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IMPLEMENTASI STANDARD KESELAMATAN DAN KESEHATAN KERJA DI BENGKEL TEKNIK DAN BISNIS SEPEDA MOTOR SMK YAPIN KERTASEMAYA Jauharotul Maknunah; Fauzan Amri; Karsid Karsid; Indra Fitriyanto; Tri Haryanti; Icha Fatwasauri; Sohib Naluri Jaelani; Kriesna Kharisma Purwanto
JMM (Jurnal Masyarakat Mandiri) Vol 7, No 6 (2023): Desember
Publisher : Universitas Muhammadiyah Mataram

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31764/jmm.v7i6.17852

Abstract

Abstrak: Implementasi standar Keselamatan dan Kesehatan Kerja (K3) di tempat kerja, khususnya di Bengkel Teknik Dan Bisnis Sepeda Motor, SMK Yapin Kertasemaya perlu dilaksanakan karena mengandung potensi bahaya tertentu. Berdasarkan hasil survei awal tersebut, maka diperlukan kegiatan yang bertujuan mengetahui potensi bahaya dari bengkel TBSM untuk selanjutnya dilakukan implementasi standar K3 di Bengkel tersebut serta memastikan keberlanjutannya melalui rencana dan laporan tindak lanjut. Implementasi standar K3 dilaksanakan melalui beberapa tahapan yakni survei dan pendampingan untuk mengidentifikasi keterlaksanaan K3 berdasarkan indikator keterlaksanaannya yang berjumlah 8 indikator. Selanjutnya dilaksanakan acara workshop terkait pentingnya K3 serta manajemen K3 yang oleh seluruh pihak sekolah termasuk guru, siswa dan karyawan lain terutama yang terlibat di Bengkel yang berjumlah 50 orang. Evaluasi dilaksanakan dengan beberapa metode yakni melalui laporan tindak lanjut dari keterlaksanaan standar K3 dan juga survey kepuasan terkait kegiatan. Hasil dari workshop adalah implementasi dan tindak lanjut setelah workshop oleh pihak sekolah untuk diidentifikasi keterlaksanaan K3 di Bengkel. Berdasarkan hasil laporan tindak lanjut dan implementasi K3 di Bengkel, didapatkan bahwa Implementasi standar K3 di Bengkel TBSM SMK Yapin telah tercapai serta menunjukkan ketercapaian 8 indikator keterlaksanaan K3 dari yang sebelumnya hanya terlaksana 3 indikator saja. Selain itu juga hasil survei kegiatan menunjukkan bahwa 88% peserta merasa setuju terkait keberhasilan kegiatan ini.Abstract: Implementation of Occupational Safety and Health (K3) standards in the workplace, especially in the Motorcycle Engineering and Business Workshop, Yapin Kertasemaya Vocational School needs to be implemented because it contains certain potential dangers. Based on the results of the initial survey, activities are needed that aim to determine the potential dangers of the TBSM workshop, then implement K3 standards in the workshop and ensure its sustainability through follow-up plans and reports. Implementation of K3 standards is carried out through several stages, namely surveys and assistance to identify K3 implementation based on 8 indicators of implementation. Furthermore, a workshop was held regarding the importance of K3 and K3 management by all school parties including teachers, students and other employees, especially those involved in the workshop, totaling 50 people. Evaluation is carried out using several methods, namely through follow-up reports on the implementation of K3 standards and also satisfaction surveys related to activities. The results of the workshop are implementation and follow-up after the workshop by the school to identify K3 implementation in the workshop. Based on the results of the follow-up report and implementation of K3 in the Workshop, it was found that the implementation of K3 standards in the TBSM SMK Yapin Workshop had been achieved and showed the achievement of 8 indicators of K3 implementation from previously only 3 indicators were achieved. Apart from that, the results of the activity survey showed that 88% of participants agreed regarding the success of this activity.
SISTEM MONITORING PENDINGINAN BUAH MANGGA DARI SISI TEMPERATUR DAN KELEMBABAN BERBASIS IOT Westari, Dwianti; Fitriyanto, Indra; Karsid, Karsid; Khoerun, Bobi; Ariska, Afid
Jurnal Teknologi Terapan Vol 11, No 2 (2025): Jurnal Teknologi Terapan
Publisher : P3M Politeknik Negeri Indramayu

