WO2014059685A1 - 一种有机发光显示面板及其显示装置 - Google Patents

一种有机发光显示面板及其显示装置 Download PDF

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Publication number
WO2014059685A1
WO2014059685A1 PCT/CN2012/083340 CN2012083340W WO2014059685A1 WO 2014059685 A1 WO2014059685 A1 WO 2014059685A1 CN 2012083340 W CN2012083340 W CN 2012083340W WO 2014059685 A1 WO2014059685 A1 WO 2014059685A1
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Prior art keywords
organic light
emitting display
glass substrate
light emitting
display panel
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PCT/CN2012/083340
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English (en)
French (fr)
Inventor
黄泰钧
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TCL China Star Optoelectronics Technology Co Ltd
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Shenzhen China Star Optoelectronics Technology Co Ltd
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Priority to US13/695,436 priority Critical patent/US8835912B2/en
Publication of WO2014059685A1 publication Critical patent/WO2014059685A1/zh
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    • HELECTRICITY
    • H10SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
    • H10KORGANIC ELECTRIC SOLID-STATE DEVICES
    • H10K59/00Integrated devices, or assemblies of multiple devices, comprising at least one organic light-emitting element covered by group H10K50/00
    • H10K59/80Constructional details
    • H10K59/87Passivation; Containers; Encapsulations
    • H10K59/871Self-supporting sealing arrangements
    • HELECTRICITY
    • H10SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
    • H10KORGANIC ELECTRIC SOLID-STATE DEVICES
    • H10K59/00Integrated devices, or assemblies of multiple devices, comprising at least one organic light-emitting element covered by group H10K50/00
    • H10K59/80Constructional details
    • H10K59/87Passivation; Containers; Encapsulations
    • H10K59/873Encapsulations

Definitions

  • the present invention relates to the field of display technologies, and in particular, to an organic light emitting display panel and a display device thereof.
  • Organic Light Emitting Display Panel (Organic Light-Emitting) Diode, OLED) is an autonomous display panel with simple structure and power saving.
  • an electromagnetic wave shielding film is generally adhered to the light emitting direction of the organic light emitting display panel by an adhesive, and electromagnetic wave radiation generated by the organic light emitting display panel is absorbed and shielded by the electromagnetic wave shielding film.
  • the material cost of the existing electromagnetic wave shielding film is high and the effect of eliminating electromagnetic wave radiation is not very satisfactory, and in the process of bonding, the adhesive has a great influence on the display effect of the organic light emitting display panel, thereby affecting the production. Yield.
  • the technical problem to be solved by the present invention is to provide an organic light emitting display panel and a display device thereof, which can reduce cost, improve yield, and more effectively eliminate electromagnetic wave radiation generated by the organic light emitting display panel.
  • the present invention adopts a technical solution to provide an organic light emitting display panel including a first glass substrate, a second glass substrate, and a cathode layer sequentially disposed on the first glass substrate.
  • the illuminating layer and the anode layer are disposed at a distance from the second glass substrate and are fixedly connected to form a sealed space.
  • the organic luminescent display panel further includes: a metal absorbing sheet disposed on the light emitting direction of the OLED panel.
  • the utility model is characterized in that the electromagnetic wave radiation generated by the organic light emitting display panel is absorbed, the metal wave absorbing plate is grounded, the metal wave absorbing plate is a metal mesh, and the metal mesh is integrated on the second glass substrate by means of electroplating film forming.
  • the metal absorber is disposed on the first surface of the second glass substrate away from the first glass substrate.
  • the metal wave absorbing sheet is disposed on the second surface of the second glass substrate facing the first glass substrate and located in the sealed space.
  • an organic light emitting display panel comprising a metal wave absorbing sheet, which is disposed in a light emitting direction of the organic light emitting display panel for absorbing organic light emitting.
  • the electromagnetic wave generated by the display panel is radiated, and the metal absorbing plate is grounded.
