Geräteschrank mit verbesserter Platznutzung

    公开(公告)号:DE112009003660T5

    公开(公告)日:2012-08-02

    申请号:DE112009003660

    申请日:2009-11-12

    Applicant: CORNING INC

    Abstract: Ein Geräteschrank (2), umfassend eine Vorderwand (4), eine Seitenwand (6, 8), sowie ein Geräterack (20), mit einer Breite (28) und einer Stirnebene (32). Die Vorderwand umfasst eine vordere Öffnung (16) mit einer Breite (18). Die Breite des Racks ist ungefähr gleich wie die Breite der vorderen Öffnung oder breiter als diese. Ein Zwischenraum (14) ist zwischen dem Rack und der Seitenwand sowie zwischen dem Rack und der vorderen Wand angeordnet. Ein Befestigungswinkel (40) umfasst eine Platte (42) und einen Vorsprung (44), wobei die Platte an das Rack, die vordere Wand, oder die Seitenwand gekoppelt ist. Der Vorsprung ist in dem Zwischenraum angeordnet und umfasst eine im Wesentlichen plane Oberfläche (45), die weder parallel zur Stirnebene Ist, noch in derselben Ebene wie diese liegt. Ein Patchpanel (50), ein Adaptermodul (54), RFID-Komponenten (60), oder ein RFID-Leser und/oder Leseantenne (64) können an den Vorsprung gekoppelt werden.

    EXCESS RADIO-FREQUENCY (RF) POWER STORAGE AND POWER SHARING RF IDENTIFICATION (RFID) TAGS, AND RELATED CONNECTION SYSTEMS AND METHODS
    3.
    发明申请
    EXCESS RADIO-FREQUENCY (RF) POWER STORAGE AND POWER SHARING RF IDENTIFICATION (RFID) TAGS, AND RELATED CONNECTION SYSTEMS AND METHODS 审中-公开
    超高频射频(RF)电力存储和功率共享RF识别(RFID)标签以及相关连接系统和方法

    公开(公告)号:WO2014058784A3

    公开(公告)日:2014-07-17

    申请号:PCT/US2013063694

    申请日:2013-10-07

    Applicant: CORNING INC

    CPC classification number: G06K19/0715 G06K19/0704 G06K19/0705 G06K19/07749

    Abstract: Excess radio-frequency (RF) power storage and power sharing RF Identification (RFID) tags, and related RFID tag connection systems and methods are disclosed. The excess RF power storage and power sharing RFID tags and related RFID tag connection systems and methods in embodiments disclosed herein allow connected RFID tags to store excess energy derived from excess received RF power in a shared energy storage device. In this manner, an individual RFID tag or a group of connected RFID tags in the RFID tag connection system can continue operation during temporary times when sufficient RF power is not being received from a RFID reader. Sharing stored energy derived from excess received RF power in a shared energy storage device among connected RFID tags in a RFID tag connection system can significantly mitigate problems of RF power interruption.

    Abstract translation: 公开了过量的射频(RF)功率存储和功率共享RF识别(RFID)标签以及相关的RFID标签连接系统和方法。 本文公开的实施例中的多余的RF功率存储和功率共享RFID标签和相关的RFID标签连接系统和方法允许连接的RFID标签在共享的能量存储装置中存储从过量接收的RF功率导出的多余能量。 以这种方式,当没有从RFID阅读器接收到足够的RF功率时,RFID标签连接系统中的单独的RFID标签或一组连接的RFID标签可以在临时时间继续操作。 在RFID标签连接系统中共享的能量存储设备中共享从过量接收到的RF功率导出的存储能量可以显着地减轻RF功率中断的问题。

    EXCESS RADIO-FREQUENCY (RF) POWER STORAGE AND POWER SHARING RF IDENTIFICATION (RFID) TAGS, AND RELATED CONNECTION SYSTEMS AND METHODS
    4.
    发明申请
    EXCESS RADIO-FREQUENCY (RF) POWER STORAGE AND POWER SHARING RF IDENTIFICATION (RFID) TAGS, AND RELATED CONNECTION SYSTEMS AND METHODS 审中-公开
    无线射频(RF)功率存储和功率共享射频识别(RFID)标签及相关连接系统和方法

    公开(公告)号:WO2014058784A2

    公开(公告)日:2014-04-17

    申请号:PCT/US2013063694

    申请日:2013-10-07

    Applicant: CORNING INC

    CPC classification number: G06K19/0715 G06K19/0704 G06K19/0705 G06K19/07749

    Abstract: Excess radio-frequency (RF) power storage and power sharing RF Identification (RFID) tags, and related RFID tag connection systems and methods are disclosed. The excess RF power storage and power sharing RFID tags and related RFID tag connection systems and methods in embodiments disclosed herein allow connected RFID tags to store excess energy derived from excess received RF power in a shared energy storage device. In this manner, an individual RFID tag or a group of connected RFID tags in the RFID tag connection system can continue operation during temporary times when sufficient RF power is not being received from a RFID reader. Sharing stored energy derived from excess received RF power in a shared energy storage device among connected RFID tags in a RFID tag connection system can significantly mitigate problems of RF power interruption.

    Abstract translation: 公开了过量射频(RF)电力存储和功率共享RF标识(RFID)标签和相关RFID标签连接系统和方法。 在本文公开的实施例中的多余的RF功率存储和功率共享RFID标签和相关的RFID标签连接系统和方法允许连接的RFID标签将从多余的接收的RF功率获得的多余的能量存储在共享的能量存储装置中。 以这种方式,RFID标签连接系统中的单个RFID标签或一组连接的RFID标签可以在没有从RFID读取器接收到足够的RF功率的临时时间内继续操作。 在RFID标签连接系统中的连接的RFID标签之间共享能量存储装置中从多余的RF功率获得的存储能量可以显着地减轻RF功率中断的问题。

    REFLECTIVE OPTICAL ELEMENT WITH HIGH STIFFNESS SUBSTRATE

    公开(公告)号:CA3018211A1

    公开(公告)日:2017-09-21

    申请号:CA3018211

    申请日:2017-03-16

    Applicant: CORNING INC

    Abstract: A high stiffness substrate for optical elements is described. The substrate includes a graphite finishing layer and a non-oxide ceramic base substrate. The non-oxide ceramic base substrate is preferably a carbide, such as boron carbide or silicon carbide. The graphite finishing layer may include a surface with low finish. Low finish may be achieved by diamond turning the graphite surface. The graphite finishing layer may be joined to the non-oxide base ceramic with a solder. A supplemental finishing layer may be formed on the graphite finishing layer. A reflective stack may be formed on the graphite or supplemental finishing layer. Methods for making the substrate are also described.

    DEVICES AND METHODS FOR HONEYCOMB CONTINUOUS FLOW REACTORS

    公开(公告)号:CA2711051A1

    公开(公告)日:2009-07-16

    申请号:CA2711051

    申请日:2008-12-30

    Applicant: CORNING INC

    Abstract: Disclosed is a reactor for reacting fluids such as fluids in continuous flow, the reactor including a multicellular extruded body having cells extending in parallel in a direction from a first end of the body to a second end, the body having a first plurality of cells open at both ends of the body and a second plurality of said cells closed at one or both ends of the body, the second plurality being contiguous cells and cooperating to define at least in part a fluidic passage extending at least partly through the body. The fluidic passage desirably has a serpentine path back and forth along cells of the second plurality of cells, and the passage connects laterally from cell to cell, within cells of the second plurality, at or near the ends of the body.

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