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    • 91. 发明授权
    • Interwoven wire mesh microcavity plasma arrays
    • 交织丝网微腔等离子体阵列
    • US08362699B2
    • 2013-01-29
    • US12682973
    • 2008-10-27
    • J. Gary EdenSung-Jin ParkAndrew J. PriceJason D. ReadleClark J. Wagner
    • J. Gary EdenSung-Jin ParkAndrew J. PriceJason D. ReadleClark J. Wagner
    • H01J17/49H01J9/00
    • H01J17/49H01J61/06H01J61/305H01J61/52H01J61/82
    • Embodiments of the invention provide for large arrays of microcavity plasma devices that can be made inexpensively, and can produce large area but thin displays or lighting sources Interwoven metal wire mesh, such as interwoven Al mesh, consists of two sets of wires which are interwoven in such a way that the two wire sets cross each other, typically at πght angles (90 degrees) although other patterns are also available Fabrication is accomplished with a simple and inexpensive wet chemical etching process The wires in each set are spaced from one another such that the finished mesh forms an array of openings that can be, for example, square, rectangular or diamond-shaped The size of the openings or microcavities is a function of the diameter of the wires in the mesh and the spacing between the wires in the mesh used to form the array of microcavity plasma devices.
    • 本发明的实施例提供了可以廉价制造并且可以生产大面积但薄的显示器或照明源的微腔等离子体装置的大阵列。交织的金属丝网如交织的Al网由两组电线组成, 尽管其他图案也是可用的,这两种线组彼此交叉的方式,通常是直角(90度)通过简单和便宜的湿式化学蚀刻工艺完成。每组中的导线彼此间隔开,使得 完成的网格形成可以是例如正方形,矩形或菱形的开口阵列。开口或微腔的尺寸是网中线的直径和网中线之间的间距的函数 用于形成微腔等离子体装置阵列。
    • 92. 发明授权
    • Method for managing one or more media types supported in a PoC session in a withdrawal message, and a PoC system and a PoC user equipment for implementing the same
    • 用于管理在提取消息中的PoC会话中支持的一种或多种媒体类型的方法,以及用于实现该PoC系统的PoC系统和PoC用户设备
    • US08233929B2
    • 2012-07-31
    • US12098735
    • 2008-04-07
    • Ji-Hye LeeSung-Jin ParkWuk KimEun-O Lee
    • Ji-Hye LeeSung-Jin ParkWuk KimEun-O Lee
    • H04W4/10
    • H04L65/1089H04L65/4061H04W4/10H04W76/45
    • A PoC system, method, user equipment and server used for managing one or more media types supported in a PoC session opened between a PoC server and one or more PoC clients is provided. When at least one PoC client is engaged in a Open Mobile Alliance (OMA) Push-to-talk (PPT) over Cellular (PoC) multimedia communication service and is to be withdraw from a PoC session in which the PoC client is participating, a PoC server identifies and stores information about one or more media types that were negotiated to be usable between the corresponding PoC client and the PoC server when the corresponding PoC client joined the PoC session. Next, when the number of PoC clients using the identified one or more media types among remaining PoC clients participating in the PoC session is one or less, the PoC server determines that the identified one or more media types is no longer needed for the corresponding PoC session, and corrects the PoC session so as to not use the identified one or more media types. Accordingly, when the one or more media types will not be received by any PoC client in the PoC session the use of the one or more media types in the PoC session is discontinued, so that it is possible to prevent a transmission error of the corresponding one or more media types and to save resources allocated to the corresponding one or more media types.
