TY - JOUR
T1 - A Compact Bandpass Filter Manifold with Ultrawide Frequency and Bandwidth Tuning
AU - Nasser, Mohammed R.A.
AU - Jaiswal, Rahul Kumar
AU - Psychogiou, Dimitra
N1 - Publisher Copyright:
© 2013 IEEE.
PY - 2023
Y1 - 2023
N2 - This paper reports a comprehensive design methodology and a compact multilayer integration concept for a fully-reconfigurable bandpass filtering (BPF) manifold with simultaneous ultrawide center frequency and bandwidth (BW) tuning. The manifold is based on two RF-switched tune-all BPFs whose transfer function is shaped by three-poles and two transmission zeros (TZs) (i.e., three-pole/two-TZs). Tunability can be achieved by solely reconfiguring the resonant frequency of its constituent resonators (i.e., tuning-coupling less approach). A multi-layer PCB-based vertical integration scheme is proposed for size miniaturization leading to 43% smaller area than a conventional single layer implementation approach. For practical validation purposes, a BPF manifold was designed, built and measured. It exhibited ultrawide continuous center frequency tuning between 1.8 and 3.85 GHz (2.2:1) and continuous BW tuning between 2.5-3:1 (e.g 132-410 MHz at 2 GHz). For all of the aforementioned tuning states, the minimum passband insertion loss (IL) was measured between 2-9 dB and its IIP3 between 12.3-30 dBm.
AB - This paper reports a comprehensive design methodology and a compact multilayer integration concept for a fully-reconfigurable bandpass filtering (BPF) manifold with simultaneous ultrawide center frequency and bandwidth (BW) tuning. The manifold is based on two RF-switched tune-all BPFs whose transfer function is shaped by three-poles and two transmission zeros (TZs) (i.e., three-pole/two-TZs). Tunability can be achieved by solely reconfiguring the resonant frequency of its constituent resonators (i.e., tuning-coupling less approach). A multi-layer PCB-based vertical integration scheme is proposed for size miniaturization leading to 43% smaller area than a conventional single layer implementation approach. For practical validation purposes, a BPF manifold was designed, built and measured. It exhibited ultrawide continuous center frequency tuning between 1.8 and 3.85 GHz (2.2:1) and continuous BW tuning between 2.5-3:1 (e.g 132-410 MHz at 2 GHz). For all of the aforementioned tuning states, the minimum passband insertion loss (IL) was measured between 2-9 dB and its IIP3 between 12.3-30 dBm.
KW - Band-pass filter (BPF)
KW - multilayer
KW - reconfigurable filter
KW - tunable filter
UR - https://www.scopus.com/pages/publications/85158003846
U2 - 10.1109/ACCESS.2023.3269884
DO - 10.1109/ACCESS.2023.3269884
M3 - Article
AN - SCOPUS:85158003846
SN - 2169-3536
VL - 11
SP - 41054
EP - 41060
JO - IEEE Access
JF - IEEE Access
ER -