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Contact Name
Sugeng Hadi Susilo
Contact Email
shadis172.gh@gmail.com
Phone
+6281334519340
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Jl. Margobasuki VII no. 19 , Mulyoagung, Dau, Malang
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INDONESIA
Evrimata: Journal of Mechanical Engineering
ISSN : -     EISSN : 30476305     DOI : https://doi.org/10.70822/evrmata.vi
Evrimata: Journal of Mechanical Engineering The interdisciplinary research edition covering scientific areas: - Mechanical Engineering - Otomotive Engineering - Material Engineering Taking into account the interdisciplinary character of the journal, the authors in its materials should emphasize field of application of their research, always emphasizing the importance of the subject for the research community in related fields of knowledge. For example: - If the article deals with the new inorganic materials then should be pointed as such materials may be used by specialists in the field of energy, electronics, etc., or how understanding the mechanism of the processes can be taken into account in the synthesis of other new materials. - If the article is about new methods of mathematical modeling, it should specify what restrictions may apply specifics of field of application to the proposed original method (accounting of external factors, the initial or boundary conditions, internal factors that can not be an accurate accounting and so on). Therefore, when submitting the articles in this section, are welcome articles, co-authors of which are experts in different fields of knowledge.
Articles 1 Documents
Search results for , issue "Vol. 02 No. 04, 2025" : 1 Documents clear
The Effect of Number of Poles on the Output Power of Perpetual Power Generator Chaniago, Fasha Islamay; Indra Kurniawan, Bakti; Hadi Susilo, Sugeng; Arif Nur Huda, Muhammad; Rohman, Fatkhur; Islamay Chaniago, Fasha
Evrimata: Journal of Mechanical Engineering Vol. 02 No. 04, 2025
Publisher : PT. ELSHAD TECHNOLOGY INDONESIA

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70822/evrmata.vi.84

Abstract

This study aims to analyze the effect of the number of poles on the output power of the Permanent Power Generator (PPG). PPG is an innovative renewable energy system that utilizes permanent magnets to generate continuous electrical power without relying on external fuel sources. This study uses an experimental approach using 1 mm diameter wire and three pole configurations (3, 6, and 9 poles) to determine the optimal configuration to maximize power output. Voltage and current measurements were taken using a digital multimeter, and the power output was calculated using the formula P=V×I. The results showed that an increase in the number of poles significantly increased the generator's power output. The highest performance was achieved with a 9-pole configuration and a 1 mm wire diameter. These findings support the basic principles of electromagnetism, where a decrease in coil resistance and an increase in magnetic field frequency contribute to higher energy conversion efficiency. This study is expected to contribute to the development of environmentally friendly power generation systems and serve as a valuable reference in the design of high-power, high-efficiency generators for future renewable energy technologies.

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