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Fully printed varactors and phase shifters based on a BST/polymer ink for tunable microwave applications

机译:基于BST /聚合物油墨的完全印刷的变容仪和相移器用于可调谐微波应用

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A fully printed varactor and a phase shifter using direct ink writing methodologies will be described. A novel ferroelectric ink was developed to print high dielectric constant, low loss, and electrostatically-tunable dielectrics on plastic substrates. The dielectric is based on multiphase Barium Strontium Titanate (BST)/polymer composite made by suspending nano/submicron-sized particles of BST in a thermoplastic polymer, namely Cyclic Olefin Copolymer (COC). After printing with the ink, a low temperature curing process was performed at temperatures below 200°C. RF measurements and characterizations showed that the sinter-less dielectric had a very high relative permittivity of εr = 42 and a very low dielectric loss of tanδ = 0.0005 at f = 10GHz. As a result, all-printed, voltage-variable capacitors with up to 10% capacitance tunability at microwave frequencies were realized. Subsequently, the tunable BST/COC ink was used in a left handed transmission line design to realize a printed tunable phase shifter.
机译:将描述使用直接墨水写入方法的完全印刷的变容级和移相器。开发了一种新的铁电油墨,用于在塑料基板上打印高介电常数,低损耗和静电可调电介质。电介质基于通过悬浮在热塑性聚合物中的纳米/亚微米尺寸的BST的纳米/亚微米尺寸的颗粒制备的多相钡锶(BST)/聚合物复合材料,即环烯烃共聚物(COC)。用油墨印刷后,在低于200℃的温度下进行低温固化过程。 RF测量和表征表明,烧结电介质具有非常高的εr= 42的相对介电常数,并且在f = 10GHz处的Tanδ= 0.0005的非常低的介电损耗。结果,实现了全印刷的电压可变电容,在微波频率下具有高达10%的电容可调性。随后,在左手传输线设计中使用可调谐BST / COC墨水以实现印刷的可调谐移相器。

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