scholarly journals Planar tunable RF/microwave devices with magnetic, ferroelectric and multiferroic materials

2012 ◽  
Author(s):  
Jing Wu
SPIN ◽  
2012 ◽  
Vol 02 (03) ◽  
pp. 1240004 ◽  
Author(s):  
NIAN X. SUN ◽  
GOPALAN SRINIVASAN

Multiferroic materials and devices have attracted intensified recent interests due to the demonstrated strong magnetoelectric (ME) coupling in new multiferroic materials and devices with unique functionalities and superior performance characteristics. Strong ME coupling has been demonstrated in a variety of multiferroic heterostructures, including bulk magnetic on ferro/piezoelectric multiferroic heterostructures, magnetic film on ferro/piezoelectric slab multiferroic heterostructures, thin film multiferroic heterostructures, etc. Different multiferroic devices have been demonstrated, which include magnetic sensors, energy harvesters, and voltage tunable multiferroic RF/microwave devices which are compact, lightweight, and power efficient. In this progress report, we cover the most recent progress on multiferroic heterostructures and devices with a focus on voltage tunable multiferroic heterostructures and devices with strong converse ME coupling. Recent progress on magnetic-field tunable RF/microwave devices are also covered, including novel non-reciprocal tunable bandpass filters with ultra wideband isolation, compact, low loss and high power handling phase shifters, etc. These novel tunable multiferroic heterostructures and devices and tunable magnetic devices provide great opportunities for next generation reconfigurable RF/microwave communication systems and radars, Spintronics, magnetic field sensing, etc.


Author(s):  
Wanjun Peng ◽  
Brandon Howe ◽  
Xi Yang

Author(s):  
Vijay Devabhaktuni ◽  
Lakshman Mareddy ◽  
Srinivas Vemuru ◽  
Vani Cheruvu ◽  
Yuriy Goykhman ◽  
...  

2020 ◽  
Vol 8 (47) ◽  
pp. 17099-17106
Author(s):  
Mouteng Yao ◽  
Yaojin Li ◽  
Bian Tian ◽  
Qi Mao ◽  
Guohua Dong ◽  
...  

Flexible epitaxial ferrite thin films are crucial for flexible RF/microwave devices; however, they are difficult to be fabricated due to critical growth conditions.


2018 ◽  
Vol 173 ◽  
pp. 01005
Author(s):  
Chen Shouhong ◽  
Wang Zhuang ◽  
Ma Jun ◽  
Hou Xingna

In order to test the S-parameters of non-coaxial RF (Radio Frequency) devices accurately, using, ADS (Advanced Design System) to simulate and design a set of fixture and calibration pieces for noncoaxial, RF device performance test, and the calibration pieces is used to calibrate the test fixture, remove, the error introduced by the fixture, and obtain the real S parameters of non-coaxial RF microwave devices.,Based on the study of various parameters of RF microwave devices, the Engen's TRL (Thru-Reflect-Line), calibration algorithm is studied in depth. An improved TRL calibration algorithm is proposed. And the use, of MATLAB program to achieve two calibration algorithms to correct the system error introduced by the measuring fixture, so as to get the real performance parameters of the device under test. Through the test of, the verification device, the agreement between the improved TRL algorithm and Engen's TRL algorithm is verified. The final design of the test fixture can be successfully applied to the network analyzer for noncoaxial, RF devices S-parameter measurement.


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