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    • 1. 发明专利
    • Manufacturing method of display panel
    • 显示面板的制造方法
    • JP2006236791A
    • 2006-09-07
    • JP2005050038
    • 2005-02-25
    • Tohoku Pioneer Corp東北パイオニア株式会社
    • TAKAHASHI MASAKI
    • H05B33/10H01L51/50H05B33/04
    • PROBLEM TO BE SOLVED: To ensure airtightness in a sealed space by surely solidifying an adhesive without generating gas, moisture or the like adversely affecting performance of an organic EL element in the sealed space.
      SOLUTION: This manufacturing method of a display panel includes: a bonding process S
      1 for executing substrate preparation S
      01 and element formation S
      02 for a substrate of an organic EL panel while executing preparation S
      03 such as attaching a desiccant agent to a sealing member for sealing the organic EL element, and thereafter bonding the substrate to the sealing member through the adhesive; a light radiation process S
      2 for radiating light (an ultraviolet ray or the like) for tentatively solidifying the adhesive to the adhesive after the bonding process; and a heating and solidifying process S
      3 for solidifying the adhesive by heating the adhesive. In the heating and solidifying process S
      3 , the adhesive is heated through the substrate by a heat source in contact with the substrate.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了确保在粘合剂中固化而不产生气体,水分等对密封空间中的有机EL元件的性能产生不良影响,确保密封空间中的气密性。

      解决方案:显示面板的制造方法包括:用于执行基板制备S&lt; SB&gt; 01&lt; SB&gt;和元件形成S SB <02&lt; SB&lt; SB&gt; >用于有机EL面板的基板,同时执行准备S 03 ,例如将干燥剂附着到用于密封有机EL元件的密封构件上,然后通过粘合剂将基板粘合到密封构件 ; 用于在接合处理之后将粘合剂暂时固化到粘合剂上的用于照射光(紫外线等)的光辐射过程S 2 以及通过加热粘合剂来固化粘合剂的加热和固化方法S 3 。 在加热和固化过程S 3 中,通过与基底接触的热源将粘合剂通过基底加热。 版权所有(C)2006,JPO&NCIPI

    • 3. 发明专利
    • Self-luminescent light emitting panel and its manufacturing method
    • 自发光发光面板及其制造方法
    • JP2006202610A
    • 2006-08-03
    • JP2005013177
    • 2005-01-20
    • Tohoku Pioneer Corp東北パイオニア株式会社
    • TAKAHASHI MASAKI
    • H05B33/04H01L51/50H05B33/10
    • PROBLEM TO BE SOLVED: To provide a self-luminescent light panel causing no functional deterioration even if an environmental temperature changes, and its manufacturing method.
      SOLUTION: In this self-luminescent panel 10, a self-luminescent element 15 formed by holding at least one or more light emitting functional layers between a pair of electrodes 12, 14 is formed on a substrate 11, a sealing member 16 to isolate the self-luminescent element 15 from the outside air, and the sealing member 16 is pasted to the substrate 11 with an adhesive layer 18 to form a sealed space M covering the self-luminescent element 15. The internal pressure P of the sealed space M in which the self-luminescent element 15 is sealed by the sealing member 16 at t°C satisfies a formula (1). In the formula, P
      max is the maximum outside atmospheric pressure assumed in a use environment, P
      min is the minimum outside atmospheric pressure assumed in the use environment, P
      d is cohesion breaking atmospheric pressure at the maximum preservation temperature, t
      max is the maximum preservation temperature, t
      min : the minimum preservation temperature.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 解决的问题:提供即使环境温度变化也不会引起功能劣化的自发光面板及其制造方法。 解决方案:在该自发光面板10中,通过在一对电极12,14之间保持至少一个或多个发光功能层而形成的自发光元件15形成在基板11上,密封部件16 将自发光元件15与外部空气隔离,并且利用粘合剂层18将密封构件16粘贴到基板11上,以形成覆盖自发光元件15的密封空间M.密封的内部压力P 其中自发光元件15在t℃下被密封构件16密封的空间M满足公式(1)。 在公式中,P max 是使用环境中假设的最大外部大气压,P min 是使用环境中假定的最小外部大气压,P d 是在最大保存温度下的内聚力破坏大气压力,t max 是最高保存温度,t min :最低保存温度。 版权所有(C)2006,JPO&NCIPI
    • 4. 发明专利
    • Aging method of spontaneous light emitting display device, and electronic equipment equipped with that spontaneous light emitting display device
    • 自发光发光显示装置的老化方法和配备有自发光发光显示装置的电子设备
    • JP2006164814A
    • 2006-06-22
    • JP2004356251
    • 2004-12-09
    • Tohoku Pioneer Corp東北パイオニア株式会社
    • TAKAHASHI MASAKI
    • H05B33/10H01L51/50
    • PROBLEM TO BE SOLVED: To provide an aging method of a spontaneous light emitting display device and an electronic equipment equipped with that spontaneous light emitting display device wherein generation of faults of light emission brightness due to reduction of a forward voltage (VF) at lighting initial stage can be suppressed in the spontaneous light emitting element in which a constant voltage drive is carried out.
      SOLUTION: In the Fig. 4, this is the aging method of the spontaneous light emitting display device 100 having the light emitting display panel 40 in which the spontaneous light emitting element E1 has been formed in respective intersection points of a plurality of scanning select lines and a plurality of data lines wherein the constant voltage drive is carried out, a period including a cumulative lighting period of turning from reduction of the forward voltage into elevation at the beginning of lighting of the spontaneous light emitting element is set as an aging time, and during the aging time, the spontaneous light emitting display device 100 is aging driven.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:为了提供自发发光显示装置的老化方法和配备有自发发光显示装置的电子设备,其中由于正向电压(VF)的降低而产生发光亮度的故障, 在进行恒压驱动的自发发光元件中,能够抑制发光初期的发光。

