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QINGDAO ENNENG MOTOR CO.,LTD.

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China Fuelless Free Energy Permanent Magnet Generator Hydro Turbine Wind Turbine IP55
China Fuelless Free Energy Permanent Magnet Generator Hydro Turbine Wind Turbine IP55

  1. China Fuelless Free Energy Permanent Magnet Generator Hydro Turbine Wind Turbine IP55

Fuelless Free Energy Permanent Magnet Generator Hydro Turbine Wind Turbine IP55

  1. MOQ: 1
  2. Price: USD 1000-5000/set
  3. Get Latest Price
Payment Terms L/C, T/T
Supply Ability 20000 sets/year
Delivery Time 15-120 days
Packaging Details seaworthy packing
Name Fuelless Permanent Magnet Generator
Current Type AC
Power Range 5-2000kw
Protection grade IP54 IP55
Bearing Brand SKF
Winding material 100% copper
Features fuelless green energy
Rated voltage 240v, 380v
Application Wind turbine, hydro turbine
Installation IMB3 IMB5 IMB35
Brand Name ENNENG
Model Number PMG
Certification CE
Place of Origin China

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  1. Product Details
  2. Company Details

Product Specification

Payment Terms L/C, T/T Supply Ability 20000 sets/year
Delivery Time 15-120 days Packaging Details seaworthy packing
Name Fuelless Permanent Magnet Generator Current Type AC
Power Range 5-2000kw Protection grade IP54 IP55
Bearing Brand SKF Winding material 100% copper
Features fuelless green energy Rated voltage 240v, 380v
Application Wind turbine, hydro turbine Installation IMB3 IMB5 IMB35
Brand Name ENNENG Model Number PMG
Certification CE Place of Origin China
High Light Free Energy Permanent Magnet GeneratorPermanent Magnet Generator Hydro TurbineIP55 Free Energy Wind Turbine Generator

Free Energy Eco-Friendly Fuelless Permanent Magnet Generator For Hydro Generation

 

Product Drawing

 

Technical Parameter

 

No. Parameter Units Data
1 Rated output power KW 200
2 Rated speed RPM 250
3 Rated output voltage VAC 400
4 Rated current A 290
5 frequency Hz 50
6 Efficiency at rated speed   >94.6%
7 Winding type   Y
8 Insulation resistance   20 MΩ
9 Insulation class H
10 Rated torque Nm 7680
11 Start torque Nm <100
12 Temperature rise °C 90
13 Max working temperature °C 130
14 Generator diameter mm See the drawing
15 Shaft diameter mm See the drawing
16 Housing material   Cast iron
17 Shaft material   High quality carbon steel
18 Bearing   SKF
19 Weight Kg 1660
20 Design lifetime Year 20

 

Detailed Pictures

What is the permanent magnet generator?

The permanent magnet generator is a device that converts mechanical energy to electrical energy. In this device, the rotor windings have been replaced with permanent magnets. Permanent magnet generators are used mostly in industrial applications like turbines and engines to produce commercial electrical energy, the permanent magnet alternator is an alternate source of energy and has multiple benefits which make it a great device for a variety of residential, commercial, and industrial applications.

 

The structure

 

The permanent magnet generator is mainly composed of a rotor, end cover, and stator. The structure of the stator is very similar to that of an ordinary alternator. The biggest difference between the structure of the rotor and the alternator is that there are high-quality According to the position of the permanent magnet on the rotor, the permanent magnet generator is usually divided into a surface rotor structure and a built-in rotor structure.

Working Principle

 

The permanent magnet generator uses the principle of electromagnetic induction in that the wire cuts the magnetic field line to induce an electric potential and converts the mechanical energy of the prime mover into electrical energy output. It consists of two parts, the stator, and the rotor. The stator is the armature that generates the electricity and the rotor is the magnetic pole. The stator is composed of an armature iron core, uniformly discharged three-phase winding, machine base, and end cover.

The rotor is usually a hidden pole type, which is composed of excitation winding, iron core and shaft, guard ring, center ring, and so on.

The excitation winding of the rotor is fed with DC current to generate a magnetic field close to the sinusoidal distribution (called the rotor magnetic field), and its effective excitation flux intersects with the stationary armature winding. When the rotor rotates, the rotor's magnetic field rotates together with it. Every time a revolution is made, the magnetic lines of force cut each phase winding of the stator in sequence, and a three-phase AC potential is induced in the three-phase stator winding.

When the pm generator is running with a symmetrical load, the three-phase armature current synthesizes to generate a rotating magnetic field with synchronous speed. The stator and rotor fields interact to generate braking torque. The mechanical torque input from the turbine overcomes the braking torque and works.

 

How do permanent magnets work in wind turbines?

 

The operation of wind turbine generators is based on electromagnetic principles, usually following the first electromagnetic principle devised by Michael Faraday in 1831. When an electrical conductor rotates in a magnetic field, it generates electricity. When the blades of the turbine rotate in the direction of the wind, electromagnetic induction occurs within the magnetic field of the permanent magnets in the turbine to generate electricity. An electric generator connected to the shaft of the wind turbine converts the movement of the blades converted into electrical energy. However, instead of the slip rings used in electromagnets, the permanent magnets in wind turbines use the magnetic fields of strong rare-earth magnets.

