OLED display panel and OLED display device applying it
09793508 ยท 2017-10-17
Assignee
Inventors
Cpc classification
H10K50/8428
ELECTRICITY
H10K59/38
ELECTRICITY
International classification
Abstract
Disclosed are an OLED display panel and an OLED display device. The OLED display panel includes an array substrate (21) which is covered by a cathode (211) and a color filter substrate (22) on which an auxiliary electrode (221) is formed. A contact structure is disposed between the color filter substrate (22) and the array substrate (21) to electrically connect the cathode (211) and the auxiliary electrode (221), and the contacting area between the contact structure and the array substrate (21) is greater than or equal to that between auxiliary electrode (221) and the contact structure. The OLED display panel avoids broken circuit between the auxiliary electrode and the cathode that tends to occur due to excessive pressure upon cell-assembling a top-emitting OLED display panel.
Claims
1. An OLED display panel, comprising: an array substrate which is covered by a cathode, a color filter substrate on which an auxiliary electrode is formed, a contact structure provided between the color filter substrate and the array substrate, wherein the contact structure is configured to electrically connect the cathode and the auxiliary electrode, and the contacting area between the contact structure and the array substrate is greater than or equal to that between the auxiliary electrode and the contact structure, and the contact structure is in contact with the auxiliary electrode and does not include the cathode, wherein the contact structure comprises a spacer and a transparent conductive film on the color filter substrate; the spacer is formed on the auxiliary electrode; and the transparent conductive film covers a surface of the color filter substrate and covers at least a surface of the spacer and the auxiliary electrode not blocked by the spacer; a pixel defining layer of the array substrate has a depressed section at a location corresponding to the spacer; the cathode further covers the surface inside the depressed section; and the spacer on the color filter substrate, whose surface is covered with the transparent conductive film, is inserted into the depressed section of the array substrate whose surface is covered with the cathode.
2. The OLED display panel of claim 1, wherein a surface shape of the depressed section of the array substrate after being covered by the cathode on the surface matches a surface shape of the spacer on the color filter substrate contained in the depressed section after being covered by the transparent conductive film on its surface.
3. The OLED display panel of claim 1, wherein conducting glue is placed between the spacer, whose surface is covered by the transparent conductive film, contained in the depressed section and the cathode in the depressed section.
4. The OLED display panel of claim 2, wherein conducting glue is placed between the spacer, whose surface is covered by the transparent conductive film, contained in the depressed section and the cathode in the depressed section.
5. An OLED display device comprising an OLED display panel of claim 1.
6. An OLED display device comprising an OLED display panel of claim 2.
7. An OLED display device comprising an OLED display panel of claim 3.
8. An OLED display panel, comprising: an array substrate which is covered by a cathode, a color filter substrate on which an auxiliary electrode is formed, a contact structure provided between the color filter substrate and the array substrate, wherein the contact structure is configured to electrically connect the cathode and the auxiliary electrode, and the contacting area between the contact structure and the array substrate is greater than or equal to that between the auxiliary electrode and the contact structure, and the contact structure is in contact with the auxiliary electrode and does not include the cathode, wherein the contact structure comprises a spacer formed on a planarization layer of the color filter substrate, and the auxiliary electrode is on top of the spacer; a pixel defining layer of the array substrate has a depressed section at a location corresponding to the spacer; the cathode further covers the surface inside the depressed section; the spacer on the color filter substrate with the auxiliary electrode formed on its top is inserted into the depressed section of the array substrate whose surface is covered with the cathode.
9. The OLED display panel of claim 8, wherein a surface shape of the depressed section of the array substrate after being covered by the cathode on the surface matches a surface shape of the spacer contained in the depressed section which is formed on the color filter substrate with the auxiliary electrode on its top.
10. The OLED display panel of claim 8, wherein conducting glue is placed between the spacer, which has the auxiliary electrode on its top, contained in the depressed section and the cathode in the depressed section.
11. The OLED display panel of claim 9, wherein conducting glue is placed between the spacer, which has the auxiliary electrode on its top, contained in the depressed section and the cathode in the depressed section.
12. An OLED display device comprising an OLED display panel of claim 8.
13. An OLED display device comprising an OLED display panel of claim 9.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) In order to explain the technical solution of embodiments of the present invention more clearly, accompanying drawings of the embodiments will be introduced briefly below. Obviously, the accompanying drawings in the following description only relate to some embodiments of the present invention rather than limiting the present invention.
