DISPLAY SUBSTRATE, DISPLAY PANEL AND DISPLAY DEVICE
20220019755 · 2022-01-20
Inventors
Cpc classification
G02F1/1368
PHYSICS
G02F1/136227
PHYSICS
G02F1/13312
PHYSICS
International classification
Abstract
A display substrate includes: a base substrate, a drive circuit on the base substrate, an insulating layer on a side of the drive circuit away from the base substrate, and a fingerprint recognition device on a side of the insulating layer away from the base substrate. The fingerprint recognition device includes: a first electrode, a photosensitive layer and a second electrode that are disposed in a stacked manner. The first electrode electrically connects to the drive circuit through a via hole running through the insulating layer; and the first electrode forms a recess in the via hole, and the recess is filled with an insulating material, so that a surface of the first electrode on a side away from the base substrate is a flat surface, and the photosensitive layer is disposed on the flat surface.
Claims
1. A display substrate, comprising: a base substrate; a drive circuit on the base substrate; an insulating layer on a side of the drive circuit away from the base substrate; and a fingerprint recognition device on a side of the insulating layer away from the base substrate; wherein the fingerprint recognition device comprises: a first electrode, a photosensitive layer and a second electrode that are disposed in a stacked manner; wherein the first electrode is electrically connected to the drive circuit through a via hole running through the insulating layer; and the first electrode forms a recess in the via hole, and the recess is filled with an insulating material, so that a surface of the first electrode on a side away from the base substrate is a flat surface, and the photosensitive layer is disposed on the flat surface.
2. The display substrate of claim 1, wherein an orthographic projection of the via hole on the base substrate and an orthographic projection of the photosensitive layer on the base substrate do not overlap; and the display substrate further comprises: a first protective layer on a side of the second electrode away from the base substrate; and a first planarization layer on a side of the first protective layer away from the base substrate; wherein a part of the first protective layer is provided in the recess, and the first planarization layer fills the recess.
3. The display substrate of claim 2, further comprising: a second protective layer on a side of the first planarization layer away from the base substrate; a bias voltage layer on a side of the second protective layer away from the base substrate; and a second planarization layer on a side of the bias voltage layer away from the base substrate; wherein the bias voltage layer is electrically connected to the second electrode through a via hole running through the first protective layer, the first planarization layer and the second protection layer.
4. The display substrate of claim 1, wherein an orthographic projection of the photosensitive layer on the base substrate covers an orthographic projection of the via hole on the base substrate; and the display substrate further comprises: a first planarization layer between the first electrode and the photosensitive layer, wherein the first planarization layer comprises a first portion filling the recess.
5. The display substrate of claim 4, wherein the first planarization layer further comprises a second portion, and an orthographic projection of the second portion on the base substrate and an orthographic projection of the fingerprint recognition device on the base substrate do not overlap.
6. The display substrate of claim 5, further comprising: a first passivation layer between the first planarization layer and the first electrode; wherein the first passivation layer has an opening that exposes the photosensitive layer.
7. The display substrate of claim 6, further comprising: a first protective layer on a side of the second electrode away from the base substrate; a bias voltage layer on a side of the first protective layer away from the base substrate; and a second planarization layer on a side of the bias voltage layer away from the base substrate; wherein the bias voltage layer is electrically connected to the second electrode through a via hole running through the first protective layer.
8. The display substrate of claim 1, wherein the insulating layer comprises a second passivation layer, a third planarization layer, and a third passivation layer successively stacked between the drive circuit and the first electrode.
9. A display panel, comprising: a display substrate and an opposite substrate disposed oppositely; wherein the opposite substrate comprises a black matrix, the black matrix having a plurality of pixel openings and a plurality of fingerprint recognition openings; the display panel comprises: a base substrate; a drive circuit on the base substrate; an insulating layer on a side of the drive circuit away from the base substrate; and a fingerprint recognition device on a side of the insulating layer away from the base substrate; wherein the fingerprint recognition device comprises: a first electrode, a photosensitive layer and a second electrode that are disposed in a stacked manner; wherein the first electrode is electrically connected to the drive circuit through a via hole running through the insulating layer; and the first electrode forms a recess in the via hole, and the recess is filled with an insulating material, so that a surface of the first electrode on a side away from the base substrate is a flat surface, and the photosensitive layer is disposed on the flat surface; wherein the display substrate has a plurality of pixel areas and fingerprint recognition areas between the pixel areas, the pixel openings corresponding to the pixel areas, and the fingerprint recognition openings corresponding to the fingerprint recognition areas.
10. The display panel of claim 9, wherein an orthographic projection of the via hole on the base substrate and an orthographic projection of the photosensitive layer on the base substrate do not overlap; and the display substrate further comprises: a first protective layer on a side of the second electrode away from the base substrate; and a first planarization layer on a side of the first protective layer away from the base substrate; wherein a part of the first protective layer is provided in the recess, and the first planarization layer fills the recess.
