Product Description
ME 2950 - Solar Energy System Trainer(Advance Model)
Features:
Modularand easy to use in laboratories
Equipped with high safety features
Portable and easy to install
Dual axis tracking system
Supplied with patch cords for interconnections and experimental work book
Objective :
Measure the intensity of direct solar radiation
Study the V-I characteristics of solar panel
Study the V-I characteristics of solar panel
Measurement and analysis of different parameters like load, charging etc.
Study of open circuit voltage of a solar system
Parameter measurements with parallel and series solar cell module
Study fundamentals of microprocessor based charge controller
Study of charging parameter of batteries
Electricity generation measurements
Working of single/dual axis solar tracking system
Technical Specifications :
Modular Control Panel
Aluminum profile (45mm x 45mm)structure will accommodate different unique interchangeable modules
Power Requirement : 220 VAC +10%,50Hz
MT-E270: Inverter Module (withinbuilt power analyzer)
MT-E200: SMU and Tracking Module
MT-E250: Digital DC Voltmeter(0~200V DC) - 2nos. and Ammeter (0~100ADC) - 2nos. Module
MT-E255: Solar Panel Junction Module
MT-E:260: Battery Junction Module
Standard Accessories:
Solar panel 160W x 2nos. total320W with provision of dual axis tracking
Resistive lamp load
Inductive fan load
Rheostat
Solar power meter
Battery (12V / 100Ah)
Connecting leads
Inverter System
Output power : 0.7KVA
Input DC Voltage : 12V DC
Output AC Voltage : 230V /50Hz AC
Technology :Adaptive battery charging control (ABCC)
Waveform : Sine wave
Charging time : 6 Hours approx.
Battery support : 100AH - 135AH
Protection :Ultra fast short circuit protection
Battery reverse polarity protection
Battery reverse polarity protection
Solar Management Unit (SMU) System
High speed and high performancemicrocontroller based
Charger controller (PWM basedMPPT)
Charging stage: Bulk, Absorption& Float
High reliability with longeroperational life
Increase the battery lifetime
Automatic / Manual operation througha switch (Internal switch)
Inbuilt protection to avoidbattery undercharge and overcharge
Very low consumption in idle state
Dual Axis Tracking System
Light sensor based system
Electronic controller provided fortracking
12V DC Linear actuators used fortracking
Long movement upto 1500KN loadbearing capacity
Automatic / manual operation
Environmental friendly
Comprehensive Solar Training SolutionThis trainer covers everything from photovoltaic (PV) characteristics to battery storage and load analysis. Users can perform real-time efficiency calculations and simulate various sunlight intensities. The modular setup ensures adaptability, making it suitable for a wide range of educational scenarios.
Robust, Accurate, and Safe DesignEquipped with a durable aluminum frame, polycrystalline silicon panel and digital meters with 1% accuracy, the system adheres to CE and ISO safety standards. Features such as short circuit and fuse protection enhance reliability and safeguard users during experiments.
Flexible, User-Friendly OperationWith both manual and semi-automatic operation modes, detailed user manual, and intuitive interface via banana sockets and terminal blocks, the trainer is easy for students and instructors to set up and operate, both in classrooms and mobile laboratory settings.
FAQs of Solar Energy System Trainer (Advance Model):
Q: How can the Solar Energy System Trainer (Advance Model) be used for educational purposes?
A: The Solar Energy System Trainer is designed for hands-on learning in educational laboratories, enabling students to analyze PV characteristics, study battery storage, conduct load analysis, and evaluate system efficiency using real solar and simulated sunlight conditions.
Q: What types of loads can be connected to the trainer?
A: The system supports DC-compatible loads such as a lamp, motor, and fan, allowing users flexibility in testing different electrical devices while illustrating how solar-generated power can be distributed.
Q: When should the system be operated for optimal performance?
A: While the trainer is designed for simulation and lab use rather than continuous outdoor solar generation, it functions effectively at indoor temperatures ranging from 0C to 50C and can use external DC chargers when sunlight is insufficient.
Q: Where can the trainer be installed or placed?
A: Its portable and desk-mountable design allows installation on any sturdy laboratory desk or mobile teaching station. The compact dimensions ensure it fits well in classroom, research lab, or workshop environments.
Q: What safety features are integrated into the trainer?
A: The trainer includes fuse protection, short circuit protection, and is built according to international safety standards (CE, ISO) to minimize risk during practical sessions.
Q: How does the simulation mode function in this trainer?
A: The simulation mode enables users to adjust sunlight intensity, helping to examine how varying solar input affects panel output, storage, and load operation. This feature enhances understanding without dependence on actual sunlight conditions.
Q: What are the key benefits for institutions using this solar trainer?
A: Institutions benefit from accurate, hands-on experimental learning, improved understanding of renewable systems, modular flexibility for diverse experiments, and long-lasting equipment designed for repeated educational use.