12V 24V 48V Ture Power 2KW Vertical Wind Turbine Using an MPPT controller, a Maglev Coreless Wind Power Generator produces free energy.

| Model | SH-XQ2000 | SH-XQ3000 | SH-XQ5000 | SH-XQ10K |
| Rated power | 2kW | 3kW | 5kW | 10kW |
| Nominal voltage | 48V96v/120vac customized |
120v/220v/380vac customized |
220v/380vac customized |
220v/380vac customized |
| blade quantity | 3 piece | 3 piece | 3 piece | 3 piece |
| Diameter of wind wheel | 1.8m | 2m | 2.4m | 3m |
| Impeller height | 2.8 m | 3m | 3.6m | 4m |
| Electronic unloading | 5kW Brake resistance box |
5kW Brake resistance box |
10kW Brake resistance box |
15kW Brake resistance box |
| Rated speed | 220 RPM | 220 RPM | 200RPM | 150RPM |
| (mm)/Package size (mm) | 500*465*435mm,95 kg 3220*530*410mm,130kg |
550*480*450mm,130kg 3520*530*410mm,150kg |
4150*740*540 300KG 1030*1030*425 80kg |
4550*740*540mm 350KG 1030*1030*425mm 85KG |
| start-up wind speed | 2.3m/s | |||
| rated wind speed | 10m/s | |||
| Extreme wind | 45m/s | |||
| Wind turbine type | Vertical axis wind turbine | |||
| braking system | Electromagnetic brake / mechanical brake (customized) | |||
| Hydraulic brake | Active brake, electric brake | |||
| Controller unit | PLC | |||
| Interface | HMI | |||
| Generator type | Three phase Coreless Permanent Magnet Synchronous Generator | |||
| Insulation class | H | |||
| Blade material | glass fiber reinforced plastics | |||
| Design level | IEC Class Ⅲ | |||
| Tower type | Independent pole | |||
| Authentication | CE;IOS | |||
| Noise | 35FB | |||
| Noise level | <35dBA | |||
| Temperature | ‐20°C~50°C | |||
| Altitude | ≤2000m | |||
| Degree of protection | IP54 | |||
| Design life | 20 /year | |||


Product Features:
Curved blade design effectively utilizes wind resource and produces more power. 2, A noise level that cannot be heard in a natural environment is achieved by the use of a coreless generator, horizontal rotation, and aircraft wing design. 3. Resistance to wind. The triangular double fulcrum design and horizontal rotation limit the amount of wind pressure it can withstand, even in heavy winds. 4, Radius of rotation. Compared to other types of wind turbines, this one saves space while increasing efficiency. 5, Range of effective wind speeds. Using a unique control approach, the wind speed was increased to 2.5 to 25 m/s, efficiently using the wind resource and producing more electricity.



GRID-TIED SYSTEMS BENEFITS
1. USE NET METERING TO SAVE MORE MONEY
With a grid connection, you may use a wind generator to save more money thanks to higher efficiency rates, net metering, and less equipment and installation expenses.
A completely working off-grid wind system necessitates batteries and other stand-alone equipment, which raises prices and requires more maintenance. Thus, grid-tied wind systems are typically less expensive and easier to build. Often, your wind turbine generator will produce more power than you can use. Instead of storing their own extra power in batteries, households may use net metering to send it onto the utility grid. The way wind electricity is rewarded, through net metering or feed-in tariff programs in some nations, is crucial. Residential wind systems would not exist without it.
A virtual battery is THE UTILITY GRID.
Real-time electricity consumption is required. It may, however, be momentarily stored as other types of energy (e.g. chemical energy in batteries). Losses from energy storage are often rather high. The electric power grid resembles a battery in many respects, except that it is significantly more efficient and doesn't require any upkeep or repairs. In other words, using traditional battery systems results in more electrical (and financial) waste. The average yearly loss in the transmission and distribution of power in the United States is over 7%, according to EIA data[1]. Often used with solar panels, lead-acid batteries are only 80–90% effective at storing energy, and over time, their efficiency deteriorates. Being grid-tied has additional benefits, such as having access to backup.

ADVANTAGES OF OFF-GRID SOLAR SYSTEMS
1. NO ACCESS TO THE UTILITY GRID
In certain rural regions, off-grid solar power systems may be less expensive than building new power lines.
If you are more than 100 yards from the grid, think about going off-gird. For rural construction, overhead transmission line prices range from $174,000 to $11,000,000 per mile (for urban construction).
2. BECOME ENERGY SELF-SUFFICIENT
Being independent and off the grid is satisfying. This sensation may be more valuable to some people than financial savings.
Security also includes having enough energy to meet your needs. Off-grid wind energy installations are not affected by utility grid power outages.
On the other hand, batteries have a limited capacity for energy storage, so when it's cloudy, the security comes from being plugged into the grid. Installing a backup generator can help you be ready for scenarios like these.

Vertical Wind Turbine ODM/OEM Service
Our expert engineering staff can create bespoke components to suit your requirements, and we also have ready-made standard moulds that can help you save money and time. Depending on your needs, we may provide ODM/OEM services, production design, and mold design. Make sure everything is fine for you before mass manufacturing by providing the sample. Please feel free to contact us if you need assistance or would like an estimate on any plastics or machined components. You will receive a response as soon as our engineers can.
ADVANTAGES OF GRID-TIED SYSTEMS:
1. USE NET METERING TO SAVE MORE MONEY
With a grid connection, you may use a wind generator to save more money thanks to higher efficiency rates, net metering, and less equipment and installation expenses.
A completely working off-grid wind system necessitates batteries and other stand-alone equipment, which raises prices and requires more maintenance. Thus, grid-tied wind systems are typically less expensive and easier to build. Often, your wind turbine generator will produce more power than you can use. Instead of storing the extra power themselves in batteries, householders may use net metering to send it into the utility grid. The way wind electricity is rewarded, through net metering or feed-in tariff programs in some nations, is crucial. Residential wind systems would not exist without it.
2. UTILITY A VIRTUAL BATTERY IS GRID.
Real-time electricity consumption is required. It may, however, be momentarily stored as other types of energy (e.g. chemical energy in batteries). Often, energy storage results in large losses.
The electric power grid is similar to a battery in many aspects, except that it is considerably more efficient and doesn't require any upkeep or repairs. In other words, using traditional battery systems results in more electrical (and financial) waste. The average yearly loss in the transmission and distribution of power in the United States is over 7%, according to EIA data[1]. Often used with solar panels, lead-acid batteries are only 80–90% effective at storing energy, and over time, their efficiency deteriorates. Additional
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