    • 提供了一种用于管理在PoC服务器和一个或多个PoC客户端之间打开的PoC会话中支持的一种或多种媒体类型的PoC系统,方法,用户设备和服务器。 当至少一个PoC客户端从事通过蜂窝(PoC)多媒体通信服务的开放移动联盟(OMA)即按即说(PPT))并且要从PoC客户端参与的PoC会话中撤出时, 当对应的PoC客户端加入PoC会话时,PoC服务器识别并存储关于一个或多个被协商在相应的PoC客户端和PoC服务器之间可用的媒体类型的信息。 接下来,当在参与PoC会话的剩余PoC客户端中使用所识别的一种或多种媒体类型的PoC客户端的数量是一个或更少时,PoC服务器确定所对应的PoC不再需要所标识的一个或多个媒体类型 会话,并更正PoC会话,以便不使用所标识的一种或多种媒体类型。 因此,当PoC会话中的任何PoC客户端不接收到一种或多种媒体类型时,停止在PoC会话中使用一种或多种媒体类型,从而可以防止相应的PoC会话的传输错误 一种或多种媒体类型,并且保存分配给相应的一种或多种媒体类型的资源。
    • 93. 发明申请
    • METHOD AND DEVICE FOR AUTHENTICATING PERSONAL NETWORK ENTITY
    • 用于认证个人网络实体的方法和设备
    • US20120179906A1
    • 2012-07-12
    • US13345188
    • 2012-01-06
    • Seok-Hoon ChoiSung-Jin ParkDong-Hoon LeeJung-Ha PaikHyo-Jin Jo
    • Seok-Hoon ChoiSung-Jin ParkDong-Hoon LeeJung-Ha PaikHyo-Jin Jo
    • H04L9/32
    • H04L9/0891H04L9/3239H04L63/0876
    • A method of authenticating a Personal Network Entity (PNE) is provided. The method includes transmitting a PNE serial number (SNPNE) to a CPNS (Converged Personal Network Service) server by a Personal Network GateWay (PN GW); storing an authentication value chain of a PNE transmitted from the CPNS server and an inherent assignment key (TKPNE) that is secret information of a corresponding PNE; encrypting a selected authentication value from among the authentication value chain with the inherent assignment key of the corresponding PNE to transmit the encrypted authentication value to the corresponding PNE and storing the encrypted authentication value in the corresponding PNE; and performing an authentication procedure between the corresponding PNE and the CPNS server by using the encrypted authentication value stored in the PNE.
    • 提供了一种认证个人网络实体(PNE)的方法。 该方法包括通过个人网络网关(PN GW)向CPNS(融合式个人网络服务)服务器发送PNE序列号(SNPNE); 存储从CPNS服务器发送的PNE的认证价值链和作为相应PNE的秘密信息的固有分配密钥(TKPNE); 将认证价值链中的所选认证值与相应PNE的固有分配密钥进行加密,以将加密认证值发送到对应的PNE,并将加密认证值存储在相应的PNE中; 并通过使用存储在PNE中的加密认证值,在对应的PNE与CPNS服务器之间执行认证过程。
    • 97. 发明申请
    • ENCAPSULATED METAL MICROTIP MICROPLASMA DEVICES, ARRAYS AND FABRICATION METHODS
    • 包埋金属微孔微波器件,阵列和制造方法
    • US20120074830A1
    • 2012-03-29
    • US13188715
    • 2011-07-22
    • J. Gary EdenSung-Jin ParkJeKwon YoonBrian Chung
    • J. Gary EdenSung-Jin ParkJeKwon YoonBrian Chung
    • H05H1/24H01T21/00
    • H01T21/00B01D53/32B01D2257/104B01D2257/91B01D2258/06B01D2259/818C01B13/10C02F1/32C02F1/4608C02F1/46109C02F1/48C02F1/78C02F2001/46133C02F2001/46152C02F2303/04H05H1/2406H05H2001/2418H05H2245/121
    • An embodiment of the invention is a microtip microplasma device having a first metal microtip opposing a second metal microtip with a gap therebetween. The first and second metal microtips are encapsulated in metal oxide that electrically isolates and physically connects the first and second metal microtips. In preferred devices, the first and second metal microtips and metal oxide comprise a monolithic, unitary structure. Arrays can be flexible, can be arranged in stacks, and can be formed into cylinders, for example, for gas and liquid processing devices, air filters and other applications. A preferred method of to forming an array of microtip microplasma devices provides a metal mesh with an array of micro openings therein. Electrode areas of the metal mesh are masked leaving planned connecting metal oxide areas of the metal mesh unmasked. Planned connecting metal oxide areas are electrochemically etched to convert the planned connecting metal oxide areas to metal oxide that encapsulates opposing metal microtips therein. The mask is removed. The electrode areas are electrochemically etched to encapsulate the electrode areas in metal oxide.
