VIBRATION SENSOR BASED ON FLAT KOIL FOR EARTHQUAKE EARLY DETECTION IN LOMBOK NUSA TENGGARA BARAT REGION
DOI:
https://doi.org/10.33394/j-ps.v1i2.1015Keywords:
vibration sensor, flat coil, earthquakeAbstract
In this research has been developed the application of flat coil as vibration sensor for early detection of earthquake. The flat coil is a very thin wire winding and acts as an inductor. This flat coil along with the capacitor constructs an oscillator which generates frequencies depending on the value of inductance and capacitance. This oscillator is called the LC oscillator. The flat coil inductance depends on the distance of the metal object in front of the flat coil. If the inductance changes, the frequency will change as well. Frequency can be converted into voltage form to represent distance. This effect is then applied to low frequencies using a pendulum on the sensor housing. The sensor system created can measure low-frequency vibrations in the range 0.26 - 1.0 Hz. Based on the research, the vibration sensor that has been made can measure one of the low frequency vibrations of 0.468 Hz at the frequency of 0.46 Hz vibration sourceReferences
Djamal, Mitra. A Study of Flat Coil Sensor For Measuring Displacements. Journal Departement of Physics, Faculty of Mathematics and Sciences ITB. 1996.
Watiasih, richa. Penerapan LVDT Sebagai Sensor Getaran Pendeteksi Ketidakrapatan Berbasis Data Getaran Pada Komresor, POLITEKNIK Jurnal Teknologi, Volume 7, No 2, September 2008-ISSN 1412-6427. Universitas Bhayangkara Surabaya.
Lazuardi. Studi Awal Sensor Getaran Berdasarkan Prinsip Induktif. Tesis Program Magister Fisika S2, Jurusan Fisika ITB, 1996.
Sardo Martinus. Studi Awal Pembuatan Prototipe Alat Ukur Kecepatan Aliran Udara Menggunakan Sensor Koil Datar, Laporan Tugas Akhir Program DIII Instrumentasi Jurusan Fisika UI, 1999 .
Erik Hallen. Electromagnetic Theory. Chapman & Hall Ltd, London. 1962.
Grant, L, S., Philips, W. R., Electromagnetisme, 2nd . Ed., John Wiley and Sons, Chycester. 1996.
Sutrisno/ Elektronika Lanjutan: Teori Dasar dan Penerapannya, Jurusan Fisika, FMIPA, ITB, Bandung, 1986.
Sutrisno, Elektronika: Teori Dasar dan Penerapannya (Jilid I dan II), Penerbit ITB, Bandung. 1986.
Widanarto, Wahyu. Desain dan Pembuatan Alat Ukur Kecepatan Aliran Udara dengan Sensor Koil Datar berbasis Mikrokontroler 89c51, Jurusan Fisika, PPS ITB 2000 (tidak dipublikasikan)
Duncan, Tom. Electronics for Today and Tomorrow, John Murray (Publiser) Ltd., London. 1994.
Andrianto, Heri. Pemrograman Mikrokontroler AVR ATMEGA 16 Menggunakan Bahasa C (CodeVision AVR), Penerbit Informatika, Bandung. 2008.
Setiadi, Rahmon Nanda. Sensor Getaran Frekuensi Rendah Berbasis Koil Datar. Tesis Program Magister Fisika S2, Jurusan Fisika ITB. 2009.
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