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    • 1. 发明申请
    • GAS ENCLOSURE ASSEMBLY AND SYSTEM
    • 气体外壳组件和系统
    • WO2014084888A1
    • 2014-06-05
    • PCT/US2013/031083
    • 2013-03-13
    • KATEEVA, INC.MAUCK, JustinKO, Alexander Sou-KangVRONSKY, EliyahuALDERSON, Shandon
    • MAUCK, JustinKO, Alexander Sou-KangVRONSKY, Eliyahu
    • H01L21/00
    • H01L51/56B25J21/02F24F2011/0004
    • The present teachings relate to various embodiments of an hermetically-sealed gas enclosure assembly and system that can be readily transportable and assemblable and provide for maintaining a minimum inert gas volume and maximal access to various devices and apparatuses enclosed therein. Various embodiments of an hermetically-sealed gas enclosure assembly and system of the present teachings can have a gas enclosure assembly constructed in a fashion that minimizes the internal volume of a gas enclosure assembly, and at the same time optimizes the working space to accommodate a variety of footprints of various OLED printing systems. Various embodiments of a gas enclosure assembly so constructed additionally provide ready access to the interior of a gas enclosure assembly from the exterior during processing and readily access to the interior for maintenance, while minimizing downtime.
    • 本教导涉及密封的气体封闭组件和系统的各种实施例,其可以容易地运输和组装,并且提供保持最小的惰性气体体积和最大限度地接近其中封闭的各种装置和装置。 本发明的密封气体封闭组件和系统的各种实施例可以具有以最小化气体外壳组件的内部容积的方式构造的气体外壳组件,并且同时优化工作空间以适应各种各样的 各种OLED打印系统的脚印。 如此构造的气体外壳组件的各种实施例另外在处理期间从外部提供便利地进入气体外壳组件的内部,并且容易地进入内部进行维护,同时最小化停机时间。
    • 2. 发明申请
    • GAS ENCLOSURE ASSEMBLY AND SYSTEM
    • 气体外壳组件和系统
    • WO2013096503A1
    • 2013-06-27
    • PCT/US2012/070717
    • 2012-12-19
    • KATEEVA, INCMAUCK, JustinKO, Alexander, Sou-KangVRONSKY, EliyahuALDERSON, Shandon
    • MAUCK, JustinKO, Alexander, Sou-KangVRONSKY, EliyahuALDERSON, Shandon
    • H01J9/38
    • H01L21/6719H01L51/0029
    • The present teachings relate to various embodiments of an hermetically-sealed gas enclosure assembly and system that can be readily transportable and assemblable and provide for maintaining a minimum inert gas volume and maximal access to various devices and apparatuses enclosed therein. Various embodiments of an hermetically-sealed gas enclosure assembly and system of the present teachings can have a gas enclosure assembly constructed in a fashion that minimizes the internal volume of a gas enclosure assembly, and at the same time optimizes the working space to accommodate a variety of footprints of various OLED printing systems. Various embodiments of a gas enclosure assembly so constructed additionally provide ready access to the interior of a gas enclosure assembly from the exterior during processing and readily access to the interior for maintenance, while minimizing downtime.
    • 本教导涉及密封的气体封闭组件和系统的各种实施例,其可以容易地运输和组装,并且提供保持最小的惰性气体体积和最大限度地接近其中封闭的各种装置和装置。 本发明的密封气体封闭组件和系统的各种实施例可以具有以最小化气体外壳组件的内部容积的方式构造的气体外壳组件,并且同时优化工作空间以适应各种各样的 各种OLED打印系统的脚印。 如此构造的气体外壳组件的各种实施例另外在处理期间从外部提供便利地进入气体外壳组件的内部,并且容易地进入内部进行维护,同时最小化停机时间。