  • the organic light emitting display panel includes a first glass substrate, a second glass substrate, and a cathode layer, a light emitting layer and an anode layer which are sequentially disposed on the first glass substrate.
  • the first glass substrate and the second glass substrate are relatively spaced apart and fixedly connected. A sealed space is formed, and the metal wave absorbing sheet is disposed on the second glass substrate.
  • the metal absorber is disposed on the first surface of the second glass substrate away from the first glass substrate.
  • the metal wave absorbing sheet is disposed on the second surface of the second glass substrate facing the first glass substrate and located in the sealed space.
  • the metal absorber is a metal mesh.
  • the metal mesh is integrated on the second glass substrate by electroplating.
  • the installation area of the metal mesh is equal to the installation area of the second glass substrate.
  • the metal wave absorbing sheet and the organic light emitting display panel share the same ground electrode.
  • an organic light emitting display device including an organic light emitting display panel and a front frame, the front frame for fixing and protecting the organic light emitting display panel, and the organic light emitting display panel includes The metal absorbing sheet and the metal absorbing sheet are disposed in the light emitting direction of the organic light emitting display panel for absorbing electromagnetic wave radiation generated by the organic light emitting display panel, and the metal absorbing sheet is grounded.
  • the organic light emitting display panel includes a first glass substrate, a second glass substrate, and a cathode layer, a light emitting layer and an anode layer which are sequentially disposed on the first glass substrate.
  • the first glass substrate and the second glass substrate are relatively spaced apart and fixedly connected. A sealed space is formed, and the metal wave absorbing sheet is disposed on the second glass substrate.
  • the metal absorber is disposed on the first surface of the second glass substrate away from the first glass substrate.
  • the metal wave absorbing sheet is disposed on the second surface of the second glass substrate facing the first glass substrate and located in the sealed space.
  • the metal absorber is a metal mesh.
  • the metal mesh is integrated on the second glass substrate by electroplating.
  • the installation area of the metal mesh is equal to the installation area of the second glass substrate.
  • the metal wave absorbing sheet and the organic light emitting display panel share the same ground electrode.
  • the organic light emitting display panel and the organic light emitting display device share the same ground electrode.
  • the invention has the beneficial effects that the invention is designed to integrate a metal absorbing sheet on a glass substrate in a light-emitting direction, and generate static electricity, discharge an electrostatic voltage, and discharge an electrostatic voltage by absorbing electromagnetic wave radiation generated by the organic light-emitting display panel.
  • the ground surface is introduced, so that the electromagnetic wave radiation generated by the organic light emitting display panel can be effectively absorbed, and the metal wave absorbing sheet has a simple structure and low cost;
  • the present invention integrates the metal absorbing sheet on the organic light emitting display panel, thereby avoiding the display defect caused by the bonding of the electromagnetic wave shielding film in the prior art, thereby improving the production yield.
  • FIG. 1 is a schematic structural view of a first embodiment of an organic light emitting display panel of the present invention
  • FIG. 2 is a schematic structural view of an embodiment of the metal wave absorbing sheet shown in FIG. 1;
  • FIG. 3 is a schematic structural view of another embodiment of the metal wave absorbing sheet shown in FIG. 1;
  • FIG. 4 is a schematic structural view of a common grounding electrode of the metal wave absorbing sheet and the organic light emitting display panel shown in FIG. 1;
  • FIG. 5 is a schematic structural view of a second embodiment of an organic light emitting display panel of the present invention.
  • FIG. 6 is a schematic structural view of an organic light emitting display device of the present invention.
  • FIG. 7 is a schematic structural view of a common ground electrode of an organic light emitting display device and an organic light emitting display panel.
  • the organic light emitting display panel 100 includes a first glass substrate 110 , a second glass substrate 120 , a metal wave absorbing sheet 130 , a cathode layer 140 , a light emitting layer 150 , and an anode layer 160 .
  • the first glass substrate 110 and the second glass substrate 120 are relatively spaced apart, and are fixedly connected by a sealant 170 disposed around the second glass substrate 120 such that the first glass substrate 110, the second glass substrate 120, and the sealant 170 are formed.