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DETAIL DESCRIPTION
(8) In order to make objects, technical details and advantages of the embodiments of the invention apparent, the technical solutions of the embodiments will be described in a clearly and fully understandable way in connection with the drawings related to the embodiments of the invention. Apparently, the described embodiments are just a part but not all of the embodiments of the invention. Based on the described embodiments herein, those skilled in the art can obtain other embodiments, without any inventive work, which should be within the scope of the invention.
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(10) The OLED display panel includes a pixel array consisting of a plurality of pixels shown in
(11) In order to solve deteriotation of the luminance uniformity, it is possible to provide an auxiliary electrode 111 with small resistance on the planarization layer of the color filter substrate to reduce the resistance of the cathode 106, as shown in
(12) The inventors found out that when the OLED display panel shown in
(13) At least one embodiment of the present invention provides an OLED display panel. As shown in
(14) In the OLED display panel provided in at least one embodiment of the present invention, the contact structure can electrically connect the auxiliary electrode and the cathode, and the contacting area between the contact structure and the array substrate is larger than that between the auxiliary electrode and the contact structure, thereby increasing the contacting area between the contact structure and the cathode covering the array substrate. Even if the contact structure is subjected to a large force, the contacting region thereof experiences a small pressure, which may significantly reduce the risk of broken circuit between the auxiliary electrode and the cathode due to large pressure upon cell-assembling.
(15) In the OLED display panel provided in the above-mentioned embodiment, as shown in
(16) It is to be noted that, in order to make the contact structure more clear,
(17) The contacting region between the transparent conductive film 24 inside the depressed section D and the cathode 211 is the contacting region between the above-mentioned contact structure and the array substrate. Since the contacting region includes not only the surface of the transparent conductive layer 24 covering the top of the spacer 23, but also includes the surface of the transparent conductive layer 24 covering partial side walls of the spacer 23, the area of the contacting region increases significantly to be greater than the area of the contacting region between the auxiliary electrode 221 and the spacer 23 (namely contacting region between the auxiliary electrode and the contact structure). While the spacer 23 is exerted with a force, the pressure exerted on the transparent conductive layer 24 would decrease significantly, thereby reducing the risk of broken circuit between the auxiliary electrode 221 and the cathode 211 caused by break of the transparent conductive layer 24.
(18) In the OLED display panel shown in
(19) In addition, in the OLED display panel shown in
(20) In another embodiment of the present invention, as shown in
(21) It is to be noted that, in order to make the contact structure more clear,
(22) The contacting region between the spacer 23 inside the depressed section D and the cathode 211 is the contacting region between the above-mentioned contact structure and the array substrate. Since the contacting region includes partial side wall surfaces of the spacer 23, the area of contacting region is increased significantly to be greater than the area of contacting region between the auxiliary electrode 221 and the spacer 23 (namely contacting region between the auxiliary electrode and the contact structure).
(23) In the implementations shown in
(24) In the OLED display panel shown in
(25) In addition, in the OLED display panel shown in
(26) In yet another embodiment of the present invention, as shown in
(27) When the transparent conducting glue 25 is only placed between the auxiliary electrode 221 and the cathode 211, the area of contacting region between the contact structure formed of the transparent conducting glue 25 and the array substrate 21 equals the area of contacting region between the contact structure formed of the transparent conducting glue 25 and the auxiliary electrode 221. When the transparent conducting glue 25 is placed in the entire gap between the array substrate 21 and the color filter substrate 22, the area of contacting region between the contact structure formed of the transparent conducting glue 25 and the array substrate 21 is greater than the area of contacting region between the contact structure formed of the transparent conducting glue 25 and the auxiliary electrode 221.
(28) In the implementation shown in
(29) At least one embodiment of the present invention further provides an OLED display device including the OLED display panel described in any one embodiment of the present invention. Since the probability of broken circuit between the auxiliary electrode and the cathode in the OLED display panel decreases significantly, the OLED display device may have significantly enhanced display performance.
(30) What are described above is related to the illustrative embodiments of the disclosure only and not limitative to the scope of the disclosure; the scopes of the disclosure are defined by the accompanying claims.
(31) The present application claims priority of a Chinese patent application No. 201410194343.6 filed on May 9, 2014, which is incorporated in its entirety herein by reference as part of the present application.