Abstract:
The display device may include a display panel and a frame diposed on a rear surface of the display panel. The display device also includes a plurality of binders fixed to the rear surface of the display panel and disposed between the display panel and the frame, and a plurality of coupling members penetrating through the frame and coupled to the plurality of binders. Therefore, the flatness of the display panel attached to the plurality of binders may be improved by adjusting the locations of the frame and the plurality of binders. Also, the display panel and the frame may be easily attached and detached using the plurality of binders and the plurality of coupling members.
Abstract:
A display device including a first substrate, a pixel disposed on the first substrate and including first, second and third sub-pixel electrodes adjacent to each other, a second substrate spaced from the first substrate, a color conversion layer disposed on the second substrate and with a first wavelength conversion layer overlapping with the first sub pixel electrode and a second wavelength conversion layer overlapping with the second sub pixel electrode, a transmissive layer including a first sub-transmissive layer overlapping with the third sub-pixel electrode and a second sub-transmissive layer disposed between the first wavelength conversion layer and the second wavelength conversion layer, and a planarization layer disposed on the color conversion layer and the transmissive layer. Methods of manufacturing display devices having a flatter, planarization layer with reduced variations in thickness also is disclosed.
Abstract:
An array substrate has regions in which an intermediate resist film thickness is formed and processed by an intermediate exposure amount which does not completely expose a resist, respectively on a drain electrode, source terminal, and a common connection wiring which are made of a second conductive film. Thin film patterns or a common wiring made of a first conductive film is formed in substantially entire regions on the bottom layers of the regions so that the heights from a substrate are substantially the same.
Abstract:
Provided is a display apparatus in which an optical sheet is flatly arranged while suppressing unwanted fluttering of the optical sheet and unwanted deformation due to thermal expansion.Unwanted fluttering of optical sheets 21 is suppressed by sandwiching and holding a part of the peripheral portion of the optical sheets 21 (hatched portion in the drawings), and unwanted deformation of the optical sheets 21 due to thermal expansion is suppressed by not sandwiching and holding the remaining part of the peripheral portion of the optical sheets 21. It is not necessary for the optical sheets 21 to be curved in order to suppress both unwanted fluttering and unwanted deformation. Accordingly, the optical sheets 21 may be flatly arranged. Hence, the assembly and display quality of the liquid crystal display apparatus 1 may be enhanced.
Abstract:
There is provided a display device including a display cell (20); a surrounding member (30) provided around the display cell (20), a cover film (10) provided on front side of the display cell (20) and the surrounding member (30); a relay member (40) provided on rear side of the display cell (20) and the surrounding member (30), and facing a margin between the display cell (20) and the surrounding member (30); and an adhesive layer (50) provided between the display cell (20) and the relay member (40), and between he surrounding member (30) and the relay member (40).
Abstract:
Embodiments of the disclosure disclose a display substrate, a display device comprising the display substrate and a method for manufacturing the display substrate. The display substrate comprising a base substrate (1), a black matrix (2) and a color filter (3) formed on the base substrate (1), the color filter (3) and the black matrix (2) are arranged alternately with a height difference existing between the black matrix (2) and the color filter (3). The display substrate further comprises a planarizing layer (40) formed on the black matrix (2) or on both the black matrix (2)and the color filter (3). The planarizing layer (40) is configured to minimize the height difference between the black matrix (2) and the color filter (3). Thus, the height difference between the black matrix (2) and the color filter (3) can be minimized, and surface smoothness of the color filter (3) is improved effectively. Therefore, image displaying quality is improved.
Abstract:
An array substrate, which is formed with a gate electrode (2), a source electrode (5), a drain electrode (6), a gate insulating layer (3), an active layer (4) and a passivation layer (9) in a thin film transistor region, and with the gate insulating layer (3), a pixel electrode (7), the passivation layer (9) and a common electrode (8) in a pixel electrode pattern region, and a color resin layer (11) is formed between the passivation layer (9) and the common electrode (8). Since the color resin layer (11) for planarization is formed on the passivation layer (9), the horizontal driving manner may be suitably applied in order to reduce light leakage, to improve contrast ratio and aperture ratio of a panel and to lower production costs.
Abstract:
A display apparatus includes a substrate including a display area, an encapsulation member facing the substrate, a pad unit around the display area of the substrate, the pad unit including a contact area and an exposure area that is spaced apart from the contact area, and a flexible printed circuit (FPC) that is connected to the contact area of the pad unit and is curved towards the encapsulation member.
Abstract:
On a color filter substrate (color filter) that displays a plurality of colors that are different from each other, a base material, first and second color filter layers that are formed on the base material and respectively colored yellow and magenta, a first overcoat layer that functions as a color filter layer colored red, and a second overcoat layer that is provided so as to cover the first and second color filter layers and colored cyan are provided.
Abstract:
A large screen liquid crystal display device using a transverse electric field system which is capable of dramatically improving an aperture ratio, a transmittance ratio, brightness, and contrast with low cost and high production yield. For example, the width of the common electrodes that shield the electric fields of the video signal lines can be decreased dramatically and the aperture ratio can be improved dramatically. Especially, the bumps covering the video signal lines can be used along with the spacers, and with the use of halftone exposure method, the bumps covering the video signal lines and the spacers can be constructed at the same time, which dramatically shortens the time required for the production process.