 

The classification of permanent magnet generator:

 

Permanent magnet generators (PMGs) can be classified based on various factors, such as the type of magnet, the application, the number of phases, and the power rating. Here are some common classifications of permanent magnet generators:

 

Based on magnet type: a. Ferrite Magnet PMG: These generators use ferrite magnets, which are less expensive and have a lower magnetic strength than rare-earth magnets. b. Rare-Earth Magnet PMG: These generators use neodymium or samarium-cobalt magnets, which are more expensive but have a higher magnetic strength than ferrite magnets.

 

Based on application: a. Wind Turbine PMG: These generators are designed for use in wind turbines and are typically used in small-scale or off-grid applications. b. Hydroelectric PMG: These generators are designed for use in hydroelectric power plants and are typically used in large-scale applications.

 

Based on the number of phases: a. Single-phase PMG: These generators have a single output phase and are used in low-power applications. b. Three-phase PMG: These generators have three output phases and are used in high-power applications.

 

Based on power rating: a. Low-power PMG: These generators have a power rating of up to a few kilowatts and are used in small-scale applications. b. High-power PMG: These generators have a power rating of several megawatts and are used in large-scale applications, such as wind turbines and hydroelectric power plants.

 

These are some common classifications of permanent magnet generators, but there may be other ways to classify them based on specific parameters.

 

Features

① The generator has many poles, which improve the frequency and efficiency, saving the cost of rectifiers and inverters.

② Finite Element Analysis is used when designing the generator, compact structure. Low startup torque, solves the problem of small wind startup, improving wind energy utilization.

③ Leave out the gear increaser, improve the reliability and efficiency of the generator, and lower the amount of maintenance.

④ H class insulation, vacuum pressure impregnation.

⑤ Have many structures such as vertical axis, horizontal axis, internal rotor, external rotor, and plate type.

⑥ Strong rotors, the generator could achieve high speed.

⑦ Small size, lightweight, high energy density, suitable for special situations.

⑧ Run efficiency throughout the whole speed range, high efficiency.

⑨ Use imported high-speed oil-contained bearings, maintenance free, and high reliability.

⑩ The parameters like voltage, speed, and power can be customized. The shape can be changed. Spline shaft, biaxial extension, and flange can be used.
 
Application
 
1. Permanent magnet generators provide the ideal solution for the Wind Industry.

By matching the power and speed of the generator to that of the wind turbine, the power system becomes more efficient. No gearboxes are needed, and the efficiency of the alternator exceeds 90%.

 

2. Variable speed generators provide a solution for Hydro Industry.

Increased efficiency from variable speed technology could make many more small hydro sites economically feasible to develop.

 

3. Electric vehicles: Permanent magnet generators are used in electric vehicles to generate electricity for charging the battery. They are also used in hybrid vehicles to provide additional power to the engine.

 

4. Marine applications: Permanent magnet generators are used in marine applications, such as wave and tidal energy generation, as they are highly reliable and can withstand harsh marine environments.

 

5. Aerospace applications: Permanent magnet generators are used in aerospace applications, such as satellite power systems and space probes, as they are lightweight and highly efficient.

 

6. Industrial applications: Permanent magnet generators are used in various industrial applications, such as backup power systems, emergency power systems, and microgrid systems. They are also used in remote areas where there is no access to the grid.

Benefits of Permanent Magnet Generators Over Induction Generators:

1. Free Energy Source

Permanent magnet generators produce electricity using their own magnetism. So, you do not need to pay high electric bills, and a large budget is saved. Besides, these devices do not need any other resources, which are quite environmentally friendly.

 

2. Reliable Power Output

Permanent magnet generators do not need any special operating environments. Hence, they can offer reliable performance compared with wind turbine motors. Additionally, permanent magnet generators do not suffer from energy loss, while induction generators typically lose 20-30% of energy. Additionally, there are no temperature rises in the magnetic machines, so the life of the bearings can be prolonged.

 

3. Low Maintenance Fee

Due to the features mentioned above, you do not need to spend lots of money and time on the maintenance of permanent magnet generators. And they do not have slip rings and brushes, which are supposed to be checked at regular intervals.

 

4. Compatibility

Permanent magnet generators can be employed with turbines and hydro turbines.

 

ENNENG is dedicated to providing customers with stable and energy-efficient permanent magnet generators and solutions, saving significant amounts of energy and cost for our customers and contributing to the energy conservation and emission reduction of society.

Company Details

Bronze Gleitlager

,

Bronze Sleeve Bushings

 and 

Graphite Plugged Bushings

 from Quality China Factory
  • Business Type:

    Manufacturer

  • Year Established:

    2014

  • Total Annual:

    2,000,000.00-4,000,000.00

  • Employee Number:

    100~200

  • Ecer Certification:

    Verified Supplier

The value of Enneng is Technology is how we do things. People are why we do things.   As a leading manufacturer of permanent magnet AC motors and generators, Enneng is committed to providing the best solutions for our customers while also prioritizing energy savings and low carbon emissio... The value of Enneng is Technology is how we do things. People are why we do things.   As a leading manufacturer of permanent magnet AC motors and generators, Enneng is committed to providing the best solutions for our customers while also prioritizing energy savings and low carbon emissio...

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  • QINGDAO ENNENG MOTOR CO.,LTD.
  • No. 18, Xinye Road, High-Tech Zone, Qingdao,Shandong, China
  • MrsCindy
  • +8618562780228
  • https://www.pmacmotor.com/

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