    • 本发明的一个实施例是一种微尖端微型装置,其具有与第二金属微尖端相对的第一金属微尖端,其间具有间隙。 第一和第二金属微尖端被封装在金属氧化物中,其电隔离并物理地连接第一和第二金属微尖端。 在优选的装置中,第一和第二金属微尖端和金属氧化物包括整体的单一结构。 阵列可以是柔性的,可以堆叠布置,并且可以形成为气缸,例如用于气体和液体处理装置,空气过滤器等应用。 形成微尖锐微量器件阵列的优选方法提供了金属网,其中具有微孔开口阵列。 金属网的电极区域被掩蔽,留下金属网的计划连接的金属氧化物区域未被掩蔽。 计算的连接金属氧化物区域进行电化学蚀刻,以将计划的连接金属氧化物区域转换成在其中封装相对的金属微尖端的金属氧化物。 去除面具。 电化学蚀刻电极区域以将电极区域包封在金属氧化物中。
    • 98. 发明授权
    • Method for managing pre-established session, PoC system and PoC user equipment for implementing the same
    • 用于管理预先建立的会话的方法,用于实现PoC系统和PoC用户设备的方法
    • US08145250B2
    • 2012-03-27
    • US12098816
    • 2008-04-07
    • Sung-Jin ParkJi-Hye LeeWuk Kim
    • Sung-Jin ParkJi-Hye LeeWuk Kim
    • H04W4/10H04W4/08
    • H04W4/10H04L65/1006H04L65/1063H04L65/1069H04L65/403H04L65/4061H04W76/45
    • Disclosed is a method for enabling a terminating-side PoC client to open a PoC session by using a pre-established session, and to maintain the pre-established session when the terminating-side PoC client terminates the open PoC session, and a PoC system and a PoC user equipment (UE) for implementing the same. To this end, a REFER BYE message is used to terminate the PoC session while keeping the pre-established session maintained. The REFER BYE message must include information, such as pre-established session parameter information, a session ID, etc. In order to obtain the session parameter information, when the PoC session is opened by means of the pre-established session, a specified condition is determined in the terminating-side PoC client and a PoC server, and the pre-established session parameter information is stored in each PoC client and a PoC server acting as a participating PoC function according to a result of the determination. Also, the REFER BYE message is transmitted from the PoC client to the PoC server, and the PoC server receives the REFER BYE message, checks the contents of a header in the received message, and terminates the PoC session while keeping the pre-established session maintained when a specified condition is satisfied.
    • 公开了一种使终端侧PoC客户端能够通过使用预先建立的会话来打开PoC会话的方法,并且当终端侧PoC客户端终止开放的PoC会话时维持预先建立的会话,并且PoC系统 和用于实现该PoC用户设备(UE)的PoC用户设备(UE)。 为此,使用REFER BYE消息来终止PoC会话,同时保持预先建立的会话。 REFER BYE消息必须包括诸如预先建立的会话参数信息,会话ID等的信息。为了获得会话参数信息,当通过预先建立的会话来打开PoC会话时,指定条件 在终端侧PoC客户端和PoC服务器中确定,并且根据确定的结果将预先建立的会话参数信息存储在每个PoC客户端和作为参与PoC功能的PoC服务器中。 此外,REFER BYE消息从PoC客户端发送到PoC服务器,PoC服务器接收REFER BYE消息,检查接收到的消息中的报头的内容,并在保持预先建立的会话的同时终止PoC会话 在满足指定条件时维护。
    • 99. 发明申请
    • PHOSPHOR COATING FOR IRREGULAR SURFACES AND METHOD FOR CREATING PHOSPHOR COATINGS
    • 用于非正式表面的磷光涂料和创建磷酸盐涂层的方法
    • US20120025696A1
    • 2012-02-02
    • US13183255
    • 2011-07-14
    • J. Gary EdenSung-Jin ParkJeKwon YoonKwang-Soo Kim
    • J. Gary EdenSung-Jin ParkJeKwon YoonKwang-Soo Kim
    • H01J1/62B05D3/02B32B17/00B05D1/18B05D3/12B05D5/06B05D1/02
    • H01J29/20H01J9/222H01J61/44Y10T428/24421
