A Detection system with temperature in a room using Arduino
SISTEM PENDETEKSI SUHU RUANGAN DENGAN MENGUNAKAN ARDUINO
DOI:
10.33395/sinkron.v7i2.11351Keywords:
Arduino; Temperature Sensor LM35DZ; LCD; LCD Module; Information MediaAbstract
In this era, all agencies, be it companies, offices, and industries, take advantage of technological developments with computerized systems. This progress gives an important role in human life. Currently, computers are not only used to process data, they can even be used to control an electronics-based system, such as in the field of controlling external equipment, controlling robots, electronic equipment, and so on. Along with the development of these technologies, the authors try to develop a type of electronic component, namely the LM35DZ Temperature Sensor and Arduino. This research was conducted to create a system that can measure temperature in a room using Arduino and the LM35DZ temperature sensor as the main components. This LM35DZ temperature sensor functions to convert the temperature scale into an electrical quantity in the form of a voltage with a high level of precision but is very simple. Arduino functions as a central place for processing all data and instructions, so that it can facilitate the development of a microcontroller application, starting from writing source programs, complications, uploading complication results and testing serial terminals. The use of Arduino in this tool is combined with ATMEGA 328 and the source program used is the C programming language.
Downloads
References
Adriansyah, A., & Hidyatama, O. (September 2013). Rancang Bangun Prototipe Elevator Menggunakan Microcontroller Arduino Atmega 328p. Jurnal Teknik Elektro Universitas Mercu
Buana, (Issn) Vol 4 No 3 2013
Al-Bahra bin Ladjamudin. 2015. Analisis dan Desain Sistem Informasi. Yogyakarta : Graha Ilmu
Albert Paul Malvino, 2013, Prinsip-Prinsip Elektronika, Salemba. Teknika, Jakarta
Ardianto Pranata., Jaka Prayudha., Teja Sandika. (2017). Rancang Bangun Alat Pendeteksi
Dehidrasi Dengan Metode Fuzzy Logic Berbasis Arduino. Jurnal SAINTIKOM Vol.
, No. 3,September 2017 ISSN: 1978-6603
Briston Manurung. (2019). Rancang Bangun Pendeteksi Denyut Jantung dan Suhu Tubuh
Portabel Berbasis Mikrokontroller Arduino Uno. Medan. Program Studi D-3 Fisika,
Fakultas Matematika dan Ilmu Pengetahuan Alam, Universitas Sumatera Utara.
http://repositori.usu.ac.id/handle/123456789/22599
Casely, D. dan Kumar, K. 2010. Project Monitoring and Evaluation in Agriculture. Baltimore
Eka Permana & Susi Herawati (2018), “RANCANG BANGUN SISTEM MONITORING SUHU RUANGAN BAGIAN PEMBUKUAN BERBASIS WEB MEGGUNAKAN MIKROKONTROLER ARDUINO UNO R3”, Jurnal Teknologi Informasi dan Komunikasi STMIK Subang
Eade and Williams, 2015, The Oxfam Handbook of Development and Relief, United Kingdom: Oxfam
Rahayu, N. (2020). Early Warning Of Leaking Lpg Gas Through Short Message Service (Sms) And Loudspeaker Tool Using Arduino Uno. Journal of Applied Engineering and Technological
Science (JAETS), 1(2), 91-102. https://doi.org/10.37385/jaets.v1i2. 61
Rindi Wulandari (2020), Rancang Bangun Pengukur Suhu Tubuh Berbasis Arduino Sebagai Alat Deteksi Awal Covid-19, Prosiding SNFA (Seminar Nasional Fisika dan Aplikasinya) 2020
Navreetinder Kaur., Rita Mahajan., Deepak Bagai. (2016). Air Quality Monitoring System
Based On Arduino Microcontroller. International Journal of Innovative Research in
Science, Engineering and Technology (An ISO 3297: 2007 Certified Organization)
Vol. 5, Issue 6, June 2016
Sumarna, E. 2015, Rancang Bangun Sistem Kendali Perangkat Listrik Jarak Jauh Berbasis Web
Menggunakan Mikrokontroler Atmega8535, Sekolah Tinggi Manajemen Informatika dan
Komputer: Subang
Yolnasdi, dkk (2020), RANCANG BANGUN PENGONTROL SUHU RUANGAN
BERBASIS MIKROKONTROLER ARDUINO UNO , Journal of Information Technology and Computer Science (INTECOMS)
Zulhipni Reno Saputra Elsi (2016), PERANCANGAN MONITORING SUHU RUANGAN MENGGUNAKAN ARDUINO BERBASIS ANDROID DI PT. TUNGGAL IDAMAN ABDI CABANG PALEMBANG, STMIK-MURA Lubuklinggau
Downloads
How to Cite
Issue
Section
License
Copyright (c) 2022 Riandana Afira, Ayu Widya Purnama, Teri Ade Putra, Irzal Arief Wisky
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.