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首页> 外文期刊>Journal of Microelectronics and Electronic Packaging >Aerosol Jet Printing of Two Component Thick Film Resistors on LTCC
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Aerosol Jet Printing of Two Component Thick Film Resistors on LTCC

机译:在LTCC上两组分厚膜电阻器的气溶胶喷射印刷

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摘要

Aerosol jet printing is a rather new technology for the deposition of thick film structures offering high line and space resolution. This method offers high potential for miniaturization for thick film structures. The advantages of this technology could be shown with inks carrying a single solid powder (e.g., silver, platinum, ceramic, or glass powder). One of the challenges in printing solid powder mixtures is the differences in the aerodynamic properties of different powders. Those differences result in changes of the mixing ratio within the aerosol jet and therefore poor reproducibility in the finished film. In this work, thick film resistors consisting of RuO_2 with particle size <1 μm as the conducting phase and different glass powders with particle size around 1 μm as the isolating phase were investigated. One glass had a density rather close to RuO_2, the other glass significantly lower. Inks were made from RuO_2/glass powder mixtures, a solvent, and organic additives. After manufacturing, the inks are printed on LTCC and the microstructures of the dried and the fired films were visualized by FIB preparation and SEM. The resistances as well as the temperature coefficients of the resistors were measured and compared with resistor films with an identical solid composition manufactured by conventional screen printing. The results of the obtained resistors are presented and discussed in terms of powder properties, ink dispersion, and printing parameters.
机译:气溶胶喷射印刷是一种用于沉积厚膜结构的相当新的技术,可提供高的线和空间分辨率。该方法为厚膜结构的小型化提供了高潜力。这种技术的优点可以用带有单一固体粉末(例如,银,铂,陶瓷或玻璃粉末)的油墨来体现。印刷固体粉末混合物的挑战之一是不同粉末的空气动力学特性的差异。这些差异导致气溶胶射流内混合比的变化,因此最终薄膜的重现性差。在这项工作中,研究了由粒径小于1μm的RuO_2作为导电相和作为隔离相的粒径约1μm的不同玻璃粉末组成的厚膜电阻器。一种玻璃的密度相当接近RuO_2,另一种玻璃的密度明显较低。油墨是由RuO_2 /玻璃粉末混合物,溶剂和有机添加剂制成的。制造后,将油墨印刷在LTCC上,并通过FIB制备和SEM观察干燥和烧制后的薄膜的微观结构。测量电阻器的电阻以及温度系数,并将其与通过常规丝网印刷制造的具有相同固体成分的电阻器膜进行比较。给出并讨论了所得电阻器的结果,包括粉末特性,油墨分散性和印刷参数。

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    Fraunhofer Institute for Ceramic Technologies and Systems, Winterbergstr. 28 01277, Dresden, Germany;

    Fraunhofer Institute for Ceramic Technologies and Systems, Winterbergstr. 28 01277, Dresden, Germany;

    Fraunhofer Institute for Ceramic Technologies and Systems, Winterbergstr. 28 01277, Dresden, Germany;

    Fraunhofer Institute for Ceramic Technologies and Systems, Winterbergstr. 28 01277, Dresden, Germany;

    Fraunhofer Institute for Ceramic Technologies and Systems, Winterbergstr. 28 01277, Dresden, Germany;

    Fraunhofer Institute for Ceramic Technologies and Systems, Winterbergstr. 28 01277, Dresden, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Thick film resistor; glass sintering; aerosol printing; miniaturization;

    机译:厚膜电阻;玻璃烧结;气溶胶印刷;小型化;

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