A compact circular slotted radiator for ISM and wireless bands.

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Bibliographic Details
Title: A compact circular slotted radiator for ISM and wireless bands.
Authors: Vasu, Abhilash S.1 (AUTHOR) abhilashsvasu@gmail.com, Lakshmi, N. R.2 (AUTHOR) lakshminr9@gmail.com, Sreeja, T. K.2 (AUTHOR) sreejaeng07@gmail.com
Source: Russian Physics Journal. May2025, Vol. 68 Issue 5, p784-790. 7p.
Subjects: Coplanar waveguides, Radio frequency, Wireless channels, Reflectance
Abstract: A compact coplanar waveguide radiator is formed by two ground plane and a slotted central signal strip. The radiating patch is printed on FR4 substrate 1 mm thick. The circular slot on the central strip improves the bandwidth and decreases the return loss. The measured results show that it covers 4.25–7.95 GHz bandwidth with −24.80 dB return loss at a resonance frequency of 6.00 GHz. The fabricated radiator produces nominal value of co-pol at the resonance frequency. The Z-parameter of the proposed radiator is correlated with 50 Ω matching condition. The magnitude of voltage standing wave ratio at 6.00 GHz tends to unity, which implies that the reflected signal is zero and leads to a perfect matching radiator. The measured average gain and radiation efficiency are 2.44 dBi and 94.50%, respectively. The fabricated radiator covers 5.20/5.80 GHz wireless local area network (WLAN), 5.50 GHz worldwide interoperability for microwave access (WiMAX), 5.80 GHz industrial, scientific, and medical (ISM) band, 5G sub 6 GHz band, and 5 GHz wireless fidelity (WiFi) bands. [ABSTRACT FROM AUTHOR]
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Database: Engineering Source
Description
Abstract:A compact coplanar waveguide radiator is formed by two ground plane and a slotted central signal strip. The radiating patch is printed on FR4 substrate 1 mm thick. The circular slot on the central strip improves the bandwidth and decreases the return loss. The measured results show that it covers 4.25–7.95 GHz bandwidth with −24.80 dB return loss at a resonance frequency of 6.00 GHz. The fabricated radiator produces nominal value of co-pol at the resonance frequency. The Z-parameter of the proposed radiator is correlated with 50 Ω matching condition. The magnitude of voltage standing wave ratio at 6.00 GHz tends to unity, which implies that the reflected signal is zero and leads to a perfect matching radiator. The measured average gain and radiation efficiency are 2.44 dBi and 94.50%, respectively. The fabricated radiator covers 5.20/5.80 GHz wireless local area network (WLAN), 5.50 GHz worldwide interoperability for microwave access (WiMAX), 5.80 GHz industrial, scientific, and medical (ISM) band, 5G sub 6 GHz band, and 5 GHz wireless fidelity (WiFi) bands. [ABSTRACT FROM AUTHOR]
ISSN:10648887
DOI:10.1007/s11182-025-03494-0