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    • 3. 发明授权
    • Power management apparatus and method thereof and power control system
    • 电力管理装置及其方法和功率控制系统
    • US08341439B2
    • 2012-12-25
    • US12768511
    • 2010-04-27
    • Sun Wook KimDae Won KimSeong Woon Kim
    • Sun Wook KimDae Won KimSeong Woon Kim
    • G06F1/18G06F1/32
    • G06F9/5094Y02D10/22
    • A power management apparatus includes: a service request monitor block for receiving service requests by service groups to provide load information of service platforms belonging to the respective service groups; a platform information collection block for collecting a configuration information of the service platforms and collecting load information of the service platforms in a predetermined cycle; a platform power state alteration block for altering power states of the service platforms by request; and a management interface block for providing a setup interface for a load-based and a time-based power control and providing platform profile information generated based on the load information.
    • 电力管理装置包括:服务请求监视块,用于接收服务组的服务请求,以提供属于各服务组的服务平台的负载信息; 平台信息收集块,用于收集服务平台的配置信息,并以预定周期收集服务平台的负载信息; 用于通过请求改变服务平台的电源状态的平台电源状态改变块; 以及管理接口块,用于提供用于基于负载和时间的功率控制的设置接口,并提供基于负载信息生成的平台简档信息。
    • 5. 发明申请
    • PACKET PROCESSING METHOD AND TOE HARDWARE
    • 分组处理方法和TOE硬件
    • US20100162382A1
    • 2010-06-24
    • US12553799
    • 2009-09-03
    • Sun Wook KimSeong Woon KimHan Namgoong
    • Sun Wook KimSeong Woon KimHan Namgoong
    • G06F17/00G06F11/00
    • H04L63/1425H04L43/18
    • Provided is a TOE hardware which includes intrusion prevention system hardware for inspection and real-time interrupt against static/dynamic attacks over network as well as fast TCP/IP processing, and a packet processing method in the TOE hardware. When a network packet is received, it is segmented to extract a header and a payload. A pattern matching inspection is performed for the payload, and the payload passed the inspection is transferred to the host. For the header, a header inspection is performed and a TCP/IP processing is performed on the header passed the inspection. Processing on the payload is performed in parallel with processing on the header. Accordingly, the packet processing speed of the TOE hardware increases.
    • 提供了一种TOE硬件,其包括用于通过网络进行静态/动态攻击的检测和实时中断的入侵防御系统硬件以及快速TCP / IP处理以及TOE硬件中的分组处理方法。 当接收到网络分组时,将其分段以提取报头和有效载荷。 对有效载荷执行模式匹配检查,通过检查的有效载荷被传送到主机。 对于报头,执行报头检查,并在通过检查的报头上执行TCP / IP处理。 有效载荷上的处理与报头上的处理并行执行。 因此,TOE硬件的分组处理速度增加。
    • 6. 发明授权
    • Method of manufacturing lithium secondary battery
    • 锂二次电池的制造方法
    • US06599333B1
    • 2003-07-29
    • US09709710
    • 2000-11-13
    • Hee Tak KimJung Min SongSun Wook Kim
    • Hee Tak KimJung Min SongSun Wook Kim
    • H02M1004
    • H01M6/164H01M6/166H01M6/183H01M10/04H01M10/052H01M10/0565H01M10/446H01M2300/0082H01M2300/0085H01M2300/0091Y02T10/7011Y10T29/4911
    • Disclosed is a method of manufacturing a lithium secondary battery. A polymer mixture including a) polyvinylidene fluoride-based polymer and b) at least one polymer selected from the group consisting of polyacrylonitrile and polymethyl methacrylate is mixed with a solvent in which a lithium salt is dissolved. The mixing ratio of the polymer mixture and the solvent is about 1:3-10. Thus obtained first mixture is heated to obtain a polymer electrolyte composition. And this polymer electrolyte composition is coated onto a first electrode which is one of an anode and a cathode, and then dried to obtain a polymer electrolyte layer. Then, a second electrode which is a remaining one of the anode and cathode is attached onto the polymer electrolyte layer. The polymer electrolyte has a good mechanical strength and the lithium secondary battery has a stable charge/discharge characteristic.
