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Journal : InComTech: Jurnal Telekomunikasi dan Komputer

Performances of SMD Components on FR4 Substrates at Higher Frequencies Veronica, Veronica; Umaisaroh, Umaisaroh; Alaydrus, Mudrik
InComTech : Jurnal Telekomunikasi dan Komputer Vol 14, No 3 (2024)
Publisher : Department of Electrical Engineering

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.22441/incomtech.v14i3.29982

Abstract

The advances of many technological wireless systems lead to development of several important microwave circuit components as supporting parts. The last century was the eye-witness of the development of many microwave components implemented on distributed, lumped elements or combination of them.  In the design stage, we must fulfill the specified targets in terms of S-parameters over certain desired frequency intervals. The observation of several surface mounted devices installed in a microstrip structure is an important verification of the characteristics of the components especially at higher frequencies. We use the software ANSYS Electromagnetic Suite and AWR Design Environment as analytical tools. We verify the results by building the structures and measuring the reflection and transmission coefficient. The microstrip structure is modeled in a 1.4mm thick FR-4 substrate, with a dimension 50 mm x 50 mm is backed by a metallic copper ground with a thickness of 0.035 mm. We fabricated the structure under observation and did some measurement to verify its performances using a vector network analyzer. The computer programs give almost the same results for all cases except for the surface mounted device inductance. In this way we can rely on the computational modeling. The reflection and transmission coefficient of a 1.4mm thick microstrip line were verified by measurement with a very good similarity up to 5 GHz. The comparison of the simulated and measured reflection and transmission coefficient for resistor is almost the same for up to around 5 GHz, whereas for capacitor for up to around 6 GHz and for inductor for up to around 7 GHz.
Co-Authors Abdul Harris Afnesia, Utari Agung Joni Saputra Al Iksani, Irna Salwa Angellia Debora Suryawan, Angellia Debora Anggraeni, Mella Antonius, Cayadi Sidarta Arta Moro Sundjaja, Arta Moro Arum Nadya Octania Asep Ali Thabah, Asep Ali Asri, Helmalia August Halomoan Siregar Aulia Andhikawati Aulia I, Shafira Aurelia, Aurelia Azizah Az'zahra Chandra, Stefani David David Deddy Deddy Denni, Denni Dikjayasa, Parisatria Edhie Budi Setiawan, Edhie Budi Efendi, Ade Irfan Ellynia, Ellynia Emma Rochima Eveline, Christina Fifa Argentina Habibie, Sitty Ainsyah Harahap, Sarah Geltri Hendry Henny Lestari, Henny Husna, Selma Novaliza Indra, Evta Irenita, Novembriani Irennita, Novembriani Istanto, Freddy H. Juliater Simamarta JUNIANTO JUNIANTO Keysha Amelia Citra Kho, Ferry Khoerunnisa, Nurani Koto, Siti Khadijah Kristina Kristina Kurniabudi, Kurniabudi Laksman, Myrna Mantiri, Dessy Mega Suryandari Miranda, Airin Mudrik Alaydrus Mulyono , Herry Muryono, Tupan Tri Nasution, Syafrani Putri Nawangwulan, Wening Ramadhani Siti Ng, Martha Nia, Nia Nopriyati, Nopriyati Novi Indah Susanthi, Novi Indah Panjaitan, Denti Masti Pratama, Gilar Budi Pratiwi, Sekar Widyastuti Rabecca Christin Chandra Rachmi, Irsafanti Rendy Sarudin Rodhiah, Rodhiah Rusmawardiana Rusmawardiana, Rusmawardiana Safitri, Tasrika Nur Saputra, Antoni Setiawan, Ferdy Trisanto Setiawan, Ivon Silaban, Herlan Siska Amonalisa Silalahi Sitanggang, Tina Novianti Surja, Stephanie Susan, Y. Syahzuni, Barlia Annis Tianto, Agus Tirtadijaja, Andari Umaisaroh Umaisaroh Verano, Raka Vincent Vincent, Vincent Wibawa, Callysta Wijayanti, Lady Ayu Sri Winnie Winnie Yana Erlyana, Yana Yosi Pahala, Yosi Yulianti Keke Yurrita Mailintina