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31884/jtt.v11i2.833

Abstract

The mango cooling monitoring system based on the Internet of Things (IoT) is developed to maintain quality and freshness during storage. This study utilizes the ESP32 module as the central processing unit, integrated with DHT22 temperature and humidity sensors, enabling real-time monitoring. The collected data is transmitted to an IoT platform for remote monitoring. Testing results indicate that the system accurately monitors storage conditions with minimal error rates. The implementation of IoT technolody enhances user convenience, improves storage efficiency, and reduce product loss due to improres handling. This research is expected to contribute to the advancement of agricultural technology and the optimization of agricultural product distribution.
Pembuatan Trainer Kelistrikan Sepeda Motor Untuk Program Studi Teknik dan Bisnis Sepeda Motor SMK Yapin Kertasemaya, Indramayu Fitriyanto, Indra; Kurniawan, Yudhy; Maknunah, Jauharotul
Mitra Akademia: Jurnal Pengabdian Masyarakat Vol 6 No 3 (2023): Mitra Akademia: Jurnal Pengabdian Masyarakat
Publisher : Pusat Penelitian dan Pengabdian kepada Masyarakat (P3M) Politeknik Negeri Jakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32722/mapnj.v6i3.6252

Abstract

Project Based Learning is really needed in vocational schools, because education in vocational schools emphasizes the skills aspect rather than the knowledge aspect. So that this learning can be better understood by students, it is necessary to create a trainer or simulator to practice the theory that has been obtained. Based on a survey that has been conducted, the service partner, namely SMK Yapin Kertasemaya, has a Business and Motorcycle Engineering Study Program, but does not yet have a motorbike trainer. Therefore, this service will collaborate with partners, namely SMK Yapin Kertasemaya, to create motorbike trainers. Because the motorbike system is quite complex, the trainers made are limited to electrical trainers only. The trainer was made in the Instrumentation and Control Laboratory at the Indramayu State Polytechnic with the assistance of laboratory assistants and several students. So that the trainer created can function well, the trainer will also be tested and evaluated by expert lecturers from Mechanical Engineering. Based on the design that has been carried out, the results obtained are that all trainer components can function well and can be tested on vocational school students. After the trainer was tested on vocational school students, the team gave a questionnaire to the teachers and the results showed that the trainer made was very good and really helped the learning activities of vocational school students, but the quantity needed to be increased further in order to accommodate all students' practical activities.
Implementasi Sistem Aerator Menggunakan Kincir Berbasis Panel Surya Pada Empang Udang Fatwasauri, Icha; Fitriyanto, Indra; Maknunah, Jauharotul; Pahlevi, Rezky; Fazri, Dimas Maulana
ADMA : Jurnal Pengabdian dan Pemberdayaan Masyarakat Vol. 5 No. 2 (2025): ADMA: Jurnal Pengabdian dan Pemberdayaan Masyarakat
Publisher : LPPM Universitas Bumigora

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.30812/adma.v5i2.4534

Abstract

Desa Pangkalan di Kabupaten Indramayu merupakan salah satu daerah dengan potensi besar dalam budidaya udang. Namun, seperti banyak daerah lain, petambak udang di Desa Pangkalan menghadapi tantangan terkait keberlanjutan lingkungan dan efisiensi operasional. Salah satu tantangan utama adalah kebutuhan akan sistem aerasi yang berkelanjutan untuk memastikan kualitas air yang baik dalam empang. Kegiatan pengabdian kepada masyarakat ini bertujuan untuk meningkatkan produktivitas budidaya udang di Desa Pangkalan, Indramayu, melalui implementasi sistem aerator berbasis panel surya. Sistem ini dirancang untuk meningkatkan kadar oksigen terlarut dalam air dengan cara yang efisien, hemat energi, dan ramah lingkungan. Banyak petambak di desa ini menghadapi tantangan dalam menjaga kualitas air yang optimal dan mengurangi biaya operasional akibat penggunaan sistem aerasi konvensional. Metode pengabdian ini yaitu memperkenalkan teknologi kincir aerator yang digerakkan oleh energi surya, yang dirancang untuk meningkatkan kadar oksigen terlarut dalam empang. Pelatihan dan pendampingan diberikan kepada petambak mengenai instalasi, pemeliharaan, dan manfaat penggunaan panel surya. Hasil pengabdian menunjukkan kadar oksigen terlarut dalam air meningkat hingga 15% dibandingkan kondisi awal. Kesimpulan dari penelitian ini adalah bahwa implementasi sistem aerator berbasis panel surya merupakan solusi yang efektif dan efisien untuk meningkatkan kualitas air pada empang udang, sekaligus mendukung praktik budidaya yang lebih ramah lingkungan dan berkelanjutan.
Sistem Internet of Things pada Alat Ukur Kualitas Air PDAM Bobi Khoerun; Fitriyanto, Indra; Icha
JEECAE (Journal of Electrical, Electronics, Control, and Automotive Engineering) Vol. 9 No. 2 (2024): JOURNAL OF ELECTRICAL, ELECTRONICS, CONTROL, AND AUTOMOTIVE ENGINEERING (JEECAE
Publisher : Pengelolaan Penerbitan Publikasi Ilmiah (P3I) Politeknik Negeri Madiun

