Product Introduction
Ferrosilicon Inductors are inductors with core material of ferrosilicon alloy, suitable for industrial power supply, new energy inverter, automotive electronics, energy storage system and other scenarios, with rated currents ranging from 10A-300A and inductance values ranging from 0.5μH-50mH, which can stably cope with medium and high frequency current environments. The product adopts ferrosilicon alloy magnetic core and multi-strand enameled copper wire winding, made by precision moulding and encapsulation, with wide temperature operating characteristics (-55℃-180℃), compatible with plug-in, SMD and other mounting methods, and can be seamlessly integrated into various types of power electronic equipment current filtering and energy storage circuits.
Advantages
1. Excellent magnetic performance and energy efficiency:
High permeability and low hysteresis loss of ferrosilicon core, 15% higher energy efficiency than traditional silicon steel inductors, 20% higher current ripple suppression capability, ensuring stable output.
2. Anti-saturation and Reliability:
core has high saturation flux density, which can withstand instantaneous high-current impacts without saturation, and with high-temperature resistant package, the failure rate is less than 0.3% for long-term full-load operation, and the life expectancy is more than 10 years.
3. Compactness and Cost Optimisation:
core size is 25% smaller than ferrite inductors of the same performance, saving PCB board space; material cost is lower than pure iron core inductors, taking into account both performance and economy, reducing the overall cost of equipment.
Advantages
1. Excellent magnetic performance and energy efficiency:
High permeability and low hysteresis loss of ferrosilicon core, 15% higher energy efficiency than traditional silicon steel inductors, 20% higher current ripple suppression capability, ensuring stable output.
2. Anti-saturation and Reliability:
core has high saturation flux density, which can withstand instantaneous high-current impacts without saturation, and with high-temperature resistant package, the failure rate is less than 0.3% for long-term full-load operation, and the life expectancy is more than 10 years.
3. Compactness and Cost Optimisation:
core size is 25% smaller than ferrite inductors of the same performance, saving PCB board space; material cost is lower than pure iron core inductors, taking into account both performance and economy, reducing the overall cost of equipment.
