Abstract:
A liquid crystal display device includes a liquid crystal panel, a polaroid for polarizing light positioned on a light incident side of the liquid crystal panel, and a polarization analyzer positioned on a light emission side of the liquid crystal panel. The polarization analyzer includes a transparent plate. The transparent plate being arranged at a set angle with a light emission surface of the liquid crystal panel, such that the transparent plate analyzes polarization of light emitted from the light emission surface of the liquid crystal panel. Because the polaroid is used only on the light incident side of the liquid crystal panel, while the transparent plate is used instead of a polaroid on the light emission side of the liquid crystal panel,a reduction in the material cost of the liquid crystal display device can be achieved.
Abstract:
The present disclosure discloses a backlight module and a manufacturing method thereof. The backlight module includes: a light guide plate, a reflection structure arranged on one side of the light guide plate and a diffusion structure arranged on the other side of the light guide plate; the reflection structure being switchable between a reflection state that reflects light and a transmission state that transmits light; the diffusion structure being switchable between a scattering state that scatters light and a transmission state that transmits light. The present disclosure also relates to a display device comprising the backlight module.
Abstract:
An OLED display substrate and a display device are provided. The OLED display substrate includes a plurality of sub-pixel regions corresponding to different colors arranged on a substrate. Each sub-pixel region includes a thin film transistor, an anode, a light-emitting layer and a cathode arranged successively in a direction away from the substrate, and a microcavity structure is formed between the anode and the cathode. The anode includes a hollowed-out portion, the light-emitting layers of the sub-pixel regions corresponding to different colors are of different thicknesses, or the anodes of the sub-pixel regions corresponding to different colors are of different thicknesses.
Abstract:
A lamp holder for a desk lamp and the desk lamp are disclosed. The lamp holder comprises: a light scattering plate, comprising a first face and a second face arranged oppositely to each other and side faces around ends of the first and second faces. The light scattering plate comprises at least one light-entering side face where light is capable of entering. Light can enter the light scattering plate from the light-entering side face of the light scattering plate, and after being scattered by the light scattering plate, a portion of the light exits from the first face of the light scattering plate and another portion of the light exits from the second face of the light scattering plate. The lamp holder provides not only sufficient lighting in the operational area located below the lamp holder, but also some lighting above the lamp holder.
Abstract:
Embodiments of the present invention disclose a triboelectrification device and a display device. The triboelectrification device includes at least one layered electricity generating assembly that is stacked, the at least one layered electricity generating assembly each comprising an electrode layer, an insulating layer, a metal layer and an elastomer; the electrode layer, the insulating layer, and the metal layer are arranged in sequence from above downwards, the elastomer is disposed between the electrode layer and the metal layer and is located at at least one side of the insulating layer. The electrode layer and the insulating layer are brought into contact with each other to be rubbed against each other by applying a pressure to the electrode layer, and the electrode layer and the insulating layer can be separated from each other by springing back of the elastomer, such that the electrode layer and the insulating layer are repeatedly brought into contact with each other to be rubbed against each other time after time, thereby continually generating positive and negative charges on the metal layer and the electrode layer respectively and thus achieving usage of electric energy into which energy generated by friction is converted.
Abstract:
The disclosure discloses a multi-source homework lamp comprising: a first lampshade and a second lampshade connected to a shaft, wherein the first lampshade and the second lampshade are rotatable around the shaft; main lights disposed inside each of the lampshades; and a control unit for controlling the luminance of the main lights and controlling the rotation of the first lampshade and the second lampshade, thereby controlling the angle between the two. In the multi-source homework lamp according to the disclosure, by a design of the two-piece main lights with the angle being variable, the illuminance is caused to be more uniform, and the illumination range and the illumination luminance of the homework lamp may be adjusted more conveniently.
Abstract:
A smart watch, an operation control method and an apparatus therefor are disclosed. The smart watch includes a watch body and a watchband, wherein the watch body includes a display screen and a system board, and the system board includes at least a microprocessor, a memory and a communication module. The watchband is configured to fix the watch body on a user's wrist. A biosensor is integrated on the surface of the wristband on a side adjacent to the user's wrist. As the watchband can contact directly with wrist side nerves, more accurate test results can be obtained, and operational complexity is simplified. By canceling the bezel design and performing a corresponding operation according to a touch operation detected in a functional region, a size of the smart watch is reduced and comfort and flexibility while wearing the smart watch is improved.
Abstract:
An array substrate and a fabricating method thereof and a display apparatus are provided. The array substrate comprises a base substrate, a pixel electrode layer formed on the base substrate, and a first wire grid polarizing film disposed on a surface of the pixel electrode layer, wherein the first wire grid polarizing film includes a plurality of first metal lines (L1) which are mutually parallel and are periodically arranged; the surface of the pixel electrode layer is a surface of the pixel electrode layer facing the base substrate or a surface of the pixel electrode layer opposite to the base substrate. The array substrate and the fabricating method thereof and the display apparatus can facilitate an ultrathin design.
Abstract:
A liquid crystal display device includes a liquid crystal panel, a polaroid for polarizing light positioned on a light incident side of the liquid crystal panel, and a polarization analyzer positioned on a light emission side of the liquid crystal panel. The polarization analyzer includes a transparent plate. The transparent plate being arranged at a set angle with a light emission surface of the liquid crystal panel, such that the transparent plate analyzes polarization of light emitted from the light emission surface of the liquid crystal panel. Because the polaroid is used only on the light incident side of the liquid crystal panel, while the transparent plate is used instead of a polaroid on the light emission side of the liquid crystal panel, a reduction in the material cost of the liquid crystal display device can be achieved.
Abstract:
An array substrate and a fabricating method thereof and a display apparatus are provided. The array substrate comprises a base substrate, a pixel electrode layer formed on the base substrate, and a first wire grid polarizing film disposed on a surface of the pixel electrode layer, wherein the first wire grid polarizing film includes a plurality of first metal lines (L1) which are mutually parallel and are periodically arranged; the surface of the pixel electrode layer is a surface of the pixel electrode layer facing the base substrate or a surface of the pixel electrode layer opposite to the base substrate. The array substrate and the fabricating method thereof and the display apparatus can facilitate an ultrathin design.