    • Microstructured, irregular surfaces pose special challenges but coatings of the invention can uniformly coat irregular and microstructured surfaces with one or more thin layers of phosphor. Preferred embodiment coatings are used in microcavity plasma devices and the substrate is, for example, a device electrode with a patterned and microstructured dielectric surface. A method for forming a thin encapsulated phosphor coating of the invention applies a uniform paste of metal or polymer layer to the substrate. In another embodiment, a low temperature melting point metal is deposited on the substrate. Polymer particles are deposited on a metal layer, or a mixture of a phosphor particles and a solvent are deposited onto the uniform glass, metal or polymer layer. Sequential soft and hard baking with temperatures controlled to drive off the solvent will then soften or melt the lowest melting point constituents of the glass, metal or polymer layer, partially or fully embed the phosphor particles into glass, polymer, or metal layers, which partially or fully encapsulate the phosphor particles and/or serve to anchor the particles to a surface.
    • 微结构化的不规则表面构成特殊挑战,但是本发明的涂层可以用一层或多层磷光体均匀地涂覆不规则和微结构化的表面。 优选的实施方案涂层用于微腔等离子体装置,并且衬底是例如具有图案化和微结构化电介质表面的器件电极。 用于形成本发明的薄封装磷光体涂层的方法将均匀的金属或聚合物层糊料施加到基底上。 在另一个实施方案中,低温熔点金属沉积在基底上。 聚合物颗粒沉积在金属层上,或者将荧光体颗粒和溶剂的混合物沉积在均匀的玻璃,金属或聚合物层上。 随后温度控制以驱除溶剂的顺序软和硬烘烤将使玻璃,金属或聚合物层的最低熔点成分软化或熔化,部分或完全将磷光体颗粒嵌入玻璃,聚合物或金属层中,部分 或完全包封荧光体颗粒和/或用于将颗粒锚定到表面。
    • 100. 发明申请
    • METHOD FOR MAKING BURIED CIRCUMFERENTIAL ELECTRODE MICROCAVITY PLASMA DEVICE ARRAYS, AND ELECTRICAL INTERCONNECTS
    • 烧结电路微电子等离子体装置阵列和电气互连的方法
    • US20110275272A1
    • 2011-11-10
    • US13188712
    • 2011-07-22
    • J. Gary EdenSung-Jin ParkKwang-Soo Kim
    • J. Gary EdenSung-Jin ParkKwang-Soo Kim
    • H01J9/02
    • H01J11/18G09F9/313
    • In a preferred method of formation embodiment, a metal foil or film is obtained or formed with micro-holes. The foil is anodized to form metal oxide. One or more self-patterned metal electrodes are automatically formed and buried in the metal oxide created by the anodization process. The electrodes form in a closed circumference around each microcavity in a plane(s) transverse to the microcavity axis, and can be electrically isolated or connected. Preferred embodiments provide inexpensive microplasma device electrode structures and a fabrication method for realizing microplasma arrays that are lightweight and scalable to large areas. Electrodes buried in metal oxide and complex patterns of electrodes can also be formed without reference to microplasma devices—that is, for general electrical circuitry.
    • 在优选的形成实施方案中,获得或形成有微孔的金属箔或膜。 箔被阳极化以形成金属氧化物。 自动形成一个或多个自图形金属电极并将其埋在通过阳极氧化处理产生的金属氧化物中。 电极在横截于微腔轴的平面中围绕每个微腔的封闭圆周形成,并且可以电隔离或连接。 优选实施例提供廉价的微型器件电极结构和用于实现轻量级并且可扩展到大面积的微等离子体阵列的制造方法。 掩埋在金属氧化物中的电极和电极的复杂图案也可以形成,而不参考微等离子体装置,即用于一般的电路。