Parameter | Value |
---|---|
Material Composition | FeCuNbSiB |
Thickness | 28~35 µm |
Saturation Induction Bs (T) | 1.25 |
Curie Temperature | 570°C |
Hardness Hv | 880 |
Initial Permeability μi | ≥80000 |
Model | Dimensions (OD*ID*H) | Weight (g) | Permeability |
---|---|---|---|
JJ-1005-W01W | 11.2*5.1*5.8 | 5600 | 87000 |
JJ-1205-W01W | 14.1*6.6*6.3 | 77000 | 97000 |
The manufacturing process of the factory Multi Core Transformer involves the precise layering and annealing of nanocrystalline materials to form a core with superior magnetic properties. According to recent studies, these processes contribute significantly to the reduction of energy losses and enhance the core's ability to operate efficiently under various conditions. Techniques such as high-temperature annealing and controlled cooling are employed to manipulate the microstructure at a nanometer scale, optimizing magnetic performance. The factory's commitment to technological advancement ensures that each transformer core meets stringent international standards, providing reliable and efficient solutions for diverse applications.
Factory Multi Core Transformers are essential in applications requiring high efficiency and precision, such as inverters, industrial welding equipment, and advanced medical power supplies. Recent papers highlight their crucial role in enhancing the performance of renewable energy systems like solar inverters by providing stable and efficient power conversion. These transformers are also pivotal in cutting-edge communication systems, where their ability to handle high frequency signals with minimal loss greatly enhances data transmission quality. With the evolving landscape of electric vehicles, Multi Core Transformers contribute to more efficient battery charging solutions, thus supporting sustainable transportation technologies.
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