Publiora

Menghubungkan ke Publiora...

Publiora

High-efficiency multimode charging interface for Li-Ion battery with renewable energy sources in 180 nm CMOS

Mamouni, HajjarEl Khadiri, KarimEl Affar, AnassJamil, Mohammed OuazzaniQjidaa, Hassan
Indonesian Journal of Electrical Engineering and Computer Science (Sinta 1)Vol. 38 No. 1 (2025)1 Mei 2025
DOI10.11591/ijeecs.v38.i2.pp744-754

Abstrak

The high-efficiency multi-source Lithium-Ion battery charger with multiple renewable energy sources described in the present paper is based on supply voltage management and a variable current source. The goal of charging the battery in a constant current (CC) mode and controlling the supply voltage of the charging circuit are both made achievable using a variable current source, which may improve the battery charger’s energy efficiency. The battery must be charged with a degraded current by switching from the CC state for the constant voltage (CV) state to prevent harming the Li-Ion battery. The Cadence Virtuoso simulator was utilized to obtain simulation results for the charging circuit, which is constructed in 0.18 μm CMOS technology. The simulation results obtained using the Cadence Virtuoso simulator, provide a holding current trickle charge (TC) of approximately 250 mA, a maximum charging current (LC) of approximately 1.3 A and a maximum battery voltage of 4.2 V, and takes only 29 minutes to charge.

Kata Kunci

ElectronicsMicro-electronicsCC-CV methodsLDO regulatorLithium-Ion batteryPV and wind sourcesTC-LC-CV

Cari jurnal yang tepat untuk naskah Anda

MatchMind AI mencocokkan abstrak naskah Anda dengan ribuan jurnal terakreditasi dan menampilkan rekomendasi terbaik beserta alasannya.

Coba MatchMind

Lihat profil lengkap jurnal ini

Waktu review, biaya APC, statistik sitasi, indeksasi Scopus, dan banyak lagi.

Buka Indonesian Journal of Electrical Engineering and Computer Science

Artikel ini juga tersedia di situs resmi jurnal.

High-efficiency multimode charging interface for Li-Ion battery with renewable energy sources in 180 nm CMOS | Indonesian Journal of Electrical Engineering and Computer Science | Publiora