11. The display panel of claim 10, further comprising: a second protective layer on a side of the first planarization layer away from the base substrate; a bias voltage layer on a side of the second protective layer away from the base substrate; and a second planarization layer on a side of the bias voltage layer away from the base substrate; wherein the bias voltage layer is electrically connected to the second electrode through a via hole running through the first protective layer, the first planarization layer and the second protection layer.
12. The display panel of claim 9, wherein an orthographic projection of the photosensitive layer on the base substrate covers an orthographic projection of the via hole on the base substrate; and the display substrate further comprises: a first planarization layer between the first electrode and the photosensitive layer, wherein the first planarization layer comprises a first portion filling the recess.
13. The display panel of claim 12, wherein the first planarization layer further comprises a second portion, and an orthographic projection of the second portion on the base substrate and an orthographic projection of the fingerprint recognition device on the base substrate do not overlap.
14. The display panel of claim 13, further comprising: a first passivation layer between the first planarization layer and the first electrode, wherein the first passivation layer has an opening that exposes the photosensitive layer.
15. The display panel of claim 14, further comprising: a first protective layer on a side of the second electrode away from the base substrate; a bias voltage layer on a side of the first protective layer away from the base substrate; and a second planarization layer on a side of the bias voltage layer away from the base substrate; wherein the bias voltage layer is electrically connected to the second electrode through a via hole running through the first protective layer.
16. The display panel of claim 9, wherein the insulating layer comprises a second passivation layer, a third planarization layer, and a third passivation layer successively stacked between the drive circuit and the first electrode.
17. A display device, comprising a backlight module and a display panel disposed oppositely; wherein the display panel comprises: a display substrate and an opposite substrate disposed oppositely; wherein the opposite substrate comprises a black matrix, the black matrix having a plurality of pixel openings and a plurality of fingerprint recognition openings; the display panel comprises: a base substrate; a drive circuit on the base substrate; an insulating layer on a side of the drive circuit away from the base substrate; and a fingerprint recognition device on a side of the insulating layer away from the base substrate; wherein the fingerprint recognition device comprises: a first electrode, a photosensitive layer and a second electrode that are disposed in a stacked manner; wherein the first electrode is electrically connected to the drive circuit through a via hole running through the insulating layer; and the first electrode forms a recess in the via hole, and the recess is filled with an insulating material, so that a surface of the first electrode on a side away from the base substrate is a flat surface, and the photosensitive layer is disposed on the flat surface; wherein the display substrate has a plurality of pixel areas and fingerprint recognition areas between the pixel areas, the pixel openings corresponding to the pixel areas, and the fingerprint recognition openings corresponding to the fingerprint recognition areas; and the backlight module is disposed on a side of the display substrate away from the opposite substrate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0018] To make the objectives, technical solutions and advantages of the disclosure clearer, specific implementations of a display substrate, a display panel, and a display device provided by embodiments of the disclosure will be described in detail below in conjunction with the accompanying drawings.
[0019] The thickness and shape of each layer of film in the drawings do not reflect the true scale of the display substrate, and are merely intended to illustrate the disclosure.
[0020] At present, in-display fingerprint recognition technology that combines an optical sensor and display generally has a structure of a display panel with an amorphous silicon PIN device. The structure that combines an LTPS (Low-Temperature PolySilicon) panel exhibiting high mobility and good stability and an amorphous silicon PIN device has a great prospect of development in the display field. In the technology that combines an LTPS panel and an amorphous silicon PIN device, due to a complex circuit structure and numerous wires, and to ensure an maximum area of the PIN device, many wires and via holes are usually provided under the PIN device. A bottom electrode of the PIN device and an LTPS TFT are connected by a via hole running through a planarization layer right below the PIN. The depth of the via hole is 1.5 μm-2 μm. A height difference caused by the via hole leads to low flatness of the PIN device, which leads to an increase in dark current, ultimately resulting in serious noise in the PIN device, and causing a poor fingerprint recognition effect and a low fingerprint recognition rate.
[0021] In order to at least solve the problem of poor fingerprint recognition caused by the non-flatness of the PIN device, embodiments of the disclosure provide a display substrate, as shown in
[0022] The fingerprint recognition device 4 includes a first electrode 41, a photosensitive layer 43 and a second electrode 42 that are disposed in a stacked manner, and the first electrode 41 electrically connects to the drive circuit 2 through a via hole V1 running through the insulating layer 3.
[0023] The first electrode 41 forms a recess in the via hole V1, and the recess is filled with an insulating material, so that a surface of the first electrode 41 on a side away from the base substrate 1 is a flat surface, and the photosensitive layer 43 is disposed on the flat surface.
[0024] In the above-mentioned display substrate provided in the embodiment of the disclosure, as the recess formed in the via hole V1 by the first electrode 41 of the fingerprint recognition device 4 is filled with the insulating material, so that the surface of the first electrode 41 on the side away from the base substrate 1 is a flat surface. Since the photosensitive layer 43 is disposed on such flat surface, the flatness of the fingerprint recognition device can be improved, to reduce a dark current of the fingerprint recognition device, thereby improving the accuracy of fingerprint recognition.
