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Design of Microstrip Bandpass Filters Based on Stair-Step Patch Resonator

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Date

2019

Journal Title

Journal ISSN

Volume Title

Publisher

Taylor & Francis Ltd

Open Access Color

Green Open Access

No

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No
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Top 10%
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Abstract

In this research article, single pole bandpass filter using stair-step patch topology based on symmetrical and asymmetrical step impedance resonators has been designed for industrial, scientific and medical (ISM) band application. This filter has been modelled by Microwave Office simulator using RT/Duroid substrate constant of 10.8, the substrate thickness of 1.27 mm, loss tangent of 0.0023 and copper metallisation thickness of 0.035 mm. To enhance the stopband levels of filter response, two microstrip bandpass filters have been designed as two-pole configurations based on edge, and cross-coupled stair-step patch resonators using the same simulator tool and substrate specifications. The proposed filters have compact sizes of (0.311 x 0.233 for single pole filter, (0.578 x 0.24) for two-pole edge coupled filter and (0.566 x 0.234for two-pole cross-coupled filter designed at centre frequencies of 2.4, 2.46 and 2.41 GHz, respectively. These filters have interesting insertion loss and return loss magnitudes, narrow band frequency responses, second harmonic suppression and good stopband levels. Apart from ISM band applications, the proposed filters can be adopted in WLAN systems and Bluetooth applications for short-range devices. The experimental results for designed filters are of good consistency with the simulations.

Description

Mezaal, Dr.Yaqeen Sabah/0000-0002-9953-9975

Keywords

Microstrip Bandpass Filters, Stair-Step Patch Resonator, Filter Compactness, Narrow Band Frequency Response, Second Harmonic Frequency Blocking

Fields of Science

0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology

Citation

Mezaal, Yaqeen Sabah; Al-Zayed, Ayman S., "Design of microstrip bandpass filters based on stair-step patch resonator", International Journal of Electronics, Vol. 106, No. 3, pp. 477-490, (2019).

WoS Q

Q4

Scopus Q

Q2
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OpenCitations Citation Count
15

Source

International Journal of Electronics

Volume

106

Issue

3

Start Page

477

End Page

490
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Scopus : 28

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Mendeley Readers : 14

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