Abstract
Purpose
In the literature, while designing broadband matching networks, transducer power gain (TPG) is used to measure the transferred power. Generally, in TPG expressions, load and back-end impedances of the matching network are used. This study aims to derive a new quality factor-based TPG expression.
Design/methodology/approach
In deriving the new expression, narrowband L type-matching network design approach is used and the new expression in terms of back-end quality factor, load quality factor and output port quality factor is obtained. Then, a broadband-matching network design approach using the derived TPG expression is proposed.
Findings
Two broadband double-matching networks are designed by using the proposed design approach using the derived TPG expression. Performances of the designed-matching networks are compared with the performances of the matching networks designed by means of simplified real frequency technique which is a well-known technique in the literature, and it is shown that they are nearly the same.
Originality/value
In broadband-matching problems, generally an impedance-based TPG expression is used, and it must be satisfied by the designed broadband-matching networks. But, in the literature, there is no quality factor-based TPG expression that can be used in broadband-matching problems. So, this gap in the literature has been filled by this paper.
Subject
Applied Mathematics,Electrical and Electronic Engineering,Computational Theory and Mathematics,Computer Science Applications
Reference21 articles.
1. Design of lossless two-port with mixed, lumped and distributed elements for broadband matching,1994
2. AWR (2023), AWR Microwave Office Software, available at: www.cadence.com/en_US/home/tools/system-analysis/rf-microwave-design/awr-microwave-office.html (accessed 27 March 2023).
3. A new approach to gain-bandwidth problems;IEEE Transactions on Circuits and Systems,1977