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    • 6. 发明授权
    • Transmission cable with spirally wrapped shielding
    • 传输电缆采用螺旋缠绕屏蔽
    • US07999185B2
    • 2011-08-16
    • US12468327
    • 2009-05-19
    • Moises CasesJinwoo ChoiBhyrav Murthy Mutnury
    • Moises CasesJinwoo ChoiBhyrav Murthy Mutnury
    • H01B7/00
    • H01B11/203H01B7/0823H01B11/1025H01B11/1091
    • Embodiments of the invention are directed to transmission cables, and particularly to twinax cables, for transmitting digital data and other information between components in a data processing environment. One embodiment of the invention is directed to an information transmission cable that comprises first and second signal carrying conductors of specified length, each of the signal carrying conductors being disposed to carry information signals and having a longitudinal axis. The embodiment further includes an insulating structure comprising an amount of specified dielectric insulation material, the insulating structure being positioned to surround the first and second signal carrying conductors along their respective lengths, and acting to maintain the first and second signal conductors in spaced apart parallel relationship with each other. A first drain conductor is positioned proximate to the first signal carrying conductor in spaced apart parallel relationship, and is further positioned in a first prespecified relationship with a reference line that intersects the respective longitudinal axes of the first and second signal carrying conductors, and that lies in a plane orthogonal thereto. In similar manner, a second drain conductor is positioned proximate to the second signal carrying conductor in spaced apart parallel relationship, and is further positioned in a second prespecified relationship with the reference line. Shielding material is spirally wrapped around the first and second signaling conductors, the first and second drain conductors and the insulating structure.
    • 本发明的实施例涉及用于在数据处理环境中在组件之间传送数字数据和其他信息的传输电缆,特别是双芯电缆。 本发明的一个实施例涉及一种信息传输电缆,其包括具有指定长度的第一和第二信号承载导体,每个信号承载导体设置为承载信息信号并具有纵向轴线。 该实施例还包括绝缘结构,该绝缘结构包括一定量的介电绝缘材料,该绝缘结构被定位成沿其相应的长度包围第一和第二信号承载导体,并且用于将第一和第二信号导体保持间隔开的平行关系 与彼此。 第一漏极导体以间隔开的平行关系定位成靠近第一信号承载导体,并且进一步定位成与与第一和第二信号承载导体的相应纵轴相交的参考线的第一预定关系,并且位于 在与其正交的平面内。 以类似的方式,第二漏极导体以间隔开的平行关系定位成靠近第二信号承载导体,并且还以与参考线的第二预定关系进一步定位。 屏蔽材料螺旋缠绕在第一和第二信号导体,第一和第二漏极导体和绝缘结构周围。
    • 7. 发明申请
    • SPACE SOLUTION SEARCH
    • 空间解决方案搜索
    • US20110161055A1
    • 2011-06-30
    • US12649064
    • 2009-12-29
    • Moises CasesJinwoo ChoiBhyrav M. MutnuryNavraj Singh
    • Moises CasesJinwoo ChoiBhyrav M. MutnuryNavraj Singh
    • G06F17/50G06N3/12G06G7/62
    • G06N3/126G06F17/5009G06F2217/10
    • A statistical approach can be used to efficiently supply an initial population that provides a good global description of a design space. The SI based simulation can then find a global best design within a reduced number of simulations. The statistical approach can be utilized to determine a plurality of potential best and worst case designs from a design space. The plurality of potential best and worst case designs from the design space seed or prime a SI based simulation. The best case designs are based on design parameters than can be controlled. The worst case designs are based on design parameters than cannot be controlled due. SI based simulations can then be run on the best case designs with respect to the worst case designs to determine probability of failure of the best case design.
