A compact 3.3–3.5 GHz filter based on modified composite right-/left-handed resonator units

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Abstract

In the RF (Radio Frequency) front-end of a communication system, bandpass filters (BPFs) are used to send passband signals and reject stopband signals. Substrate-integrated waveguides (SIW) are widely used in RF filter designs due to their low loss and low cost and the flexibility of their integration properties. However, SIW filters under 6 GHz are still too large to meet the requirement of portable communication devices due to their long wavelength. In this paper, a very compact fully integrated SIW filter is proposed and designed with RT6010 dielectric material to meet the small size requirement of portable devices for next-generation sub-6 G applications. The proposed filter contains two sawtooth-shaped composite right-/left-handed (CRLH) resonator units, instead of traditional rectangular-shaped CRLH resonator units, which makes the filter more compact and cost effective. The filter is designed and fabricated on an RT6010 substrate, with a size of only 10 mm × 7.4 mm. The measurement results illustrated that the proposed BPF shows a passband covering the frequency range of 3.25–3.45 GHz; the minimum passband insertion loss is only 2.4 dB; the stopband rejection is better than-20 dB throughout the frequencies below 3.0 GHz and above 3.8 GHz; S11 is as low as-37 dB at 3.35 GHz; and the group delay variation is only 1.4 ns throughout the operation bandwidth.

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APA

Hu, S., Hu, Y., Zheng, H., Zhu, W., Gao, Y., & Zhang, X. (2020). A compact 3.3–3.5 GHz filter based on modified composite right-/left-handed resonator units. Electronics (Switzerland), 9(1). https://doi.org/10.3390/electronics9010001

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