  • the cathode layer 140, the luminescent layer 150, and the anode layer 160 are disposed in the sealed space 180, and are sequentially disposed on the first glass substrate 110, that is, the cathode layer 140 is disposed on the first glass substrate 110, and the luminescent layer 150 is disposed on the cathode layer 140.
  • the anode layer 160 is disposed on the light emitting layer 150.
  • the metal absorbing sheet 130 is disposed on the first surface 121 of the second glass substrate 120 away from the first glass substrate 110 for absorbing the electromagnetic wave radiation generated by the organic light-emitting display panel 100. Wherein the metal absorber sheet 130 is grounded.
  • FIG. 2 is a schematic view showing the structure of an embodiment of the metal wave absorbing sheet 130 shown in FIG. 1.
  • the metal absorbing sheet 130 is a metal mesh, and the material is a reactive metal.
  • the metal mesh is integrated into the second glass substrate 120 by electroplating.
  • the mesh size of the metal mesh may be changed according to the design requirements of the display effect of the organic light emitting display panel 100, such as the metal wave absorbing plate 330 of another embodiment shown in FIG. 3, specifically, the mesh size is more The display effect of the large, organic light-emitting display panel 100 is better.
  • the area of the metal absorbing sheet 130 is equal to the area of the first surface 121 of the second glass substrate 120 in this embodiment.
  • the metal absorbing sheet 130 and the organic light-emitting display panel 100 share the same ground electrode 400 in this embodiment.
  • the organic light-emitting display panel 100 of the present embodiment When the organic light-emitting display panel 100 of the present embodiment is used, the organic light-emitting display panel 100 emits electromagnetic wave radiation toward the light-emitting direction, and the electromagnetic wave radiation is absorbed by the metal wave-absorbing sheet 130 as it passes through the second glass substrate 120.
  • the electromagnetic wave radiation is concentrated on the metal wave absorbing sheet 130, and generates static electricity when the aggregation reaches a certain level, and at the same time, the electrostatic voltage is released, and the electrostatic voltage is discharged to the ground through the ground electrode 400, thereby avoiding direct irradiation of electromagnetic wave radiation generated by the organic light-emitting display panel 100.
  • Fig. 5 is a schematic structural view of a second embodiment of the organic light emitting display panel of the present invention. As shown in FIG. 5, the main difference between the organic light emitting display panel 200 of the present embodiment and the organic light emitting display panel 100 of the above embodiment is that:
  • the metal absorbing sheet 230 is disposed on the second surface 222 of the second glass substrate 220 facing the first glass substrate 210, and the metal absorbing sheet 230 is located at the sealing of the first glass substrate 210, the second glass substrate 220 and the sealant 270. Within space 280.
  • the area of the metal absorbing sheet 230 is equal to the area of the visible region of the organic light-emitting display panel 200.
  • the principle that the organic light-emitting display panel 200 of the present embodiment absorbs and releases electromagnetic wave radiation through the metal wave absorbing sheet 230 is the same as the principle that the organic light-emitting display panel 100 shown in FIG. 1 absorbs and releases electromagnetic wave radiation through the metal wave absorbing sheet 130. Let me repeat.
  • Fig. 6 is a schematic structural view of an organic light emitting display device of the present invention.
  • the organic light-emitting display device 300 includes a front frame 310 and an organic light-emitting display panel 100 of the embodiment shown in FIG. 1 or an organic light-emitting display panel 200 of the embodiment shown in FIG.
  • the front frame 310 is used to protect and fix the organic light emitting display panels 100 and 200.
  • the organic light-emitting display panels 100 and 200 and the organic light-emitting display device 300 share the same ground electrode 500, that is, metal.
  • the wave absorbing sheet 130, the organic light emitting display panel 100, and the organic light emitting display device 300 share the ground electrode 500.
  • the ground electrode 500 may be disposed in the organic light-emitting display device 300 or may be disposed outside the organic light-emitting display device 300.
