High Frequency, Low Loss & High Permeability
The spray-coating process enables uniform application of nanocrystalline material, achieving permeability of 120k–140k and core losses at 100kHz–200kHz as low as 1/3 that of ferrite. Ideal for high-frequency power electronics applications.
Key Advantages:
High-Frequency Low Loss with High Permeability
The spray-coating process enables uniform nanocrystalline application, delivering permeability up to 140,000 and losses at 100–200 kHz as low as 1/3 of ferrite cores, making it ideal for high-frequency power electronics.
Ultra-Thin Design & High Voltage Withstand
Coating thickness can be precisely controlled within 0.1–0.3 mm, offering dielectric strength up to 1000 V/mm to meet demanding high-voltage isolation requirements in compact designs.
Enhanced Durability & Thermal Performance
The epoxy-based coating improves mechanical shock resistance and reduces operating temperature rise by 15–20°C versus ferrite. Stable performance is maintained from -40°C to 120°C, supporting a service life exceeding 100,000 hours.
Adaptable Geometry & Space Efficiency
Can be directly applied to complex or irregular substrates, enabling asymmetrical designs while reducing total magnetic volume by 40–50% compared to conventional core solutions.
| Basic Parameters | ||
| Parameter | Value/Range | Application Scenarios |
| Saturation Flux Density (Bs) | 1.2T | High-frequency transformers/inverters |
| nitial Permeability (μ₀) | 120,000–140,000 | EMI filters/common-mode inductors |
| Frequency Response Range | 20kHz-1MHz | Wireless charging/switching power supplies |
| Coating Thickness | 0.1mm-0.3mm(adjustable) | Miniaturized high-frequency inductive components |
| Insulation Withstand Voltage | ≥1000V | High-voltage drive circuits/vehicle power systems |
| Power Density | 15-20kW/kg | New energy converters/energy storage systems |


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