Assessing Current‐Carrying Capacity of Aerosol Jet Printed Conductors
نویسندگان
چکیده
منابع مشابه
Mechanical and electrical fatigue of aerosol jet printed conductors
Non-contact metallization processes, such as aerosol jet printing, allows for the deposition and novel processing of nanoparticle based conductive circuitry. The primary advantages in the utilization of such methods include the minimization of substrate handling and the exploitation of nanomaterial‟s ability to form electrically conductive pathways at temperatures as low as 80°C. Applying non-c...
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Printing silver nanoparticle inks to generate conductive structures for electronics on polymer substrates has gained increasing relevance in recent years. In this context, the Aerosol-Jet Technology is well suited to print silver ink on 3D-Molded Interconnect Devices (MID). The deposited ink requires thermal post-treatment to obtain sufficient electrical conductivity and adhesion. However, comm...
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DOI: 10.1002/aelm.201700057 have been intensely studied for use in thinfilm transistors (TFTs) due to their excellent electronic,[15] thermal,[16] and mechanical[17] properties as well as their compatibility with solution-based processing.[5,12,18–23] One of the most promising aspects of CNT-TFTs is their compatibility with lowcost, high-throughput printing.[1,2,5,11] A broad range of applicati...
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In this report, we demonstrate a printed, flexible, and low-voltage circuit that successfully drives a polymer electrochromic (EC) pixel as large as 4 mm(2) that is printed on the same substrate. All of the key components of the drive circuitry, namely, resistors, capacitors, and transistors, were aerosol-jet-printed onto a plastic foil; metallic electrodes and interconnects were the only compo...
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ژورنال
عنوان ژورنال: Advanced Engineering Materials
سال: 2020
ISSN: 1438-1656,1527-2648
DOI: 10.1002/adem.202000520