Szczegóły publikacji

Opis bibliograficzny

Electronically controlled impedance tuner for 5. 8 GHz band / Piotr Wilkoń, Kamil STASZEK // IEEE Access [Dokument elektroniczny]. — Czasopismo elektroniczne ; ISSN 2169-3536. — 2025 — vol. 13, s. 90243-90248. — Wymagania systemowe: Adobe Reader. — Bibliogr. s. 90247-90248, Abstr. — Publikacja dostępna online od: 2025-05-21

Autorzy (2)

Słowa kluczowe

microstriptuned circuitsmicrowave circuitsimpedance matchingattenuatorsprogrammable circuits

Dane bibliometryczne

ID BaDAP160110
Data dodania do BaDAP2025-06-16
Tekst źródłowyURL
DOI10.1109/ACCESS.2025.3572091
Rok publikacji2025
Typ publikacjiartykuł w czasopiśmie
Otwarty dostęptak
Creative Commons
Czasopismo/seriaIEEE Access

Abstract

In this paper, a single-port impedance tuning network is proposed. The presented circuit allows for electronic programming of the reflection coefficient over a broad range, covering the entire unit circle, making the network well-suited as a reference impedance in sensing systems. The system operates exclusively by applying appropriate attenuation values through electronically programmable attenuators, rather than utilizing variable phase shifters, which are inherently narrowband and introduce high insertion losses. The tuning process consists of dividing the input signal among three separate paths with different phase shifts, applying attenuation to each path, combining the signals, and returning them to the transmitter, thereby mimicking reflection. The proposed network consists of a microwave PCB and standard electronic components, making it easily repeatable and inexpensive to fabricate. Moreover, the circuit can be easily extended for wideband operation by employing wideband directional couplers and fixed phase shifters. A detailed description of the system, including theoretical analysis and corresponding design equations, is provided. The performance of the fabricated network was verified by measuring the effective reflection coefficients for all attenuation settings at 5.8 GHz, yielding magnitude coverage from -30 dB to higher than 0 dB at any phase angle. The obtained results demonstrate an excellent tuning range and strong agreement with theoretical predictions.

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