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Coaxial 2-port resistor and its application to r.f. measurements and standards

机译:同轴2端口电阻器及其在RF中的应用测量和标准

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The cylindrical resistor mounted coaxially in a cylindrical outer conductor has already received considerable attention in the literature as a 1-port circuit element for terminating a coaxial line. Various methods have been described which minimise the reactance and the change of the resistance with frequency. In all cases, a compromise solution has to be adopted. These difficulties are overcome by employing a tractorial profile for the outer conductor of a cylindrical resistor or by using a conical resistor with a cylindrical outer conductor. In contrast, the cylindrical resistor as a coaxial 2-port circuit element has received little attention in spite of its application, in association with precision coaxial connectors, to radio-frequency measurements and standards. The theory of 1-port coaxial resistor design is reviewed and extended to the 2-port resistor. It is shown that the techniques previously employed to minimise the reactance and change of resistance with frequency for 1-port resistors no longer apply in the 2-port case. However, other techniques are possible which extend the frequency range over which the effective series susceptance is zero and the effective series conductance is substantially equal to the d.c. conductance. A preliminary analysis is carried out using lumped-circuit theory followed by a more rigorous treatment in terms of transmission-line theory. A comparison between the 1-port and 2-port parameters is made at all stages of the analysis, because the 1-port admittance is always equal to the sum of the series admittance and one shunt admittance of the 2-port's equivalent ???????? network. An outline is given of the application of 2-port resistors to the range extension of fixed immittance standards, also to checking system accuracy generally in the fields of immittance measurement and standardisation.
机译:作为用于端接同轴线的1端口电路元件,同轴安装在圆柱形外部导体中的圆柱形电阻器在文献中已经受到相当多的关注。已经描述了使电抗和电阻随频率变化最小化的各种方法。在所有情况下,都必须采用折衷解决方案。通过将牵引轮廓用于圆柱形电阻器的外部导体或通过使用具有圆柱形外部导体的锥形电阻器,可以克服这些困难。相反,尽管圆柱形电阻器作为同轴2端口电路元件,但它与精密同轴连接器一起应用于射频测量和标准,却很少受到关注。回顾了1端口同轴电阻设计的原理,并将其扩展到2端口电阻。结果表明,以前用于最小化1端口电阻器的电抗和电阻随频率变化的技术在2端口情况下不再适用。但是,可以采用其他技术来扩展有效串联电纳为零且有效串联电导基本上等于d.c的频率范围。电导。使用集总电路理论进行了初步分析,然后根据传输线理论进行了更严格的处理。在分析的所有阶段都对1端口和2端口参数进行比较,因为1端口的导纳始终等于2端口等效的串联导纳和一个分流导纳之和。 ??????网络。概述了将2端口电阻器应用于固定阻抗标准的范围扩展,还概述了通常在阻抗测量和标准化领域中检查系统精度的方法。

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