Parameter | Value |
---|---|
Material Composition | FeCuNbSiB |
Thickness (μm) | 28~35 |
Saturation Induction Bs (T) | 1.25 |
Curie Temperature (°C) | 570 |
Hardness Hv | 880 |
Crystalline Temperature Tc (°C) | 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℃ |
Model | Dimensions (OD*ID*H) | Weight (g) | Permeability (μ at 10KHz) |
---|---|---|---|
JJ-1005-W01W | 9.8*6.5*4.5 | 2.6 | 5600≤μ≤127000 |
JJ-1505-W01W | 15*10*4.5 | 3.9 | 2000≤μ≤139000 |
JJ-2510-W01W | 25*20*10 | 7.1 | 60000≤μ≤116000 |
The manufacturing process of the distribution transformer core involves the use of advanced amorphous metal alloys and precise lamination techniques to minimize energy loss and maximize magnetic efficiency. These amorphous metals, known for their unique atomic structures, offer significant reductions in hysteresis and eddy current losses. The lamination process involves layering thin sheets of silicon steel to create a closed-loop magnetic circuit, enhancing permeability and reducing losses. Quality control measures are meticulously integrated into every step, ensuring each core meets our stringent performance standards. In conclusion, the state-of-the-art manufacturing practices used by Zhejiang Jingjing New Material Technology Co., Ltd. guarantee a top-tier product that excels in energy efficiency, reliability, and durability.
The distribution transformer cores supplied by Zhejiang Jingjing New Material Technology Co., Ltd. are integral to modern electrical networks. They are widely used in various sectors including the telecommunications industry, railways, energy-efficient home power systems, and cutting-edge medical equipment. These cores drive efficiency and reliable power supply across high-frequency and induction heating applications. In a world increasingly focused on sustainable energy solutions, distribution transformer cores are pivotal in facilitating the transition to renewable energy systems, such as solar inverters and electric vehicle charging stations. In conclusion, these cores not only enhance energy conversion efficiency but also ensure sustainable power supply management across diverse applications.
Our commitment to customer satisfaction extends beyond the point of sale. We provide comprehensive after-sales support for our distribution transformer cores, including consultation, installation guidance, and troubleshooting. Our technical support team, composed of seasoned engineers, is ready to assist with any inquiries or issues that may arise. Regular maintenance schedules are advised to ensure optimal performance. In the unlikely event of a defect, we offer replacement services in accordance with our quality assurance policy. Contact our customer service team for a tailored support plan that fits your operational needs.
Ensuring the safe delivery of our distribution transformer cores is a top priority. Our packaging solutions are designed to protect against physical damage and environmental stressors during transit. We partner with trusted logistics providers to guarantee timely and secure shipment to your location. Please ensure to inspect the product upon delivery for any signs of transit damage, and contact us immediately if issues are found.
The core provides a pathway for magnetic flux, essential for transferring electrical energy between the transformer’s primary and secondary windings. Utilizing high permeability materials, it maximizes energy efficiency.
Our cores incorporate silicon steel and advanced amorphous alloys, renowned for minimizing energy losses while maximizing magnetic performance. These materials ensure exceptional efficiency and reliability.
Quality is central to our ethos. Each transformer core undergoes rigorous testing and quality assurance processes, ensuring compliance with industry standards and performance benchmarks.
Yes, our distribution transformer cores are engineered to operate effectively across a broad temperature range (-50°C to 120°C), ensuring stable performance regardless of the environment.
We offer a range of customizable options to meet unique client requirements. Please contact our sales team to discuss your specific needs and receive a tailored solution.
Manufactured with durable materials, our transformer cores are designed for longevity, requiring minimal maintenance over their extended operational life. Regular inspection and routine checks are advised.
Our transformer cores leverage cutting-edge materials to reduce hysteresis and eddy current losses significantly, thereby improving energy conversion rates and reducing operational costs.
Our cores are widely used in telecommunications, medical equipment, electric vehicles, renewable energy systems, and railways, among other sectors, due to their efficiency and reliability.
We offer various shipping options through trusted logistics providers to ensure your order reaches you safely and promptly. Contact us for specific shipping arrangements based on your location.
Our dedicated technical support team is available to assist you. Contact us via phone, email, or through our website for personalized support and guidance.
Choosing the right materials for transformer core construction significantly influences energy efficiency. Our cores, crafted from advanced amorphous alloys, demonstrate superior efficiency compared to conventional silicon steel alternatives. As a renowned supplier, we continue to innovate in material science, further advancing core efficiency. Our success in supplying these high-performance cores is reflected in reduced operational costs for our customers.
The future of distribution transformer core technology is promising, with trends pointing towards further efficiency gains and miniaturization. As the leading supplier, we invest heavily in R&D to push the boundaries of core technology, ensuring our products meet the evolving demands of the modern energy landscape. Customers can expect ongoing improvements in performance and sustainability.
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