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    • 54. 发明申请
    • MANUFACTURING OF OPTOELECTRONIC DEVICES
    • 光电器件的制造
    • US20090178702A1
    • 2009-07-16
    • US12245735
    • 2008-10-04
    • Karl Pichler
    • Karl Pichler
    • H02N6/00H01L21/56
    • H01L31/1876H01L31/02167H01L31/0445H01L31/0475H01L31/0504H01L31/0508Y02E10/50Y02P70/521
    • A method for manufacturing optoelectronic devices is disclosed. A layered structure may be formed with a plurality of layers including a bottom electrode layer, a top electrode layer, and one or more active layers between the top and bottom electrode layers. The layered structure is divided into one or more separate device module sections by cutting through one or more of the layers of the layered structure. At least one of the layers is an unpatterned layer at the time of cutting. Each of the resulting device module sections generally includes a portion of the active layer disposed between portions of the top and bottom electrode layers. An edge of a device section may optionally be protected against undesired electrical contact between two or more of the bottom electrode, top electrode and active layer portions. Two or more device module sections may be assembled into a device and connected in series by electrically connecting the bottom electrode layer portion of one device section to the top electrode layer portion of another device module section.
    • 公开了一种制造光电器件的方法。 层状结构可以形成有包括底电极层,顶电极层和顶电极层和底电极层之间的一个或多个有源层的多个层。 通过切割分层结构的一个或多个层,分层结构被分成一个或多个单独的设备模块部分。 在切割时,至少一层是无图案层。 每个所得到的器件模块部分通常包括设置在顶部和底部电极层的部分之间的有源层的一部分。 设备部分的边缘可以可选地被保护以防止底部电极,顶部电极和有源层部分中的两个或更多个之间的不期望的电接触。 两个或多个器件模块部分可以组装成器件并且通过将一个器件部分的底部电极层部分电连接到另一个器件模块部分的顶部电极层部分而串联连接。
    • 56. 发明授权
    • Encapsulation of thin-film electronic devices
    • 薄膜电子器件的封装
    • US07365442B2
    • 2008-04-29
    • US10403565
    • 2003-03-31
    • Karl Pichler
    • Karl Pichler
    • H01L23/12H01L23/28H01L23/29H01L21/00
    • H01L51/5259H01L51/524
    • One embodiment of this invention pertains to multiple encapsulated thin-film electronic devices. These encapsulated devices include a substrate and multiple thin-film electronic devices are on this substrate. Each of the multiple thin-film electronic devices has an active area. The encapsulated devices also include an encapsulation layer that is on the substrate and this encapsulation layer has multiple holes and these multiple holes are over the active areas of the multiple thin-film electronic devices. The encapsulated devices also include multiple substantially flat encapsulation pieces that are on the encapsulation layer and these multiple substantially flat encapsulation pieces cover the multiple holes of the encapsulation layer. An absorbent material is not attached to any of the substantially flat encapsulation pieces.
    • 本发明的一个实施例涉及多个封装的薄膜电子器件。 这些封装的器件包括衬底,并且多个薄膜电子器件在该衬底上。 多个薄膜电子设备中的每一个具有有效区域。 封装的器件还包括位于衬底上的封装层,并且该封装层具有多个孔,并且这些多个孔位于多个薄膜电子器件的有源区域之上。 封装的装置还包括在封装层上的多个基本平坦的封装件,并且这些多个基本平坦的封装件覆盖封装层的多个孔。 吸收性材料未附接到任何基本平坦的封装件。
    • 57. 发明授权
    • Organic light emitting diode light source
    • 有机发光二极管光源
    • US07319440B2
    • 2008-01-15
    • US10687283
    • 2003-10-15
    • Homer AntoniadisKarl Pichler
    • Homer AntoniadisKarl Pichler
    • G09G3/12G09G3/10
    • H01L51/5203H01L27/3211H01L51/5212H01L51/5275H01L2251/5361H01L2251/558
    • A novel OLED light source and method for controlling said OLED light source panel are disclosed wherein said light source is constructed such that active areas are segmented and said segments are separately addressable. In one embodiment, the segments are a series of RGB lines or stripes and the control unit may separately drive each individual stripe or may drive all separate color lines or may drive separate lines within a given region on the panel. In another embodiment, the stripes of the panel are connected to control lines that are either current limited or have a fuse that serves to obviate a current runaway condition on the panel. In another embodiment, the output light chromaticity of the panel is controlled either by users or by light sensors.
    • 公开了一种用于控制所述OLED光源面板的新型OLED光源和方法,其中所述光源被构造成使得有源区域被分割并且所述段可分开地寻址。 在一个实施例中,段是一系列RGB线或条纹,并且控制单元可以单独地驱动每个单独的条纹,或者可以驱动所有单独的颜色线,或者可以在面板上的给定区域内驱动分开的线。 在另一个实施例中,面板的条纹连接到电流限制的控制线或具有用于消除面板上当前失控状况的保险丝。 在另一个实施例中,面板的输出光色度由用户或光传感器控制。
    • 59. 发明申请
    • MANUFACTURING OF OPTOELECTRONIC DEVICES
    • 光电器件的制造
    • US20070065962A1
    • 2007-03-22
    • US11549944
    • 2006-10-16
    • Karl Pichler
    • Karl Pichler
    • H01L21/00
    • H01L31/1876H01L31/02167H01L31/0445H01L31/0475H01L31/0504H01L31/0508Y02E10/50Y02P70/521
    • A method for manufacturing optoelectronic devices is disclosed. A layered structure may be formed with a plurality of layers including a bottom electrode layer, a top electrode layer, and one or more active layers between the top and bottom electrode layers. The layered structure is divided into one or more separate device module sections by cutting through one or more of the layers of the layered structure. At least one of the layers is an unpatterned layer at the time of cutting. Each of the resulting device module sections generally includes a portion of the active layer disposed between portions of the top and bottom electrode layers. An edge of a device section may optionally be protected against undesired electrical contact between two or more of the bottom electrode, top electrode and active layer portions. Two or more device module sections may be assembled into a device and connected in series by electrically connecting the bottom electrode layer portion of one device section to the top electrode layer portion of another device module section.
    • 公开了一种制造光电器件的方法。 层状结构可以形成有包括底电极层,顶电极层和顶电极层和底电极层之间的一个或多个有源层的多个层。 通过切割分层结构的一个或多个层,分层结构被分成一个或多个单独的设备模块部分。 在切割时,至少一层是无图案层。 每个所得到的器件模块部分通常包括设置在顶部和底部电极层的部分之间的有源层的一部分。 设备部分的边缘可以可选地被保护以防止底部电极,顶部电极和有源层部分中的两个或更多个之间的不期望的电接触。 两个或多个器件模块部分可以组装成器件并且通过将一个器件部分的底部电极层部分电连接到另一个器件模块部分的顶部电极层部分而串联连接。