Munandar, Mahmud Ari and , Dr. Ratnasari Nur Rohmah, ST, MT and , Dedi Ari Prasetya,ST (2015) Alat Pengukur Getaran Berbasis Mikrokontroller Atmega 16 Menggunakan Sensor Microphone. Skripsi thesis, Universitas Muhammadiyah Surakarta.
PDF (NASKAH PUBLIKASI)
NASKAH PUBLIKASI.pdf Download (769kB) |
|
PDF (HALAMAN DEPAN)
HALAMAN DEPAN.pdf Download (791kB) |
|
PDF (BAB I)
BAB I.pdf Download (91kB) |
|
PDF (BAB II)
BAB II.pdf Restricted to Repository staff only Download (409kB) |
|
PDF (BAB III)
BAB III.pdf Restricted to Repository staff only Download (328kB) |
|
PDF (BAB IV)
BAB IV.pdf Restricted to Repository staff only Download (470kB) |
|
PDF (BAB V)
BAB V.pdf Restricted to Repository staff only Download (88kB) |
|
PDF (DAFTAR PUSTAKA)
DAFTAR PUSTAKA.pdf Download (153kB) |
|
PDF (LAMPIRAN)
LAMPIRAN.PDF Restricted to Repository staff only Download (1MB) |
|
PDF (SURAT PERNYATAAN NASKAH PUBLIKASI)
SURAT PERNYATAN PUBLIKASI ILMIAH.pdf Restricted to Repository staff only Download (4MB) |
Abstract
Vibration is a back and forth motion around equilibrium. The equilibrium point is a state where an object is at rest if no force acting on the object. Vibration having amplitude (deviation farthest distance with the midpoint) of the same. An electric machine which can be produced the vibration, the use of the electric machine for a long time can lead to vibration effects berbada at the time of the engine in its normal condition. Vibration measurements on electrical machine can be made directly and indirectly (convert sound). Engine vibration measuring device uses a sensor microphone is based ATMega 16 merupkan vibration gauges indirectly. This tool converts the audio signal (sound) into electrical signals. Microcontroller as an analog signal converter into a digital thereof in the form of data and 16x2 character LCD as its output in the form of a value (number). From the test results based microcontroller vibration measuring device ATMega 16 using sensor microphone microphone sensor measurement results obtained by measuring the distance of less than 5 cm at 1700 rpm rotational speed measurement result measured by a device made of 323Hz and 66 dB at the microphone sensor readings A. While the sensor measurement microphone B scalable 512Hz and 68 dB. Measurements with conventional measuring instruments with an oscilloscope and a decibel meter measurements obtained at 453 Hz at the output of the sensor microphone A and 624 Hz is in coupling with an oscilloscope. While the measurement noise measured by a decibel meter measurement results obtained 68.9 dB. To measure the rotational speed 1700 rpm with a distance of more than 5 cm measurement obtained on the measurement results measured by a device made of 422Hz and 66 dB at the microphone sensor readings A. While the sensor measurement microphone and measured 528 Hz and 68 dB. Measurements with conventional measuring instruments with an oscilloscope and a decibel meter measurements obtained at 453 Hz at the output of the sensor microphone A and 624 Hz is in coupling with an oscilloscope. While the measurement noise measured by a decibel meter measurement results obtained 78.4 dB. Vibration measurements by using a sensor microphone that the closer the distance measurement and high motor speed the greater the error value is read by the tool, because the closer the object, the sensor readings with the greater noise generated as well. Keywords: dB, vibration, LCD, and sensor mikrontroller microphone.
Item Type: | Karya ilmiah (Skripsi) |
---|---|
Uncontrolled Keywords: | dB, vibration, LCD, and sensor mikrontroller microphone. |
Subjects: | T Technology > TK Electrical engineering. Electronics Nuclear engineering |
Divisions: | Fakultas Teknik > Teknik Elektro |
Depositing User: | MAHMUD ARI MUNANDAR |
Date Deposited: | 12 Aug 2015 03:30 |
Last Modified: | 12 Oct 2021 06:29 |
URI: | http://eprints.ums.ac.id/id/eprint/36932 |
Actions (login required)
View Item |