[0025] In some embodiments, to enable the photosensitive layer of the fingerprint recognition device to be on the flat surface, in the above-mentioned display substrate provided in the embodiment of the disclosure, as shown in
[0026] As shown in
[0027] In some embodiments, the above-mentioned display substrate provided in the embodiment of the disclosure, as shown in
[0028] The flatness of the fingerprint recognition device 4 shown in
[0029] In some embodiments, the disclosure also provides a display substrate, as shown in
[0030] As shown in
[0031] In some embodiments, in the above-mentioned display substrate provided in the embodiment of the disclosure, as shown in
[0032] In some embodiments, the material of the first planarization layer is generally resin, and the film layer where the first electrode is located is a source-drain metal layer. The adhesion between the resin and the source-drain metal layer is poor, and the resin material has a poor ability to block water and oxygen, which affects the conductivity of the electrode. Thus, the above-mentioned display substrate provided in the embodiment of the disclosure, as shown in
[0033] In some embodiments, the above-mentioned display substrate provided in the embodiment of the disclosure, as shown in
[0034] In some embodiments, in the above-mentioned display substrate provided in the embodiment of the disclosure, as shown in
[0035] In some embodiments, the above-mentioned display substrate provided in the embodiment of the disclosure, as shown in
[0036] In some embodiments, in the above-mentioned display substrate provided in the embodiment of the disclosure, the display substrate includes a plurality of pixel areas, and a non-pixel area between the pixel areas. The display substrate is generally fit to an opposite substrate to form a display device. For a display device, the opposite substrate includes color filters and a black matrix between the color filters. To ensure an original aperture ratio of the liquid crystal display device, the fingerprint recognition device is provided at a position corresponding to the black matrix, and the black matrix is provided with an opening to expose the fingerprint recognition device, so as to form a light channel through which the fingerprint recognition device receives reflected light to perform fingerprint recognition. As shown in
[0037] In some embodiments, in the above-mentioned display substrate provided in the embodiment of the disclosure, as shown in
[0038] The following is comparative description of a dark current (Dark-D) and a photo-current (Photo-P) of a flat fingerprint recognition device and a non-flat fingerprint recognition device. Generally, a dark current (Dark-D) and a photo-current (Photo-P) differ by four orders of magnitude. As shown in
TABLE-US-00001 TABLE 1 Type Illumination Point1 Point2 Ave. Hole 1 D 1.06E−12 1.02E−12 1.04E−12 P 1.76E−10 1.75E−10 1.76E−10 Hole 2 D 2.50E−12 2.50E−12 P 1.82E−10 1.82E−10 Hole 3 D 6.49E−13 1.05E−12 8.47E−13 P 1.75E−10 1.79E−10 1.77E−10 Flat D 3.36E−14 1.31E−14 2.34E−14 P 2.38E−10 2.38E−10 2.38E−10
[0039] In summary, the above-mentioned two solutions for achieving the flatness of the fingerprint recognition device provided in the embodiment of the disclosure effectively improve reduce the dark current of the fingerprint recognition device and improve the characteristic difference between photo-current and dark current of the fingerprint recognition device while ensuring a pixel aperture ratio of an original product, solve the major problems of large device noise, poor quality of a fingerprint recognition rate image of a product, and a low fingerprint recognition rate caused by non-flatness of the fingerprint recognition device in the prior art, and are of great significance to mass production of display devices.
[0040] Based on the same disclosed concept, an embodiment of the disclosure further provides a display panel, as shown in
[0041] In some embodiments, when the display substrate in the display panel shown in
[0042] In some embodiments, other indispensable components of the display panel are present as understood by those skilled in the art, and are not described herein, nor should they be construed as limiting the disclosure. For the implementation of the display panel, reference may be made to the embodiment of the display substrate described above, and repeated description is omitted.
[0043] Based on the same disclosed concept, embodiments of the disclosure further provide a display device, which is a liquid crystal display device, as shown in
[0044] In some embodiments, the above-mentioned display device provided in the embodiment of the disclosure may be a mobile phone, a tablet computer, a television, a display, a notebook computer, a digital photo frame, a navigator, or any other product or component with a display function. Other indispensable components of the display device are present as understood by those skilled in the art, and are not described herein, nor should they be construed as limiting the disclosure. For the implementation of the display device, reference may be made to the embodiments of the display substrate described above, and repeated description is omitted.
[0045] In the above-mentioned display substrate, display panel and display device provided by embodiments of the disclosure, as the recess formed in the via hole by the first electrode of the fingerprint recognition device is filled with the insulating material, so that the surface of the first electrode on the side away from the base substrate is a flat surface, and the photosensitive layer is disposed on the flat surface, the flatness of the fingerprint recognition device can be improved, to reduce a dark current of the fingerprint recognition device, thereby improving the accuracy of fingerprint recognition.
[0046] Obviously, those skilled in the art can make various modifications and variations to the disclosure without departing from the spirit and scope of the disclosure. Thus, the 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 of the disclosure and their equivalents.