SEMI-REFLECTIVE AND SEMI-TRANSMISSIVE DISPLAY PANEL AND DISPLAY DEVICE WITH THE DISPLAY PANEL
20200319509 ยท 2020-10-08
Inventors
Cpc classification
G02F1/133371
PHYSICS
G02B5/3058
PHYSICS
G02F1/133607
PHYSICS
International classification
Abstract
A semi-reflective and semi-transmissive display panel is provided and includes a first substrate and a second substrate. A liquid crystal layer is disposed between the first substrate and the second substrate. The semi-reflective and semi-transmissive display panel includes a displaying region, and the displaying region includes a transmissive displaying region and a reflective displaying region. In the reflective displaying region, a micro structured reflective layer is disposed in a surface of the first substrate facing away from the second substrate.
Claims
1. A semi-reflective and semi-transmissive display panel, comprising a first substrate and a second substrate, the first substrate and the second substrate disposed opposite to each other, a liquid crystal layer disposed between the first substrate and the second substrate, the semi-reflective and semi-transmissive display panel comprising a displaying region, the displaying region comprising a transmissive displaying region and a reflective displaying region; a micro structured reflective layer disposed on a surface of the first substrate facing away from the second substrate in the reflective displaying region, the micro structured reflective layer configured to reflect an incident light from a backlight module, the micro structured reflective layer composed of a plurality of protrusions having a tilt angle, a width of each of the protrusions greater than a wavelength of visible light, and an outer light reflecting layer disposed on a surface of the first substrate facing toward the second substrate in the reflective displaying region.
2. A semi-reflective and semi-transmissive display panel, comprising a first substrate and a second substrate, the first substrate and the second substrate disposed opposite to each other, a liquid crystal layer disposed between the first substrate and the second substrate, the semi-reflective and semi-transmissive display panel comprising a displaying region, the displaying region comprising a transmissive displaying region and a reflective displaying region; a micro structured reflective layer disposed on a surface of the first substrate facing away from the second substrate in the reflective displaying region, wherein the micro structured reflective layer is configured to reflect an incident light from a backlight module.
3. The semi-reflective and semi-transmissive display panel as claimed in claim 2, wherein the micro structured reflective layer is composed of a plurality of protrusions having a tilt angle.
4. The semi-reflective and semi-transmissive display panel as claimed in claim 3, wherein the tilt angle fulfills a conditional formula as follows:
tan(1802)L/h wherein, is a tilt angle of the protrusions, h is a height of a gap between the backlight module and the first substrate, L is a length of the reflective displaying region.
5. The semi-reflective and semi-transmissive display panel as claimed in claim 4, wherein the tilt angle is greater than 75 degrees.
6. The semi-reflective and semi-transmissive display panel as claimed in claim 4, wherein the tilt angle is equal to 75 degrees.
7. The semi-reflective and semi-transmissive display panel as claimed in claim 3, wherein width of each of the protrusions is greater than a wavelength of visible light.
8. The semi-reflective and semi-transmissive display panel as claimed in claim 3, wherein heights of the protrusions are different.
9. The semi-reflective and semi-transmissive display panel as claimed in claim 2, wherein in the reflective displaying region, an outer light reflecting layer is disposed on a surface of the first substrate facing toward the second substrate.
10. The semi-reflective and semi-transmissive display panel as claimed in claim 2, wherein in the transmissive displaying region, a metal wire grid is disposed on a surface of the first substrate facing toward the second substrate.
11. The semi-reflective and semi-transmissive display panel as claimed in claim 10, wherein height of metal wires of the metal wire grid is 100 nm-150 nm, an interval between adjacent metal wires of the metal wire grid is 100 nm-150 nm, and a duty ratio of the metal wire grid is 40%-60%.
12. The semi-reflective and semi-transmissive display panel as claimed in claim 2, wherein in the transmissive displaying region, a metal wire grid is disposed on the surface of the first substrate facing away from the second substrate.
13. The semi-reflective and semi-transmissive display panel as claimed in claim 12, wherein height of metal wires of the metal wire grid is 100 nm-150 nm, an interval between adjacent metal wires of the metal wire grid is 100 nm-150 nm, and a duty ratio of the metal wire grid is 40%-60%.
