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    • 41. 发明授权
    • Electromagnetic coupling characteristic adjustment method in non-contact power supply system, power supply device, and non-contact power supply system
    • 非接触式电源系统,电源装置和非接触式电源系统中的电磁耦合特性调整方法
    • US06889905B2
    • 2005-05-10
    • US10704986
    • 2003-11-12
    • Haruhiko ShigemasaYoshihiro Nakao
    • Haruhiko ShigemasaYoshihiro Nakao
    • B42D15/10G06K17/00H02J5/00H02J17/00H04B5/02G06K19/06
    • G06K19/0701G06K19/0715H02J5/005H02J50/12
    • An electromagnetic coupling characteristic adjustment method for adjusting an electromagnetic coupling characteristic between a reader/writer device and an IC card which are used in a non-contact communication system in which a power transmission antenna coil provided in the reader/writer device and a power receiving antenna coil provided in the IC card are electromagnetically coupled so that the reader/writer device supplies power to the IC card without contact with the IC card. The power supply device includes adjustment impedance elements respectively connected in series and in parallel with the power transmission antenna coil. Impedances of these adjustment impedance elements are determined so that the semiconductor device receives greatest power when a power supply distance, which is a distance between the power transmission antenna coil and the power receiving antenna coil, has a predetermined value not less than 0. On this account, heat generation due to the difference of received power can be reduced with a simple structure.
    • 一种电磁耦合特性调整方法,用于调整读/写器装置和IC卡之间的电磁耦合特性,所述电磁耦合特性用于非接触式通信系统,其中设置在所述读/写器装置中的电力传输天线线圈和电源接收 设置在IC卡中的天线线圈电磁耦合,使得读/写器设备向IC卡供电,而不与IC卡接触。 电源装置包括分别与发电天线线圈串联并联的调节阻抗元件。 确定这些调整阻抗元件的阻抗,使得当作为发电天线线圈和受电天线线圈之间的距离的电源距离具有不小于0的预定值时,半导体器件接收最大功率。在此 考虑到由于接收功率的差异导致的发热可以用简单的结构来减少。
    • 43. 发明授权
    • Packet transferring node
    • 分组传送节点
    • US08953591B2
    • 2015-02-10
    • US13570675
    • 2012-08-09
    • Masaki YamadaMitsuru NagasakaTakayuki MuranakaYoshihiro NakaoShinichi Akahane
    • Masaki YamadaMitsuru NagasakaTakayuki MuranakaYoshihiro NakaoShinichi Akahane
    • H04L12/28H04L12/703H04L12/751H04L12/721
    • H04L45/28H04L45/02H04L45/44
    • In a conventional “distributed” integrated network node architecture, specific judgment processes cannot be executed in any routing and transferring unit. The routing and transferring unit is required to share judgment process related information with an enhanced processing unit or other routing and transferring units. Thus, when using enhanced processing units, manufacturing costs increase, while processing speed decreases when routing and transferring units cooperate. If any flow is disposed during a transfer from a packet transferring unit in a routing and transferring unit to a processing unit, the packet is disposed regardless of packet priority. In the present invention, a packet related to a specific judgment process is always transmitted to a specific routing and transferring unit from a line interface unit. If an inputted flow is over the transferring capacity, the line interface unit analyzes the packet header and determines the type, transport priority, and disposal priority of the packet.
    • 在传统的“分布式”集成网络节点架构中,不能在任何路由和传送单元中执行特定的判断过程。 路由和传送单元需要与增强处理单元或其他路由和传送单元共享判断过程相关信息。 因此,当使用增强的处理单元时,制造成本增加,而路由和传送单元协作时处理速度降低。 如果在从路由和传送单元中的分组传送单元传送到处理单元的过程中布置任何流程,则不管分组优先级如何,分组被布置。 在本发明中,与特定判断处理相关的分组总是从线路接口单元发送到特定的路由和传送单元。 如果输入的流量超过传输容量,则线路接口单元分析分组报头并确定分组的类型,传输优先级和处置优先级。
    • 46. 发明申请
    • Packet transferring node
    • 分组传送节点
    • US20080008181A1
    • 2008-01-10
    • US11710396
    • 2007-02-26
    • Masaki YamadaMitsuru NagasakaTakayuki MuranakaYoshihiro NakaoShinichi Akahane
    • Masaki YamadaMitsuru NagasakaTakayuki MuranakaYoshihiro NakaoShinichi Akahane
    • H04L12/56
    • H04L45/28H04L45/02H04L45/44
    • In the case of a “distributed” integrated network node (architecture), a specific judgment process cannot be executed in any routing and transferring unit. The routing and transferring unit has been required to share such judgment process related information with an enhanced processing unit or with other routing and transferring units. Thus the manufacturing cost has increased when using an enhanced processing unit and the processing speed has been lowered unavoidably when cooperation is required among routing and transferring units. Those have been conventional problems. Furthermore, if any flow is disposed during a transfer from a packet transferring unit provided in a routing and transferring unit to a processing unit, the packet is disposed regardless of the packet priority. This has also been another conventional problem. According to the present invention, however, it is ruled that a packet related to a specific judgment process is always transmitted to a specific routing and transferring unit from a line interface unit. And if a flow is inputted and it is over the transferring capacity between a line interface unit and a routing and transferring unit, the line interface unit analyzes the packet header and determines the type, transport priority, and disposal priority of the packet.
    • 在“分布式”集成网络节点(架构)的情况下,不能在任何路由和传送单元中执行特定的判断过程。 路由和传送单元已经被要求与增强处理单元或其他路由和传送单元共享这样的判断过程相关信息。 因此,当使用增强处理单元时,制造成本增加,并且在路由和传送单元之间需要协作时,不可避免地降低了处理速度。 那些是常规问题。 此外,如果在从设置在路由和传送单元中的分组传送单元传送到处理单元的传送期间设置任何流程,则分组被布置,而不管分组优先级如何。 这也是另一个常规问题。 然而,根据本发明,规定与特定判断处理相关的分组总是从线路接口单元发送到特定的路由和传送单元。 并且如果输入流,并且在线路接口单元和路由和传送单元之间的传输容量之上,则线路接口单元分析分组报头并确定分组的类型,传输优先级和处置优先级。