Exemplary embodiments of the disclosure relate to display technologies, and in particular to display panels and display devices.
Currently, in a display panel with a fingerprint recognition function, its fingerprint recognition module is generally arranged in a non-display area of the display panel, and is mostly arranged at the position corresponding to the exposed Home key. Fingerprint information of a user can be collected when the user touches the Home key with his/her finger, and then the fingerprint recognition is completed based on the comparison result.
However, the fingerprint recognition module arranged in the non-display area will inevitably limit the full screen design of the display panel, which is unfavorable for realizing the full screen of the display panel.
Therefore, there is an urgent need to find a full screen solution that can realize fingerprint recognition.
Exemplary embodiments of the disclosure provide a display panel and a display device to provide a new full screen solution that can realize fingerprint recognition.
To overcome the above technical problem, the exemplary embodiments of the disclosure can adopt the following technical solutions: a display panel comprises a substrate, a display film layer located on a surface of the substrate, and a touch film layer located above the display film layer. The display panel further comprises: a fingerprint recognition film layer comprising a plurality of image sensing elements arranged in an array, and an orthographic projection of the image sensing element on the substrate is not overlapped with an orthographic projection of a light-emitting sub-pixel in the display film layer on the substrate.
Optionally, an array density of the image sensing elements in the fingerprint recognition film layer is equal to or smaller than an array density of the light-emitting sub-pixels in the display film layer.
Optionally, the fingerprint recognition film layer is sandwiched between the display film layer and the touch film layer.
Optionally, the display panel further comprises an adhesive for bonding the fingerprint recognition film layer to the touch film layer, and bonding the fingerprint recognition film layer to the display film layer.
Optionally, the fingerprint recognition film layer is arranged between the substrate and the touch film layer.
Optionally, the fingerprint recognition film layer is arranged between the touch film layer and an encapsulation layer for encapsulating the display film layer.
Optionally, the fingerprint recognition film layer is arranged at a specific region of the touch film layer, and the specific region corresponds to an edge area, a middle lower portion and a middle upper portion of the display panel.
Optionally, the image sensing element is a semiconductor element.
Optionally, the image sensing element is a CMOS image sensing element.
Optionally, the CMOS image sensing element has a size ranging from 1 to 4 μm.
Optionally, in the fingerprint recognition film layer, a pixel density of the image sensing element ranges from 300 to 800 ppi.
Optionally, the touch film layer is a grid-patterned electrode, and the image sensing elements are arranged in the corresponding region of the corresponding grid and are arranged in the region close to the region corresponding to an intersection position between touch wirings located in the touch film layer.
Optionally, the touch wiring is arranged at a gap between the adjacent light-emitting sub-pixels in the corresponding display film layer, and the image sensing element is arranged at a gap between the adjacent light-emitting sub-pixels in the corresponding display film layer.
Optionally, an orthographic projection of the adjacent two boundaries of the image sensing element close to the intersection position between the touch wirings on the substrate is overlapped with an orthographic projection of the corresponding two adjacent touch wirings in the grid on the substrate.
A display device comprises any one of the above display panels.
The following beneficial effects can be achieved by at least one of the above-mentioned technical solutions adopted by the exemplary embodiments of the disclosure:
By providing a fingerprint recognition film layer, an orthographic projection of each image sensing element in the fingerprint recognition film layer on the substrate is not overlapped with an orthographic projection of a light-emitting sub-pixel in the display film layer on the substrate. Thus, although the fingerprint recognition film layer is arranged at a light-exiting side of the display film layer, the image sensing element reasonably avoids the light-emitting sub-pixel, thereby avoiding blocking the light-emitting sub-pixel and further reducing a barrier to light emitted by the display film layer; moreover, the image sensing element can effectively collect fingerprint information by means of the display film layer, thereby achieving under-display fingerprint recognition, which is favorable for designing the full screen.
The technical solution provided by exemplary embodiments of the disclosure will be described in detail below with reference to the accompanying drawings.
With reference to
Still with reference to
In fact, in the disclosure, the fingerprint recognition film layer 14 has a pattern, which can be understood as connecting these image sensing elements 141 to the corresponding processors via a plurality of transparent wires or transparent electrode layers for signal comparison or image comparison, thereby achieving fingerprint recognition. The specific connection relationship may be laid out according to the specific film layer structure design, preferably avoiding blocking the light-emitting sub-pixel 121.
It should be noted that, in the disclosure, the display panel also actually includes an adhesive 15 for bonding the fingerprint recognition film layer 14 to the touch film layer 13, and bonding the fingerprint recognition film layer 14 to the display film layer 12. The adhesive 15 is, for example, Optically Clear Adhesive (OCA) or other transparent glues, in order to ensure that the fingerprint recognition film layer and the adjacent film layer can be firmly bonded together.
