
New energy photovoltaic, wind power, and energy storage equipment operate continuously at high loads for a long time, requiring extremely high requirements for loss control, weather resistance, and stability of magnetic cores. Amorphous magnetic cores have become the core supporting products for energy storage inverters, high-power reactors, and power transformers due to their low iron loss, high saturation magnetic flux density, and energy-saving and efficient characteristics. Compared to traditional carbon steel magnetic cores, amorphous magnetic cores have higher energy conversion efficiency, which can significantly reduce the operating energy consumption of energy storage equipment, reduce equipment temperature rise problems, and effectively extend the service life of energy storage systems. At the same time, amorphous magnetic cores are suitable for high-power and high-frequency working conditions, which can meet the high-frequency switching operation requirements of integrated wind solar energy storage equipment. With the continuous increase in installed capacity of new energy storage, the market demand for high-performance amorphous magnetic cores continues to expand, becoming a key core component for upgrading new energy power equipment.