      解决方案: 如图4所示,这是具有发光显示面板40的自发发光显示装置100的老化方法,其中在多条扫描选择线和多条数据线的各个交点形成有自发发光元件E1 其特征在于,进行所述恒定电压驱动,将包括从所述自发发光元件的点亮开始时的正向电压的降低到升降的累加点亮周期的周期设定为老化时间,并且在老化时间期间, 自发光发光显示装置100是老化驱动的。 版权所有(C)2006,JPO&NCIPI

    • 5. 发明专利
    • Organic el device and manufacturing method therefor
    • 有机EL器件及其制造方法
    • JP2012216466A
    • 2012-11-08
    • JP2011081921
    • 2011-04-01
    • Denso CorpTohoku Pioneer Corp東北パイオニア株式会社株式会社デンソー
    • SATO KOJISAKAI KENICHITANAKA SHINSUKESAITO YUJIKAGAMI TOMOYATAKAHASHI MASAKI
    • H05B33/04H05B33/02H05B33/10H05B33/22
    • PROBLEM TO BE SOLVED: To ensure the adhesive thickness by measuring the adhesive thickness optically without performing destructive inspection, in an organic EL device where a sealing can for sealing an organic EL element is bonded to a substrate on which the organic EL element is formed.SOLUTION: In a region of one surface 11 of a substrate 10 where an adhesive 40 is arranged, a light transmission film 60 consisting of a light transmitting film is interposed between the adhesive 40 and the substrate 10. When the refractive index difference between the light transmission film 60 and the adhesive 40, and the refractive index difference between the light transmission film 60 and the substrate 10 are set larger than the refractive index difference between the adhesive 40 and the substrate 10, thickness of the adhesive 40 can be measured at the position of the light transmission film 60 by irradiation of light from the other surface 12 side of the substrate 10.
    • 要解决的问题:为了通过在不进行破坏性检查的情况下光学测量粘合剂厚度来确保粘合剂厚度,在有机EL元件中密封有机EL元件的密封可以与有机EL元件 形成了。 解决方案:在布置有粘合剂40的基板10的一个表面11的区域中,由粘合剂40和基板10之间插入由透光膜构成的透光膜60.当折射率差 在透光膜60和粘合剂40之间以及透光膜60和基板10之间的折射率差设定为大于粘合剂40与基板10之间的折射率差,粘合剂40的厚度可以 通过从基板10的另一表面12侧的光的照射在透光膜60的位置处测量。(C)2013,JPO和INPIT
    • 8. 发明专利
    • Film-forming source, film-forming method, hot plate, and method for manufacturing organic el element
    • 成膜原料,成膜方法,热板和制造有机EL元件的方法
    • JP2006002218A
    • 2006-01-05
    • JP2004180231
    • 2004-06-17
    • Tohoku Pioneer Corp東北パイオニア株式会社
    • TAKAHASHI MASAKITAN HIROKI
    • C23C14/24H01L51/50H05B33/10
    • PROBLEM TO BE SOLVED: To provide a film-forming source which effectively uses a film-forming material, and makes a formed film acquire adequate quality.
      SOLUTION: The film-forming source 102 comprises a crucible 122 which is a section for accommodating a film-forming material 121 therein; and a hot plate 123 which is a heating body and is mounted on the surface of the accommodated film-forming material 121. The hot plate 123 has a plurality of open holes 125 formed in a predetermined pattern; and a heater 126 installed in a region having no open hole 125 on the hot plate 123. When forming the film, the hot plate 123 is heated by the heater 126, then heats the surface of the film-forming material 121 in the crucible 122, and evaporates the film-forming material 121 in the surface, which forms a vapor deposition film.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种有效地使用成膜材料的成膜源,并使成膜获得足够的质量。 解决方案:成膜源102包括坩埚122,坩埚122是用于在其中容纳成膜材料121的部分; 以及作为加热体并安装在容纳膜形成材料121的表面上的加热板123.热板123具有以预定图案形成的多个开孔125。 以及加热器126,其安装在热板123上没有开孔125的区域中。当形成薄膜时,热板123被加热器126加热,然后加热坩埚122中的成膜材料121的表面 并蒸发形成气相沉积膜的表面中的成膜材料121。 版权所有(C)2006,JPO&NCIPI