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    • 4. 发明申请
    • Method of manufacturing device having flexible substrate and device having flexible substrate manufactured using the same
    • 具有柔性基板的制造装置的方法和具有使用其制造的具有柔性基板的装置
    • US20070105252A1
    • 2007-05-10
    • US11589859
    • 2006-10-31
    • Young LeeJae LeeJeoung Noh
    • Young LeeJae LeeJeoung Noh
    • H01L21/00
    • H01L51/56H01L51/003H01L51/5253H01L2227/326H01L2251/5338
    • The present invention relates to a method of manufacturing a device having a flexible substrate and a device having a flexible substrate manufactured using the method. According to the method of manufacturing a device having a flexible substrate of the invention, glass is used as a mother substrate, a polymer layer, which is used as a substrate, is formed on the mother substrate using a chemical vapor deposition method or a vacuum evaporation method, a device is formed, and finally, the substrate where the device is formed is separated from the mother substrate, such that a large-scale device having a flexible substrate can be manufactured. Further, as a substrate forming an organic light emitting device and a sealant are formed of the same material, the device is not bent due to stress generated from the device itself after the device is manufactured.
    • 本发明涉及制造具有柔性基板的装置的方法和使用该方法制造的具有柔性基板的装置。 根据本发明的具有柔性基板的装置的制造方法,使用玻璃作为母基板,使用化学气相沉积法或真空法在母基板上形成用作基板的聚合物层 蒸发法,形成器件,最后将形成器件的衬底与母体衬底分离,从而可制造出具有柔性衬底的大型器件。 此外,由于形成有机发光器件和密封剂的基板由相同的材料形成,所以在器件制造之后,由于器件本身产生的应力,器件不会弯曲。
    • 5. 发明申请
    • Stacked Organic Light Emitting Device Having High Efficiency and High Brightness
    • 具有高效率和高亮度的堆叠有机发光器件
    • US20070221912A1
    • 2007-09-27
    • US11547669
    • 2005-04-07
    • Ji JeongYoung LeeJeoung NohYun HahmDong JeongJun Jang
    • Ji JeongYoung LeeJeoung NohYun HahmDong JeongJun Jang
    • H01L51/50
    • H01L51/5036H01L51/0072H01L51/0076H01L51/5278Y10S428/917
    • A stacked organic light emitting device that includes an anode connected to an external power source, a cathode connected to the external power source, at least two light emitting sections aligned between the anode and the cathode, including a light emitting layer, and an internal electrode aligned between the light emitting sections. The internal electrode is a single-layered internal electrode which is made from one selected from the group consisting of a metal, alloys of the metal, and metal oxides thereof, having a work function below 4.5 eV, each light emitting section includes an organic material layer containing an organic material having an electron affinity above 4 eV, and the organic material layer is formed between the light emitting layer of the light emitting section and the electrode facing the anode connected to the external power source in two electrodes which make contact with the light emitting section.
    • 一种层叠有机发光器件,其包括连接到外部电源的阳极,连接到外部电源的阴极,在阳极和阴极之间排列的至少两个发光部分,包括发光层和内部电极 在发光部之间对准。 内部电极是单层内部电极,其由选自功能低于4.5eV的金属,金属和金属氧化物的金属组成的组中的一个制成,每个发光部分包括有机材料 层含有电子亲和力高于4eV的有机材料,并且有机材料层形成在发光部分的发光层和面向与外部电源连接的阳极的电极之间的两个电极中,这两个电极与 发光部分。
    • 10. 发明授权
    • Cross-stratum optimization protocol
    • 跨层优化协议
    • US09184983B2
    • 2015-11-10
    • US13216808
    • 2011-08-24
    • Young LeeYangsong Xia
    • Young LeeYangsong Xia
    • H04J3/16G06F15/173H04L12/24H04L12/26H04L12/715H04L29/08
    • H04L41/0803H04L41/04H04L43/00H04L43/08H04L45/64H04L67/1029H04L69/32
    • An apparatus comprising an application cross-stratum optimization (CSO) gateway (ACG) coupled to an application layer that handles a plurality of servers, a network CSO gateway (NCG) coupled to a network layer that handles a plurality of network nodes and configured to communicate with the ACG using a CSO protocol (CSOP), and a CSO interface established between the ACG and the NCG that enables the exchange of a plurality of CSOP messages to allow joint application-network resource allocation, provisioning, and optimization. Also disclosed is a network apparatus implemented method comprising sending a user profile from a user plane to an application plane, sending an application profile from the application plane to a network plane via a CSO interface between an ACG and a NCG, and sending network capability information from the network plane to the application plane via the CSO interface.
    • 一种装置,包括耦合到处理多个服务器的应用层的应用跨层优化(CSO)网关(ACG),耦合到处理多个网络节点的网络层的网络CSO网关(NCG),并且被配置为 使用CSO协议(CSOP)与ACG进行通信,以及在ACG和NCG之间建立的CSO接口,其能够交换多个CSOP消息以允许联合应用 - 网络资源分配,供应和优化。 还公开了一种网络装置实现的方法,包括从用户平面向应用平面发送用户简档,经由ACG和NCG之间的CSO接口从应用平面向网络平面发送应用简档,以及发送网络能力信息 从网络平面通过CSO接口到应用平面。