Fully Inkjet Printed CPW Meander Inductors on PET Flexible Substrate
Апстракт
This paper presents continued research on CPW (coplanar waveguide) meander inductors. The inductors were made in inkjet printing technology. They were printed on polyethylene terephthalate (PET) based substrate (Novele IJ-220), 140 mu m thick. Water-based nanoparticle silver ink (Metalon (R) JS-B25HV) is used for printing. The fabricated inductors have a great value of quality factor (up to 4.2) and high frequency operating range between 1. GHz. 7. GHz for three turn, and 1. GHz -19 GHz for one turn structure. Those characteristics made them suitable for application in flexible electronics.
Кључне речи:
Substrates / Silver / Printing / Plastic bottles / Nano-particle sil / Meander inductors / Ink-jet printing technologies / High frequency HF / Flexible substrate / Fabricated inductor / Coplanar waveguidesИзвор:
Proceedings of the International Spring Seminar on Electronics Technology, 2015, 2015-September, 43-46Издавач:
- IEEE Computer Society
DOI: 10.1109/ISSE.2015.7247959
ISBN: 978-147998860-0
ISSN: 2161-2528
WoS: 000374113000010
Scopus: 2-s2.0-84983148813
Институција/група
Institut za multidisciplinarna istraživanjaTY - CONF AU - Menićanin, Aleksandar AU - Živanov, Ljiljana D AU - Žlebič, Č. AU - Kisić, M. AU - Blaz, Nelu V. AU - Damnjanović, M. PY - 2015 UR - http://rimsi.imsi.bg.ac.rs/handle/123456789/933 AB - This paper presents continued research on CPW (coplanar waveguide) meander inductors. The inductors were made in inkjet printing technology. They were printed on polyethylene terephthalate (PET) based substrate (Novele IJ-220), 140 mu m thick. Water-based nanoparticle silver ink (Metalon (R) JS-B25HV) is used for printing. The fabricated inductors have a great value of quality factor (up to 4.2) and high frequency operating range between 1. GHz. 7. GHz for three turn, and 1. GHz -19 GHz for one turn structure. Those characteristics made them suitable for application in flexible electronics. PB - IEEE Computer Society C3 - Proceedings of the International Spring Seminar on Electronics Technology T1 - Fully Inkjet Printed CPW Meander Inductors on PET Flexible Substrate EP - 46 SP - 43 VL - 2015-September DO - 10.1109/ISSE.2015.7247959 ER -
@conference{ author = "Menićanin, Aleksandar and Živanov, Ljiljana D and Žlebič, Č. and Kisić, M. and Blaz, Nelu V. and Damnjanović, M.", year = "2015", abstract = "This paper presents continued research on CPW (coplanar waveguide) meander inductors. The inductors were made in inkjet printing technology. They were printed on polyethylene terephthalate (PET) based substrate (Novele IJ-220), 140 mu m thick. Water-based nanoparticle silver ink (Metalon (R) JS-B25HV) is used for printing. The fabricated inductors have a great value of quality factor (up to 4.2) and high frequency operating range between 1. GHz. 7. GHz for three turn, and 1. GHz -19 GHz for one turn structure. Those characteristics made them suitable for application in flexible electronics.", publisher = "IEEE Computer Society", journal = "Proceedings of the International Spring Seminar on Electronics Technology", title = "Fully Inkjet Printed CPW Meander Inductors on PET Flexible Substrate", pages = "46-43", volume = "2015-September", doi = "10.1109/ISSE.2015.7247959" }
Menićanin, A., Živanov, L. D., Žlebič, Č., Kisić, M., Blaz, N. V.,& Damnjanović, M.. (2015). Fully Inkjet Printed CPW Meander Inductors on PET Flexible Substrate. in Proceedings of the International Spring Seminar on Electronics Technology IEEE Computer Society., 2015-September, 43-46. https://doi.org/10.1109/ISSE.2015.7247959
Menićanin A, Živanov LD, Žlebič Č, Kisić M, Blaz NV, Damnjanović M. Fully Inkjet Printed CPW Meander Inductors on PET Flexible Substrate. in Proceedings of the International Spring Seminar on Electronics Technology. 2015;2015-September:43-46. doi:10.1109/ISSE.2015.7247959 .
Menićanin, Aleksandar, Živanov, Ljiljana D, Žlebič, Č., Kisić, M., Blaz, Nelu V., Damnjanović, M., "Fully Inkjet Printed CPW Meander Inductors on PET Flexible Substrate" in Proceedings of the International Spring Seminar on Electronics Technology, 2015-September (2015):43-46, https://doi.org/10.1109/ISSE.2015.7247959 . .