Dual-view naked-eye 3D display device and manufacturing method thereof, liquid crystal display device
10705349 ยท 2020-07-07
Assignee
- Boe Technology Group Co., Ltd. (Beijing, CN)
- Beijing Boe Optoelectronics Technology Co., Ltd. (Beijing, CN)
Inventors
- Xiaochen NIU (Beijing, CN)
- Xue Dong (Beijing, CN)
- Wenqing Zhao (Beijing, CN)
- Xiaochuan Chen (Beijing, CN)
- Jian Gao (Beijing, CN)
- Pengcheng Lu (Beijing, CN)
- Ming Yang (Beijing, CN)
- Qian Wang (Beijing, CN)
- Rui Xu (Beijing, CN)
- Lei Wang (Beijing, CN)
- Pengpeng Wang (Beijing, CN)
Cpc classification
G02F1/1368
PHYSICS
H04N13/302
ELECTRICITY
G02F1/133615
PHYSICS
H04N13/312
ELECTRICITY
G02B27/42
PHYSICS
G02B6/005
PHYSICS
International classification
G02B27/42
PHYSICS
H04N13/302
ELECTRICITY
H04N13/312
ELECTRICITY
G02F1/1368
PHYSICS
G02F1/1335
PHYSICS
Abstract
Disclosed are a dual-view naked-eye 3D display device and a method for manufacturing the same, and a liquid crystal display device. The dual-view naked-eye 3D display device includes a thin film transistor (TFT) substrate, a diffraction grating provided on the TFT substrate, a liquid crystal layer provided on the diffraction grating, a polarizer provided on the liquid crystal layer, and a light source for emitting light to the TFT substrate. The TFT substrate includes a plurality of pixel units arranged in an array, the diffraction grating in each pixel unit having two grating patterns, and the extending directions of the light-shielding strips of the two grating patterns being at a predetermined angle.
Claims
1. A dual-view naked-eye 3D display device, comprising: a thin film transistor (TFT) substrate; a diffraction grating disposed on the TFT substrate; a liquid crystal layer disposed on the diffraction grating; a polarizer disposed on the liquid crystal layer; and a light source for emitting light to the TFT substrate, wherein the TFT substrate comprises a plurality of pixel units arranged in an array, the diffraction grating in each pixel unit has two grating patterns, extending directions of light-shielding strips of the two grating patterns have a predetermined angle therebetween, and the light source is a light source that emits collimated light, wherein each pixel unit comprises two sub-pixels, each sub-pixel comprising either of the two grating patterns, wherein the two sub-pixels are configured to display corresponding different images, and wherein angles between extending directions of the light-shielding strips of the two grating patterns corresponding to adjacent pixel units on the TFT substrate are different.
2. The device according to claim 1, wherein a base substrate of the TFT substrate is a glass substrate.
3. The device according to claim 1, wherein the diffraction grating is a sinusoidal phase grating or a blazed grating.
4. The device according to claim 1, wherein, among the plurality of pixel units on the TFT substrate, an angle between the light-shielding strips of the two grating patterns corresponding to some pixel units is different from that corresponding to other pixel units.
5. The device according to claim 1, wherein the TFT substrate comprises an in-plane switching (IPS), or a vertical alignment (VA) display mode.
6. The device according to claim 1, wherein each of the two grating patterns comprises a plurality of light-shielding strips parallel to and spaced from each other.
7. The device according to claim 1, wherein the light-shielding strips of the two grating patterns extend in different directions.
8. A liquid crystal display equipment, comprising the device according to claim 1.
9. A method for manufacturing a dual-view naked-eye 3D display device, comprising: providing a diffraction grating on a thin film transistor (TFT) substrate; providing a liquid crystal layer on the diffraction grating; providing a polarizer on the liquid crystal layer; and providing a light source for emitting light to the TFT substrate, wherein the TFT substrate comprises a plurality of pixel units arranged in an array, the diffraction grating in each pixel unit has two grating patterns, extending directions of light-shielding strips of the two grating patterns have a predetermined angle therebetween, and the light source is a light source that emits collimated light, wherein each pixel unit comprises two sub-pixels, each sub-pixel comprising either of the two grating patterns, wherein the two sub-pixels are configured to display corresponding different images, and wherein angles between extending directions of the light-shielding strips of the two grating patterns corresponding to adjacent pixel units on the TFT substrate are different.
10. The liquid crystal display equipment according to claim 8, wherein a base substrate of the TFT substrate is a glass substrate.
11. The liquid crystal display equipment according to claim 8, wherein the diffraction grating is a sinusoidal phase grating or a blazed grating.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In order to clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments are briefly described below. Apparently, the drawings described below relate to only some embodiments of the present invention and thus are not limitative of the present invention.
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DETAILED DESCRIPTION
(10) To make clearer the objects, technical solutions and advantages of the embodiments of the present invention, a clear and full description of the technical solutions of the embodiments of the present invention will be made with reference to the accompanying drawings of the embodiments of the present invention. Apparently, the described embodiments are just part rather than all of the embodiments of the present invention. Based on the embodiments of the present invention described, all the other embodiments obtained by a person of ordinary skill in the art, without any creative labor, fall within the scope of protection of the present invention.
