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20W Solar Cell Module Training Equipment with 12V/7Ah Battery and 300VA Sine Wave Inverter for Photovoltaic Training System

20W Solar Cell Module Training Equipment with 12V/7Ah Battery and 300VA Sine Wave Inverter for Photovoltaic Training System

20W Solar Cell Module Training Equipment

12V/7Ah Battery Photovoltaic Training System

300VA Sine Wave Inverter Solar Power Training Kit

Place of Origin:

China

Brand Name:

RUIMU

Certification:

ISO9001/ISO14001/ISO45001

Model Number:

RM-F175

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Product Details
Solar Cell Power:
20W
Battery Capacity:
12V/7Ah
Controller Output:
12V / 8A
Inverter Output:
220 V ±10% / 1.36 A
Inverter Efficiency:
≥ 85 %
Cabinet Dimensions:
630 × 430 ×240mm
Highlight:

20W Solar Cell Module Training Equipment

,

12V/7Ah Battery Photovoltaic Training System

,

300VA Sine Wave Inverter Solar Power Training Kit

Payment & Shipping Terms
Minimum Order Quantity
1
Payment Terms
T/T
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Product Description
Complete Electrical Training Equipment for Understanding Solar Cell Module Operation and Electrical Circuit Fundamentals
Basic Working Principle
Solar Cell Modules

Solar cell modules are constructed by connecting multiple monocrystalline, polycrystalline, or amorphous cell units in series or parallel configurations, then encapsulating them. The monocrystalline cell units absorb sunlight and generate voltage and current through the photovoltaic effect. By connecting these units in series or parallel as required, solar energy is converted into electrical energy and transmitted to the controller via cables.

Storage Battery

The battery serves to store electrical energy generated by solar panels. During periods of insufficient sunlight, at night, or when load demand exceeds solar panel output, the stored electrical energy is released to meet the energy requirements of the connected load.

Sine Wave Inverter

The sine wave inverter converts DC power generated by solar cell modules or the 12V DC power released by batteries into the 36V/220V sinusoidal AC power required by the load.

Technical Specifications and Configuration
Component Specifications
Solar Cell Module Power 20W
Vmp: 18.0V
Imp: 1.12A
Voc: 22.30V
Isc: 1.10A
Battery Capacity 12V/7Ah
Controller Rated Output Voltage and Current: 12V / 8A
Battery Overcharge Protection: 16.2V, recovers to 14.4V
Battery Over-discharge Protection: 10.8V, recovers to 12.4V
Three Output Modes: Normal on/off mode, light-controlled on/light-controlled off mode, light-controlled on/time-controlled off mode
Sine Wave Inverter Output Waveform and Frequency: Sine wave / 50HZ±1HZ
Rated Input Voltage and Current: 10.8V~15.5V / 2A
Rated Output Voltage and Current: 220V ±10% / 1.36A
Rated Output Power: 300 VA
Output Power Factor: ≥95% (linear load)
Inverter Efficiency: ≥85%
Input AC Power AC220V/50HZ
Reference Cabinet Dimensions 630 × 430 × 240mm
Working Environment 0°C~40°C, ≤85% RH
Experiment Content
  • Experiment 1: Experiment on the Principle of Solar Cell Power Generation
    • Experiment 1-1: Energy Conversion Experiment with Solar Photovoltaic Panels
    • Experiment 1-2: Experiment on the Influence of Environment on Photovoltaic Conversion
  • Experiment 2: Direct Load Experiment of Solar Cell Photovoltaic System
  • Experiment 3: Photovoltaic Controlled Solar Power Generation Experiment
    • Experiment 3-1: Working Principle Experiment of Photovoltaic Controller
    • Experiment 3-2: Charge and Discharge Protection Experiment of Photovoltaic Controller
  • Experiment 4: Residential Solar Power Generation and Utilization Experiment
    • Experiment 4-1: Working Principle of Residential Controller
    • Experiment 4-2: Charge and Discharge Protection Experiment for Household Controllers
  • Experiment 5: Electrical Load Test of Solar System

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