Parameter | Value |
---|---|
Material Composition | FeCuNbSiB |
Strip Thickness Tolerance (mm) | 32 ± 2 |
Magnetic Strength B800 | ≥ 1.2T |
Curie Temperature (°C) | 570 |
Crystallization Temperature | 500°C |
Saturation Magnetostriction Coefficient | < 2×10⁻⁶ |
Initial Permeability µi | ≥ 80000 |
Maximum Permeability µm | ≥ 500000 |
Density (g/cm³) | 7.2 |
Electrical Resistivity (µΩ.cm) | 130 |
Lamination Factor | ≥ 0.8 |
Coercivity Hc | ≤ 1 A/m |
Magnetic Permeability (1kHz) | ≥ 70000 |
Magnetic Permeability (10kHz) | ≥ 60000 |
Magnetic Permeability (100kHz) | ≥ 10000 |
Operating Temperature Range | -50~120°C |
Producing factory Nanocrystalline 1K107 involves advanced techniques like rapid solidification and controlled heat treatment processes. These methods ensure a fine, amorphous structure initially, followed by crystallization into a nanostructure for enhanced magnetic properties. According to authoritative research, precise control over the cooling rate and heat treatment parameters is crucial for optimizing performance.
Factory Nanocrystalline 1K107 is widely used in various industries, thanks to its superior magnetic properties. In power electronics, it enhances efficiency in transformers and inductors. In the automotive sector, it improves power conversion components, while in telecommunications, it supports high-frequency signal processing. Research indicates its significant role in reducing energy consumption and enhancing overall performance.
Our factory provides comprehensive after-sales support for Nanocrystalline 1K107. We offer technical assistance, product replacement, and performance consultations to ensure optimal use.
Nanocrystalline 1K107 is securely packaged to prevent damage during transportation. We collaborate with reliable carriers to ensure timely delivery.
Its high saturation magnetization and low core losses make it ideal for efficient energy transfer in transformers.
We adhere to stringent manufacturing processes and quality control measures to maintain high standards.
Yes, its nanostructure supports low permeability loss at high frequencies.
It supports power electronics, automotive, telecommunication, and electrical engineering industries.
It is packed with protective materials to avoid damage during transport.
By offering exceptional permeability and low coercive force, 1K107 allows efficient channeling of magnetic fields, reducing energy loss and optimizing performance in transformers.
Technological improvements have enabled more precise control of the rapid solidification and annealing processes, enhancing the magnetic properties of 1K107.