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    • 2. 发明申请
    • High speed data cable with impedance correction
    • 具有阻抗校正功能的高速数据线
    • US20120012358A1
    • 2012-01-19
    • US13064040
    • 2011-03-03
    • John Martin HoranGerald Donal MurphyDavid William Mc Gowan
    • John Martin HoranGerald Donal MurphyDavid William Mc Gowan
    • H01B11/00
    • H01B11/18H04B3/02H04L25/0272H04L25/0278H04L25/03878
    • A high speed video cable carries signals according to the High-Definition Multimedia Interface (HDMI) or DisplayPort standards, and includes a raw cable and may include a boost device. The raw cable includes coaxial lines of a characteristic cable impedance higher than the impedance implied in the standards. The correct impedance is observed at the sending end by shunt resistors mounted in the first cable connector. The resultant loss of signal may be made up with the boost device mounted in the connector at the other end of the cable in the case of a long cable. Increasing the cable impedance reduces the inherent loss of the raw cable thus permitting the use of low cost material such as tinned wires. Similar advantages are obtained regardless whether Shielded Twisted Pairs (STP) or coaxial lines are used.
    • 高速视频电缆根据高清晰度多媒体接口(HDMI)或DisplayPort标准传送信号,并包括原始电缆,并可能包含升压设备。 原始电缆包括特性电缆阻抗高于标准中所暗示的阻抗的同轴线。 在发送端通过安装在第一个电缆连接器中的分流电阻可以观察到正确的阻抗。 在长电缆的情况下,所产生的信号损失可以由安装在电缆另一端的连接器中的升压装置构成。 增加电缆阻抗减少原始电缆的固有损耗,从而允许使用低成本材料,例如镀锡线。 无论使用屏蔽双绞线(STP)还是同轴线,都可获得类似的优点。
    • 4. 发明申请
    • Low impedance boosted high speed data cable
    • 低阻抗提升高速数据线
    • US20120012387A1
    • 2012-01-19
    • US12805101
    • 2010-07-13
    • John Martin HoranGerald Donal MurphyDavid William Mc GowanJohn Anthony Keane
    • John Martin HoranGerald Donal MurphyDavid William Mc GowanJohn Anthony Keane
    • H02G15/02
    • H01B11/00H01R13/00H04B3/00H04L1/00H04L25/0272H04L25/0278H04L25/03878
    • A high speed video cable carries signals according to the High-Definition Multimedia Interface (HDMI) or DisplayPort standards, and includes a raw cable and a boost device. The raw cable includes coaxial lines of a characteristic cable impedance lower than the impedance implied in the standards. The correct impedance is observed at the sending end by series resistors mounted in the first cable connector. The resultant loss of signal is made up with the boost device mounted in the connector at the other end of the cable. Reducing the cable impedance reduces the diameter of the coaxial shields to result a thinner cable, or conversely increases the wire gauge of the conductors to avoid the higher cost and fragility of very thin coax wires, thus permitting simpler and lower cost production and assembly of the cable. Similar advantages are obtained when Shielded Twisted Pairs (STP) are used instead of coaxial lines.
    • 高速视频电缆根据高分辨率多媒体接口(HDMI)或DisplayPort标准传送信号,并包括原始电缆和升压装置。 原始电缆包括特性电缆阻抗低于标准中所暗示的阻抗的同轴线。 在发射端通过安装在第一电缆连接器中的串联电阻器观察到正确的阻抗。 所产生的信号损失由安装在电缆另一端的连接器中的升压装置构成。 降低电缆阻抗可减小同轴屏蔽的直径,从而产生较薄的电缆,或相反地增加导线的线规,以避免非常薄的同轴电缆的成本和脆性更高,从而可以更简单和更低成本地生产和组装 电缆。 使用屏蔽双绞线(STP)代替同轴线路时,可获得类似的优点。