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Didactic System for Energy Training Solar and Wind Hybrid Renewable Training Equipment Didactic Equipment Vocational Training Equipment

Item No.: MR1020R
MR1020R Didactic System for Energy Training Solar and Wind Hybrid Renewable Training Equipment Didactic Equipment Vocational Training Equipment
Description
MR1020R Didactic System for Energy Training Solar and Wind Hybrid Renewable Training Equipment Didactic Equipment Vocational Training Equipment
I.Product Overview
1.1 Overview
The MR1020R Solar and Wind Hybrid Energy Training Teaching System is an advanced teaching tool designed for education and training. It aims to help students deeply understand the principles and processes of wind power generation and solar power generation through intuitive simulation demonstrations. The device can accurately simulate real-world wind power generation systems and solar power generation systems, allowing students to learn and experiment in a safe and controlled environment.
In the MR1020R Solar and Wind Hybrid Energy Training Teaching System, the wind turbine is partially driven by a blower to simulate the real wind power generation process. Students can observe the effect of different wind speeds on power generation efficiency by adjusting the speed of the blower. The solar panels are illuminated by halogen lamps to simulate the effect of sunlight on photovoltaic panels. By adjusting the light intensity and angle, students can study the output characteristics of photovoltaic panels under different lighting conditions, thereby understanding the working principles of solar cells and their performance in different environments.
1.2 Features
(1) Structural design: The training platform adopts an aluminum profile column frame structure to ensure overall stability and durability. The measuring instruments and training power supply are built-in and integrated, which not only saves space but also improves the convenience of use. The bottom is equipped with universal wheels, which makes the coordination between the units more flexible, very convenient to use, and not easy to damage.
(2) Complete configuration: The experimental circuits and devices are fully configured and can be used in combination to complete the training content of various subjects. Whether it is wind power generation or solar power generation experiments, they can be easily handled. This flexibility allows teachers to choose different experimental projects according to teaching needs and enrich the teaching content.
(3) Safety protection system: The MR1020R solar and wind hybrid energy training teaching system has a good safety protection system. All circuits and devices have been strictly designed and tested to ensure that there will be no safety hazards during use. In addition, the device is also equipped with complete safety protection measures, which can automatically cut off the power in abnormal situations to protect the safety of students.
II.Performance Parameter
2.1 Technical Parameters
1. Input power: Single phase, three wires, AC 220V±5%
2. Working conditions: temperature -10~+40℃±5% temperature ≤80℃
3. Ambient air: no corrosive, flammable gas, no large amount of conductive dust
2.2 Dimensions and Weight
Dimensions 1: 1200mmx1200mmx1900mm
Weight 1: <160kg
Dimensions 2: 1405mmx700mmx1415mm
Weight 2: <170kg
III.Components List and Detailed Introduction
3.1 Main Part
Number
Name
1
Wind-solar hybrid wind turbine and simulated light source part
2
Practical training platform part
3
Wind-solar hybrid solar panel and wind turbine part
3.2 Product hanging box part
Number
Name
1
Light bulb load hanging box
2-3
DC current and voltage meter hanging box
4
DC current and voltage meter hanging box
5
AC current and voltage meter hanging box
6
Inverter hanging box
7
Axial fan hanging box
8
Wind-solar hybrid controller hanging box
3.3 Product power box part
Number
Name
1
Power circuit breaker
2
Power indicator light and ground wire
3
AC220V six-hole socket
4
Fan power switch and speed regulator
5
Analog light source power switch and regulator
6
Battery module
7
DC30V voltmeter
8
Photovoltaic panel output and measurement module
9
Wind turbine output and measurement terminals
3.4  Back part of the hanging box
Number
Name
1
Simulated wind source, simulated light source power interface
2
Photovoltaic panel 1-4 input interface
3
Wind power generation input interface
V.Product Configuration List
No.
Name
QYT
1
Wind-solar hybrid wind turbine and simulated light source part
1
2
Wind-solar hybrid solar panel and generator part
1
3
Wind and solar training machine
1
4
Bulb load hanging box
1
5
DC current and voltage meter hanging box (50V 10A)
2
6
DC current and voltage meter hanging box (50V 30A)
1
7
AC current and voltage meter hanging box (250V 5A)
1
8
Inverter hanging box
1
9
Axial fan hanging box
1
10
Wind-solar hybrid controller hanging box
1
11
4mm electrical cable 1 meter double-ended black
10
12
4mm electrical cable 1 meter double-ended red
10
13
4mm electrical cable 1 meter double-ended blue
5
14
4mm electrical cable 1 meter double-ended two-color
5
15
4mm electrical cable 1 meter double-ended yellow
5
16
Communication line
1
17
Fuse 5*20 5A
4
18
Fuse 5*20 10A
4
19
Fuse 6*30 30A
4
20
Fuse 6*30 30A
1
21
Electrician tool kit including 17 tools
1
22
Charger
1
23
Digital multimeter UA9205
1
IV.Experiment List
Experiment 1 Experiment on the protection characteristics of solar energy charging batteries
Experiment 2 Experiment on charging batteries with chargers
Experiment 3 Experiment on axial flow fan test
Experiment 4 Experiment on inverter principle
Experiment 5 Experiment on open circuit voltage test of photovoltaic panels and batteries
Experiment 6 Experiment on simulated wind power generation system
Experiment 7 Experiment on series connection of photovoltaic panels and batteries
Experiment 8 Experiment on parallel connection of photovoltaic batteries
Experiment 9 Experiment on the change of output voltage and current by changing light intensity
Experiment 10 Experiment on the change of output voltage and current by changing light angle