Parameter | Value |
---|---|
Material Composition | FeCuNbSiB |
Thickness (um) | 28~35 |
Saturation induction Bs (T) | 1.25 |
Curie temperature (°C) | 570°C |
Hardness Hv | 880 |
Crystalline temperature Tc (°C) | 500°C |
Saturation magnetostriction | 2×10^-6 |
Initial permeability μi | ≥80000 |
Maximum permeability um | ≥500000 |
Density (g/cm³) | 7.2 |
Electrical resistivity (μΩ.cm) | 130 |
Lamination factor | ≥0.8 |
Operating Temperature Range | -50~120°C |
Code No | Core size (mm) | Case size (mm) | AC (cm²) | Le (cm) | Weight (g) | Suitable Power (kW) |
---|---|---|---|---|---|---|
JJ-502050 | 322054 | 28241 | 1.35 | 12.87 | 125 | 1-1.5 |
JJ-642064 | 402066 | 37231 | 1.72 | 16.30 | 215 | 1-2 |
The manufacturing of nanocrystalline core toroidals involves a series of complex steps. The base material is usually produced through rapid solidification processes such as melt spinning, which results in the formation of thin ribbons. These ribbons are then annealed at specific temperatures to induce the formation of nanocrystalline grains within an amorphous matrix. The material is then cut, wound, and formed into the toroidal shape.
Nanocrystalline core toroidal components are extensively used in high-frequency transformers, inductors, EMI filters, and current transformers. Their unique combination of high magnetic permeability and low core losses makes them ideal for high-efficiency applications in switched-mode power supplies (SMPS), power electronics, RF applications, and signal processing. They are also beneficial for solar inverters, frequency converters, welding equipment, wind generators, automotive applications, inductive cooking, and uninterrupted power supplies (UPS).
Nanocrystalline cores possess extremely high magnetic permeability, several orders of magnitude higher than conventional magnetic materials like ferrites and silicon steel.
These cores are used in high-frequency transformers, inductors, EMI filters, and current transformers, among other applications.
Yes, nanocrystalline cores maintain their magnetic properties over a broad temperature range, making them suitable for harsh environmental conditions.
Nanocrystalline cores offer higher magnetic permeability, lower core losses, and better temperature stability than ferrite materials.
Yes, we can manufacture custom sizes based on customer specifications.
The cores are manufactured through rapid solidification processes such as melt spinning, followed by annealing to form nanocrystalline grains.
Our nanocrystalline cores operate effectively within a temperature range of -50 to 120°C.
Yes, we offer 24/7 customer support, a one-year warranty for manufacturing defects, and free technical consultations.
We offer fast and reliable shipping options, including international delivery.
You can contact our sales team directly to discuss your requirements and place a wholesale order.
Nanocrystalline core toroidal transformers are increasingly popular in high-frequency applications due to their high magnetic permeability and low core losses. These characteristics make them incredibly efficient, reducing energy waste and improving overall performance. Compared to traditional ferrite and silicon steel cores, nanocrystalline cores offer superior temperature stability and higher saturation flux density, making them ideal for demanding environments. Their compact design also allows for more streamlined and space-saving installations. For industries focusing on high-efficiency and high-performance metrics, wholesale nanocrystalline core toroidal transformers are a game-changer.
Power electronics benefit significantly from the use of nanocrystalline core toroidal inductors. These components offer high permeability and low core losses, crucial for efficient energy transfer and minimal heat generation. Their excellent temperature stability ensures consistent performance under varying operational conditions, making them ideal for applications such as RF signal processing and switched-mode power supplies (SMPS). The compact size of these inductors enables more versatile design opportunities, allowing for innovations in smaller, more efficient electronic devices. For companies looking to enhance their power electronics, investing in wholesale nanocrystalline core toroidal inductors is an excellent choice.