This application claims the benefit of Chinese Patent Application No. 201720832921.3, filed with the Chinese Patent Office on Jul. 10, 2017, which is hereby incorporated by reference in its entirety.
The present disclosure relates to the field of display technologies, and particularly to a display device.
As the display technologies are advancing constantly, display products have been gradually widespread throughout our life.
A reflective type of display device can display an image using ambient light as a light source, and has been widely favored among its users due to its advantages of a high contrast, low power consumption, a small thickness, a low weight, etc.
The reflective type of display device can perform its display function perfectly under a condition with sufficient ambient light; and a display effect of the image may be seriously degraded when there are insufficient ambient light, or in a dark room. Generally when there are insufficient light in a surrounding environment, a frontlight source needs to be added to assist display. However there is such a small difference in refractive index between the front light-guiding plate and a bonding adhesive, that the technical solution in which the frontlight source assists the display can only be used to adjust the uniformity of brightness for the reflective type of display device with a small size to a limited extent, but have no adjusting effect on the uniformity of brightness for the reflective type of display device with a large size.
Furthermore scattering type of display device (which is also referred as lightwave guiding display device) has been increasingly recognized due to its advantages of a high response speed, low power consumption, a high transmittivity, etc. It is characterized in that a liquid crystal box itself can operate as a lightwave guiding plate, and also used to display. However the light from the light source required in this display technology is incident onto the side of the display panel, and as there is an increasing distance between the liquid crystal molecules and the light source, there is a decreasing amount of light guided into the display panel, so there is also a decreasing amount of light to be scattered out of the liquid crystal molecules, thus degrading the uniformity of brightness, and the contrast throughout the display panel, which may seriously affect the quality of the displayed image.
As can be apparent from the description above, there is low uniformity of brightness, and low contrast in the display device in the prior art, thus how to improve the uniformity of brightness, and the contrast in the display device is to be solved.
Embodiments of the disclosure provide a display device. The display device includes: a display panel, and a frontlight source arranged on at least one side of the display panel, where light emitted from the frontlight source is collimated light in the direction perpendicular to a light incidence face of the display panel.
Particular implementations of a display device according to an embodiment of the disclosure will be described below in details with reference to the drawing. It shall be noted that the embodiments to be described here are only a part but not all of the embodiments of the disclosure. Based upon the embodiments here of the disclosure, all of the other embodiments which can occur to those ordinarily skilled in the art without any inventive effort shall come into the scope of the disclosure as claimed.
The shapes and sizes of respective components in the drawings will not reflect any real proportion of a display device, but are only intended to illustrate the disclosure of the disclosure by way of an example.
It shall be noted that, the display device according to the embodiment of the disclosure may be a reflective type of display device, or a scattering type of display device. The reflective type of display device is not limited to the one that only reflects light, but also includes the transflective one that reflects and transmits light.
An embodiment of the disclosure provides a display device as illustrated in
light emitted from the frontlight source 002 are collimated light in the direction perpendicular to a light incidence face of the display panel 001.
In the display device above according to the embodiment of the disclosure, the light emitted from the frontlight source 002 can only be incident onto the display panel 001 in the direction perpendicular to the light incidence face of the display panel 001, and the light emitted from the frontlight source 002 are collimated light with a uniformly distributed intensity in the direction perpendicular to the light incidence face of the display panel 001, so there is a uniform intensity distribution of light beams incident onto the display panel 001, thus resulting in high uniformity of brightness, and high contrast in the display device.
It shall be noted in the display device above according to the embodiment of the disclosure, the light emitted from the frontlight source 002 in the direction perpendicular to the light incidence face of the display panel 001 can be collimated light, but also can be light with a small divergence angle, although the light with a small divergence angle can improve the uniformity of brightness, and the contrast in the display device with a relatively small effect as compared with the collimated light.