  • the ground electrode of the power plug required for the organic light-emitting display device 300 may be disposed as the common ground electrode 500.
  • the present invention integrates a metal absorbing sheet on a glass substrate in a light-emitting direction, generates static electricity by absorbing electromagnetic wave radiation generated by the organic light-emitting display panel, discharges an electrostatic voltage, and introduces an electrostatic voltage into the ground, so that the organic light-emitting display panel
  • the generated electromagnetic wave radiation can be effectively absorbed, and the metal absorbing plate has a simple structure and low cost;
  • the present invention integrates the metal absorbing sheet on the organic light emitting display panel, thereby avoiding the display defect caused by the bonding of the electromagnetic wave shielding film in the prior art, thereby improving the production yield.

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  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)

Abstract

一种有机发光显示面板及其显示装置。该有机发光显示面板(100)包括金属吸波片(130),金属吸波片(130)设置于有机发光显示面板(100)的出光方向上,用于吸收有机发光显示面板(100)产生的电磁波辐射,其中,金属吸波片(130)接地。在出光方向的玻璃基板上整合金属吸波片(130),使得有机发光显示面板(100)产生的电磁波辐射能够被有效吸收,且金属吸波片(130)结构简单、成本低廉。

Description

一种有机发光显示面板及其显示装置
【技术领域】
本发明涉及显示技术领域,具体而言涉及一种有机发光显示面板及其显示装置。
【背景技术】
有机发光显示面板(Organic Light-Emitting Diode,OLED)是一种自主发光的显示面板,其具备结构简单、省电等特性。
随着有机发光显示面板的普及,使用有机发光显示面板的显示装置在显示时向周围空间传播电磁波辐射越来越多。科学研究证明,电磁波辐射对人体健康存在多方面的危害,长期的电磁波辐射能够使人们感到身体疲劳、眼酸,甚至免疫力下降,因此如何减少电磁波辐射对人体的照射变得愈加重要。
现有技术中一般采用电磁波屏蔽薄膜通过黏胶贴合于有机发光显示面板的出光方向上,通过电磁波屏蔽薄膜吸收和屏蔽有机发光显示面板产生的电磁波辐射。然而,现有电磁波屏蔽薄膜的材料成本高且消除电磁波辐射的效果也并不十分理想,并且在贴合的过程中,黏胶会对有机发光显示面板的显示效果造成很大影响,进而影响生产良率。
综上所述,有必要提供一种有机发光显示面板及其显示装置,以解决上述问题。
【发明内容】
