Proyek Implementasi Instalasi Kelistrikan pada Usaha Mikro

Authors

  • Veronica Windha Mahyastuty - Program Studi Program Profesi Insinyur, Fakultas Biosains, Teknologi, dan Inovasi, Universitas Katolik Indonesia Atma Jaya
  • Lanny M.M. Panjaitan Program Studi Program Profesi Insinyur, Fakultas Biosains, Teknologi, dan Inovasi, Universitas Katolik Indonesia Atma Jaya,
  • Eko Prasetyo Nugroho Nexcore Labs, Jalan Kedoya Alamanda I no 18
  • Gilbert Tanaputra Gunawan Program Studi Program Teknik Elektro, Fakultas Biosains, Teknologi, dan Inovasi, Universitas Katolik Indonesia Atma Jaya
  • Bryan Setiaputra Program Studi Program Teknik Elektro, Fakultas Biosains, Teknologi, dan Inovasi, Universitas Katolik Indonesia Atma Jaya

DOI:

https://doi.org/10.25170/jpk.v2i05.6974

Keywords:

micro-enterprise, street coffee cart, 12V battery, work safety

Abstract

Street coffee carts, as a form of micro-enterprise, often rely on 3-kg LPG gas and power banks to support their operations, particularly for lighting and water heating. However, this system has limited energy capacity and poses high safety risks. This report discusses the implementation of an alternative electrical system that is safer and offers more functionality by using a 12V car battery and a 1000W inverter as the energy source. The new system replaces the use of 3-kg LPG gas and power banks for powering heaters and LED lights, while still prioritizing Occupational Health and Safety (OHS) aspects. The analysis shows that the new design can provide a greater electricity supply (up to 720 Wh), allowing LED lights to operate for 11 hours and electric heaters for more than one hour. In addition, the system reduces the risk of fire caused by gas leaks and short circuits from wiring. This study demonstrates that a simple engineering approach can offer practical, efficient, and safe solutions for micro-entrepreneurs in urban environments.

References

Badan Nasional Penanggulangan Bencana (BNPB). (2023). Data Informasi Bencana Indonesia. (https://www.bnpb.go.id/storage/app/media/Buletin%20Info%20Bencana/Buku%20Data%20Bencana/Buku%20Data%20Bencana%20Indonesia%202023_compressed.pdf?utm). Diakses tanggal 14 April 2025.

Badan Standardisasi Nasional. (2000). SNI 04-0225-2000: Persyaratan Umum Instalasi Listrik 2000. Jakarta: BSN.

Direktorat Jenderal Ketenagalistrikan - ESDM. (2011). PUIL 2011 - Persyaratan Umum Instalasi Listrik. (https://gatrik.esdm.go.id/assets/uploads/download_index/files/d8197-buku-puil-2011.pdf). Diakses tanggal 10 April 2025.

Hapsari, A., Y., dkk (2024). Analisa Peran UMKM Terhadap Perkembangan Ekonomi di Indonesia. Jurnal Manajemen dan Ekonomi Kreatif, 2 (4), 53 – 62.

ICAsolar. Cara Menghitung Watt Hour. (https://m.icasolar.com/support/blog/hitung-watt-hours). Diakses tanggal 25 Juni 2025.

Kamar Dagang dan Industri Indonesia (KADIN). (2023). UMKM Indonesia. (https://kadin.id/data-dan-statistik/umkm-indonesia/). Diakses tanggal 10 April 2025.

Kementerian ESDM. (2023a). Konsumen LPG 3 Kg Bersubsidi Harus Terdaftar Mulai 2024. (https://www.esdm.go.id/id/berita-unit/direktorat-jenderal-minyak-dan-gas-bumi/subsidi-lpg-3-kg-tepat-sasaran-bermanfaat-bagi-masyarakat-miskin). Diakses tanggal 14 April 2025.

Kementerian ESDM. (2023b). 1 Januari 2024 Pembeli LPG Tabung 3 Kg Harus Terdaftar. (https://migas.esdm.go.id/post/1-januari-2024-pembeli-lpg-tabung-3-kg-harus-terdaftar). Diakses tanggal 14 April 2025. (TIDAK ADA DALAM SITASI)

Kementerian Energi dan Sumber Daya Mineral (ESDM). (2024a). Laporan Kinerja BPH Migas Tahun 2024. (https://www.esdm.go.id/assets/media/content/content-laporan-kinerja-bph-migas-tahun-2024.pdf). Diakses tanggal 10 April 2025.

Kementerian Energi dan Sumber Daya Mineral (ESDM). (2024b). Evaluasi Penyaluran Subsidi LPG 3 Kg, BBM, dan Listrik. (https://www.esdm.go.id/id/media-center/arsip-berita/evaluasi-penyaluran-subsidi-lpg-3-kg-bbm-dan-listrik-tim-kajian-usulkan-sejumlah-opsi-). Diakses tanggal 10 April 2025.

Siregar, H. (2022). Analisis Keselamatan Listrik pada Pedagang Kaki Lima Berbasis Gerobak di Kota Medan. Jurnal Teknik Elektro dan Lingkungan, 8(1), 44–51.

Sun Energy. (2024). Cara Mudah Menghitung Biaya Listrik. (https://sunenergy.id/cara-menghitung-biaya-listrik). Diakses tanggal 25 Juni 2025.

Wahyuni, L. (2023). Kondisi Instalasi Listrik PKL di Area Publik: Studi Kasus Jakarta Timur. Jurnal Energi dan Keselamatan, 7(1), 19–27.

World Bank. (2020). Small and Medium Enterprises (SMEs) Finance. (https://www.worldbank.org/en/topic/smefinance). Diakses tanggal 10 April 2025.

Yulianto, D. (2021). Studi Risiko Korsleting Listrik pada Usaha Mikro Gerobakan di Lingkungan Perkotaan. Jurnal Keselamatan dan Ketenagalistrikan, 6(2), 85–92.

Downloads

Published

2025-11-24