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Suspended microstrip line on multilayer ferroelectric - polymer composite film for ku-band tuneable applications

机译:用于KU波段可调应用的多层铁电 - 聚合物复合膜上的悬浮微带线

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Suspended microstrip line on multilayer ferroelectric-polymer composite film is investigated to determine its dispersion and propagation characteristics. Full wave FEM simulator HFSS is used to determine propagating modes and their field configurations in this complex structure. Initial dielectric constant of the ferroelectric film (BaTiO3) is selected as 10 and it is varied up to 300. For low value of εr film ∼10), this structure supports propagating mode similar to quasi TEM mode. But as we increase the value of dielectric constant of film, higher order modes starts propagating and the energy transmission takes place mainly through surface wave like modes and field lines of desired mode in the structure is concentrated in the high dielectric constant film layer and wave propagation is taking place through the dielectric.
机译:研究了多层铁电 - 聚合物复合膜上的悬浮微带线以确定其分散和传播特性。全波UP模拟器HFSS用于确定该复杂结构中的传播模式及其现场配置。选择铁电薄膜的初始介电常数(BATIO 3 )为10,其多达300。对于ε R 薄膜~10)的低值,该结构支持类似于准TEM模式的传播模式。但是,随着我们增加膜的介电常数的值,高阶模式开始传播,并且主要通过表面波的表面波发生的能量传输和结构中所需模式的现场线集中在高介电常数膜层和波传播中。通过电介质进行。

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