Abstract:
A display device includes: a transparent light guide plate (1) and a light source (3) located at a side of the transparent light guide plate, the light source (3) is arranged to be inclined toward a side of the transparent light guide plate (1) away from its emitting surface (12). A side of the transparent light guide plate (1) facing the light source is an incident slant surface (11) having the same inclined angle as that of the light source (3). The display device can avoid direct radiation of the light generated from the light source upon the array structure zone of the display device, and can achieve a better display effect.
Abstract:
A flexible substrate, a manufacturing method thereof and a flexible display device are disclosed. The flexible substrate includes a display panel region and a flexible printed circuit board (FPC) region. The display panel region includes a flexible base (21), a gate electrode (22), a gate insulating layer (23), an active layer (24), a source electrode (25), a drain electrode (26), a passivation layer (27) and a pixel electrode (28). The pixel electrode (28) is electrically connected with the drain electrode (26) through an opening in the passivation layer (27). The FPC region includes a lead structure which is formed on the flexible base (21) and made from a material including at least one or a combination of more selected from a material for preparing the gate electrode (22), a material for preparing the source electrode (25) and the drain electrode (26), and a material for preparing the pixel electrode (28).
Abstract:
The present invention discloses a lighting device provided with an electronic lamp cover (30) surrounding a light emitting component (20). The electronic lamp cover (30) can present different light transmitting states according to different voltage values applied thereto within an operation voltage range so as to change the illumination angle and illumination brightness of the illumination light of the lighting device.
Abstract:
The present invention provides an array substrate and a display panel. The array substrate comprises a base substrate comprising a first surface and a second surface which is opposite to the first surface, and a pixel circuit arranged on the first surface of the base substrate, wherein the array substrate further comprises a driving circuit, which is arranged on the second surface of the base substrate and is in signal connection with the pixel circuit. The present invention further provides a display panel comprising the array substrate. In the present invention, the driving circuit provides an electrical drive signal required for display to the pixel circuit, and both the driving circuit and the pixel circuit are integrated on the base substrate of the array substrate, thereby improving the degree of integration of the array substrate and reducing the total volume of the display panel.
Abstract:
The present invention provides a touch-screen remote controller and a remote control method thereof, relates to the field of remote control technology, and can solve the problem of limited functions of the existing touch-screen remote controller. The touch-screen remote controller of the present invention comprises a microprocessor module, a touch-control module, a power supply module, a storage module and a program classification module, wherein, the power supply module provides power for the microprocessor module, the touch-control module achieves a touch-control function under the control of the microprocessor module, the storage module stores TV listings therein and is connected with the microprocessor module, and the program classification module is used for classifying TV programs contained in the TV listings stored in the storage module under the control of the microprocessor module.
Abstract:
Disclosed are a conductive alignment layer, a manufacture method of the conductive alignment layer, a display substrate comprising the conductive alignment layer and a display device which relate to the technology of LCD, simplify the manufacture method of conductive layer and alignment layer and also reduce the complexity in manufacturing a LCD device by preparing the conductive layer and the alignment layer in the substrate simultaneously through utilizing a material possessing both conductivity and alignment, without the need of preparing the conductive layer and the alignment layer separately.
Abstract:
The present disclosure relates to a display substrate, a display device and a method for manufacturing the display substrate. The display substrate comprises a substrate, and a plurality of gate lines, a plurality of data lines and a plurality of common electrode lines which are formed above the substrate. The plurality of gate lines and the plurality of data lines are crossed to form a plurality of pixel units. Each of the plurality of pixel units comprises a thin film transistor and a pixel electrode electrically connected to the thin film transistor. The display substrate further comprises connection electrodes located above the substrate. Each of the connection electrodes connects two adjacent common electrode lines.
Abstract:
The present disclosure provides a rear-view device, including a helmet and a rear-view image guiding system arranged on the helmet. The rear-view image guiding system includes a light conduction optical fiber bundle, and an objective lens group and an eyepiece lens group arranged at two ends of the light conduction optical fiber bundle respectively; the helmet includes a first cladding region and a second cladding region; the objective lens group is arranged in the second cladding region, and configured to convert received incident light into parallel light; the light conduction optical fiber bundle is configured to transmit the parallel light to the eyepiece lens group; and the eyepiece lens group is configured to converge the parallel light and transmit convergent light to an eye region of the helmet.
Abstract:
A micro-electro-mechanical system and a manufacturing method thereof. The micro-electro-mechanical system includes a comb tooth structure, a spring structure, and an electrode structure. The comb tooth structure includes first comb teeth and second comb teeth arranged alternately. A cantilever beam connecting the second comb teeth is connected to the spring structure; line widths of a first comb tooth and a second comb tooth are 3-7 microns, and are not less than a distance between the adjacent first comb tooth and the second comb tooth a ratio of the length of the first comb tooth to a length of the second comb tooth is 0.7-1.5, a width of the cantilever beam is not less than the line width of the second comb tooth, and thickness of the first comb tooth and a thickness of the second comb tooth are both 300 nanometers to 500 microns.
Abstract:
The present disclosure provides an unlocking control method, an unlocking control device, an electronic apparatus, and a computer-readable storage medium. The unlocking control method for the electronic apparatus includes: obtaining an unlocking touch input; in the case that a retention time of the unlocking touch input at any one of a plurality of target positions is greater than a predetermined time threshold, generating at least one vibration excitation in accordance with the retention time; and in the case that an unlocking control signal determined in accordance with the unlocking touch input matches a predetermined unlocking password, controlling the electronic apparatus to be unlocked. The unlocking control signal includes a touch sequence of the unlocking touch input with respect to the plurality of target positions and the quantity of vibration excitations generated at each target position.