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    • 1. 发明授权
    • Circuit board
    • 电路板
    • US09466891B2
    • 2016-10-11
    • US14505621
    • 2014-10-03
    • TELLABS OY
    • Antti HolmaJuha Sarapelto
    • H01R4/02H05K1/18H05K1/11H05K1/02
    • H01R4/021H05K1/0201H05K1/115H05K1/116H05K1/181H05K2201/062H05K2201/0969H05K2201/09718
    • A circuit board comprises one or more first electrical conductors (102-107) in a first portion of the thickness of the circuit board, one or more second electrical conductors (108, 109) in a second portion of the circuit board, at least one via-conductor (112) providing a galvanic current path between the first and second electrical conductors, a hole extending through the first and second portions of the circuit board, and an electrically conductive sleeve (114) lining the hole and having galvanic contacts with the second electrical conductors. The thermal resistance from the electrically conductive sleeve to the first electrical conductors is greater than the thermal resistance from the electrically conductive sleeve to the second electrical conductors so as to obtain a reliable solder joint between a part of the electrically conductive sleeve belonging to the first portion of the circuit board and an electrical conductor pin (119) located in the hole.
    • 电路板包括在电路板的厚度的第一部分中的一个或多个第一电导体(102-107),在电路板的第二部分中的一个或多个第二电导体(108,109),至少一个 通孔导体(112)在第一和第二电导体之间提供电流通路,延伸穿过电路板的第一和第二部分的孔以及衬套孔的导电套筒(114),并且具有与 第二电导体。 从导电套管到第一电导体的热阻大于从导电套筒到第二电导体的热阻,以便在属于第一部分的导电套筒的一部分之间获得可靠的焊接接头 和位于孔中的电导体销(119)。
    • 2. 发明授权
    • Equipment and a plug-in unit of the equipment
    • 设备和设备的插件单元
    • US09377500B2
    • 2016-06-28
    • US13902211
    • 2013-05-24
    • TELLABS OY
    • Antti HolmaHeikki Laamanen
    • G01R31/04H04B3/46G01R31/28
    • G01R31/045G01R31/04G01R31/2813H04B3/46
    • Equipment including at least one plug-in unit (102) and a body device (101) for receiving the plug-in unit is presented. The equipment includes a circuit (124) including a test signal generator for supplying a test signal to a measurement circuit including galvanic contacts provided by electrical connectors between the body device and a plug-in unit so that the test signal belongs at least partly to a frequency band used in data transfer between the plug-in unit and the body device. The equipment includes a monitoring circuit for generating a signal indicative of a difference between a quantity responsive to the test signal and a reference. As the test signal belongs at least partly to the frequency band used in the data transfer, the quality of the galvanic contacts between the body device and the plug-in unit can be monitored concerning the behavior on the data transfer frequency band.
    • 提供了包括用于接收插件单​​元的至少一个插入单元(102)和主体设备(101)的设备。 该设备包括一个电路(124),该电路(124)包括一个测试信号发生器,用于向测量电路提供测试信号,该测量电路包括由主体设备和插入单元之间的电连接器提供的电流触点,使得测试信号至少部分地属于 插入单元和主体设备之间的数据传输中使用的频带。 该设备包括用于产生指示响应于测试信号的量与基准之间的差异的信号的监视电路。 由于测试信号至少部分地属于数据传输中使用的频带,所以可以监视身体设备和插件单元之间的电流接触的质量,关于数据传输频带上的行为。
    • 3. 发明申请
    • ELECTRICAL DEVICE
    • 电气设备
    • US20140247618A1
    • 2014-09-04
    • US14196553
    • 2014-03-04
    • TELLABS OY
    • Antti HOLMAJari-Pekka LAIHONENPetri KOHONEN
    • F21V8/00
    • G02B6/0005F21V2200/00F21V2200/10F21V2200/13F21V2200/15F21V2200/17H05K1/0274H05K2201/09063H05K2201/09145H05K2201/10106
    • An electrical device includes a circuit board (101), a light source (104), and a light guide (105). The light guide receives light from the light source and conducts the received light to an end of the light guide so that the light crosses, in a direction parallel with the circuit board, an edge of the circuit board. The end of the light guide constitutes a display surface for showing the light to a user. On a fringe area extending from the edge of the circuit board a distance (D) towards the opposite edge of the circuit board, the light guide is between geometrical planes parallel and coinciding with surfaces of the circuit board. Hence, the light guide does not require room in directions perpendicular to the circuit board. Therefore, for example, more connectors, key buttons, and/or other instruments can be placed on a control panel of the electrical device.
