Abstract:
Embodiments of this disclosure provide a transparent display panel and a manufacturing method thereof, and a display device. The transparent display panel comprises a plurality of light-emitting regions and a plurality of transparent regions. The transparent display panel further comprises at least one light-guiding component disposed on a light-emitting side of the transparent display panel, wherein the at least one light-guiding component is configured to transmit a part of light emitted from the light-emitting regions to the transparent regions. In the transparent display panel, a light-guiding component is used to transmit the light emitted by the light-emitting subpixels in the light-emitting regions to the transparent regions, and a plurality of light-redirecting members formed on a surface of the light-guiding component are used to change the direction of light transmitted to the transparent regions and to emit the light from the light-emitting side of the transparent regions. As a result, display uniformity of the whole transparent display panel is improved, and a better display performance can be achieved.
Abstract:
An OLED pixel unit is disclosed, which comprises an opaque region and a transparent region which are arranged side by side, the opaque region comprises an opaque display element, and the transparent region comprises at least one transparent display element. Independent operation of the opaque display element and the transparent display element is realized without affecting the transparent display in the transparent region of the OLED pixel unit, thus increasing the resolution of the OLED pixel unit. A transparent display device comprising the OLED pixel unit, a method for fabricating a transparent display device, and a display apparatus are further disclosed.
Abstract:
The present invention discloses organic light emitting device, manufacturing method thereof, organic light emitting display device and driving method thereof. The organic light emitting device comprises a substrate and a first electrode layer, an organic layer and a second electrode layer positioned on the substrate, the organic layer is arranged between the first and second electrode layers, the first electrode layer, the organic layer and the second electrode layer form a laminated region for emitting light in a first specific color in a positive half cycle of alternating current and an inverted region for emitting light in a second specific color in a negative half cycle of alternating current, and at least portions of projections of the laminated region and the inverted region on the substrate are not overlapped. Technical solutions of the present invention render the organic light emitting device with adjustable light color and prolonged service life.
Abstract:
An encapsulation method of an OLED and an OLED device are provided, and the method includes: providing a substrate for encapsulation (401) and a cover plate (403); forming a conductive frame (402) on the substrate for encapsulation (401); cell assembling the substrate for encapsulation (401) which is provided with the frame (402) and the cover plate (403) to obtain a preforming device; placing the preforming device into a plating tank, and energizing the frame (402), wherein a metal thin film (404) is formed on a surface of the frame (402) close to the outside edge of the substrate (401). A layer of metal film (404) is plated at the periphery of the frame (402). Because the blocking effect of the compact structure of the metal thin film (404) to water and oxygen is better than that of a sealing frame cement, thus an OLED device made by the encapsulation method has better sealing effect and better performance.
Abstract:
An encapsulation method of an OLED and an OLED device are provided, and the method includes: providing a substrate for encapsulation (401) and a cover plate (403); forming a conductive frame (402) on the substrate for encapsulation (401); cell assembling the substrate for encapsulation (401) which is provided with the frame (402) and the cover plate (403) to obtain a preforming device; placing the preforming device into a plating tank, and energizing the frame (402), wherein a metal thin film (404) is formed on a surface of the frame (402) close to the outside edge of the substrate (401). A layer of metal film (404) is plated at the periphery of the frame (402). Because the blocking effect of the compact structure of the metal thin film (404) to water and oxygen is better than that of a sealing frame cement, thus an OLED device made by the encapsulation method has better sealing effect and better performance.
Abstract:
Embodiments of this disclosure provide a transparent display panel and a manufacturing method thereof, and a display device. The transparent display panel comprises a plurality of light-emitting regions and a plurality of transparent regions. The transparent display panel further comprises at least one light-guiding component disposed on a light-emitting side of the transparent display panel, wherein the at least one light-guiding component is configured to transmit a part of light emitted from the light-emitting regions to the transparent regions. In the transparent display panel, a light-guiding component is used to transmit the light emitted by the light-emitting subpixels in the light-emitting regions to the transparent regions, and a plurality of light-redirecting members formed on a surface of the light-guiding component are used to change the direction of light transmitted to the transparent regions and to emit the light from the light-emitting side of the transparent regions. As a result, display uniformity of the whole transparent display panel is improved, and a better display performance can be achieved.
Abstract:
The present disclosure provides a safe driving method, a safe driving device and a safe driving system, for a vehicle. The safe driving device includes an information processor, and a brake controller connected to the information processor. The information processor is configured to acquire vehicle information and information about a driving license of a driver, and determine, in accordance with the vehicle information and the information about the driving license of the driver, whether or not the driver meets a requirement for driving the vehicle. The information processor is further configured to, in the case that the driver does not meet the requirement for driving the vehicle, control the brake controller to brake the vehicle.
Abstract:
A smart bracelet (100) is provided. The smart bracelet (100) has a length direction, and includes: a first pulse detector (12) and a blood flow sensor (11) sequentially arranged along the length direction, wherein, the blood flow sensor (11) is configured for identifying a blood flow direction and sending a blood flow direction signal; the first pulse detector (12) is configured for detecting a pulse signal. The smart bracelet (100) can intelligently detect whether it is worn on a left hand or a right hand and avoid manually input.