Analisis perancangan sistem instalasi listrik kantor call center pt bank mandiri (persero) tbk., semarang
Penerbit : FTI - Usakti
Kota Terbit : Jakarta
Tahun Terbit : 2025
Pembimbing 1 : Chaerul Gagarin Irianto
Pembimbing 2 : Lydia Sari
Kata Kunci : electrical installation, load calculation, transformer, generator set, office building, AutoCAD
Status Posting : Published
Status : Lengkap
No. | Nama File | Hal. | Link |
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1. | 2025_SK_STE_062002100008_Halaman-Judul.pdf | 15 | |
2. | 2025_SK_STE_062002100008_Surat-Pernyataan-Revisi-Terakhir.pdf | 2 | |
3. | 2025_SK_STE_062002100008_Surat-Hasil-Similaritas.pdf | 1 | |
4. | 2025_SK_STE_062002100008_Halaman-Pernyataan-Persetujuan-Publikasi-Tugas-Akhir-untuk-Kepentingan-Akademis.pdf | 1 | |
5. | 2025_SK_STE_062002100008_Lembar-Pengesahan.pdf | 1 | |
6. | 2025_SK_STE_062002100008_Pernyataan-Orisinalitas.pdf | 1 | |
7. | 2025_SK_STE_062002100008_Formulir-Persetujuan-Publikasi-Karya-Ilmiah.pdf | 2 | |
8. | 2025_SK_STE_062002100008_Bab-1-Pendahuluan.pdf | 4 | |
9. | 2025_SK_STE_062002100008_Bab-2-Landasan-Teori.pdf |
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10. | 2025_SK_STE_062002100008_Bab-3-Metodologi-Penelitian.pdf |
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11. | 2025_SK_STE_062002100008_Bab-4-Analisis-dan-Pembahasan.pdf |
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12. | 2025_SK_STE_062002100008_Bab-5-Kesimpulan-dan-Saran.pdf | 2 | |
13. | 2025_SK_STE_062002100008_Daftar-Pustaka.pdf | 2 | |
14. | 2025_SK_STE_062002100008_Lampiran.pdf |
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P Perancangan sistem instalasi listrik yang efisien dan andal sangat penting dalam menunjang operasional gedung perkantoran, terutama di kota besar seperti semarang. penelitian ini bertujuan untuk menganalisis dan merancang instalasi listrik pada bangunan kantor 4 lantai, dengan memperhitungkan beban total, kebutuhan pencahayaan, kapasitas transformator, dan generator set sebagai sistem cadangan. metode yang digunakan meliputi pengumpulan data denah dan luasan bangunan, perhitungan kebutuhan daya berdasarkan standar sni (standar nasional indonesia) dan puil (persyaratan umum instalasi listrik), serta simulasi perancangan instalasi menggunakan software autocad dan microsoft excel. berdasarkan hasil perhitungan, total daya tersambung untuk seluruh bangunan adalah 478.209,4 va, dengan daya kebutuhan sebesar 420.824 va (setelah dibagi dengan nilai faktor keamanan atau diversity factor sebesar 1,25 dan penambahan spare 10%). untuk memenuhi kebutuhan tersebut, transformator dengan kapasitas minimal 420 kva dirancang untuk menjamin keberlanjutan dan kestabilan pasokan daya listrik, serta generator set berkapasitas minimal 500 kva digunakan sebagai sumber daya cadangan. distribusi beban dilakukan secara proporsional pada setiap lantai, mulai dari basement hingga lantai 4, dengan mempertimbangkan jenis beban seperti pencahayaan, stop kontak, dan peralatan mekanikal lainnya. hasil perancangan menunjukkan bahwa sistem kelistrikan telah memenuhi syarat, keamanan, dan keandalan.
D Designing an efficient and reliable electrical installation system is very important in supporting the operation of office buildings, especially in big cities like semarang. this study aims to analyze and design the electrical installation in a 4-storey office building, taking into account the total load, lighting needs, transformer capacity, and generator set as a backup system. the methods used include data collection of building plans and areas, calculation of power requirements based on sni (indonesian national standard) and puil (general requirements for electrical installation) standards, and simulation of installation design using autocad and microsoft excel software. based on the calculation results, the total connected power for the entire building is 478,209.4 va, with a power requirement of 420,824 va (after being divided by the value of the safety factor or diversity factor of 1.25 and the addition of 10% spare). to meet these needs, a transformer with a minimum capacity of 420 kva is designed to ensure the sustainability and stability of the power supply, and a generator set with a minimum capacity of 500 kva is used as a backup power source. load distribution is carried out proportionally on each floor, starting from the basement to the 4th floor, taking into account the type of load such as lighting, sockets, and other mechanical equipment. the design results show that the electrical system has met the requirements, safety, and reliability.