Item | Performance |
---|---|
Material Composition | FeCuNbSiB |
Thickness (um) | 28~35 |
Saturation induction Bs (T) | 1.25 |
Curie temperature (oC) | 570 |
Hardness Hv | 880 |
Crystalline temperature Tc (oC) | 500 |
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℃ |
Part No. | Core dimension | Finished dimension | Note |
---|---|---|---|
JJ8001 | 8050 | 8545 | 55 |
JJ7501 | 7520 | 8055 | 25 |
JJ8002 | 8060 | 8555 | 30 |
JJ8003 | 8060 | 8555 | 35 |
JJ1000 | 10080 | 10575 | 35 |
JJ1200 | 12080 | 12575 | 25 |
JJ1150 | 11585 | 12080 | 30 |
JJ1202 | 12085 | 12580 | 35 |
JJ1152 | 11590 | 12085 | 30 |
JJ1203 | 12090 | 12585 | 25 |
JJ1350 | 13590 | 14085 | 30 |
JJ1300 | 13095 | 13590 | 25 |
JJ1302 | 13095 | 13590 | 30 |
JJ1400 | 140100 | 14595 | 25 |
JJ1700 | 170120 | 175115 | 30 |
JJ1950 | 195155 | 200150 | 45 |
The manufacturing process of the factory Nanocrystalline Core M-102 Toroidal involves several precise steps to ensure its superior magnetic properties. The core is made from an iron-based alloy that undergoes rapid solidification, often through melt spinning. This rapid cooling process results in a nanometer-scale crystalline structure. The material is then subjected to a controlled annealing process, wherein it is heated and cooled under specific conditions to enhance its magnetic properties. The fine-grained structure obtained through this process is what gives the nanocrystalline cores their high permeability, low coercivity, and excellent temperature stability. This innovative manufacturing technique ensures that the cores are highly efficient and suitable for a variety of high-frequency applications, as supported by numerous authoritative studies in the field of materials science.
The factory Nanocrystalline Core M-102 Toroidal is used in various high-efficiency applications due to its outstanding magnetic properties. Authoritative papers suggest the core's high permeability and low losses make it ideal for power transformers, boosting their efficiency and minimizing heat generation. Additionally, it is widely used in inductors within power electronics, ensuring frequency stability and high efficiency. The core's ability to suppress high-frequency noise is beneficial in EMI filters, making it suitable for environments requiring noise reduction. Furthermore, it is employed in current transformers for accurate current sensing, which is essential for protective relays, metering, and monitoring systems. The versatility and reliability of the M-102 core make it a significant component in advancing power supply systems and electronic devices.
Our factory provides comprehensive after-sales service for the Nanocrystalline Core M-102 Toroidal. This includes technical support, product replacement, and customer service to address any issues or queries. We ensure timely delivery of spare parts and offer maintenance advice to extend the product's lifespan. Customer satisfaction is our priority, and we strive to resolve any concerns promptly and efficiently.
Our factory ensures that the Nanocrystalline Core M-102 Toroidal is securely packaged to prevent any damage during transportation. We use robust materials for packaging and offer various shipping options to meet customer needs. Tracking information is provided to monitor the shipment, ensuring timely and safe delivery.
The factory Nanocrystalline Core M-102 Toroidal is composed of an iron-based alloy with elements such as FeCuNbSiB.
It is used in power transformers, inductors, EMI filters, and current transformers.
The permeability range is μ10KHz=15000~50000.
It has higher permeability, lower losses, and better temperature stability than silicon steel.
The operational temperature range is -50~120℃.
Yes, its low magnetic losses make it ideal for high-frequency applications.
It is securely packaged using robust materials to prevent damage during transit.
We offer technical support, product replacement, and maintenance advice.
Yes, its high permeability allows for accurate current sensing.
The density of the core is 7.2 g/cm³.
The factory Nanocrystalline Core M-102 Toroidal is a result of cutting-edge advancements in materials science. Its unique nanometer-scale grain structure offers enhanced magnetic properties, surpassing traditional core materials like silicon steel and ferrites. These cores are becoming increasingly essential in high-efficiency applications, pushing the envelope in power electronics and transformer technology.
The low coercivity of the factory Nanocrystalline Core M-102 Toroidal means it can be easily magnetized and demagnetized. This is particularly significant in power transformers where frequent switching is required. The ability to change magnetic states with minimal energy loss improves the overall efficiency of these devices.
The factory Nanocrystalline Core M-102 Toroidal maintains its magnetic properties over a wide range of temperatures, making it suitable for environments with significant temperature fluctuations. This stability is particularly beneficial in applications like electric vehicles and other high-frequency power systems.
High permeability is a critical feature of the factory Nanocrystalline Core M-102 Toroidal, allowing it to conduct magnetic fields more efficiently. This property is particularly advantageous in inductors used in high-frequency applications, where efficiency and frequency stability are paramount.
The factory Nanocrystalline Core M-102 Toroidal offers several advantages over traditional magnetic core materials like silicon steel and ferrites. These include higher efficiency, reduced size, and better thermal management, making it a more cost-effective solution for modern electrical and electronic devices.
The factory Nanocrystalline Core M-102 Toroidal is highly effective in EMI filters, capable of suppressing high-frequency noise. This ability is crucial in environments requiring noise reduction, such as medical equipment and precision measuring instruments.
Efficiency is a key concern in power electronics, and the factory Nanocrystalline Core M-102 Toroidal addresses this by offering lower core losses and high permeability. These features contribute to lower energy consumption and reduced heat generation, enhancing the efficiency of electronic devices.
The melt spinning process used in manufacturing the factory Nanocrystalline Core M-102 Toroidal is a significant innovation in materials science. Rapid solidification followed by controlled annealing results in a fine-grained structure, providing superior magnetic properties and enabling advanced applications.
Accurate current sensing is crucial in protective relays, metering, and monitoring systems. The high permeability of the factory Nanocrystalline Core M-102 Toroidal allows for precise current measurement, making it an essential component in these applications.
The future of the factory Nanocrystalline Core M-102 Toroidal looks promising as industries increasingly seek energy-efficient and compact designs. Ongoing research and development in nanocrystalline materials are expected to further enhance their properties, opening up new possibilities in advanced electronics and power systems.
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