Abstract:
A display assembly, a displaying method thereof and a vehicle having the same are provided. The display assembly includes a vehicle display screen (1) and an image processing apparatus (2). The image processing apparatus (2) is configured to synthesize landscape images of a same route captured at different environmental visibilities, so as to enable the vehicle display screen (1) to display an actual landscape with a higher environmental visibility than a current environment visibility when the vehicle runs on the same route. With the image processing apparatus (2), the vehicle display screen (1) of the display assembly can display the actual landscape with a high environmental visibility at the current low environmental visibility, such that a driver can more clearly understand the actual road conditions and traffic situations along the same route at the current low environmental visibility, thereby ensuring the vehicle to run safely at a low environmental visibility and improving the driving experience.
Abstract:
The present application provides an intelligent rearview mirror. The intelligent rearview mirror comprises a mirror body; a main electronic device disposed on the mirror body, and comprising a main processor and a mobile communication module; and an in-vehicle terminal device, separated from the mirror body and the main electronic device, and configured to transmit a control signal to the main electronic device. The main processor is configured to control, according to the control signal, the mobile communication module to enter an intercom transmission mode or an intercom reception mode for intercom communication with a cloud serve.
Abstract:
The embodiments of the present disclosure relate to a bridging piece, a shielding cover and a display device. The bridging piece includes a connector and an insulative insert. The connector includes a first surface and a second surface which are opposite to each other. A conductive area is configured to electrically connect the first surface with the second surface, and the insulative insert is on the second surface of the connector.
Abstract:
The embodiments of the present invention disclose a back-plate structure of backlight, a backlight and a display device. The backlight is applied to a display device. The back-plate structure comprises a substrate and a plurality of optical fibers disposed on the substrate. Each optical fiber is provided with a light outlet corresponding to a sub-pixel of the display device so that light inputted into the optical fiber is emitted to the sub-pixel to which the light outlet corresponds via the light outlet.
Abstract:
A positioning method includes determining a positioning coordinate (x101,y101,z101) of a positioning device in a scene coordinate system o-xyz based on one or a combination of (1) an estimated coordinate (x1,y1,z1) of the positioning device in the scene coordinate system o-xyz; and (2) positions of image objects of one or more reference illumination sources of a plurality of illumination sources in a scene image, fixed coordinate positions (x0, y0, z0) of the one or more reference illumination sources of the plurality of illumination sources in the scene coordinate system o-xyz, and an included angle α between an x-axis of the scene coordinate system o-xyz and an x′-axis of a positioning device coordinate system o′-x′y′z′.
Abstract:
The present disclosure provides a vehicle rear view device comprising: a shell; a rear view mirror forming an accommodation space between the shell and the rear view mirror; and a wireless communication device comprising a communication circuit board and a communication antenna. The communication circuit board is located in the accommodation space, the communication antenna is disposed in m antenna placement area of the shell, the communication antenna is disposed separately from the communication circuit board, md the communication antenna and the communication circuit board are electrically connected.
Abstract:
The present application discloses an exercise equipment having a main body, a transmission, a driving wheel rotatably mounted on the main body, a driven wheel rotatably mounted on the main body and operatively coupled to the driving wheel through the transmission, an actuator configured to actuate a driving force applied to the driven wheel, and a controller. The controller is configured to control the actuator to actuate the driving force applied to the driven wheel based on a control parameter.
Abstract:
A display apparatus includes: a display panel comprising a plurality of first sub-pixels for a first field of view and a plurality of second sub-pixels for a second field of view; and a first polarization filter having blank regions corresponding to the first sub-pixels or the second sub-pixels. The blank regions have no light polarization property.
Abstract:
Disclosed are a display system and a control method for the same. The display system includes a display means (1), an image input means (2), a depth of field analysis means (3) and a bending degree control means (4). The image input means (2) inputs the images to the depth of field analysis means; the depth of field analysis means (3) analyzes the depth of field of the images; the bending degree control means (4) controls the bending degree of the display means according to the depth of field of the images; the display means (1) displays the images. The display system and the control method thereof can adapt to the images with different depth of field, thus observer's visual experience is improved.
Abstract:
The present disclosure provides an anti-removal monitoring circuitry, applied to an electronic tag. The circuitry includes a first input terminal, a second input terminal and an output terminal. The circuitry further includes: a shutdown circuit, configured to control the electronic tag to be in a shutdown state in response to connection between the first input terminal and the second input terminal; and a starting-up circuit, configured to control the output terminal to output a pulse voltage signal in response to disconnection between the first input terminal and the second input terminal, in such a manner that the electronic tag generates an alarm signal in response to the pulse voltage signal.