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    • 1. 发明申请
    • MULTISTAGE CAPACITIVE CROSSTALK COMPENSATION ARRANGEMENT
    • 多级电容式CROSSTALK补偿安排
    • US20130323973A1
    • 2013-12-05
    • US13746386
    • 2013-01-22
    • ADC GmbH
    • David Patrick MurrayBernard Harold Hammond, JR.
    • H01R13/6466
    • H01R13/6466H01R13/6461H01R13/6464H01R13/6658H01R13/6691H01R24/64H05K1/0228H05K1/162H05K2201/09236H05K2201/09672H05K2201/10189Y10S439/941Y10T29/49204Y10T29/49208Y10T29/53209
    • Methods and systems for providing crosstalk compensation in a jack are disclosed. According to one method, the crosstalk compensation is adapted to compensate for undesired crosstalk generated at a capacitive coupling located at a plug inserted within the jack. The method includes positioning a first capacitive coupling a first time delay away from the capacitive coupling of the plug, the first capacitive coupling having a greater magnitude and an opposite polarity as compared to the capacitive coupling of the plug. The method also includes positioning a second capacitive coupling at a second time delay from the first capacitive coupling, the second time delay corresponding to an average time delay that optimizes near end crosstalk. The second capacitive coupling has generally the same overall magnitude but an opposite polarity as compared to the first capacitive coupling, and includes two capacitive elements spaced at different time delays from the first capacitive coupling.
    • 公开了一种用于在千斤顶中提供串扰补偿的方法和系统。 根据一种方法,串扰补偿适于补偿位于插入插座内的插头处的电容耦合处产生的不期望的串扰。 该方法包括将第一时间延迟定位成离开插头的电容耦合的第一电容耦合,与插头的电容耦合相比,第一电容耦合具有更大的幅度和相反的极性。 该方法还包括在第一时间延迟从第一电容耦合定位第二电容耦合,第二时间延迟对应于优化近端串扰的平均时间延迟。 第二电容耦合具有与第一电容耦合相比具有相同的总体幅度但具有相反的极性,并且包括以与第一电容耦合不同的时间延迟隔开的两个电容元件。
    • 5. 发明授权
    • Electrical connector
    • 电连接器
    • US08272888B2
    • 2012-09-25
    • US12531218
    • 2008-02-29
    • Jason Allan HogueMichael Sielaff
    • Jason Allan HogueMichael Sielaff
    • H01R4/24
    • H01R4/2425H01R13/6464H01R13/6467H01R24/64H01R2107/00
    • An electrical connector for transmitting data signals between the insulated conductors of a first data cable and corresponding insulated conductors of a second data cable, including a first part having a socket shaped to at least partially receive a plug of said first data cable; a second part having a plurality of insulation displacement contact slots shaped to receive end sections of the conductors of the second data cable; and a plurality of electrically conductive contacts including resiliently compressible spring finger contacts extending into the socket for electrical connection with corresponding conductors of the first cable; insulation displacement contacts seated in corresponding insulation displacement contact slots for effecting electrical connection with corresponding conductors of the second data cable; and mid sections extending therebetween, wherein mid sections of the contacts are seated in corresponding channels.
    • 一种用于在第一数据电缆的绝缘导体与第二数据电缆的相应绝缘导体之间传输数据信号的电连接器,包括第一部件,该第一部件具有形状以至少部分地接收所述第一数据电缆的插头; 第二部分具有形成为接收第二数据电缆的导体的端部部分的多个绝缘位移接触槽; 以及多个导电触点,包括延伸到插座中的弹性可压缩弹簧指触点,用于与第一电缆的相应导体电连接; 绝缘位移触点位于相应的绝缘位移接触槽中,用于与第二数据电缆的相应导体电连接; 和在其间延伸的中间部分,其中触点的中间部分位于相应的通道中。
    • 6. 发明授权
    • Overvoltage protection magazine
    • 过电压保护杂志
    • US08226430B2
    • 2012-07-24
    • US12839963
    • 2010-07-20
    • Manfred MüllerHarald KleinHeiko Neumetzler
    • Manfred MüllerHarald KleinHeiko Neumetzler
    • H01R4/24
    • H01R4/2429H01R12/515H01R13/6666H01R2201/16
    • A connecting strip (1) for telecommunications and mid-range communications technology includes a housing (2) and at least two contact elements (11). The contact element (11) includes a first contact (12) for the connection of wires or cables and a second contact (13) for contacting a printed circuit board. The second contact (13) takes the form of a press-fit pin contact or a tuning-fork contact. The first contact (12) is aligned towards the upper side (3) of the housing (2) and the second contact (13) is aligned towards the underside (4) of the housing (2). The first contacts (12) are arranged laterally offset from the longitudinal axis (L) of the housing (2).
    • 用于电信和中距离通信技术的连接条(1)包括壳体(2)和至少两个接触元件(11)。 接触元件(11)包括用于连接电线或电缆的第一接触件(12)和用于接触印刷电路板的第二接触件(13)。 第二接触件(13)采用压配销接头或音叉接触件的形式。 第一触点(12)朝向壳体(2)的上侧(3)对准,并且第二触头(13)朝向壳体(2)的下侧(4)对准。 第一触点(12)从壳体(2)的纵向轴线(L)横向偏移设置。
    • 10. 发明申请
    • STRAIN RELIEF DEVICE
    • 应变消除装置
    • US20120002935A1
    • 2012-01-05
    • US13255746
    • 2009-12-16
    • Oliver Hartmann
    • Oliver Hartmann
    • G02B6/44
    • G02B6/4477
    • The invention relates to a strain relief device (1) for at least one glass fiber cable (45), comprising a base body (10) and at least one clamping element (30), the base body (10) having at least one through-opening (14) for leading through at least one glass fiber cable (45), which through-opening extends from a front side (V) of the base body (10) to a rear side (R) of the base body (10), a head part (13) with at least one slit (18) being arranged on the rear side (R) of the base body (10), and at least one deflecting element (20) being arranged on an outer surface of the base body (10), and the clamping body (30) being detachably connected to the base body (10).
    • 本发明涉及一种用于至少一个玻璃纤维电缆(45)的应变消除装置(1),其包括基体(10)和至少一个夹紧元件(30),所述基体(10)具有至少一个贯穿 (14),其通过至少一个玻璃纤维电缆(45),所述玻璃纤维电缆(45)从所述基体(10)的前侧(V)延伸到所述基体(10)的后侧(R) ),具有至少一个狭缝(18)的头部(13)布置在所述基体(10)的后侧(R)上,以及至少一个偏转元件(20)布置在所述基体 基体(10),并且夹紧体(30)可拆卸地连接到基体(10)。