Mingkid, Meyranda Skyla
Unknown Affiliation

Published : 1 Documents Claim Missing Document
Claim Missing Document
Check
Articles

Found 1 Documents
Search

RANCANG BANGUN SISTEM KENDALI SEPEDA AIR MENGGUNAKAN REMOTE CONTROL PADA PENGGERAK MOTOR BLDC Mingkid, Meyranda Skyla; Saputra, I Gede Nikola; Pangkey, Jovan Gabriel; Makal, Johan F.; Putung, Yoice Rita
Pendas : Jurnal Ilmiah Pendidikan Dasar Vol. 11 No. 02 (2026): Volume 11 Nomor 02, Juni 2026 Published
Publisher : Program Studi Pendidikan Guru Sekolah Dasar FKIP Universitas Pasundan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.23969/jp.v11i02.54519

Abstract

This paper presents the design concept of a water bicycle control system using a 2.4 GHz radio frequency (RF) remote control integrated with a Brushless DC (BLDC) motor drive. The proposed system employs a FlySky GT2 two-channel transmitter, a GR3E three-channel receiver, a dual-mode 36V/48V BLDC bicycle controller (500W), a PWM-to-voltage converter (0–5V), a DS3235SG Pro servo, and a 36V/500W BLDC motor powered by a 36V/25Ah LiFePO4 battery enclosed in an IP67-rated housing. The system architecture is designed around a two-channel wireless communication scheme where Channel 1 (CH1) governs rudder steering via the servo and Channel 2 (CH2) governs propulsion via the BLDC Controller. Theoretical analysis based on motor specifications shows a nominal full-load current of 16.3A—representing a 59.3% safety margin below the Controller rated capacity. A comparative analysis confirms that 2.4 GHz FHSS technology and BLDC motors provide the most suitable combination for remote-controlled aquatic applications. This design concept establishes a technical foundation for implementing efficient, remotely-operated water bicycle systems in recreational contexts.