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32486/jeecae.v9i2.837

Abstract

Air merupakan kebutuhan primer manusia, sehingga kualitas air yang digunakan harus diperhatikan. Khususnya pada pengolahan air PDAM, setiap proses harus diukur kualitas airnya. Saat ini proses pengukuran kualitas air masih masih dicatat dan diolah secara manual. Oleh karena itu, diperlukan sistem internet of things untuk menampilkan hasil pengukuran kualitas air PDAM dalam satu tempat untuk pengukuran suhu, pH, TDS, kadar garam, dan kekeruhan air. Tujuan dari penelitian ini adalah membuat sistem internet of things untuk pengukuran kualitas air dari beberapa parameter, sehingga data hasil pengukuran dapat secara otomatis dikirimkan ke penerima melalui internet. Sistem kerja alat ini adalah hasil pengukuran kualitas air menggunakan sensor akan dikirim ke mikrokontroller dan ditampilkan lewat website. Mikrokontroller tersebut menggunakan ESP32. Sistem dibuat berbasis IoT, sehingga pengecekan data dapat dilihat dimana saja. Oleh karena itu, dengan penelitian ini diharapkan sistem pengukuran kualitas air PDAM dapat lebih cepat dan terukur.
Automation System of Gallon Filling Valve Based on Outseal PLC and Haiwell Interface Fitriyanto, Indra; Aziz, Rofan; Fatwasauri, Icha; Kurnianingtyas, Rahajeng; Pebriari, Rizky Budiman
Emitor: Jurnal Teknik Elektro Vol 25, No 3: November 2025
Publisher : Universitas Muhammadiyah Surakarta

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.23917/emitor.v25i3.12149

Abstract

Water is one of the basic needs that must be met by humans. To meet drinking needs in urban areas, the easiest and cheapest way for people is to buy refilled drinking water. However, the process of filling drinking water is still done manually by humans, so it is prone to errors. Therefore, in this study, the automation of gallon water filling will be carried out using Outseal PLC. Outseal PLC is used because of its relatively low price and greater reliability when compared to a microcontroller. In addition, the gallon filling status will also be displayed on the HMI display. In this study, a trial will be conducted on a drinking water installation at the Indramayu State Polytechnic (Polindra). Before testing, the flow sensor used must be calibrated first. Calibration is done by comparing the results of the flow sensor readings with the PDAM water meter to obtain a conversion of pulses to liters of water. Based on the tests that have been carried out, the results obtained are that the system can work well, namely the valve and pump turn on when the start button is pressed and will automatically turn off when the sensor has read a water volume of 19 liters. However, the sensor shows different readings when the water source used has a different water flow rate. In the first calibration using PDAM water flow rate, a pulse value of 464 was obtained for 1 liter of water, while in the second calibration using pump water flow rate, a pulse value of 566 was obtained for 1 liter of water. This is caused by the sensor used having less sensitivity to changes in water flow rate, which results in different reading results for different water flow rate. Therefore, the sensor must be recalibrated if it is to be used in water installations with different water flow rate. Although the sensor reading values are inconsistent, from tests carried out 40 times, the difference in readings is less than 10%.