
Diploma graduate in Industrial Electrical Engineering focusing on power systems & automation. Experienced in MCC panel design, PI control, and HMI/PLC integration. Ready for industry challenges.
A highly motivated Industrial Electrical Engineering Diploma graduate with a strong foundation in power distribution, industrial automation, and embedded systems. I bring hands-on experience in the complete lifecycle of electrical control panels—from designing and wiring Automatic Transfer Switches (ATS), Automatic Mains Failure (AMF), and 150kW Star-Delta Motor Control Centers (MCC), to performing comprehensive load flow simulations and power network analysis using ETAP.
My technical skill set extends to hardware design and microcontroller programming. I am proficient in drafting PCB layouts using Eagle and writing C code for STM32 microcontrollers to develop custom data logging and telemetry interfaces. I have successfully applied these skills in real-world automation projects, such as designing a solar-powered automated irrigation system powered by two 50Wp solar panels connected in series, and implementing Proportional-Integral (PI) control on an isolated DC-DC converter to efficiently step down a 12V supply to 5V for reliable battery charging.
Complementing my project experience, I have gained valuable industrial exposure through engineering internships at major state-owned maritime and manufacturing enterprises. During these roles, I executed electrical commissioning, calibrated critical field instrumentation, and reviewed complex wiring diagrams.
As an active participant in student organizations, I have developed strong communication and leadership abilities. I am eager to leverage my blend of practical electrical engineering skills and problem-solving mindset to contribute to system efficiency and sustainable operations in the energy and manufacturing sectors.
Jul 2025 - Nov 2025
PT. Adiprima Suraprinta
- Evaluated and simulated the plant's electrical distribution network using ETAP software, focusing primarily on load flow analysis.
-Inspected and calibrated industrial field sensors, including pressure, temperature, and flow sensors, to ensure parameter accuracy.
-Executed power installations and wiring connections for Motor Control Center (MCC) panels.
Oct 2022 - Dec 2022
PT. PAL Indonesia (Persero)
-Reviewed control panel wiring diagrams and sourced 3D electrical component models using AutoCAD.
- Maintained and repaired marine communication and navigation instruments.
- Performed on-site graving dock inspections and supported vessel commissioning for alarms, lighting, and emergency power systems.
Feb 2022 - Jul 2022
CV Cahaya Teknik Nusantara
- Assembled and wired Automatic Transfer Switch (ATS) panels for seamless integration.
- Fabricated and installed Automatic Mains Failure (AMF) panels for backup power automation.
- Performed comprehensive genset maintenance, including fluid/filter replacements, battery checks, and insulation testing.
Feb 2021 - May 2021
Oakwood Hotel & Residence Surabaya
- Conducted periodic testing on smoke detectors, heat detectors, and the Main Fire Alarm Panel (MCFA) to ensure the optimal functionality of the early warning system.
- Maintained the centralized Public Address (PA) system used for general announcements and emergency evacuations, ensuring the audio network was free from signal interference and noise.
- Managed the electrical systems for clean water pump motors, hot water circulation pumps, and Air Handling Unit (AHU) fans.
2023 - 2026
Electronic Engineering Polytechnic Institute of Surabaya (PENS)

Spearheaded the fabrication, mechanical installation, and electrical wiring of an automated Star-Delta Motor Control Center (MCC) panel. The system was specifically engineered to drive a 150 kW pump motor responsible for circulating raw material fluids within a paper manufacturing facility.
Key Responsibilities & Achievements:
-Panel Assembly: Executed the complete mechanical mounting and complex electrical control wiring of the MCC panel.
-System Integration: Successfully integrated the Star-Delta starter configuration to significantly reduce high inrush currents during motor start-up, ensuring the stability of the plant's electrical network.
-Testing & Commissioning: Conducted rigorous pre-commissioning checks, functional testing, and electrical safety inspections to verify control logic accuracy and reliable motor operation.

Designed and developed a fully automated irrigation system for melon cultivation powered by renewable energy. The system's power generation relies on two 50Wp solar panels connected in series to harvest solar energy efficiently.
To ensure optimal energy storage and management, I implemented a Proportional-Integral (PI) control algorithm within a custom DC-DC converter circuit to regulate the charging of a 12VDC battery system. Additionally, the electronic design integrates an isolated B1205 DC-DC component to step down the 12V supply to a stable 5V, providing safe and reliable power for the logic controllers and sensor modules.
The automated watering mechanism utilizes soil moisture sensors to accurately monitor field conditions, which then trigger solenoid valves to deliver precise water volumes. The entire hardware architecture, including the electronic circuits and custom PCB layouts, was designed from scratch using Eagle software.

Designed, assembled, and programmed an autonomous mobile robot for a Student Activity Unit (UKM) engineering project. The hardware architecture features a microcontroller unit interfacing with an L298N dual H-bridge motor driver to independently control DC gear motors, enabling precise differential steering and mobility.
The system integrates multiple sensor modules, including ultrasonic and infrared sensors, to feed real-time environmental data into the control loop. This allows the robot to accurately trace complex path lines and detect obstacles for collision avoidance. The project involved comprehensive hands-on development, including electronic circuit wiring on a breadboard, mechanical assembly on a custom chassis, and writing the embedded control logic in C++ to optimize sensor responsiveness and motor speed control.