Some Questions and Answers Concerning Air Lines as Impedance Standards

C. Hoer
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引用次数: 11

Abstract

This paper attempts to answer a number of questions that arise when using one or more lengths of precision coaxial transmission line to calibrate a dual 6-port automatic network analyzer, questions such as: How important is the quality of the test port relative to that of the line? What type connectors should the line standards have? What are the advantages of using two lines instead of one line and a through connection when test port imperfections are considered? How many lines are optimum from a quality control point of view? What should the lengths be? The answers to these questions appear to be: ¿ The quality of the line is much more important than that of the test port. A perfect line will calibrate out most imperfections in the test port. An example is given where 75-¿ test ports are calibrated with 50-¿ lines, and then used to measure reflection coefficient relative to 50 ¿ with very little error. ¿ Greatest accuracy is achieved with line standards having male connectors. ¿ Two lines get rid of many test port imperfections that one line cannot. Three lines will show up a problem if one line is bad. Five lines will identify which line is bad. Five is probably optimum. ¿ There may not be an optimum for the actual lengths of a set of lines, but there does appear to be an optimum difference in the lengths.
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关于航空线路作为阻抗标准的几个问题与解答
本文试图回答在使用一条或多条精密同轴传输线校准双6端口自动网络分析仪时出现的一些问题,例如:相对于线路的质量,测试端口的质量有多重要?线路标准应该有什么类型的连接器?当考虑到测试端口缺陷时,使用两条线而不是一条线和直通连接的优点是什么?从质量控制的角度来看,有多少条生产线是最佳的?长度应该是多少?这些问题的答案似乎是:线路的质量比测试端口的质量重要得多。一条完美的线将校正出测试端口中的大多数缺陷。给出了一个用50线校准75个测试端口的例子,然后用于测量相对于50的反射系数,误差很小。具有公插头的线路标准可实现最大的精度。两条线可以消除一条线无法消除的许多测试端口缺陷。如果一行有问题,三行就会显示问题。5条线将识别出哪条线是坏的。5个可能是最佳的。一组线的实际长度可能没有最佳值,但长度之间的差异似乎有最佳值。
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