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Open AccessJournal ArticleDOI

Continuously Tunable 0.55–1.9-GHz Bandpass Filter With a Constant Bandwidth Using Switchable Varactor-Tuned Resonators

Feng Lin, +1 more
- 01 Mar 2017 - 
- Vol. 65, Iss: 3, pp 792-803
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TLDR
In this paper, a 2-and 3-pole bandpass filters with a wide frequency tuning range (tuning ratio > 3) and a constant bandwidth using switchable varactor-tuned resonators are presented.
Abstract
This paper reports on tunable 2- and 3-pole bandpass filters with a wide frequency tuning range (tuning ratio >3) and a constant bandwidth using switchable varactor-tuned resonators. The wide center frequency tuning range is obtained using p-i-n diodes to switch in and out quarter-wavelength ( $\lambda $ /4) or half-wavelength ( $\lambda $ /2) resonators for low-band or high-band modes, without increasing the tuning capacitance range of the varactors. A combination of electric and magnetic coupling is utilized to realize a near constant absolute bandwidth across the tuning range. A switchable feed line with a fixed matching capacitance is used to realize the external coupling. Two filters are designed and fabricated on a Duroid substrate with $\varepsilon _{r} = 2.2$ and $h =0.787$ mm. For the 2-pole filter, the center frequency is tuned from 550 to 1900 MHz while maintaining a 3-dB bandwidth of 92 ± 6 MHz, insertion loss of 3.2~4.4 dB, and return loss of better than 15 dB. For the 3-pole filter, the center frequency is tuned from 540 to 1800 MHz while maintaining a 3-dB bandwidth of 89 ± 4 MHz, insertion loss of 4~5.4 dB, and return loss of better than 12 dB. For both filter types, the third-order intercept point and 1-dB compression point ( $P_{\mathrm {1~dB}})$ are 11 and 7 dBm, respectively. The rejection level at 200-MHz offset frequency from the passband center frequency is better than 25 and 41 dB for 2- and 3-pole filters, respectively, across the entire tuning range. To the best of our knowledge, this planar bandpass filter exhibits the widest tuning range with a near-constant bandwidth.

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Citations
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Single-Band and Switchable Dual-/Single-Band Tunable BPFs With Predefined Tuning Range, Bandwidth, and Selectivity

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Design of Tunable Multi-Pole Multi-Zero Bandpass Filters and Diplexer With High Selectivity and Isolation

TL;DR: A tunable diplexer is demonstrated using two tunable three- pole filters and exhibits high selectivity, high suppression, and high isolation over a wide tuning range due to the asymmetric high rejection level of the three-pole filters.
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A New Class of K-Band High-Q Frequency-Tunable Circular Cavity Filter

TL;DR: In this article, a new type of K-band high-Q frequency-tunable waveguide filters is proposed, which adopts a new technique for tuning the resonant frequency of each resonator.
Journal ArticleDOI

A Novel Rat-Race Coupler With Widely Tunable Frequency

TL;DR: In this article, the authors presented a novel design method of rat-race couplers with tunable frequency and derived the port equivalent impedances of a reciprocity four-port network being matched and isolated by employing the even-odd mode analyses.
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A Compact Frequency-Reconfigurable Rat-Race Coupler

TL;DR: In this paper, a compact rat-race coupler with tunable frequency is presented, which is achieved by attaching the frequency-reconfigurable matching network (MN) to each port of the four-port network.
References
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TL;DR: In this paper, a survey of spectrum sensing methodologies for cognitive radio is presented and the cooperative sensing concept and its various forms are explained.
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A varactor-tuned RF filter

TL;DR: In this paper, an electronically tunable filter at 1 GHz was presented, which has a 60% tuning range from 700 MHz to 1.33 GHz with a low insertion loss.
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Asymmetric Coupled Transmission Lines in an Inhomogeneous Medium

TL;DR: In this article, the authors derived the terminal characteristic parameters for a uniform coupled-line four-port (4P) IC for inhomogeneous systems in terms of two independent modes that propagate in two uniformly coupled propagating systems.
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Low-Loss Two-Pole Tunable Filters With Three Different Predefined Bandwidth Characteristics

TL;DR: In this paper, a planar tunable filter with three different fractional-bandwidth variations was designed and fabricated on epsivr = 2.2, 0.787 mm Duroid substrates for 850-1400 MHz applications.
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