15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator

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  • 15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator
  • 15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator
  • 15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator
  • 15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator
  • 15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator
  • 15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator
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  • Overview
  • Product Description
  • Product Parameters
  • Drawing
  • Detailed Photos
  • Connection Diagram
  • Company Profile
  • FAQ
Overview

Basic Info.

Model NO.
RX-15K-MLA
Output Type
AC Three Phase
Rotating Shaft
Horizontal
Power
10-100kW
Phase
Three Phase
Certification
CE, ISO, RoHS
Rated Power
15kw
Output Voltage
400V
Frequency
50Hz
Generator Type
Permanent Magnet Generator
Used for
Motor/Wind/Water Genreator
Weight
270 Kg
Include Base Mount
Yes
Transport Package
by Wooden Box
Specification
91*52*63cm
Trademark
RX
Origin
China
HS Code
8502310000
Production Capacity
40000 Pieces/ Year

Packaging & Delivery

Package Size
91.00cm * 52.00cm * 63.00cm
Package Gross Weight
270.000kg

Product Description

15KW 250RPM 500RPM High Efficient Single Phase Permanent Magnet Generator

 
Product Description

Radial flux permanent magnet generator is a type of electric machine that uses permanent magnets to create a magnetic field in the radial direction, perpendicular to the axis of rotation. Some advantages of radial flux permanent magnet generators are:

•  They have a simpler and more robust structure than axial flux generators, which makes them easier to install and maintain
•  They can achieve high efficiency and power density by using high-performance permanent magnets and optimized design
•  They can operate at high speeds and low torques, which is suitable for applications such as wind turbines, electric vehicles, and industrial drives
•  They can be integrated with gearboxes or direct-drive systems to match different load requirements



 
Product Parameters
 
No. Parameter Units Data
1 Rated output power  KW 15
2 Rated speed  RPM 250
3 Rated output voltage VAC 400
4 Rated current  A 22.5
5 Rated frequency  HZ 50
7 Efficiency at rated speed    >93.5%
8 Winding type    Y
9 Insulation resistance   20 MΩ
10 Insulation   H class
11 Rated torque NM 580
12 Start torque NM <8.6
13 Temperature rise °C 90
14 Max.working temperature °C 130
15 Bearing    
16 Generator diameter mm See the drawing
17 Shaft diameter mm See the drawing
18 Housing material   Casting Iron
19 Shaft material   Steel
20 Bearing   S.K.F
21 Weight  kg 230





Power Curve
 

 

15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator
15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator
 


 
Drawing

15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator





 
Detailed Photos

15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator



15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator
15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator
15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator

15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator




 

Connection Diagram

15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator





 
Company Profile
15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator15kw 250rpm 500rpm High Efficient Single Phase Permanent Magnet Generator



 
FAQ
1. What kind of region can be installed wind turbine?
Small wind turbines should be applied in the regions which wind resources is sufficient. The annual average wind speed should be
more than 3m/s, the effective wind speed 3-20m/s should be more than 3000h in accumulation per year. The density of 3-20m/s
effectively average wind power should be more than 100W/m2.

It should be noted that choosing the rated design speed wind turbine is in conformity with local design speed. It is significantly
in making use of wind resources and in economic aspect. Wind tunnel test proves that the fan power transformation of the impeller
in the direct ratio with wind speed, that is to say, the wind speed decide the output electrical power.

2. How to calculate the actual need power in my home to configure the appropriate power of wind turbines?
At present, battery stores the power from the wind turbine, then discharge to home appliances. So the power which discharged to
the load and be charged timely by wind turbine is the amount of the actual needs power.

Take an example: the rated output power from wind turbine generator is 100W per hour, the continuous workable hours by wind is 4
hours. The battery can be charged total capacity is 400WH. For only about 70% power from battery can be discharged to the load, so
the actual power which can be used from battery is 280WH.

If there are:

1) Bulb15W x 2 Pieces, working 4 hours one day, consumption 120WH

2) TV 35W x 1 set, working 3 hours one day, consumption 105WH

3) Radio 15W x 1 Piece, working 4 hours one day, consumption 60WH

Above total consumption is 285WH per day. If you only design to install 100W wind turbine generator, the consumption total power
will more than the power from wind turbine generator. In long period of time using power from 100W wind turbine generator, it will
make the battery serious loss of electricity and damaged, and it will cut down your battery service life.

It is assumed that wind turbine at rated wind power generation and energy consumption, but in fact, due to the variability of the
wind, intermittent, there are strong and weak wind different (wind speed) and wind blow in long time and short time
different(frequency). So you should cut down even cut off some electrical application working time when the wind condition is in
poor to protect your battery. If your budget is enough, it will be better to install a diesel generator set or install solar
panels at the same time.

3. How to select the correct battery capacity to get power from wind turbine generator?
Generally, the battery capacity should be equal or smaller than the power from wind turbine generator.

1) 100W wind turbine generator matches 120AH battery (60AH x 2 Pieces)

2) 200W wind turbine generator matches 120-180AH battery (60 OR 90AH x 2 Pieces)

3) 300W wind turbine generator matches 240AH battery (120AH x 2 Pieces)

4) 750W wind turbine generator matches 240AH battery (120AH x 2 Pieces)

5) 1000W wind turbine generator matches 360AH battery (60AH x 3 Pieces)




 
 

 

 

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