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Characterization of inkjet-printed dielectric on different substrates

机译:不同基材上喷墨印刷电介质的表征

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Inkjet-printed capacitive circuits on different substrates will be investigated. This work will contribute towards rapidly prototyping electronic systems for smart ubiquitous biosensors. These biosensors require sensitive and robust signal readout with low power consumption and wireless connectivity while also being inexpensive. Capacitors were printed on different substrates, including glass and overhead projector film, to characterize an inkjet-printed dielectric. A Fujifilm Dimatix DMP2831 was used to print different functional inks, including Harima silver nanoparticle ink and InkEpo-XP ink. The silver nanoparticle ink was used to print the conductive features of the capacitors while the InkEpo-XP was used as the dielectric material. Different test patterns were printed with silver ink on the dielectric material; these patterns were used to establish a printing protocol for successful printing of silver on the dielectric material. Different test patterns were also printed with dielectric ink on silver to create a printing protocol for successfully printing dielectric on silver. Metal-insulator-metal capacitors were successfully inkjet printed on glass and overhead projector film with silver and dielectric inks. The metal-insulator-metal capacitors were used to characterize the dielectric material at different frequencies. The circuit modelling of the capacitors is discussed, and validated against experimental results. A design procedure is presented for reliably printing capacitive networks with feature dimensions between 1 mm and 2 mm on glass and overhead projector film.
机译:将研究不同衬底上的喷墨印刷电容电路。这项工作将有助于迅速原型设计电子系统,用于智能无处不在的生物传感器。这些生物传感器需要具有低功耗和无线连接的敏感和强大的信号读数,同时也廉价。电容器印在不同的基板上,包括玻璃和架空投影仪,以表征喷墨印刷电介质。 FUJIFILM DIMATIX DMP2831用于打印不同的功能性油墨,包括Harima银纳米粒子油墨和inkepo-XP油墨。使用银纳米粒子墨水来打印电容器的导电特征,同时使用INKEPO-XP作为介电材料。在介电材料上用银墨印刷不同的测试模式;这些模式用于建立用于成功在介电材料上成功印刷银的印刷方案。还在银上用电介质油墨印刷不同的测试图案,以在银上成功打印电介质的印刷方案。金属绝缘体 - 金属电容器在玻璃和架空投影仪上成功喷墨,用银和介电油墨。金属绝缘体 - 金属电容器用于在不同频率下表征介电材料。讨论电容器的电路建模,并针对实验结果验证。提出了一种设计程序,可在玻璃和架空投影仪上可靠地打印具有1毫米和2毫米的特征尺寸的电容网络。

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