14. A semi-reflective and semi-transmissive display device, comprising the semi-reflective and semi-transmissive display panel as claimed in claim 2 and a backlight module, the backlight module disposed on a rear surface of the semi-reflective and semi-transmissive display panel, wherein in the reflective displaying region, an incident light of the backlight module is multi-reflected by the micro structured reflective layer and the backlight module and is emitted out from the transmissive displaying region.
Description
DESCRIPTION OF DRAWINGS
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
Best Mode of Embodiments of the Present Invention
[0029] Specific embodiments of the semi-reflective and semi-transmissive display panel and the display device with the display panel provided by the present invention will be described in details accompanied with drawings as follows.
[0030] The present invention provides a semi-reflective and semi-transmissive display panel.
[0031] The semi-reflective and semi-transmissive display panel 2 includes a displaying region and a non-displaying region, the displaying region configured to display images, and the non-displaying region configured to manufacture structure such as wires and frames. The non-displaying region of the present invention semi-reflective and semi-transmissive display panel 2 is a common structure and will not be repeatedly described.
[0032] The displaying region of the semi-reflective and semi-transmissive display panel 2 includes a transmissive displaying region A and a reflective displaying region B. Each pixel of the semi-reflective and semi-transmissive display panel 2 includes a transmissive displaying region and a reflective displaying region. The transmissive displaying regions of all pixels form the transmissive displaying region of the semi-reflective and semi-transmissive display panel. The reflective displaying regions of all pixels form the reflective displaying region of the semi-reflective and semi-transmissive display panel 2. In the present embodiment, the transmissive displaying region and the reflective displaying region of one pixel are taken as an example to describe the technical solution of the present invention.
[0033] With reference to
[0034] With reference to
[0035]
[0036] Furthermore, as shown in
[0037]
[0038] In the present embodiment, the tilt angle the protrusions 241 should fulfill the a conditional formula as follows:
tan(1802)L/h
wherein is the tilt angle of the protrusion 241; h refers to a height of a gap between the backlight module 30 and the first substrate 20, and L is a length of the reflective displaying region B. In actual design of the semi-reflective and semi-transmissive display panel, a width and a length of the pixel is known. According to the width and length of the pixel and a desired reflective rate, the length L reflective displaying region B can be acquired.
[0039] When the tilt angle fulfills the conditional formula, it is guaranteed that the reflected light of the protrusions 241 on an edge of the reflective displaying region B can also enter transmissive displaying region A. Furthermore, the tilt angle is greater than or is equal to 75 degrees, then an angle of emergence of the transmissive light after multi-reflection of the micro structured reflective layer 24 and the backlight module 30 and emitting out from the transmissive displaying region A is greater than 70 degrees. The transmissive light can be used efficiently. Furthermore, the above conditional formula is especially suitable for the direct-lit backlight module 30, dual-edge-lit and single-edge-lit backlight modules need no consideration for the above conditional formula.
[0040] Furthermore, in the transmissive displaying region A, a metal wire grid 25 is disposed on the surface of the first substrate 20 facing toward the second substrate 21 or the surface of the first substrate 20 facing away from the second substrate 21.
[0041] With reference to
Embodiments of the Present Invention
[0042] With reference to
[0043] As shown in
[0044] Furthermore, as shown in
[0045] The present invention also provides a semi-reflective and semi-transmissive display device, which can be a computer, a television or a smart electrical product.
[0046] The semi-reflective and semi-transmissive display panel 2 and display device adopting the display panel 2 of the present invention, by disposing the micro structured reflective layer 24 on the reflective displaying region B to directionally reflect the light of the reflective displaying region B, reflects the light of the reflective displaying region B through the micro structured reflective layer 24 to be emitted out from the transmissive displaying region A, increases usage rate of the backlight module of the reflective displaying region B, enhances brightness of the emitted light of the transmissive displaying region A, increases the brightness of transmissive display with reflection performance of the reflective displaying region B remaining the same, and lowers power consumption of the backlight module to allow the semi-reflective and semi-transmissive display device to have better displaying endurance outdoors.