Title :
Analysis of the equal-delay transformer with non-commensurate constituent transmission lines
Author :
McLean, S. ; Foltz, H. ; Sutton, R.
Author_Institution :
TDK R&D Corp., Cedar Park, TX, USA
Abstract :
The effect of non-commensurate constituent transmission lines on the performance of the equal-delay topology for transformers and balancing networks is quantified. It is shown that when the load behaves as an isolated 2-terminal impedance or when the sum port connection is open-circuited to provide current balun operation, even a small difference in electrical lengths causes a complete nulling of the balanced output voltage and a concomitant open-circuit in the input impedance when the average electrical length of the lines is an odd integer multiple of 90°. This result is significant as it constitutes a major frequency limitation in the so-called Guanella topology. The special case of one of the transmission lines having zero length is then shown to be equivalent to the so-called bootstrap or Ruthroff topology, with the transmission null still occurring when the average electrical length of the lines is 90°.
Keywords :
baluns; delays; network topology; pulse transformers; transmission lines; Guanella topology; Ruthroff topology; balancing networks; bootstrap topology; current balun operation; equal-delay transformer; isolated 2-terminal impedance; noncommensurate constituent transmission lines; pulse transformer; Broadband antennas; Circuit topology; Electromagnetic analysis; Frequency; Impedance matching; Network topology; Pulse transformers; Transmission line antennas; Transmission line matrix methods; Transmission lines;
Conference_Titel :
Electromagnetic Compatibility (APEMC), 2010 Asia-Pacific Symposium on
Conference_Location :
Beijing
Print_ISBN :
978-1-4244-5621-5
DOI :
10.1109/APEMC.2010.5475498