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Roll-to-roll paper sensors (ROPAS); Wireless communicating sensors on paper in the logistic chain

机译:卷纸纸传感器(ROPAS);无线通信在逻辑链中纸上的传感器

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The ROPAS project (Roll-to-roll paper sensors) combines high end electronics and wireless sensors with low cost paper substrates and processing techniques that can be applied on a large scale. Paper is the next step in the printed electronics roadmap of utilising cheaper substrate materials as a replacement of silicon and PET and is generally referred to as paper electronics. The creation of highly conductive structures applied at high speed on (temperature unstable) paper is extremely important to enable paper electronics. Hereto, recent advantages in nanotechnology such as (encapsulation) printing, surface modification of fiber based products, sensor and battery development, and electronic design (wireless communication) are integrated for large scale roll to roll and sheet to sheet paper applications. The possibilities of paper electronics are demonstrated in high impact (security) and logistics applications, which are demonstrated in security tags and smart labels for anti-counterfeiting purposes by e.g. integration of near field communication (NFC) in paper and finally track-and-trace post pieces such as envelopes. The paper explains the project and its impact, including implications of using a rough, coarse, porous and composite, paper substrate of limited high temperature stability on the design and fabrication of demonstrators and building blocks. Important topics herein are: fast curing of conductive inks on paper using state of the art printing techniques such as inkjet, screen and flexogravure. In the talk, synthesis of printable (humidity) sensor materials, placing of electrical components on paper surfaces including electronic design of the wireless communication and environmental and recycling constraints of the products are discussed as well.
机译:ROPAS项目(滚纸纸传感器)将高端电子和无线传感器结合,具有低成本的纸质基板和可在大规模上应用的加工技术。纸张是印刷电子产品路线图的下一步,利用更便宜的衬底材料作为硅和PET的更换,并且通常被称为纸质电子器件。在高速上施加的高导电结构(温度不稳定)纸张的产生是实现纸质电子的非常重要的。 HERETO,纳米技术的最新优势如(封装)印刷,纤维的产品,传感器和电池开发的表面改性,以及电子设计(无线通信)被整合用于大型卷卷和纸张纸应用。纸质电子产品的可能性在高影响力(安全)和物流应用中,其在安全标签和智能标签中证明了例如智能标签,以便通过例如防伪目的。在纸上的近场通信(NFC)的集成,最后跟踪邮政信件,如信封。本文解释了该项目及其影响,包括使用粗糙,粗,多孔和复合材料,纸质基材的造型和复合材料的设计和制造在演示者和构建块的设计和制造中的影响。本文的重要主题是:使用艺术印刷技术(如喷墨,筛网和柔性凝纹)的纸张上的导电墨水的快速固化。在谈话中,还讨论了可打印(湿度)传感器材料的合成,在纸张表面上放置包括电子设计的纸张表面和产品的环保和回收限制。

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