Abstract:
A color filter substrate, a display panel and a display device are provided. The color filter substrate includes a plurality of edge pixels. Each edge pixel includes a plurality of subpixels. Each subpixel is divided by the border line into a display portion at the display region and a non-display portion beyond the display region. The non-display portion is covered with a light-shielding layer. The plurality of subpixels includes a standard subpixel and a plurality of to-be-adjusted subpixels. For each to-be-adjusted subpixel, an additional light-shielding layer is provided at the display portion of the to-be-adjusted subpixel, or the light-shielding layer covering the non-display portion of the to-be-adjusted subpixel is provided with at least one aperture.
Abstract:
Embodiments of the present invention disclose a display panel and an encapsulation method thereof, and relate to the field of display technology. The display panel comprises a first substrate and a second substrate which are disposed in opposition to each other. The first substrate and the second substrate are encapsulated by a sealant. In a non-display area of the display panel, a first adsorption layer is disposed on one of the first substrate and the second substrate, and a second adsorption layer is disposed on the other of the first substrate and the second substrate. The first adsorption layer and the second adsorption layer may be attracted to each other by magnetic force. Embodiments of the present invention can effectively avoid the separation of the first substrate and the second substrate due to the stress released during the process of melting the sealant, thereby improving the problem of poor encapsulation caused thereby.
Abstract:
The present disclosure provides a substrate-sealing method, frit and an electron device, and relates to the field of sensitive electronic components sealing technology. The method includes: coating glass cement on a first glass substrate within a sealing area, the glass cement including carbon nanotubes; pressing the first glass substrate and a second glass substrate together, and melting and sintering the glass cement between the first glass substrate and the second glass substrate at the sealing area by irradiating the sealing area with a laser.
Abstract:
A detecting device for light-emitting property of a light source is provided and the detecting device for light-emitting property of a light source includes: a positioning device configured for fixing the light source; and a detection apparatus configured for acquiring a parameter of an emergent light from the light source. The detecting device for light-emitting property of a light source can detect the light-emitting property of the light source, thus help to select the chrominance and brightness degree, of a light source, required by a display module, and shorten the researching and manufacturing period for a liquid crystal display.
Abstract:
Disclosed are an array substrate, a driving method of the array substrate, and a display device. The array substrate includes gate lines (12), data lines (11), and pixel units, each of the pixel units includes a common electrode (2, 3) and a pixel electrode (5). The common electrode (2, 3) includes a first common electrode (2) and a second common electrode (3). The first common electrode (2) includes a plurality of first strip electrodes and the second common electrode (3) includes a plurality of second strip electrodes. The first strip electrodes and the second strip electrodes are arranged alternately configured to form electrical fields with the pixel electrode (5) respectively. By disposing the first and second common electrodes forming multi-dimensional electric fields with the pixel electrode respectively, the transmittance of the display device is improved.
Abstract:
A packaging method and a display device are provided. The packaging method comprise: providing a first substrate and a second substrate having a packaging region, wherein a region surrounding by the packaging region of the second substrate is provided with a device to be packaged; forming a pattern layer of sealant on the packaging region of the first substrate; bonding the first substrate having the sealant with the second substrate having a device to be packaged so that the packaging region of the first substrate is aligned with the packaging region of the second substrate; and sintering the sealant and applying uniformly a compression force to the packaging region when using a laser to radiate the packaging region.
Abstract:
The present invention provides an array substrate, a 3D display device and a driving method for the same, and belongs to the field of 3D display. Wherein, the array substrate comprises: a substrate, and 2n rows of pixel units being arranged on the substrate in a matrix form, the array substrate further comprises gate lines corresponding to the pixel units in each row, and each of the gate lines is connected to the gate electrodes of thin film transistors in corresponding pixel units, wherein the gate line corresponding to pixel units in the (2k−1)th row of pixel units or the gate line corresponding to the 2kth row receives the gate scanning signal in a predetermined time period, wherein k is a natural number which is not less than 1 and not greater than n.