边缘耦合差分微带传输线是一种常见的差分走线布线技术。有四种不同类型的阻抗用于表征差分走线阻抗。这个计算器可以找到奇数和偶数传输线阻抗。建模近似可用于了解差分微带传输线的阻抗。
The edge couple differential microstrip transmission line is a common technique for routing differential traces. There are four different types of impedance used in characterizing differential trace impedances. This calculator finds both odd and even transmission line impedance. Modeling approximation can be used to understand the impedance of the differential microstrip transmission line.
边缘耦合差分微带传输线由参考同一参考平面的两条迹线构成。它们之间有介电材料。线路之间也存在一些耦合。这种耦合是差分走线的特征之一。通常,匹配差分走线长度并保持走线之间的距离一致是一种很好的做法。还要避免在这些走线之间放置过孔和其他结构。
差分阻抗 当两条线用相反极性的信号驱动时测量的阻抗。Zdiff 等于 Zodd 值的两倍
奇阻抗 仅测试一条以接地层为参考的差分走线时测量的阻抗。差分信号需要用相反极性的信号驱动。Zodd 等于 Zdiff 值的一半
Common Impedance 用相同信号驱动两条线路时测量的阻抗。Zcommon 是 Zeven 价值的一半
偶阻抗 仅测试一条以接地层为参考的差分走线时测得的阻抗。差分信号需要用相同的相同信号驱动。Zeven 是 Zcommon 价值的两倍
Differential Impedance The impedance measured between the two lines when they are driven with opposite polarity signals. Zdiff is equal to twice the value of Zodd
Odd Impedance The impedance measured when testing only one of the differential traces referenced to the ground plane. The differential signals need to be driven with opposite polarity signals. Zodd is equal to half of the value of Zdiff
Common Impedance The impedance measured between the two lines when they are driven with the same signal. Zcommon is half the value of Zeven
Even Impedance The impedance measured when testing only one of the differential traces referenced to the ground plane. The differential signals need to be driven with the same identical signal. Zeven is twice the value of Zcommon
Models have been created to approximate the characteristics of the microstrip transmission line.
The source for these formulas are found in the IPC-2141A (2004) "Design Guide for High-Speed Controlled Impedance Circuit Boards" and Wadell, Brian C. Transmission Line Design Handbook. Norwood: Artech House Inc, 1991