CABLE TIE WITH PLUG PORTION
    2.
    发明公开
    CABLE TIE WITH PLUG PORTION 审中-公开
    KABELBINDER MIT STECKERTEIL

    公开(公告)号:EP1877688A1

    公开(公告)日:2008-01-16

    申请号:EP06758433.4

    申请日:2006-04-20

    发明人: FRANKS, John, R.

    IPC分类号: F16L3/233

    摘要: A one-piece cable tie (111) includes a locking head (113) and an attached strap (115) , the locking head (113) being adapted to receive and selectively engage a portion of the strap (115) when the tie (111) is formed into a closed loop. The cable tie (111) additionally includes a fastener (141) formed onto the locking head (113) that is designed for connection with the electrical connector (21) for an oxygen sensor (11) for an automotive emissions control system.

    摘要翻译: 一体式电缆扎带包括锁定头和附接的带,当绑带形成闭环时,锁定头适于接收和选择性地接合带的一部分。 电缆扎带还包括形成在锁定头上的紧固件,其被设计用于与用于汽车排放物控制系统的氧传感器的电连接器连接。 紧固件包括平坦的平台,其通过倒置的T形支座与锁定头的顶表面间隔开,平坦的平台的尺寸和形状被设计成可滑动地设置在形成在电连接器中的相应的狭槽内。 棘轮齿形成在平台的平坦顶表面上并且被成形为接合电连接器,以便将紧固件固定在电连接器中的狭槽内。

    CARD SHEET WITH STARCH COMPOSITIONS FORMING BREAKABLE LAYERS IN PRE-CUT SUBSTRATES
    3.
    发明公开
    CARD SHEET WITH STARCH COMPOSITIONS FORMING BREAKABLE LAYERS IN PRE-CUT SUBSTRATES 有权
    有实力的瓦楞纸板组合物在预切SUBSTRATES列车易碎LAYERS

    公开(公告)号:EP1715746A2

    公开(公告)日:2006-11-02

    申请号:EP05726315.4

    申请日:2005-01-18

    IPC分类号: A21D2/00

    摘要: A card sheet (100, 200, 300, 400, 500) including a top material layer (130) having pre-cut weakened lines (102) extending partially but not completely through the top material layer (130), the top material layer (130) having a front side and a back side; and a starch composition layer (134) applied to the back side of the top material layer (130), wherein at least a portion of the starch composition diffuses into the top material layer (130) to a depth and renders the top material layer (130) breakable along the weakened lines (102). A method of making the card sheet, including providing the top material layer (130), cutting partially through the top material layer (130); and applying a starch composition to form the starch composition layer (134) on the back side of the top material layer (130); and at least partially removing any diluent present in the starch composition. The top material layer (130) may be printable, and the card sheet may include a second top material layer (130').

    RFID DEVICE WITH POSITION INSENSITIVITY
    7.
    发明公开
    RFID DEVICE WITH POSITION INSENSITIVITY 审中-公开
    位置不敏感的RFID设备

    公开(公告)号:EP1794837A1

    公开(公告)日:2007-06-13

    申请号:EP05813933.8

    申请日:2005-09-07

    IPC分类号: H01Q1/22 H01Q9/28 H01Q5/00

    摘要: An RFID device includes an antenna structure that provides good performance throughout a range of different positions relative to nearby materials, such as metallic objects in a carton or other container. The antenna structure has compensation elements that interact with the nearby materials to provide good performance over the range of different positions. The compensation elements include both electrical compensation elements, which interact with the nearby materials primarily using electric fields, and magnetic compensation elements, which interact with the nearby materials primarily using magnetic fields. The electrical compensation elements and the magnetic compensation elements may be selected and may be positioned within the antenna structure such that the performance of the antenna structure is substantially unchanged (or at least acceptable) through the range of different positions.

    RFID DEVICE PREPARATION SYSTEM
    9.
    发明公开
    RFID DEVICE PREPARATION SYSTEM 有权
    RFID制备系统

    公开(公告)号:EP1754177A1

    公开(公告)日:2007-02-21

    申请号:EP05763301.8

    申请日:2005-06-29

    发明人: FORSTER, Ian, J.

    IPC分类号: G06K7/00

    摘要: An RFID device preparation system includes a printer combined with a short-range tester/reader. The tester/reader operatively couples to the RFID device using capacitive and/or magnetic coupling. By use of capacitive and/or magnetic coupling, good read characteristics may be obtained, while obtaining excellent discrimination between various RFID devices that may be in or near the tester/reader. Thus, RFID devices may be inexpensively and reliably tested one at a time, without appreciable interference or effect due to the presence of other RFID devices. The tester/reader may include electric-filed and/or magnetic-field coupling elements that are configured to receive different signals, in order to test a variety of configurations of RFID devices. This may enable the device preparation system to accommodate various types and configurations of RFID devices, increasing versatility of the system.