Fabrikasi dan Karakterisasi Splitter POF Multimode sebagai Power Divider Menggunakan Pergeseran Mikro

Firmansyah, Rizky (2018) Fabrikasi dan Karakterisasi Splitter POF Multimode sebagai Power Divider Menggunakan Pergeseran Mikro. Undergraduate thesis, Institut Teknologi Sepuluh Nopember.

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Abstract

Serat optik plastik telah banyak dimanfaatkan karena serat optik plastik memiliki keistimewaan yaitu ringan, tahan terhadap interferensi elektromagnetik, aman dari percikan api, gas, dan bahan kimia beracun, sensitivitas, dan bandwidth yang tinggi. Keistimewaan tersebut membuat splitter banyak dikembangkan untuk memenuhi berbagai kebutuhan antara lain komunikasi dan sensor. Penelitian ini dilakukan dengan menggunakan teknik Misangular Alignment dan Lateral Displacement pada masukan serat optik di titik persambungan. Fabrikasi Splitter dilakukan dengan menempatkan tiga serat optik plastik membentuk struktur Y pada substrat Akrilik yang telah diukir menggunakan Baisheng Laser CNC. Pembagi berkas cahaya (Beam Splitter) pada 3-dB (50:50) Splitter ini terjadi pada pergeseran 0,40 mm dengan coupling ratio 50,32% untuk keluaran serat optik 2 dan 49,67% untuk keluaran serat optik 1 dengan loss sebesar 4,64dB. ====================================================================================================== Plastic optical fibers (POF) have been widely utilized because plastic optical fibers have the features of being lightweight, resistant to electromagnetic interference, safe from sparks, gases, and toxic chemicals, high sensitivity and bandwidth. The specialty makes Splitter much developed to meet various needs such as communication and sensors. This research was conducted by using Misangular Alignment and Lateral Displacement technique at optical fiber input at the junction. The Splitter fabrication is done by placing three plastic optical fibers forming a Y structure on an Acrylic substrate that has been carved using a Baisheng Laser CNC. The beam Splitter at 3-dB (50:50) this Splitter occurs at a shift of 0.40 mm with a coupling ratio of 50.32% for optical fiber output 2 and 49.67% for optical fiber output 1 with a loss of 4.64 dB.

Item Type: Thesis (Undergraduate)
Additional Information: RSFi 621.369 2 Fir f-1 3100018077142
Uncontrolled Keywords: Misangular alignment, lateral displacement, pergeseran mikro, serat optik
Subjects: T Technology > TA Engineering (General). Civil engineering (General)
T Technology > TA Engineering (General). Civil engineering (General) > TA1800 Fiber Optics
Divisions: Faculty of Natural Science > Physics > 45201-(S1) Undergraduate Thesis
Depositing User: RIZKY FIRMANSYAH
Date Deposited: 15 Dec 2020 09:22
Last Modified: 15 Dec 2020 09:22
URI: https://repository.its.ac.id/id/eprint/56444

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