    • 电气设备包括电路板(101),光源(104)和光导(105)。 光导从光源接收光,并将接收到的光传导到光导的一端,使得光在与电路板平行的方向上与电路板的边缘相交。 光导管的端部构成用于向使用者显示光的显示面。 在从电路板的边缘延伸到电路板的相对边缘的距离(D)的边缘区域处,导光体在与电路板的表面平行并重合的几何平面之间。 因此,光导不需要垂直于电路板的方向的空间。 因此,例如,可以在电气设备的控制面板上放置更多的连接器,按键按钮和/或其它器械。
    • 4. 发明申请
    • METHOD AND A CONTROLLER SYSTEM FOR CONTROLLING A SOFTWARE-DEFINED NETWORK
    • 用于控制软件定义网络的方法和控制器系统
    • US20140207923A1
    • 2014-07-24
    • US14157943
    • 2014-01-17
    • TELLABS OY
    • Hannu JOKINENVille HALLIVUORIJuha-Petteri NIEMINEN
    • H04L12/24
    • H04L41/0813
    • A method for controlling a software-defined network “SDN” includes receiving (301) information provided by one or more external sources outside the software-defined network, generating (303) configuration data for changing configuration of one or more network elements of the software-defined network on the basis of the received information in response to a situation (302) where the received information indicates an occurred or forthcoming change of one or more operating conditions of the software-defined network, and sending (304) the configuration data to the network elements so as to adapt the software-defined network to changes of the one or more operating conditions. Therefore, the configuration capabilities provided by the software-defined networking are utilized for dynamically optimizing the software-defined network with respect to changes that are not necessarily indicated by information gathered inside the software-defined network but by information provided by the external sources outside the software-defined network.
    • 一种用于控制软件定义网络“SDN”的方法包括:接收(301)由软件定义的网络之外的一个或多个外部源提供的信息,生成用于改变软件的一个或多个网络元件的配置的配置数据 响应于所接收的信息指示所述软件定义网络的一个或多个操作条件的发生或即将改变的情况(302),基于所接收的信息,将所述配置数据发送(304)到 网络元件,以便使软件定义的网络适应一个或多个操作条件的改变。 因此,由软件定义的网络提供的配置能力用于动态优化软件定义的网络,这些变化与软件定义的网络内收集的信息不一定表示的变化相关,而是由外部来源提供的信息 软件定义网络。
    • 5. 发明申请
    • METHOD AND A CONTROLLER DEVICE FOR CONFIGURING A SOFTWARE-DEFINED NETWORK
    • 用于配置软件定义网络的方法和控制器装置
    • US20140122668A1
    • 2014-05-01
    • US14061796
    • 2013-10-24
    • TELLABS OY
    • Juha-Petteri NIEMINEN
    • H04L12/24
    • H04L41/0803H04L41/0893H04L67/32
    • A method for configuring network elements of a software-defined network on the basis of relation data items and action policy rules is presented. Each relation data item expresses two entities and their relationship and each action policy rule expresses an event and an action to be carried out in response to the event. The method comprises deriving (301) implicit relations between the entities on the basis of the relation data items and generating (303) the configuration data for the network elements on the basis of the relation data items, the action policy rules, and the derived implicit relations. The derivation of the implicit relations and the utilization of the derived implicit relations for generating the configuration data facilitate providing automated operation.
    • 提出了一种基于关系数据项和动作策略规则来配置软件定义网络的网元的方法。 每个关系数据项表示两个实体及其关系,每个动作策略规则表示响应于事件而执行的事件和动作。 该方法包括基于关系数据项导出(301)实体之间的隐式关系,并根据关系数据项,动作策略规则和导出隐式生成(303)网元的配置数据 关系 隐式关系的推导和用于生成配置数据的派生隐式关系的利用有利于提供自动化操作。
    • 6. 发明申请
    • METHOD AND A SYSTEM FOR FINDING SMALLEST HOP-SPECIFIC DATA TRANSFER SPEED
    • 用于发现最小特异数据传输速度的方法和系统
    • US20140003235A1
    • 2014-01-02
    • US13928768
    • 2013-06-27
    • TELLABS OY
    • Mika SILVOLA
    • H04L12/801
    • H04L47/18H04L43/0811H04L43/0829H04L43/10H04L47/22
    • A system using the Ethernet OAM functionality for finding the smallest of hop-specific data transfer speeds related to a data transfer path from a first network element (101) to a second network element (102) is presented. The first network element is configured to transmit, to the second network element, first data including an Ethernet OAM message. Each intermediate network element (104, 105) located on the data transfer path is configured to update the first data to indicate so far smallest of the hop-specific data transfer speeds when the first data passes through the intermediate network elements. After receiving the first data, the second network element transmits, to the first network element, second data indicating the smallest of the hop-specific data transfer speeds. Thus, the first network element can be made aware of capacity changes taking place on the data transfer path.