(11) Embodiments of the present disclosure provide a dual-view naked-eye 3D display device and a method for manufacturing the same, and a liquid crystal display device, so as to greatly reduce the thickness of the dual-view naked-eye 3D display device and simplify its structure, thereby leading to a simple process and a lower cost and making it unnecessary for a user to wear glasses.
(12) Embodiments of the present disclosure provide a thinned dual-view naked-eye 3D display device, as illustrated in
(13) The incident light emitted from the light source 5 to the TFT substrate 1 is collimated light, i.e., the light-emitting direction is definite, and there is no light in a plurality of directions, for example, polarized light. The incident light emitted from the light source 5 will not change the polarizing direction after passing through the TFT substrate 1 and the diffraction grating 2. Therefore, the dual-view naked-eye 3D display device according to embodiments of the present disclosure does not require a lower polarizer, i.e., only one polarizer is required.
(14) The TFT substrate in the thinned dual-view naked-eye 3D display device according to embodiments of the present disclosure can be, for example, a TFT glass substrate which can serve as a light guide plate. Referring to
(15) The diffraction grating 2 in the thinned dual-view naked-eye 3D display device according to embodiments of the present disclosure is formed on the TFT substrate 1, each pixel unit on the TFT substrate 1 comprising two grating patterns, as illustrated in
(16) For example, each of the two grating patterns comprises a plurality of light-shielding strips parallel to and spaced from each other.
(17) For example, the light-shielding strips of the two grating patterns extend in different directions.
(18) As illustrated in
(19) The principle of action of the diffraction grating is described below:
(20) For example, the diffraction grating is a sinusoidal phase grating with an inclination angle of .sub.G, a grating constant of , a grating length of L, a thickness of d, and a complex amplitude projection coefficient of:
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wherein q represents a diffraction order of the diffraction grating; J.sub.q represents a bessel function of a first kind at q-th order; u=1/, which represents a spatial frequency of the grating; r.sub.q=(.sub.q,.sub.q,.sub.q) represents a direction cosine of outgoing light; an intensity of the outgoing light is modulated by v=2nd/, in which n is a refractive index of the grating and is a wavelength.
(22) As such, it can be seen that the sinusoidal phase grating can modulate the phase of the incident light, for example, after the incident light having a direction cosine of (,,) passes through the sinusoidal phase grating, its outgoing direction is changed to be (.sub.q,.sub.q,.sub.q), where the relationships as shown by Equation 2 are met:
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(24) Therefore, each of the pixels according to the embodiments of the present invention is etched with two gratings at an angle, which allows light to exit at two angles and enter the human eye, as illustrated in
(25) As can be seen from Equation 2, the outgoing angle of light is related to the wavelength . Because red (R), green (G) and blue (B) have different wavelengths, the angles of the light emitted by different colors will be slightly different after the light emitted from the light source passes through the diffraction grating. The grating parameters are appropriately adjusted to achieve the effect as illustrated in
(26) According to the diffraction theory of light, the diffraction pattern passing through the grating is a stripe between light and dark, so that naked-eye 3D display can be realized, as illustrated in
(27) It shall be noted that in the embodiments of the present invention, the arrangement of the grating patterns on each pixel is not limited as long as the light-shielding strips of the upper and lower gratings form a certain angle to enable the outgoing light to exit at two different angles (the arrangement between pixels and pixels is not limited); besides, the electrode structure of the TFT substrate is not limited, for example, the electrode structure of the TN, IPS or VA display mode is accepted.
(28) Embodiments of the present invention provide a liquid crystal display device, comprising the dual-view naked-eye 3D display device according to embodiments of the present invention.
(29) Referring to
(30) S101: providing a diffraction grating on a thin film transistor (TFT) substrate;
(31) S102: providing a liquid crystal layer on the diffraction grating;
(32) S103: providing a polarizer on the liquid crystal layer; and
(33) S104: providing a light source for emitting light to the TFT substrate at a side of the TFT substrate.
(34) For example, the diffraction grating is formed on the TFT substrate, wherein each pixel unit on the TFT substrate corresponds to two grating patterns on the diffraction grating, the light-shielding strips of the two grating patterns being at a predetermined angle.
(35) In conclusion, the dual-view naked-eye 3D display device and the liquid crystal display according to embodiments of the present invention realize a thinner device having a dual-view naked-eye 3D display function by omitting a lower polarizer and a color film substrate and by adding a diffraction grating. Compared with the existing technology, the thinner device has a thickness far less than that of an ordinary LCD display device, can achieve naked-eye 3D dual-view display, does not require a user to wear any external equipment, is more portable, has a simpler structure and a simpler process at a lower cost, is not limited to any application occasions, and is conducive to the further promotion and use of the dual-view naked-eye 3D display device.
(36) The above are merely exemplary embodiments of the present invention, and are not intended to limit the scope of protection of the present invention, which is yet determined by the appended claims.
(37) The present application claims the priority of the Chinese patent application No. 201610012569.9 submitted on Jan. 8, 2016, and the content disclosed in the above Chinese patent application is incorporated herein by reference as part of the present application.