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    专

    基于最小项的多输入输出逻辑函数优化系统的处理方法

    PH8316652B1
    发明人
    邱建林, 高凌源, 陈建平, 顾翔, 潘阳, 陆鹏程, 卞彩峰, 杨娜, 李芬, 陈莉
    受让人
    UNIV NANTONG (UYNT-C)
    申请人
    Ader Enterprises Inc.
    申请号
    17017644
    申请日
    2023-04-10
    公开(公告)号
    PH8316652B1
    公开(公告)日
    1987-12-02
    IPC分类号
    H04N009/69
    CPC分类号
    -
    优先权号
    063687
    优先权日
    2007-06-26
    摘要

    NOVELTY - The method involves modifying first and last of original segments of a sequence by modifying symbols. A remainder is determined by performing a polynomial division on another sequence of disjoint derived segments, where each segment of the latter sequence is derived from one of the original segments. A first of the derived segments of the latter sequence is derived from the modified first of the original segments and last of the derived segments of the latter sequence is derived from the modified last of the original segments.

    USE - Method for processing a data packet located in a sequence of disjoint original segments for detecting transmission related errors in a digital data packet-based communication system.

    ADVANTAGE - The method enables efficiently detecting transmission related errors in the digital data packet-based communication system. The method enables processing the sequence of consecutive equal length segments, thus improving the efficiency of the encoder and/or decreasing the size and fabrication cost of the encoder.

    DETAILED DESCRIPTION - An INDEPENDENT CLAIM is also included for a system for processing a data packet located in a sequence of disjoint original segments.

    DESCRIPTION OF DRAWING(S) - The drawing shows a block diagram of an encoder.

    Encoder (400A)

    Segmenting unit (410)

    Masking unit (420)

    Partial remainder appending unit (425)

    Remainder processing unit (440)

    权利要求
    1. A method of manufacturing a wire, comprising: extruding a cross-linkable receptor polymer, substantially free of curing agent, about a conductive core; extruding a donor polymer, wherein the donor polymer comprises a curing agent; disposing the extruded donor polymer about the receptor polymer, thereby forming a multi-layer wire pre-product, wherein the donor polymer has a melt temperature lower than a melt temperature of the receptor polymer; and heat curing the multi-layer wire pre-product, wherein heat curing comprises: subjecting the multi-layer pre-product to a heat curing station operating at a cure temperature from about 130° C. to about 200° C.; and melting the donor polymer, such that the curing agent in the donor polymer migrates from the donor polymer to the receptor polymer; wherein the thickness of the receptor polymer to the thickness of the donor polymer is about 1:1 to about 1:5.
    2. The method of claim 1 , wherein extruding the receptor polymer comprises disposing the receptor polymer in direct contact with the conductive core.
    3. The method of claim 1 , wherein the conductive core comprises a semi-conductive material.
    4. The method of claim 1 , wherein the conductive core comprises at least one of solid or stranded copper, nickel silver, beryllium, phosphor bronze, nickel, copper-clad aluminum, copper-clad steel, aluminium and steel.
    5. The method of claim 1 , wherein the donor polymer has a melt temperature lower than a melt temperature of the receptor polymer by at least about 5° C.
    6. The method of claim 1 , wherein disposing the donor polymer about the receptor polymer comprises co-extruding the receptor polymer and the donor polymer.
    7. The method of claim 1 , wherein disposing the donor polymer about the receptor polymer comprises serially extruding the receptor polymer and the donor polymer.
    8. The method of claim 1 , wherein disposing the donor polymer about the receptor polymer comprises placing the donor polymer in direct contact with the receptor polymer.
    9. The method of claim 1 , wherein the conductive core has a cross-sectional area of at least about 1.5 mm 2 and wherein heat curing comprises subjecting the multi-layer wire pre-product to a heightened temperature for time sufficient to form a wire including insulation capable of remaining intact following at least 1500 cycles of abrasion scrapes with a needle having a diameter of about 0.45±0.01 mm.
    10. The method of claim 1 , wherein the conductive core has a cross-sectional area of not greater than 0.22 mm 2 and wherein heat curing comprises subjecting the multi-layer wire pre-product to a heightened temperature for time sufficient to form a wire including insulation capable of remaining intact following at least 150 cycles of abrasion scrapes with a needle having a diameter of about 0.45±0.01 mm.
    11. The method of claim 10 , wherein the time sufficient is at least about 20 seconds.
    12. The method of claim 1 , wherein the conductive core has a cross-sectional area of no more than about 0.22 mm 2 and wherein heat curing comprises subjecting the multi-layer wire pre-product to a heightened temperature for time sufficient to form a wire including insulation capable of remaining intact following an abrasion scrape with a 150 J garnet sandpaper having a length of about 200 mm that is exerted with an applied force of at least about 0.63 N.
    说明书
    [0001]The patent or application file contains a least one drawing executed in color. Copies of this patent or patent application publication with color drawings will be provided by the Office upon request and payment of the necessary fee. FIG. 1 is a front view of a disposable surgical gown according to the present design, particularly illustrating a gray front panel and sleeves and a white collar having a v-neck shape; FIG. 2 is a rear view of the disposable surgical gown of FIG. 1 when the disposable surgical gown is secured, particularly illustrating gray rear panels and sleeves and a white collar having a tapered end; FIG. 3 is a top view of the disposable surgical gown of FIGS. 1 and 2 ; and, FIG. 4 is a rear view of the disposable surgical gown of FIG. 1 when the disposable surgical gown is not secured, particularly illustrating that the white collar has two tapered ends. The broken lines in the figures represent unclaimed environmental subject matter illustrating the design in use and form no part of the claimed design. For example, the broken lines including the cuffs of the disposable surgical gown are included for the purpose of illustrating environmental aspects of disposable surgical gown and form no part of the claimed design.
    同族专利
    暂无同族专利