    • 提出了一种使用以太网OAM功能来发现与从第一网络元件(101)到第二网络元件(102)的数据传输路径相关的特定于跳数的数据传输速度最小的系统。 第一网元被配置为向第二网元发送包括以太网OAM消息的第一数据。 位于数据传输路径上的每个中间网络元件(104,105)被配置为当第一数据通过中间网络元件时更新第一数据以指示最远的特定于跳数的数据传输速度。 在接收到第一数据之后,第二网络单元向第一网络单元发送指示特定于特定数据传输速度的最小值的第二数据。 因此,可以使第一网络元件知道在数据传输路径上发生的容量改变。
    • 7. 发明申请
    • EQUIPMENT PROVIDED WITH ONE OR MORE PLUG-IN UNITS
    • 设备提供一个或多个插入式单元
    • US20130293238A1
    • 2013-11-07
    • US13861437
    • 2013-04-12
    • TELLABS OY
    • Antti HOLMAHeikki LAAMANENPetri KOHONENIan LEIMAN
    • G01R31/04
    • G01R31/041G01R31/04G01R31/043G01R31/045G01R31/046H05K7/1414H05K7/1498H05K7/186
    • Equipment including at least one plug-in unit and a body device for receiving the plug-in unit is presented. The plug-in unit includes an electrically conductive structure (121, 122, 123) having at least one surface area capable of forming a capacitive coupling with a surface area of an electrically conductive part (130, 131) of the body device when the plug-in unit is inserted in the body device. The equipment further includes a monitoring circuit (124) for generating a signal indicative of electrical properties of a measurement circuit including the capacitive coupling and at least one galvanic contact provided by electrical connectors of the plug-in unit and the body device. The generated signal is also indicative of correctness of the installation of the plug-in unit. Thus, the correct installation of the plug-in unit can be electrically indicated and monitored.
    • 提出了包括至少一个插件单元和用于接收插件单​​元的主体装置的设备。 所述插入单元包括导电结构(121,122,123),所述导电结构具有至少一个表面区域,所述表面区域能够与所述主体装置的导电部件(130,131)的表面积形成电容耦合, - 单元插入身体装置。 所述设备还包括监视电路(124),用于产生指示包括电容耦合的测量电路的电特性的信号以及由插入单元和主体设备的电连接器提供的至少一个电流接触。 生成的信号也表示插件单元的安装的正确性。 因此,可以电指示和监视插件单元的正确安装。
    • 9. 发明申请
    • SYSTEM PROVIDED WITH A SOLDER JOINT
    • 系统提供一个焊接点
    • US20130264102A1
    • 2013-10-10
    • US13851544
    • 2013-03-27
    • TELLABS OY
    • Antti HOLMAJari-Pekka LAIHONEN
    • H05K1/11H05K13/04H05K1/02
    • H05K1/11H05K1/0201H05K3/3447H05K13/04H05K2201/09781H05K2201/10303H05K2201/10765H05K2201/10856H05K2203/044
    • A system provided with a solder joint includes: a circuit board (101) provided with an aperture (102), an electrical component (103) including a conductor foot (104) protruding through the aperture, and soldering metal (105) inside the aperture and in contact with the conductor foot. The system further includes a thermal conductor element (106) including a first portion outside the aperture and a second portion inside the aperture and in contact with the soldering metal. The thermal conductor element is capable of conducting heat and thereby it intensifies the heat transfer into the aperture during pre-heating which precedes the process phase when the molten soldering metal is enabled to be absorbed into the aperture. Thus the reliability of the solder joint is improved, i.e. a risk of a faulty “cold” solder is decreased.
    • 设置有焊接接头的系统包括:设置有孔(102)的电路板(101),包括突出穿过孔的导体脚(104)的电气部件(103)和孔内的焊接金属(105) 并与导体脚接触。 该系统还包括热导体元件(106),其包括孔外部的第一部分和孔内的第二部分并与焊接金属接触。 热导体元件能够传导热量,从而当熔融焊接金属能够被吸收到孔中时,其在预加热之前加热到加工阶段之前的热传递。 因此,提高了焊点的可靠性,即,存在故障“冷”焊料的风险降低。
    • 10. 发明申请
    • METHOD AND A NETWORK ELEMENT FOR CONTENT BASED ADDRESSING IN A DATA TRANSFER NETWORK
    • 在数据传输网络中基于内容寻址的方法和网络元件
    • US20130262701A1
    • 2013-10-03
    • US13783896
    • 2013-03-04
    • TELLABS OY
    • Juha-Petteri NIEMINEN
    • H04L29/12
    • H04L61/2503H04L61/103H04L67/327
    • In a content addressable network, a hash result of a data item, which is a part of or relating to an entity to be accessed via the network, constitutes (401, 402) at least a part of an L3 network layer, e.g. IP, destination address and/or a protocol layer below L3, e.g. Ethernet, destination address of a protocol data unit, e.g. a data packet, frame, or cell. The entity to be accessed can be e.g. a data file, a hierarchical data structure, or a process to be controlled via the network. There is no need to retrieve e.g. an Ethernet address, or e.g. an IP-address, on the basis of the hash result of the data item, because the hash result itself is used as the address. Hence, in the content addressable network, the step for address retrieval on the basis of the hash result becomes needless.
    • 在内容可寻址网络中,作为通过网络访问的实体的一部分或与之相关的数据项的散列结果构成(L3,402)L3网络层的至少一部分,例如, IP,目的地址和/或低于L3的协议层,例如。 以太网,协议数据单元的目的地址,例如 数据分组,帧或单元。 要访问的实体可以是例如。 数据文件,分层数据结构或通过网络控制的过程。 没有必要检索例如 以太网地址或例如 基于数据项的哈希结果的IP地址,因为哈希结果本身被用作地址。 因此,在内容可寻址网络中,基于散列结果的地址检索步骤变得不必要。