RANCANG BANGUN AUTOMATIC RAIN RECORDING (ARR ) BERBASIS DEVELOPMENT BOARD MIKROAVR128

The right use of rain can provide many benefits. For this reason, mapping of rainfall areas is needed. This is intended to determine the level of disaster preparedness for each region. In mapping, a tool is needed to calculate the rainfall that falls. In the market there are only manual measuring de...

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Main Authors: Andi Kurniawan Nugroho, Edy Susilo, Diah Setyati Budiningrum
Format: Article
Language:Indonesian
Published: Universitas Semarang 2017-04-01
Series:Elektrika
Subjects:
Online Access:http://journals.usm.ac.id/index.php/elektrika/article/view/1107
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spelling doaj-f7112562ddeb44478a889ee4cff6bf862020-11-25T01:32:06ZindUniversitas SemarangElektrika2085-05652017-04-01914810.26623/elektrika.v9i1.1107710RANCANG BANGUN AUTOMATIC RAIN RECORDING (ARR ) BERBASIS DEVELOPMENT BOARD MIKROAVR128Andi Kurniawan Nugroho0Edy Susilo1Diah Setyati Budiningrum2Teknik Elektro, Universitas SemarangTeknik Elektro, Universitas SemarangTeknik Elektro, Universitas SemarangThe right use of rain can provide many benefits. For this reason, mapping of rainfall areas is needed. This is intended to determine the level of disaster preparedness for each region. In mapping, a tool is needed to calculate the rainfall that falls. In the market there are only manual measuring devices, while rainfall gauges are not available which can measure automatically and directly but additional equipment is needed separately. In addition, the measurement results cannot be seen by the public. Therefore we need a tool that works automatically that can display measurement results directly and can be seen directly by the public. Thus the community can see and measure rainfall that falls. In this plan Automatic Rain Recording is used by using a proximity sensor placed on top of a measuring cup and the sensor is connected to the AVR128 Development Board as the control center to convert sensor data into ADC (Analog to Digital Converter) data. This tool is connected with a microSD with a capacity of 8Gbyte to store rainfall level data. AVR128 will store every 2 minutes with a total of 275,368 data and 382 days of storage capability. Keywords : rainfall, ARR, ADC, AVR128, mikroSDhttp://journals.usm.ac.id/index.php/elektrika/article/view/1107rainfall, arr, adc, avr128, mikrosd
collection DOAJ
language Indonesian
format Article
sources DOAJ
author Andi Kurniawan Nugroho
Edy Susilo
Diah Setyati Budiningrum
spellingShingle Andi Kurniawan Nugroho
Edy Susilo
Diah Setyati Budiningrum
RANCANG BANGUN AUTOMATIC RAIN RECORDING (ARR ) BERBASIS DEVELOPMENT BOARD MIKROAVR128
Elektrika
rainfall, arr, adc, avr128, mikrosd
author_facet Andi Kurniawan Nugroho
Edy Susilo
Diah Setyati Budiningrum
author_sort Andi Kurniawan Nugroho
title RANCANG BANGUN AUTOMATIC RAIN RECORDING (ARR ) BERBASIS DEVELOPMENT BOARD MIKROAVR128
title_short RANCANG BANGUN AUTOMATIC RAIN RECORDING (ARR ) BERBASIS DEVELOPMENT BOARD MIKROAVR128
title_full RANCANG BANGUN AUTOMATIC RAIN RECORDING (ARR ) BERBASIS DEVELOPMENT BOARD MIKROAVR128
title_fullStr RANCANG BANGUN AUTOMATIC RAIN RECORDING (ARR ) BERBASIS DEVELOPMENT BOARD MIKROAVR128
title_full_unstemmed RANCANG BANGUN AUTOMATIC RAIN RECORDING (ARR ) BERBASIS DEVELOPMENT BOARD MIKROAVR128
title_sort rancang bangun automatic rain recording (arr ) berbasis development board mikroavr128
publisher Universitas Semarang
series Elektrika
issn 2085-0565
publishDate 2017-04-01
description The right use of rain can provide many benefits. For this reason, mapping of rainfall areas is needed. This is intended to determine the level of disaster preparedness for each region. In mapping, a tool is needed to calculate the rainfall that falls. In the market there are only manual measuring devices, while rainfall gauges are not available which can measure automatically and directly but additional equipment is needed separately. In addition, the measurement results cannot be seen by the public. Therefore we need a tool that works automatically that can display measurement results directly and can be seen directly by the public. Thus the community can see and measure rainfall that falls. In this plan Automatic Rain Recording is used by using a proximity sensor placed on top of a measuring cup and the sensor is connected to the AVR128 Development Board as the control center to convert sensor data into ADC (Analog to Digital Converter) data. This tool is connected with a microSD with a capacity of 8Gbyte to store rainfall level data. AVR128 will store every 2 minutes with a total of 275,368 data and 382 days of storage capability. Keywords : rainfall, ARR, ADC, AVR128, mikroSD
topic rainfall, arr, adc, avr128, mikrosd
url http://journals.usm.ac.id/index.php/elektrika/article/view/1107
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AT edysusilo rancangbangunautomaticrainrecordingarrberbasisdevelopmentboardmikroavr128
AT diahsetyatibudiningrum rancangbangunautomaticrainrecordingarrberbasisdevelopmentboardmikroavr128
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