In the disclosure, the fingerprint recognition film layer 14 is arranged at a specific region of the touch film layer, and the specific region corresponds to an edge area of the display panel. In fact, the specific region is not limited to be arranged within the entire surface of the display panel; with reference to
Alternatively, in the disclosure, the image sensing element may be a semiconductor element grown on a semiconductor substrate. Specifically, as shown in
In fact, the image sensing element involved in the disclosure may specifically be a CMOS image sensing element. These CMOS image sensing elements constitute a CMOS image sensor CIS, which belongs to a solid-state imaging sensor, and usually comprises the following components, such as an image sensitive unit array, a row driver, a column driver, a timing control logic, an AD converter, a data bus output interface, a control interface. These components are usually integrated on the same piece of silicon, i.e. CIS.
In the disclosure, given that the orthographic projection of the image sensing element in the fingerprint recognition film layer on the substrate is not overlapped with the orthographic projection of the light-emitting sub-pixel in the display film layer on the substrate, an array density of the image sensing elements in the fingerprint recognition film layer is preferably the same as an array density of the light-emitting sub-pixels in the display film layer, i.e., one image sensing element corresponds to one light-emitting sub-pixel, which, in fact, is not limited by the disclosure, and may also be designed as the array density of the image sensing elements in the fingerprint recognition film layer being smaller than the array density of the light-emitting sub-pixels in the display film layer.
In the disclosure, the CMOS image sensing element has a size ranging from 1 to 4 μm; as shown in
Still with reference to
In the disclosure, the touch film layer is a grid-patterned electrode, and the image sensing elements are arranged in the corresponding regions of the corresponding grid and arranged in the region close to the region corresponding to the intersection position between the touch wirings. With reference to
Optionally, although the touch control layer has a thin touch wiring, the size of the image sensing element is not large, and therefore, in order to further reduce the barrier to the light-emitting sub-pixel caused by the image sensing element, an orthographic projection of the adjacent two boundaries of the image sensing element close to the intersection position between the touch wirings on the substrate is overlapped with an orthographic projection of the corresponding two adjacent touch wirings in the grid on the substrate. Still with reference to
It should be noted that, in the disclosure, the thickness of the film layer, the size of the components and the width of the wiring are not representative of the actual structural dimension, which should be on the basis of the actual production process requirements and design.
Meanwhile, the disclosure also proposes a display device which includes the display panel. In addition, the display device can be any products or components with the display function, such as a mobile phone, a tablet computer, a television, a display, a notebook computer, a digital photo frame, a navigator, a smart wearable device, a VR, and an AR. Other components indispensable to the display device should be understood by a person skilled in the art, which are not described in detail herein, nor should be construed as a limitation to the disclosure.
The above description is only exemplary embodiments of the disclosure and is not intended to limit the disclosure. As for a person skilled in the art, there are various modifications and changes in the disclosure. Any equivalent modifications, equivalent substitutions, improvements and the like made within the spirit and principle of the disclosure should be included in the scope of the appended claims of the disclosure.
Number | Date | Country | Kind |
---|---|---|---|
201721902349.X | Dec 2017 | CN | national |
This application is a continuation of International Application No. PCT/CN2018/090999, filed on Jun. 13, 2018, which claims priority to Chinese Patent Application No. 201721902349.X, entitled “DISPLAY PANELS AND DISPLAY DEVICES” filed on Dec. 29, 2017, the contents of which are expressly incorporated by reference herein in their entireties.
Number | Name | Date | Kind |
---|---|---|---|
20090021487 | Tien | Jan 2009 | A1 |
20140048854 | Wang | Feb 2014 | A1 |
20160350570 | Han | Dec 2016 | A1 |
20160350577 | Yang | Dec 2016 | A1 |
20170140194 | Qin | May 2017 | A1 |
20170193265 | Chan | Jul 2017 | A1 |
20170285778 | Liang | Oct 2017 | A1 |
20180005007 | Du | Jan 2018 | A1 |
20180129798 | He | May 2018 | A1 |
20180211090 | Yang | Jul 2018 | A1 |
20190050096 | Wang | Feb 2019 | A1 |
20190294846 | Li | Sep 2019 | A1 |
Number | Date | Country |
---|---|---|
105139793 | Dec 2015 | CN |
106096595 | Nov 2016 | CN |
106898636 | Jun 2017 | CN |
106959757 | Jul 2017 | CN |
20050072956 | Jul 2005 | KR |
Number | Date | Country | |
---|---|---|---|
20190340408 A1 | Nov 2019 | US |
Number | Date | Country | |
---|---|---|---|
Parent | PCT/CN2018/090999 | Jun 2018 | US |
Child | 16514041 | US |