Results 91 to 100 of about 157 (133)
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Wideband 1-bit Filtenna-to-Filtenna Cross-Polarization Converter Using Multimode Resonance
IEEE Transactions on Antennas and PropagationSai-Wai Wong, Huawei Lin, Kam Weng Tam
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Electronically reconfigurable filtenna for cognitive radios
Microwave and Optical Technology Letters, 2016ABSTRACTA frequency tunable and bandwidth reconfigurable antenna with ring slot resonators embedded into its ground plane is presented. To achieve the bandwidth reconfigurability, two PIN diodes are inserted to couple or decouple two pairs of ring slot resonators from the antenna feed line.
Hamza Nachouane +3 more
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Frequency reconfigurable dual-band filtenna
AEU - International Journal of Electronics and Communications, 2020Abstract In this paper, a compact size frequency reconfigurable dual-band filtenna (Filter +Antenna) is proposed for WLAN, WiMaX and C-band applications. The filtenna is designed by a switchable SRR (i.e. Two switches are used in inner and outer split rings) band pass filter (BPF) and a CSRR based antenna.
Ajay Kumar Gangwar, Muhmmad Shah Alam
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Metamaterial Filtenna at 2.4GHz for Bluetooth Application
2018 IEEE International RF and Microwave Conference (RFM), 2018Nowadays, modern technologies in aerospace, medical electronics and communication systems require reliability and accuracy to support wireless technology standard such as Bluetooth. Thus, there is a huge demand to have a reliable bluetooth antenna for precise measurement.
M. N. A. Hashim +2 more
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A compact microstrip ultra-wideband filtenna
2014 15th International Conference on Electronic Packaging Technology, 2014In this paper, a compact ultra-wideband antenna with filtering functions is presented. It has a compact size of 32mm∗26mm∗0.8mm. The filtenna is fabricated on a common and low-cost FR4 substrate, with a relative dielectric constant of 4.4, and a loss tangent of 0.02.
Rongda Wang, Peng Gao
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Design of Edge-Coupled Microstrip Patches Filtenna
Proceedings of the 6th International Conference on Engineering & MIS 2020, 2020A microwave structure that combines filtering and radiating functions is presented. The structure consists of three patches, two of which are aperture-fed, printed on stacked substrates. The array can be considered as three-pole edge-coupled filter with radiating resonators.
Ghaith Mansour, Peter Hall
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OLR-filtenna for Wi-Fi applications
2016 Progress in Electromagnetic Research Symposium (PIERS), 2016Microstrip open loop resonators with annular or square configuration are widely used in the design of filters and antennas. In this paper a new compact microstrip OLR based filters are designed and analyzed. This filter configuration is extended to work as a filter antenna.
Nair S. Bhuvana, Sreedevi K. Menon
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A new compact stripline patch filtenna module
Journal of Electromagnetic Waves and Applications, 2016AbstractIn this paper, a new compact stripline patch filtenna module (SLPFM) has been proposed, designed, and fully investigated using the well-known electromagnetic simulator (CST_MW simulator). The objective is to design and fabricate a movable and compact microstrip patch chip (MS-Chip) mounted on a microstrip motherboard (MS-motherboard).
Hussein Hamed Mahmoud Ghouz +1 more
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Microstrip frequency selective surface for use in horn Filtenna
2016 IEEE Radar Methods and Systems Workshop (RMSW), 2016This work presents design of Microstrip Frequency Selective Surface (MFSS)s to be fixed into the apertures of horn antennas for pre-filtering unwanted signals at 4GHz, 9 GHz. Thus integration of the antenna and band-pass filter is achieved into a single module so that a pre-filtering process can be carried out when signal is received by the antenna ...
TÜRK, Ahmet Serdar +5 more
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Design of an active array filtenna for radar applications
2014 IEEE Antennas and Propagation Society International Symposium (APSURSI), 2014A novel design of an S-band active array antenna with enhanced frequency selectivity properties, for radar applications, is presented. The array unit cell consists of a stacked-patch radiator, characterized by an operational bandwidth of [2.8 - 3.4] GHz.
Cifola, L. +3 more
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