In some embodiments, in order to enable the collimated light emitted from the frontlight source 002 in the direction perpendicular to the light incidence face of the display panel 001 to be incident onto the display plane 001, in the display device above according to the embodiment of the disclosure, a relative position of the frontlight source 002 to the display panel 001 can be preset as needed in reality. For example, when the display panel 001 is arranged horizontally, the frontlight source 002 can be located above the top left of the light incidence face of the display panel 001 as illustrated in
In an implementation, in the display device above according to the embodiment of the disclosure, the shape of the frontlight source 002 can be arranged as long straight bars as illustrated in
In some embodiments, in the display device above according to the embodiment of the disclosure, as illustrated in
Since the light emitted from the frontlight source 002 can only be incident onto the display panel 011 in the direction perpendicular to the light incidence face of the display panel 001, the uniformity of brightness, and the contrast in the display device will not be affected by whether light emitted from the frontlight source 002 in the extension direction of a longer side y1 of the wave front (the length of the frontlight source 002) is divergent, so that in an implementation, in the display device above according to the embodiment of the disclosure, the light emitted from the frontlight source 002 in the extension direction of the longer side y1 of the wave front may or may not be collimated light, that is, the light emitted from the frontlight source 002 in the extension direction of the longer side y1 of the wave front may be parallel light, or light with a small divergence angle, or may be light with a large divergence angle, although the embodiment of the disclosure will not be limited thereto.
In some embodiments, in the display device above according to the embodiment of the disclosure, as illustrated in
In some embodiments, in the display device above according to the embodiment of the disclosure, as illustrated in
In an implementation, in the display device above according to the embodiment of the disclosure, the frontlight source 002 can be embodied in a number of implementations, and as illustrated in
In some embodiments, in the display device above according to the embodiment of the disclosure, the strip-shaped light source 201 can be a lamp bar in which a plurality of point light sources are arranged, or can be a strip-shaped planar light source, e.g., an Organic Light-Emitting Diode (OLED), although the embodiment of the disclosure will not be limited thereto.
Moreover in the display device above according to the embodiment of the disclosure, the type of the light source can be a Light-Emitting Diode (OLED), a cold cathode tube, or another light source, although the embodiment of the disclosure will not be limited thereto.
In an implementation, in the display device above according to the embodiment of the disclosure, the display panel 001 can be embodied in a number of structures, and as illustrated in
In some embodiments, in order to further improve the uniformity of brightness on the display panel 001, in the display device above according to the embodiment of the disclosure, a primary scattering direction of the asymmetric scattering film 104 may be the same as the incidence direction of the light of the frontlight source 002.
In some embodiments, as illustrated in
In an implementation, in the display device above according to the embodiment of the disclosure, the display medium layer 103 can be arranged as an electronic ink layer as illustrated in
Furthermore in the display device above according to the embodiment of the disclosure, when the display medium layer 103 is arranged as a liquid crystal layer or an electrochromic layer, the display panel 001 further includes a circular polarization sheet 105 arranged on the side of the asymmetric scattering film 104 away from the array substrate 101 as illustrated in
In another example, in an implementation, in the display device above according to the embodiment of the disclosure, as illustrated in
the hybrid liquid crystal layer 113 includes: liquid crystal molecules 1131 aligned perpendicular to the incidence direction of the light of the frontlight source 002, and a polymer network 1132 surrounding the liquid crystal molecules 1131.
In the display device as illustrated in
Furthermore in the display device as illustrated in
It shall be noted that the display device above according to the embodiment of the disclosure can be a mobile phone, a tablet computer, a TV set, a monitor, a notebook computer, a digital photo frame, a navigator, a smart watch, a fitness wrist band, a personal digital assistant, or any other product or component capable of displaying, although the embodiment of the disclosure will not be limited thereto.
The display device above according to the embodiment of the disclosure includes: a display panel, and a frontlight source arranged on at least one side of the display panel, where light emitted from the frontlight source are collimated light in the direction perpendicular to a light incidence face of the display panel. The light emitted from the frontlight source can only be incident onto the display panel in the direction perpendicular to the light incidence face of the display panel, and the light emitted from the frontlight source are collimated light with a uniformly distributed intensity in the direction perpendicular to the light incidence face of the display panel, so there is a uniform intensity distribution of light beams incident onto the display panel, thus resulting in high uniformity of brightness, and high contrast in the display device.
Evidently those skilled in the art can make various modifications and variations to this disclosure without departing from the spirit and scope of this disclosure. Thus this disclosure is also intended to encompass these modifications and variations thereto so long as the modifications and variations come into the scope of the claims appended to this disclosure and their equivalents.
Number | Date | Country | Kind |
---|---|---|---|
201720832921.3 | Jul 2017 | CN | national |