Embodiments of the invention relate to the technical field of liquid crystal displays, more particularly, to a display panel and a display device.
Liquid Crystal Display (LCD) devices have the advantages of having light weight, small thickness, lower power consumption and little radiation and so on and have been widely used in the fields of information technology, multimedia technologies etc. and are gradually become mainstream display for various display devices. With the development of display technologies, the future trend of LCDs is high transmittivity, large scale, lower power consumption and low cost.
A configuration of a LCD panel is illustrated in
The display quality of the LCD is directly related to the brightness of the bright state and the dark state. For a high contrast ratio, theoretically it is supposed to achieve an all-dark state with very low brightness. However, in fact, as illustrated in
The invention provides a display panel and a display device that can prevent light leakage in the dark state and uneven display caused by the deformation of the glass substrate.
A first aspect of the invention provides a display panel, comprising a lower substrate, an upper substrate and a liquid crystal layer disposed between the upper substrate and the lower substrate, a lower polarizer is disposed at a light incident side of the lower substrate, an upper polarizer is disposed at a light exiting side of the upper substrate, the display panel further comprises a compensation layer disposed between the upper substrate and the liquid crystal layer and configured for converting a polarization direction of light exiting the upper substrate to the same as the polarization direction of light before incident on the lower substrate.
As an example, long axis of liquid crystal molecules in the liquid crystal layer is the same as absorbing axis of the upper polarizer or the lower polarizer.
As an example, slow axis of the compensation layer is orthogonal to the long axis of the liquid crystal molecules in the liquid crystal layer, and a retardation amount of the compensation layer is the same as that of the liquid crystal layer.
As an example, slow axis of the compensation layer is in the same direction as the long axis of the liquid crystal molecules in the liquid crystal layer, and a sum of a retardation amount of the compensation layer and a retardation amount of the liquid crystal molecules is equal to a primary wavelength of incident light of the display panel.
As an example, the primary wavelength is 400-700 nm.
As an example, the display panel further comprises a transparent electrode layer disposed on the light exiting side of the lower substrate and/or the light incident side of the upper substrate.
As an example, the compensation layer is made of cyclic olefin polymers macromolecular material, polycarbonates macromolecular material, polystyrenes macromolecular material or liquid crystal macromolecular material.
A second aspect of the invention provides a display device comprising the above display panel.
In order to clearly illustrate the technical solution of the embodiments of the invention, the drawings of the embodiments will be briefly described in the following; it is obvious that the described drawings are only related to some embodiments of the invention and thus are not limitative of the invention.
In order to make objects, technical details and advantages of the embodiments of the invention apparent, the technical solutions of the embodiment will be described in a clearly and fully understandable way in connection with the drawings related to the embodiments of the invention. It is obvious that the described embodiments are just a part but not all of the embodiments of the invention. Based on the described embodiments herein, those skilled in the art can obtain other embodiment(s), without any inventive work, which should be within the scope of the invention.
In the drawings, solid arrows in polarizers represent directions of absorbing axis or transmission axis, solid arrows in liquid crystal layers represent directions of long axis of liquid crystal molecules, solid arrows in substrates represent retardation directions, and solid arrows in compensation layers represent slow axis thereof.
As illustrate in
In the following, the invention will be further described with reference to examples.
As illustrated in
As illustrated in
Another embodiment of the invention further provides a display device comprising the above display panel. The display device may be for example a display device comprises transparent electrode layers respectively disposed on light exiting side of the lower substrate and light incident side of the upper substrate, or an ADvanced Super Dimension Switch (ADS) display device with a transparent electrode layer disposed just on light exiting side of the lower substrate. Other components well known to those skilled in the art will not be described here and are not limitative to the technical solutions of the invention.
In summary, the display panel and display device of the invention converts polarization direction of light transmitted through the upper polarizer to the same as polarization direction of the light before incident on the lower substrate by disposing the compensation layer in the liquid crystal cell, thereby preventing light leakage in the dark state and uneven display caused by the deformation of the glass substrate. Meanwhile, the invention may minimize light leakage caused by glass substrate deformation under the condition of unchanging deformation property of the glass substrate.
What are described above is related to the illustrative embodiments of the disclosure only and not limitative to the scope of the disclosure; the scopes of the disclosure are defined by the accompanying claims.
Number | Date | Country | Kind |
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201210526435.0 | Dec 2012 | CN | national |