本发明主要解决的技术问题是提供一种有机发光显示面板及其显示装置,能够降低成本、提高良率且更加有效地消除有机发光显示面板产生的电磁波辐射。
为解决上述技术问题,本发明采用的一个技术方案是:提供一种有机发光显示面板,有机发光显示面板包括第一玻璃基板、第二玻璃基板以及依次设置于第一玻璃基板上的阴极层、发光层和阳极层,第一玻璃基板与第二玻璃基板相对间隔设置且固定连接形成密闭空间,有机发光显示面板还包括:金属吸波片,金属吸波片设置于有机发光显示面板的出光方向上,用于吸收有机发光显示面板产生的电磁波辐射,金属吸波片接地,金属吸波片为金属网,金属网通过电镀成膜的方式整合于第二玻璃基板上。
其中,金属吸波片设置于第二玻璃基板远离第一玻璃基板的第一表面。
其中,金属吸波片设置于第二玻璃基板朝向第一玻璃基板的第二表面,且位于密闭空间内。
为解决上述技术问题,本发明采用的另一个技术方案是:提供一种有机发光显示面板,包括金属吸波片,金属吸波片设置于有机发光显示面板的出光方向上,用于吸收有机发光显示面板产生的电磁波辐射,金属吸波片接地。
其中,有机发光显示面板包括第一玻璃基板、第二玻璃基板以及依次设置于第一玻璃基板上的阴极层、发光层和阳极层,第一玻璃基板与第二玻璃基板相对间隔设置且固定连接形成密闭空间,金属吸波片设置于第二玻璃基板上。
其中,金属吸波片设置于第二玻璃基板远离第一玻璃基板的第一表面。
其中,金属吸波片设置于第二玻璃基板朝向第一玻璃基板的第二表面,且位于密闭空间内。
其中,金属吸波片为金属网。
其中,金属网通过电镀成膜的方式整合于第二玻璃基板上。
其中,金属网的设置面积等于第二玻璃基板的设置面积。
其中,金属吸波片与有机发光显示面板共用同一接地电极。
为解决上述技术问题,本发明采用的另一个技术方案是:提供一种有机发光显示装置,包括有机发光显示面板以及前框,前框用于固定并保护有机发光显示面板,有机发光显示面板包括金属吸波片,金属吸波片设置于有机发光显示面板的出光方向上,用于吸收有机发光显示面板产生的电磁波辐射,金属吸波片接地。
其中,有机发光显示面板包括第一玻璃基板、第二玻璃基板以及依次设置于第一玻璃基板上的阴极层、发光层和阳极层,第一玻璃基板与第二玻璃基板相对间隔设置且固定连接形成密闭空间,金属吸波片设置于第二玻璃基板上。
其中,金属吸波片设置于第二玻璃基板远离第一玻璃基板的第一表面。
其中,金属吸波片设置于第二玻璃基板朝向第一玻璃基板的第二表面,且位于密闭空间内。
其中,金属吸波片为金属网。
其中,金属网通过电镀成膜的方式整合于第二玻璃基板上。
其中,金属网的设置面积等于第二玻璃基板的设置面积。
其中,金属吸波片与有机发光显示面板共用同一接地电极。
其中,有机发光显示面板与有机发光显示装置共用同一接地电极。
本发明的有益效果是:区别于现有技术,本发明设计在出光方向的玻璃基板上整合金属吸波片,通过吸收有机发光显示面板产生的电磁波辐射产生静电、释放静电电压,并将静电电压导入地面,使得有机发光显示面板产生的电磁波辐射能够被有效吸收,且金属吸波片结构简单、成本低廉;
进一步地,本发明采用金属吸波片整合在有机发光显示面板上,避免了现有技术中由于电磁波屏蔽薄膜的贴合造成的显示不良,从而提高了生产良率。
【附图说明】
图1是本发明有机发光显示面板的第一实施例的结构示意图;
图2是图1所示金属吸波片的一种实施例的结构示意图;
图3是图1所示金属吸波片的另一种实施例的结构示意图;
图4是图1所示金属吸波片与有机发光显示面板的共用接地电极的结构示意图;
图5是本发明有机发光显示面板的第二实施例的结构示意图;
图6是本发明有机发光显示装置的结构示意图;
图7是有机发光显示装置与有机发光显示面板的共用接地电极的结构示意图。
【具体实施方式】
下面结合附图和实施例对本发明进行详细说明。
图1是本发明有机发光显示面板的第一实施例的结构示意图。如图1所示,有机发光显示面板100包括:第一玻璃基板110、第二玻璃基板120、金属吸波片130、阴极层140、发光层150以及阳极层160。
