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Beam Steering Phased Array Antenna With Fully Printed Phase Shifters Based on Low-Temperature Sintered BST-Composite Thick Films

Nikfalazar, M. and Kohler, C. and Wiens, A. and Mehmood, A. and Sohrabi, M. and Maune, H. and Binder, J. R. and Jakoby, R. (2016):
Beam Steering Phased Array Antenna With Fully Printed Phase Shifters Based on Low-Temperature Sintered BST-Composite Thick Films.
In: IEEE Microwave and Wireless Components Letters, pp. 70-72, 26, (1), ISSN 1531-1309, [Online-Edition: http://dx.doi.org/10.1109/LMWC.2015.2505633],
[Article]

Item Type: Article
Erschienen: 2016
Creators: Nikfalazar, M. and Kohler, C. and Wiens, A. and Mehmood, A. and Sohrabi, M. and Maune, H. and Binder, J. R. and Jakoby, R.
Title: Beam Steering Phased Array Antenna With Fully Printed Phase Shifters Based on Low-Temperature Sintered BST-Composite Thick Films
Language: German
Journal or Publication Title: IEEE Microwave and Wireless Components Letters
Volume: 26
Number: 1
Uncontrolled Keywords: MIM devices;antenna feeds;antenna phased arrays;beam steering;microstrip antenna arrays;microwave antenna arrays;microwave phase shifters;thick films;varactors;S-Band;beam steering;bottom silver electrodes;four-to-one feeding network;frequency 3 GHz;fully-printed MIM varactors;fully-printed metal-insulator-metal varactors;fully-printed phase shifters;low-temperature sintered BST composite thick films;microstrip loaded-line topology;microstrip patch antenna elements;phased array antenna;top silver electrodes;Arrays;Electrodes;Loss measurement;Microwave theory and techniques;Phase measurement;Phase shifters;Varactors;Antenna array;barium strontium titanate (BST);fully printed;loaded transmission line;phase shifter;thick-film
Divisions: 18 Department of Electrical Engineering and Information Technology > Institute for Microwave Engineering and Photonics > Microwave Engineering
18 Department of Electrical Engineering and Information Technology > Institute for Microwave Engineering and Photonics
18 Department of Electrical Engineering and Information Technology
Date Deposited: 21 Mar 2016 12:13
Official URL: http://dx.doi.org/10.1109/LMWC.2015.2505633
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