A hybrid inverter, also known as a grid-tie with backup or multi-mode inverter, is a versatile device that combines the functionality of both grid-tied and off-grid inverters. SunArk Sunteny series inverter is US version split phase 120V/240V, which is very widely used in North America market.
Brand:
SunArkModel:
Sunteny S10000H-48SPMax. PV Input Power:
1500WRated Power:
10000KWMPPT Voltage Range:
150V~450VDCRated Battery DC Voltage:
48VDCSunArk Sunteny Series Hybrid Solar Inverter 10KW
SunArk Sunteny S10000H-48SP hybrid solar inverter allows for seamless integration of renewable energy sources, such as solar panels or wind turbines, with the existing utility grid, while also providing backup power capability during grid outages.
Detailed Parameters of SunArk Sunteny Series Solar Inverter 10KW
Working Modes for SunArk Sunteny Series Solar Inverter 10KW
Here's a brief introduction to the different operation modes of hybrid solar inverters:
--Grid-Tied Mode: In this mode, the hybrid inverter synchronizes with the utility grid and feeds excess energy generated by renewable sources back into the grid. It allows for the reduction of electricity bills through net metering, where users receive credits for the surplus energy they contribute.
--Off-Grid Mode: When the utility grid is unavailable or during a power outage, the hybrid inverter switches to off-grid mode. In this mode, it draws energy from the connected batteries to supply power to the connected loads, ensuring uninterrupted electricity supply.
--Hybrid Mode: In hybrid mode, the inverter operates in conjunction with both the utility grid and the battery storage system. It optimizes energy usage by drawing power from the grid when needed or when renewable sources are insufficient, and it charges the batteries using excess energy from renewable sources for later use during peak demand or grid outages.
Applications of SunArk Sunteny Series Solar Inverter 10KW
SunArk Sunteny hybrid inverter is designed to be used in various environments, including residential, commercial, and industrial settings. It is particularly well-suited for the following scenarios:
--Grid-Connected Systems with Backup: Hybrid inverters are ideal for grid-connected systems that require backup power during utility outages. They can automatically switch between grid power and stored energy from batteries, ensuring a continuous power supply to critical loads, such as refrigeration, lighting, or medical equipment.
--Off-Grid Systems with Grid Support: Hybrid inverters can also be used in off-grid systems that are located in areas with an unreliable or nonexistent grid connection. These inverters enable users to utilize renewable energy sources for self-sufficiency, while still having the option to connect to the utility grid for backup power or to sell excess energy through net metering programs.
--Microgrids and Remote Communities: Hybrid inverters play a vital role in microgrid systems, which are small-scale, localized power grids that can operate independently or in conjunction with the main utility grid. They enable the integration of multiple energy sources, such as solar, wind, or diesel generators, providing energy independence to remote communities or areas with limited access to the grid.
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