其中,第一玻璃基板110与第二玻璃基板120相对间隔设置,且通过围绕第二玻璃基板120设置的密封胶170固定连接,使得第一玻璃基板110、第二玻璃基板120和密封胶170形成密闭空间180。阴极层140、发光层150和阳极层160位于密闭空间180内,并且依次设置于第一玻璃基板110上,即:阴极层140设置于第一玻璃基板110上,发光层150设置于阴极层140上,阳极层160设置于发光层150上。
金属吸波片130设置于有机发光显示面板100的出光方向上,即设置于第二玻璃基板120远离第一玻璃基板110的第一表面121上,用于吸收有机发光显示面板100产生的电磁波辐射,其中,金属吸波片130接地。
图2是图1所示金属吸波片130的一种实施例的结构示意图。如图2所示,金属吸波片130为金属网,材料为活性好的金属,金属网采用电镀成膜的方式整合于第二玻璃基板120上。
其中,金属网的网格尺寸可以根据有机发光显示面板100的显示效果的设计需求进行改变,例如图3所示的另一种实施例的金属吸波片330,具体而言,网格尺寸越大,有机发光显示面板100的显示效果越佳。
需要说明的是,为了最大程度的吸收有机发光显示面板100产生的电磁波辐射,本实施例设置金属吸波片130的面积等于第二玻璃基板120的第一表面121的面积。
值得注意的是,如图4所示,为了将金属吸波片130产生的静电电压通过接地电极释放到地面,本实施例设置金属吸波片130与有机发光显示面板100共用同一接地电极400。
在使用本实施例的有机发光显示面板100时,有机发光显示面板100朝向出光方向发散电磁波辐射,电磁波辐射在穿过第二玻璃基板120时被金属吸波片130吸收。这些电磁波辐射在金属吸波片130上聚集,并在聚集达到一定程度时产生静电,同时释放静电电压,静电电压通过接地电极400释放到地面,从而避免有机发光显示面板100产生的电磁波辐射直接照射到人体,进而有效保护人体健康。
图5是本发明有机发光显示面板的第二实施例的结构示意图。如图5所示,本实施例的有机发光显示面板200与上述实施例的有机发光显示面板100的主要不同之处在于:
金属吸波片230设置于第二玻璃基板220朝向第一玻璃基板210的第二表面222上,并且金属吸波片230位于第一玻璃基板210、第二玻璃基板220和密封胶270形成的密闭空间280内。
需要说明的是,为了最大程度的吸收有机发光显示面板200产生的电磁波辐射,本实施例设置金属吸波片230的面积等于有机发光显示面板200的可视区域的面积。
本实施例的有机发光显示面板200通过金属吸波片230吸收并释放电磁波辐射的原理与图1所示有机发光显示面板100通过金属吸波片130吸收并释放电磁波辐射的原理相同,此处不再赘述。
图6是本发明有机发光显示装置的结构示意图。如图6所示,有机发光显示装置300包括前框310和图1所示实施例的有机发光显示面板100或图5所示实施例的有机发光显示面板200。其中,前框310用于保护并固定有机发光显示面板100、200。
值得注意的是,如图7所示,为了将金属吸波片130产生的静电电压通过接地电极释放到地面,有机发光显示面板100、200与有机发光显示装置300共用同一接地电极500,即金属吸波片130、有机发光显示面板100和有机发光显示装置300三者共用接地电极500。其中,接地电极500可以设置于有机发光显示装置300内,也可以设置于有机发光显示装置300外,例如以有机发光显示装置300所需的电源插头的接地电极设置为共用接地电极500。
综上所述,本发明设计在出光方向的玻璃基板上整合金属吸波片,通过吸收有机发光显示面板产生的电磁波辐射产生静电、释放静电电压,并将静电电压导入地面,使得有机发光显示面板产生的电磁波辐射能够被有效吸收,且金属吸波片结构简单、成本低廉;
进一步地,本发明采用金属吸波片整合在有机发光显示面板上,避免了现有技术中由于电磁波屏蔽薄膜的贴合造成的显示不良,从而提高了生产良率。
以上所述仅为本发明的实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (20)

