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One of the most important rare-earth garnets is YIG (yttrium iron garnet), which is used in a variety of microwave devices including radars, attenuators, filters, circulators, isolators, phase shifters, power limiters, and switches.
Different types of microwave devices have been realized using microstrip technique.
Neuro-SM with the output mapping [13] was introduced, through incorporation of a new output/current mapping, for modeling of microwave devices.
After the generalization, the proposed general Neuro-SM technique has the potential to be used for developing models of microwave devices with trapping effect.
This finding has a promising potential for the electric controlling of microwave devices, especially phase shift device, anti-electromagnetic interference etc. Fig. 5 a Real μ'.
Thermal investigation is of basic importance to assess key aspects of the performance and the reliability of microwave devices and circuits operating in a critical environment.
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The distinct difference in the microwave property of FSFC and FSS near resonance frequency shows that FSFCs can be new candidates as impedance modifier for microwave devices, such as microwave absorbers.
It is implied that the GP process is an effective route to improve the dielectric properties of BST films for the applications of tunable microwave devices.
Accurate modeling of nonlinear microwave devices is critical for reliable design of microwave circuit and system.
Defected ground structures (DGS) have been developed to improve characteristics of many microwave devices.
Ferroelectrics are interesting materials for the design of new microwave devices.
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