type epitaxial layer; a current blocking layer between the reflection layer and the p-type epitaxial layer and positioned to prevent the current from concentrating on the edge of the LED; an insulating protection layer cladding the LED side wall and exposing part of the side wall of the n-type epitaxial layer; a P electrode connecting the metal reflection layer and the p-region metal portion of the substrate; and an N electrode connecting the side wall of the n-type epitaxial layer and n-region metal portion of the substrate. | 04-23-2015 |
20150179889 | Light-Emitting Device with Reflecting Electrode - An electrode structure for effectively improving the stability of a semiconductor LED includes a reflecting layer capable of current spreading. In such an electrode structure, the current injects from the side surface of the reflecting layer to form a certain potential gradient over the contact surface between the electrode and the LED contact surface, thereby inhibiting the metal ion of the reflecting layer from migration due to electric field during usage, thereby improving device stability. In addition, the electrode portion for current injection can include a high-reflectivity material yet not vulnerable to ion migration, thereby increasing the entire reflecting area and improving luminous efficiency. | 06-25-2015 |
Yuqing Yang, Xiamen CN
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20150187799 | DISPLAY DEVICE AND METHOD FOR MANUFACTURING THE SAME - Disclosed are a display device and a method for manufacturing the same. The display device includes a Thin Film Transistor (TFT) substrate and a color filter substrate opposite to each other. The TFT substrate includes a first TFT element and a second TFT element and a light-transmittance region between the first and second TFT elements is a pixel region; and a pixel unit arranged on a surface of the TFT substrate facing the color filter substrate and located on a surface of the pixel region, where the pixel unit includes a transparent reference potential layer arranged on the surface of the TFT substrate facing the color filter substrate and a nontransparent deformation layer arranged over the reference potential layer, with the deformation layer being insulated from the reference potential layer. | 07-02-2015 |