    • 可以使用统计方法来有效地提供提供设计空间的良好全局描述的初始种群。 然后,基于SI的仿真可以在减少数量的模拟中找到全局最佳设计。 统计方法可用于从设计空间确定多个潜在的最佳和最差情况设计。 从设计空间种子的多个潜在的最佳和最坏情况的设计或基于SI的模拟。 最好的案例设计是基于设计参数而不是可控制的。 最坏的情况设计是基于设计参数而不是不能控制的。 然后可以在最坏情况设计的最佳案例设计上运行基于SI的模拟,以确定最佳案例设计的故障概率。
    • 8. 发明申请
    • Transmission Cable with Spirally Wrapped Shielding
    • 带螺旋缠绕屏蔽的传输电缆
    • US20100294557A1
    • 2010-11-25
    • US12468327
    • 2009-05-19
    • Moises CasesJinwoo ChoiBhyrav M. Mutnury
    • Moises CasesJinwoo ChoiBhyrav M. Mutnury
    • H05K9/00
    • H01B11/203H01B7/0823H01B11/1025H01B11/1091
    • Embodiments of the invention are directed to transmission cables, and particularly to twinax cables, for transmitting digital data and other information between components in a data processing environment. One embodiment of the invention is directed to an information transmission cable that comprises first and second signal carrying conductors of specified length, each of the signal carrying conductors being disposed to carry information signals and having a longitudinal axis. The embodiment further includes an insulating structure comprising an amount of specified dielectric insulation material, the insulating structure being positioned to surround the first and second signal carrying conductors along their respective lengths, and acting to maintain the first and second signal conductors in spaced apart parallel relationship with each other. A first drain conductor is positioned proximate to the first signal carrying conductor in spaced apart parallel relationship, and is further positioned in a first prespecified relationship with a reference line that intersects the respective longitudinal axes of the first and second signal carrying conductors, and that lies in a plane orthogonal thereto. In similar manner, a second drain conductor is positioned proximate to the second signal carrying conductor in spaced apart parallel relationship, and is further positioned in a second prespecified relationship with the reference line. Shielding material is spirally wrapped around the first and second signaling conductors, the first and second drain conductors and the insulating structure.
    • 本发明的实施例涉及用于在数据处理环境中在组件之间传送数字数据和其他信息的传输电缆,特别是双芯电缆。 本发明的一个实施例涉及一种信息传输电缆,其包括具有指定长度的第一和第二信号承载导体,每个信号承载导体设置为承载信息信号并具有纵向轴线。 该实施例还包括绝缘结构,该绝缘结构包括一定量的介电绝缘材料,该绝缘结构被定位成沿其相应的长度包围第一和第二信号承载导体,并且用于将第一和第二信号导体保持间隔开的平行关系 与彼此。 第一漏极导体以间隔开的平行关系定位成靠近第一信号承载导体,并且进一步定位成与与第一和第二信号承载导体的相应纵轴相交的参考线的第一预定关系,并且位于 在与其正交的平面内。 以类似的方式,第二漏极导体以间隔开的平行关系定位成靠近第二信号承载导体,并且还以与参考线的第二预定关系进一步定位。 屏蔽材料螺旋缠绕在第一和第二信号导体,第一和第二漏极导体和绝缘结构周围。
    • 9. 发明授权
    • Electromagnetic bandgap structure for isolation in mixed-signal systems
    • 电磁带隙结构用于混合信号系统中的隔离
    • US07215301B2
    • 2007-05-08
    • US10936774
    • 2004-09-08
    • Jinwoo ChoiMadhavan SwaminathanVinu Govind
    • Jinwoo ChoiMadhavan SwaminathanVinu Govind
    • H01Q15/02H01Q1/38
    • H01Q15/006
    • Electromagnetic bandgap (EBG) structures, systems incorporating EBG structures, and methods of making EBG structures, are disclosed. An embodiment of the structure, among others, includes a plurality of first elements disposed on a first plane of a device; and a second element connecting each first element to an adjacent first element, the second element being disposed on the first plane of the device. The structure is configured to substantially filter electromagnetic waves to a stopband floor of about −40 dB to about −120 dB in a bandgap of about 100 MHz to about 50 GHz having a width selected from about 1 GHz, 2 GHz, 3 GHz, 5 GHz, 10 GHz, 20 GHz, and 30 GHz. In addition, the structure has a center frequency positioned at a frequency from about 1 GHz to 37 GHz.
    • 公开了电磁带隙(EBG)结构,并入EBG结构的系统,以及制造EBG结构的方法。 该结构的实施例尤其包括设置在装置的第一平面上的多个第一元件; 以及将每个第一元件连接到相邻的第一元件的第二元件,所述第二元件设置在所述器件的第一平面上。 该结构被配置为在约100MHz至约50GHz的带隙中基本上将电磁波滤波到约-40dB至约-120dB的阻带​​层,其宽度选自约1GHz,2GHz,3GHz,5 GHz,10 GHz,20 GHz和30 GHz。 此外,该结构具有位于从约1GHz至37GHz的频率的中心频率。