Parameter | Value |
---|---|
Material Composition | FeCuNbSiB |
Thickness | 28~35μm |
Saturation induction Bs (T) | 1.25 |
Curie Temperature | 570°C |
Hardness | Hv 880 |
Crystalline Temperature | 500°C |
Saturation Magnetostriction | 2×10-6 |
Initial Permeability μi | ≥80000 |
Maximum Permeability um | ≥500000 |
Density | 7.2 g/cm³ |
Electrical Resistivity | 130 μΩ.cm |
Lamination Factor | ≥0.8 |
Operating Temperature Range | -50~120°C |
Model | Core Dimensions (OD*ID*H) | Core Weight (g) | Permeability (μ at 10KHz) | Saturation Current (A) |
---|---|---|---|---|
JJ-1005-W01W9 | 11.2*5.1*5.8 | 19.8 | 56000≤μ≤127000 | 25.5 |
JJ-2008-W01W40 | 22.6*10.3*10.2 | 24.5 | 72000≤μ≤135000 | 5.2 |
The production of Ferrite Core Transformers involves several steps, starting with the blending of iron oxide with other metallic oxides. This mixture forms a powder that is pressed into a solid form and sintered in high temperatures to create a ceramic core. The core is then coated to prevent eddy currents, assembled with windings, and tested for various parameters to ensure it meets performance standards. Research shows that choosing the right material and manufacturing process can greatly influence the efficiency and loss characteristics of the transformer (Smith et al., 2020).
Ferrite Core Transformers are widely used in high-frequency applications due to their distinct advantages. They are employed in switch mode power supplies (SMPS), telecommunications, RF transformers, and inductive components to ensure minimal energy loss and effective EMI management. Studies validate their efficiency in converting electrical power with minimal interference, making them a critical component in consumer electronics, automotive chargers, and telecommunication systems (Brown et al., 2019).
Our Ferrite Core Transformers are securely packaged to prevent damage during shipment. We offer global shipping with tracking options to ensure on-time and safe delivery to our customers.
Our Ferrite Core Transformers are designed to enhance energy efficiency in electronic devices by minimizing energy loss and optimizing power transfer rates.
With advancing technology, our focus is on reducing the size of the Ferrite Core Transformer while maintaining its efficiency and performance in demanding applications.
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