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 μm | ≥500000 |
Model | Dimensions (OD*ID*H) | Weight | Permeability (10KHz) |
---|---|---|---|
JJ-1005-W01W | 9.8*6.5*4.5 | 1.2 g | 5600≤μ≤12700 |
JJ-2008-W01W | 20*12.5*8 | 5.1 g | 7200≤μ≤13500 |
Manufacturing nanocrystalline transformer cores involves a meticulous process of melting and rapidly cooling metal alloys to form nanocrystalline structures. According to recent authoritative sources, this process enhances the magnetic properties of the cores, making them suitable for high-frequency applications. The rapid quenching is crucial to achieving a high saturation flux density and low core loss, vital for the efficiency of power transformers. The nanocrystalline structure results in a material that has a high permeability and low coercive force, which are essential characteristics for minimizing energy loss and optimizing transformer performance.
Iron Transformer cores made from nanocrystalline material are pivotal in sectors demanding high-frequency power supply, such as electric vehicle chargers, solar inverters, and medical equipment transformers. Recent studies highlight their significant role in reducing the size and weight of transformers while maintaining high efficiency and stability over extensive temperature ranges. These cores are integral to the power supply systems in telecommunications and rail transit, offering enhanced performance through reduced electromagnetic interference and improved energy transfer.
We offer a comprehensive after-sales service for our Iron Transformer cores, including technical support, warranty services, and return policies. Our dedicated support team is ready to assist with any inquiries or issues customers may face, ensuring satisfactory resolutions.
Our transformer cores are securely packaged to prevent any damage during transportation. We collaborate with reliable logistics partners to ensure timely and safe delivery, providing tracking services for customer peace of mind.
Nano-crystalline materials offer high magnetic permeability and low core loss, making them ideal for efficient energy transfer in high-frequency applications.
Yes, our Iron Transformer cores are designed to operate stably across a wide temperature range, from -50°C to 120°C.
Industries like telecommunications, renewable energy, electric vehicles, and medical equipment can greatly benefit from these highly efficient transformer cores.
Nanocrystalline technology enhances performance by providing high saturation flux density and low coercive force, crucial for reducing energy loss and improving efficiency.
Our transformer cores are designed with sustainability in mind, reducing energy waste and utilizing materials that have a minimized environmental impact.
Lead times for wholesale orders depend on the quantity and specifications; however, we strive to meet delivery expectations within the standard industry timeframe.
Yes, we offer sample units for potential wholesale customers to evaluate the product's suitability for their specific applications.
We provide a standard warranty period that covers manufacturing defects and issues, ensuring customers are satisfied with their purchase.
Our technical support team is available via phone, email, and online chat during business hours to assist with any product-related inquiries or issues.
No special storage conditions are required; however, storing them in a clean, dry environment will maintain their quality and performance.
The adoption of Iron Transformer cores in renewable energy systems is a topic of great interest. These cores greatly enhance the efficiency of solar inverters and wind turbine transformers. Their ability to minimize electromagnetic interference while providing stable energy transfer makes them a preferred choice in designing sustainable energy solutions. The scalability and adaptability of these cores in various configurations further add to their appeal, especially for large-scale energy projects. As the world transitions to more green energy sources, the demand for highly efficient components like Iron Transformer cores is set to rise.
Recent advancements in nanocrystalline technology are significantly impacting transformer design. Researchers and manufacturers are pushing the boundaries to develop even more efficient materials that drive down energy costs and enhance system reliability. These innovations are not just limited to performance improvements; there is also a considerable focus on the manufacturing process, aiming for more environmentally friendly techniques. The ability to produce Iron Transformer cores at scale while maintaining high quality is crucial for meeting the increasing demands of modern power applications.
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