Printability and structural analysis of yttrium iron garnet thick film with low firing temperature
This paper presents results of study on Yttrium iron garnet (YIG) thick film paste using linseed oil as organic binder. YIG nanopowder is mixed with organic vehicle which consists of linseed oil, m-xylene and α-terpineol. Samples with different ratios of compositions are prepared to study the printa...
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my.upm.eprints.562602017-07-31T04:13:14Z http://psasir.upm.edu.my/id/eprint/56260/ Printability and structural analysis of yttrium iron garnet thick film with low firing temperature Hasan, Intan Helina Hamidon, Mohd Nizar Ismail, Ismayadi Osman, Rosiah Azhari, Saman This paper presents results of study on Yttrium iron garnet (YIG) thick film paste using linseed oil as organic binder. YIG nanopowder is mixed with organic vehicle which consists of linseed oil, m-xylene and α-terpineol. Samples with different ratios of compositions are prepared to study the printability and adhesion properties of the paste. Paste samples were then screen printed onto alumina substrate, dried and fired at 300°C. Microscopic images of the samples were observed to determine most suitable ratio for producing YIG paste. Based on the results, YIG paste with 30 wt% ratio showed good adhesion to the substrate as well as having high dielectric property compared to pastes with lower powder ratio. IEEE 2015 Conference or Workshop Item PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/56260/1/Printability%20and%20structural%20analysis%20of%20yttrium%20iron%20garnet%20thick%20film%20with%20low%20firing%20temperature.pdf Hasan, Intan Helina and Hamidon, Mohd Nizar and Ismail, Ismayadi and Osman, Rosiah and Azhari, Saman (2015) Printability and structural analysis of yttrium iron garnet thick film with low firing temperature. In: 2015 IEEE Regional Symposium on Micro and Nano Electronics (RSM 2015), 19-21 Aug. 2015, Primula Beach Hotel, Kuala Terengganu. . 10.1109/RSM.2015.7355017 |
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This paper presents results of study on Yttrium iron garnet (YIG) thick film paste using linseed oil as organic binder. YIG nanopowder is mixed with organic vehicle which consists of linseed oil, m-xylene and α-terpineol. Samples with different ratios of compositions are prepared to study the printability and adhesion properties of the paste. Paste samples were then screen printed onto alumina substrate, dried and fired at 300°C. Microscopic images of the samples were observed to determine most suitable ratio for producing YIG paste. Based on the results, YIG paste with 30 wt% ratio showed good adhesion to the substrate as well as having high dielectric property compared to pastes with lower powder ratio. |
format |
Conference or Workshop Item |
author |
Hasan, Intan Helina Hamidon, Mohd Nizar Ismail, Ismayadi Osman, Rosiah Azhari, Saman |
spellingShingle |
Hasan, Intan Helina Hamidon, Mohd Nizar Ismail, Ismayadi Osman, Rosiah Azhari, Saman Printability and structural analysis of yttrium iron garnet thick film with low firing temperature |
author_facet |
Hasan, Intan Helina Hamidon, Mohd Nizar Ismail, Ismayadi Osman, Rosiah Azhari, Saman |
author_sort |
Hasan, Intan Helina |
title |
Printability and structural analysis of yttrium iron garnet thick film with low firing temperature |
title_short |
Printability and structural analysis of yttrium iron garnet thick film with low firing temperature |
title_full |
Printability and structural analysis of yttrium iron garnet thick film with low firing temperature |
title_fullStr |
Printability and structural analysis of yttrium iron garnet thick film with low firing temperature |
title_full_unstemmed |
Printability and structural analysis of yttrium iron garnet thick film with low firing temperature |
title_sort |
printability and structural analysis of yttrium iron garnet thick film with low firing temperature |
publisher |
IEEE |
publishDate |
2015 |
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http://psasir.upm.edu.my/id/eprint/56260/1/Printability%20and%20structural%20analysis%20of%20yttrium%20iron%20garnet%20thick%20film%20with%20low%20firing%20temperature.pdf http://psasir.upm.edu.my/id/eprint/56260/ |
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