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Laser Printing of RFID Antenna Coils on Ceramic

机译:陶瓷上的RFID天线线圈的激光打印

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摘要

Printed electronics are a major field of activity in research and industrial applications nowadays, especially in thick-film technology. Within the last decade, large progress was made to digitally print electronic circuits, in order to supplement or replace the established screen printing technology. The advantage of digital printing is its capability to rapidly produce any layout desired at minimum space requirements. This highly flexible production method is especially applicable for prototyping and small series productions. Electrophotography, commonly known as laser printing, has been considered very rarely as a method for digital printing of electronic circuits. It is a completely solvent-free method with high speeds and a high potential regarding precision. At Helmut Schmidt University, electrophotography is tried to be established as an alternative method to print silver lines as basis for a conductive layout. After a first set of conductive silver lines was printed and the results were published, this paper describes the development from initial conductivity to a functional circuit element. Deficits in toner transfer to tape are examined and a more effective transfer method is established. Furthermore, the performance of the used silver toner is improved, and the best toner for the desired application is determined. Silver lines are printed on green tape and sintered in a co-firing process, as well as on ceramic using a post-firing process. After reaching a certain level of quality, a functional RFID antenna coil is printed that proves the capability of the process to create a conductive layout.
机译:印刷电子是在研究和工业应用现今活动的主要领域,特别是在厚膜技术。在过去的十年中,大量取得了进展,以补充数字印刷电子电路,为了或更换建立丝网印刷技术。数字印刷的优点是它的能力迅速产生在最小的空间要求任何期望的布局。这种高度灵活的生产方法特别适用于原型和小批量制作。电子照相,俗称激光打印,已被认为很少用于电子电路的数字印刷方法。它是一种具有高的速度和精度方面的高电位完全无溶剂方法。在施密特大学,电子照相试图建立作为一种替代方法来打印银线作为基础的导电布局。第一组导电银线的印刷和结果发表后,本文描述了从初始电导率的功能电路元件的开发。在调色剂转印到磁带缺陷进行检查,并建立一个更有效的传输方法。此外,所使用的银调色剂的性能得到改善,并且对于所期望的应用的最佳调色剂被确定。银线被使用后焙烧过程印刷在生带材和烧结在共烧过程中,以及在陶瓷。达到一定的质量水平之后,功能性RFID天线线圈被印刷,证明该方法的能力以产生导电布局。

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