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COENG Solar PV Optimizer with Rapid Shutdown Device for Photovoltaic Power System
Model | OMS800 | |
Max DC input power | 800W | |
Max DC input voltage | 70V | |
Max continuous input current | 21A | |
Max input short-circuits current | 23A | |
Night self-consumption | 0W | |
Output voltage | 0-60V | |
Max output power | 780W | |
Dimensions(W*D*H) | 116.3*22.8*120mm | |
Weight | 650g | |
Terminals | MC4(Compatible) | |
Relative humidity | 0-100%RH |
Module-level MPPT: Large-scale solar power plants often face complex shading and obstruction scenarios. Module-level maximum power point tracking (MPPT) optimizes the power output of each individual PV module, maximizing the energy generation of the entire plant.
Compatibility: Large-scale solar power plants typically use a variety of PV modules and inverters from different brands and models. Therefore, compatibility with mainstream PV modules and various inverters is crucial to ensure seamless integration of the solar PV optimizers with the existing equipment.
Real-time monitoring: Real-time monitoring of each PV module is essential in large-scale solar power plants to promptly identify and address any potential issues. Having the capability to provide panel-level monitoring enhances system efficiency, fault detection, and maintenance effectiveness.
Safety features: Safety is always a priority in large-scale solar power plants. Solar PV optimizers should have rapid shutdown capabilities to respond to emergency situations, ensuring the plant can quickly stop generating power, thereby safeguarding personnel and equipment.
Increased energy yield: The economic viability of large-scale solar power plants is of utmost importance. Solar PV optimizers, by optimizing the power generation of PV modules, can significantly increase the energy yield of the entire plant, maximizing the financial returns.