A narrow band BPF for UWB RFID reader circuit for frequency extraction
In this article, a narrow band, open circuited planar microstrip band pass filter has been proposed. Existing RFID reader circuits has to generate a constant chirp signal to read the conventional microstrip resonator type tag. Use of the VCO is well established for this application. However, in case...
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iium-586112018-01-12T07:21:14Z http://irep.iium.edu.my/58611/ A narrow band BPF for UWB RFID reader circuit for frequency extraction Hossain, A. K. M. Zakir Ibrahimy, Muhammad Ibn Motakabber, S. M. A. T Technology (General) In this article, a narrow band, open circuited planar microstrip band pass filter has been proposed. Existing RFID reader circuits has to generate a constant chirp signal to read the conventional microstrip resonator type tag. Use of the VCO is well established for this application. However, in case of large bandwidth (>4GHz) chirp generation it’s still challenging for the researchers. This problem can be mitigated by using as many numbers of mixer-filter combinations as needed. Successful implementation of this topology centres around the precise design of a very narrow (<2% fractional bandwidth) band BPF. The proposed structure has been designed, simulated and fabricated for 5.4 GHz. It is observed that the fractional bandwidth of the BPF is less than 2% of the center frequency. The simulation and measured S-Parameters are in good agreement. The final bandwidth of the designed filter is 100 MHz and the dimensions 24.3 mm X 5 mm. IJEAIS 2017-09 Article PeerReviewed application/pdf en http://irep.iium.edu.my/58611/1/IJEAIS170907.pdf Hossain, A. K. M. Zakir and Ibrahimy, Muhammad Ibn and Motakabber, S. M. A. (2017) A narrow band BPF for UWB RFID reader circuit for frequency extraction. International Journal of Engineering and Information Systems, 1 (7). pp. 104-112. ISSN 2000-000X http://www.ijeais.org/index.php/vol-1-issue-7-september-2017/ |
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T Technology (General) Hossain, A. K. M. Zakir Ibrahimy, Muhammad Ibn Motakabber, S. M. A. A narrow band BPF for UWB RFID reader circuit for frequency extraction |
description |
In this article, a narrow band, open circuited planar microstrip band pass filter has been proposed. Existing RFID reader circuits has to generate a constant chirp signal to read the conventional microstrip resonator type tag. Use of the VCO is well established for this application. However, in case of large bandwidth (>4GHz) chirp generation it’s still challenging for the researchers. This problem can be mitigated by using as many numbers of mixer-filter combinations as needed. Successful implementation of this topology centres around the precise design of a very narrow (<2% fractional bandwidth) band BPF. The proposed structure has been designed, simulated and fabricated for 5.4 GHz. It is observed that the fractional bandwidth of the BPF is less than 2% of the center frequency. The simulation and measured S-Parameters are in good agreement. The final bandwidth of the designed filter is 100 MHz and the dimensions 24.3 mm X 5 mm. |
format |
Article |
author |
Hossain, A. K. M. Zakir Ibrahimy, Muhammad Ibn Motakabber, S. M. A. |
author_facet |
Hossain, A. K. M. Zakir Ibrahimy, Muhammad Ibn Motakabber, S. M. A. |
author_sort |
Hossain, A. K. M. Zakir |
title |
A narrow band BPF for UWB RFID reader circuit for frequency extraction |
title_short |
A narrow band BPF for UWB RFID reader circuit for frequency extraction |
title_full |
A narrow band BPF for UWB RFID reader circuit for frequency extraction |
title_fullStr |
A narrow band BPF for UWB RFID reader circuit for frequency extraction |
title_full_unstemmed |
A narrow band BPF for UWB RFID reader circuit for frequency extraction |
title_sort |
narrow band bpf for uwb rfid reader circuit for frequency extraction |
publisher |
IJEAIS |
publishDate |
2017 |
url |
http://irep.iium.edu.my/58611/ http://irep.iium.edu.my/58611/ http://irep.iium.edu.my/58611/1/IJEAIS170907.pdf |
first_indexed |
2023-09-18T21:22:55Z |
last_indexed |
2023-09-18T21:22:55Z |
_version_ |
1777412001252769792 |