    • 公开了一种锂二次电池的制造方法。 包含a)聚偏二氟乙烯类聚合物和b)至少一种选自聚丙烯腈和聚甲基丙烯酸甲酯的聚合物的聚合物混合物与其中溶解有锂盐的溶剂混合。 聚合物混合物和溶剂的混合比为约1:3-10。 将如此获得的第一混合物加热以获得聚合物电解质组合物。 并将该聚合物电解质组合物涂布在作为阳极和阴极之一的第一电极上,然后干燥以获得聚合物电解质层。 然后,将作为阳极和阴极中的剩余部分的第二电极附着在高分子电解质层上。 聚合物电解质具有良好的机械强度,锂二次电池具有稳定的充放电特性。
    • 7. 发明授权
    • Electric energy storage device
    • 电力储能装置
    • US06743544B2
    • 2004-06-01
    • US09840034
    • 2001-04-24
    • Sung Min KimYong Ho JungSun Wook Kim
    • Sung Min KimYong Ho JungSun Wook Kim
    • H01M222
    • H01G9/008H01G9/155H01M2/263H01M2/30H01M2/36H01M6/10H01M6/42H01M10/345Y02E60/13
    • An electric energy storage device for reducing electric resistance between the anode/cathode electrodes and their terminals is disclosed. In the electric energy storage device, an anode electrode and a cathode electrode are stacked to have offset areas with predetermined margins and an insulating film is inserted therebetween. And, the stacked electrodes between which the insulating film is inserted is rolled up so as to form an electrode body. A plate type anode terminal and a plate type cathode terminal which have the thread-like unevenness at their bottoms are connected to a top and bottom of the rolled electrode body respectively. A metal layer is formed on both contact areas of the anode and cathode electrodes by plasma or arc spray. The device enables to reduce the electric resistance between the electrodes and terminals by minimizing a current path in the electrodes, reduce the internal electric resistance effectively by increasing the contact areas between the electrodes and terminals because of a plurality of the thread-like unevenness formed at the bottoms of the terminals, and decrease the contact resistance therebetween by contacting the anode and cathode terminals with a metal layer formed on the anode and cathode electrodes by metal spray.
    • 公开了一种用于降低阳极/阴极电极及其端子之间的电阻的电能存储装置。 在蓄电装置中,阳极电极和阴极电极堆叠成具有预定边缘的偏移区域,绝缘膜插入其间。 并且,卷绕绝缘膜的堆叠电极卷起,形成电极体。 在其底部具有线状不均匀性的板型阳极端子和板状阴极端子分别连接到卷绕电极体的顶部和底部。 通过等离子体或电弧喷涂在阳极和阴极的两个接触区域上形成金属层。 该器件能够通过使电极中的电流路径最小化来减小电极和端子之间的电阻,因为通过增加电极和端子之间的接触面积而有效地降低内部电阻,因为多个在线 端子的底部,并且通过使阳极和阴极端子与通过金属喷涂在阳极和阴极上形成的金属层接触来降低它们之间的接触电阻。
    • 9. 发明授权
    • Method of preparing polymer electrolyte composition and method of manufacturing lithium secondary battery using the same
    • 制备高分子电解质组合物的方法及使用其制备锂二次电池的方法
    • US06521382B1
    • 2003-02-18
    • US09709463
    • 2000-11-13
    • Jung Min SongHee Tak KimSun Wook Kim
    • Jung Min SongHee Tak KimSun Wook Kim
    • H01M1040
    • H01M10/0565H01M10/058H01M2300/0085
    • Disclosed are a method of preparing a polymer electrolyte composition and a method of manufacturing a lithium secondary battery employing the same. A polymer mixture including a) a polymer mixture including polyvinylidene fluoride-based polymer and b) at least one polymer selected from the group consisting of polyacrylonitrile and polymethyl methacrylate are mixed with a solvent in which a lithium salt is dissolved. The mixing ratio of the polymer mixture and the solvent is 1: 3-10. Thus obtained first mixture is stirred at a room temperature for 1-48 hours. Then, thus obtained second mixture is heated at 60-250° C. for 5 minutes-6 hours while stirring to prepare a polymer electrolyte composition. This composition is coated on at least one substrate selected from a group consisting of a molded film, an anode and a cathode and then dried. The polymer electrolyte has a good mechanical strength and the lithium secondary battery has a stable charge/discharge characteristic and a high capacity.
    • 公开了一种制备聚合物电解质组合物的方法和使用该聚合物电解质组合物的锂二次电池的制造方法。 一种聚合物混合物,其包括a)包括聚偏二氟乙烯基聚合物的聚合物混合物和b)至少一种选自聚丙烯腈和聚甲基丙烯酸甲酯的聚合物与溶解有锂盐的溶剂混合。 聚合物混合物和溶剂的混合比为1:3至10:1。 将得到的第一混合物在室温下搅拌1-48小时。 然后,将所得到的第二混合物在60-250℃下加热搅拌5分钟-6小时,制备聚合物电解质组合物。 将该组合物涂布在选自模塑膜,阳极和阴极的至少一种基材上,然后干燥。 聚合物电解质具有良好的机械强度,并且锂二次电池具有稳定的充放电特性和高容量。