Pembuatan Trainer Tempat Sampah Otomatis Guna Menyiasati Masalah Sampah Di Lingkungan Masyarakat


Making Automatic Trash Trainer To Get Rid of Waste Problems in the Community Environment


  • (1) * Hans Perdana Putra            Universitas Islam Balitar, Blitar  
            Indonesia

  • (2)  Syamsudin Nur Wahid            Universitas Islam Balitar, Blitar  
            Indonesia

    (*) Corresponding Author

Abstract

Ngadirejo Village is a safe and comfortable village with the majority of the population working in agriculture and animal husbandry. However, on the other hand, public awareness and concern for handling waste is still lacking. Concerns about the waste problem can be reduced by increasing public awareness to treat waste properly and correctly. Therefore, the author tries to make a tool that is an Automatic Trash Place so that the community members are not reluctant to throw garbage in the trash. They do not need to touch the lid of the trash, to open it only need to hold hands and automatically the trash can will open. Trash cans are made by modifying existing bins. Swivel-covered bins are connected by servo motors and ultrasonic and infrared sensors which are controlled by the Arduino Uno microcontroller kit. This trash can can function properly and be used properly by the community. The results of this research are that the trash can can respond to garbage that is 20 cm away quickly and the trainer is used by students of the electrical engineering study program at Balitar Islamic University as a learning medium.

References

Azwar, A, 1990, Pengantar Ilmu Kesehatan Lingkungan, Jakarta, Yayasan Mutiara

Reksosoebroto, S. 1990. Hygiene dan Sanitasi. APK-TS. Jakarta.

Ubaidillah, Deni. 2015. ”PerancanganSistem Smart Trash Can Menggunakan Arduino Dengan Sensor Ultrasonic HC-SR04”. Sekolah Tinggi Manajemen Informatika dan Komputer Amikom Yogyakarta.

Edi Nurcahyono, Paulus. 2013. ”Tempat Sampah Pintar Menggunakan Mikrokontroller Atmega 8535”. Yogyakarta.

Wahid, Syamsudin Nur. "Tester Baterai Sederhana Berbasis Mikrokontroler Atmega8535 untuk Karakterisasi Pengisian-Pengosongan Baterai Sel Tunggal." Jurnal Qua Teknika 6.2 (2016): 57. DOI: https://doi.org/10.35457/quateknika.v6i2.333

Yufron, Ahmad. "Mikrokontroler At Mega 8535 sebagai Pengendali Intensitas Lampu Pijar." Jurnal Qua Teknika 6.1 (2016): 69-87. DOI: https://doi.org/10.35457/quateknika.v6i1.338

Muklisin, Imam. "Pendeteksi Volume Tandon Air Secara Otomatis menggunakan Sensor Ultrasonic Berbasis Arduino Uno R3." Jurnal Qua Teknika 7.2 (2017): 55-65. DOI: https://doi.org/10.30957/quateknika.v7i2.242

Ikhsan, Mohammad Alfan. "Pendeteksi Kekeruhan Air di Tandon Rumah Berbasis Arduino Uno." Jurnal Qua Teknika 8.2 (2018): 17-29. DOI: https://doi.org/10.30957/quateknika.v8i2.470

Damajani, RR Dhian & Larasati, Dwinita. 2010. Wacana Desain Karya dan Pemikiran Imam Buchori Zainuddin. Bandung: Penerbit ITB.

Anonim. 2014.Makalah Pencemaran Sampah. (Online). (https://himka1polban.wordpress.com/chemlib/makalah/makalah-pencemaran-sampah/) diakses pada 15 Agustus 2018

Anonim. Kontribusi Metana Terhadap Pemanasan Global. (Online). (https://www.skepticalscience.com/translation.php?a=76&l=24) diakses pada 15 Agustus 2018

Anonim. Apa Itu Sampah?. (Online). (https://rindisulis.wordpress.com/sampah/apa-itu-sampah/) diakses pada 15 Agustus 2018

Sugiyono. 2011. Metode Penelitian Kuantitatif Kualitatif dan R&D. Bandung: Penerbit Alfabeta.

Anonim. Cara Menangani Motor Servo. (Online), (http://saptaji.com/2016/12/25/menangani-motor-servo-ds04-nfc-dengan-arduino/) diakses tanggal 28 Juli 2018

Picture in here are illustration from public domain image (License) or provided by the author, as part of their works
Published
2019-04-25
 
Section
Control System