  1. 一种有机发光显示面板,其中,所述有机发光显示面板包括第一玻璃基板、第二玻璃基板以及依次设置于所述第一玻璃基板上的阴极层、发光层和阳极层,所述第一玻璃基板与所述第二玻璃基板相对间隔设置且固定连接形成密闭空间,所述有机发光显示面板还包括:
    金属吸波片,所述金属吸波片设置于所述有机发光显示面板的出光方向上,用于吸收所述有机发光显示面板产生的电磁波辐射;
    其中,所述金属吸波片接地,所述金属吸波片为金属网,金属网通过电镀成膜的方式整合于所述第二玻璃基板上。
  2. 根据权利要求1所述的有机发光显示面板,其中,所述金属吸波片设置于所述第二玻璃基板远离所述第一玻璃基板的第一表面。
  3. 根据权利要求1所述的有机发光显示面板,其中,所述金属吸波片设置于所述第二玻璃基板朝向所述第一玻璃基板的第二表面,且位于所述密闭空间内。
  4. 一种有机发光显示面板,其中,所述有机发光显示面板包括:
    金属吸波片,所述金属吸波片设置于所述有机发光显示面板的出光方向上,用于吸收所述有机发光显示面板产生的电磁波辐射;
    其中,所述金属吸波片接地。
  5. 根据权利要求4所述的有机发光显示面板,其中,所述有机发光显示面板包括第一玻璃基板、第二玻璃基板以及依次设置于所述第一玻璃基板上的阴极层、发光层和阳极层,所述第一玻璃基板与所述第二玻璃基板相对间隔设置且固定连接形成密闭空间,所述金属吸波片设置于所述第二玻璃基板上。
  6. 根据权利要求5所述的有机发光显示面板,其中,所述金属吸波片设置于所述第二玻璃基板远离所述第一玻璃基板的第一表面。
  7. 根据权利要求5所述的有机发光显示面板,其中,所述金属吸波片设置于所述第二玻璃基板朝向所述第一玻璃基板的第二表面,且位于所述密闭空间内。
  8. 根据权利要求4所述的有机发光显示面板,其中,所述金属吸波片为金属网。
  9. 根据权利要求8所述的有机发光显示面板,其中,所述金属网通过电镀成膜的方式整合于所述第二玻璃基板上。
  10. 根据权利要求9所述的有机发光显示面板,其中,金属网的设置面积等于所述第二玻璃基板的设置面积。
  11. 根据权利要求4所述的有机发光显示面板,其中,所述金属吸波片与所述有机发光显示面板共用同一接地电极。
  12. 一种有机发光显示装置,其中,所述有机发光显示装置包括有机发光显示面板以及前框,所述前框用于固定并保护所述有机发光显示面板,所述有机发光显示面板包括:
    金属吸波片,所述金属吸波片设置于所述有机发光显示面板的出光方向上,用于吸收所述有机发光显示面板产生的电磁波辐射;
    其中,所述金属吸波片接地。
  13. 根据权利要求12所述的有机发光显示装置,其中,所述有机发光显示面板包括第一玻璃基板、第二玻璃基板以及依次设置于所述第一玻璃基板上的阴极层、发光层和阳极层,所述第一玻璃基板与所述第二玻璃基板相对间隔设置且固定连接形成密闭空间,所述金属吸波片设置于所述第二玻璃基板上。
  14. 根据权利要求13所述的有机发光显示装置,其中,所述金属吸波片设置于所述第二玻璃基板远离所述第一玻璃基板的第一表面。
  15. 根据权利要求13所述的有机发光显示装置,其中,所述金属吸波片设置于所述第二玻璃基板朝向所述第一玻璃基板的第二表面,且位于所述密闭空间内。
  16. 根据权利要求12所述的有机发光显示装置,其中,所述金属吸波片为金属网。
  17. 根据权利要求16所述的有机发光显示装置,其中,所述金属网通过电镀成膜的方式整合于所述第二玻璃基板上。
  18. 根据权利要求17所述的有机发光显示装置,其中,金属网的设置面积等于所述第二玻璃基板的设置面积。
  19. 根据权利要求12所述的有机发光显示装置,其中,所述金属吸波片与所述有机发光显示面板共用同一接地电极。
  20. 根据权利要求12所述的有机发光显示装置,其中,所述有机发光显示面板与所述有机发光显示装置共用同一接地电极。
PCT/CN2012/083340 2012-10-18 2012-10-23 一种有机发光显示面板及其显示装置 Ceased WO2014059685A1 (zh)

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