Product Details
Parameter | Value |
Saturation Induction Bs | 1.25 T |
Curie Temperature | 570°C |
Hardness | Hv 880 |
Density | 7.2 g/cm³ |
Electrical Resistivity | 130 μΩ.cm |
Operating Temperature Range | -50~120°C |
Common Product Specifications
Model | Core Dimensions | Weight | Permeability (μ at 10KHz) |
JJ-1005-W01W9 | 49.8*6.5*4.5 | 60 g | 5600≤μ≤127000 |
JJ-1205-W01W9 | 212*8*4.5 | 72 g | 172000≤μ≤139000 |
Product Manufacturing Process
The manufacturing of E and I Core Transformers includes precision cutting and stacking of silicon steel laminations. High-quality nanocrystalline ribbon is used, ensuring minimal eddy current losses, efficient performance, and reduced heat generation. According to authoritative studies, the process emphasizes the reduction of core losses and the enhancement of magnetic saturation, ensuring optimal efficiency and durability in high-power applications such as telecommunications and electric vehicles.
Product Application Scenarios
Utilizing E and I Core Transformers as a supplier ensures robust application across high-power scenarios. Their application spans telecommunications, supporting high-frequency data transmission; inverters for new energy, providing efficient power conversion; and medical equipment, ensuring stable operation. These transformers are crucial in settings requiring reliable power supply and minimal energy loss, as reported in major industry publications.
Product After-Sales Service
We offer comprehensive after-sales support including installation guidance, troubleshooting, and performance optimization to ensure your satisfaction with our E and I Core Transformers.
Product Transportation
All products are securely packaged to prevent damage during transit. We work with reputable logistics providers to ensure timely delivery to our clients globally.
Product Advantages
- High Efficiency: Low core loss and high saturation flux density.
- Cost-Effective: Standard shapes allow simpler manufacturing.
- Versatility: Suitable for a wide range of applications.
Product FAQ
- What materials are used in E and I Core Transformers? As a supplier, we utilize high-grade silicon steel and nanocrystalline ribbons, which ensure high efficiency and durability.
- What are the key application areas for these transformers? E and I Core Transformers are widely used in telecommunications, medical equipment, and electric vehicles due to their reliable performance.
- How does the design reduce energy loss? The laminated core design minimizes eddy currents, reducing heat and energy loss significantly.
- Can these transformers operate in harsh environments? Yes, their robust construction allows them to function efficiently in a range of temperatures from -50 to 120°C.
- How do you ensure product quality? Our manufacturing process adheres to strict quality control standards, ensuring each transformer meets high-performance benchmarks.
- What kind of support do you offer after purchase? We provide technical assistance and guidance on installation and troubleshooting post-purchase.
- Are customized solutions available? Yes, we can tailor our transformers to meet specific customer requirements.
- How is the transformer’s performance measured? Performance is evaluated based on parameters such as magnetic permeability and saturation induction.
- What makes your transformers cost-effective? The efficient design and manufacturing process reduce production costs, which is reflected in competitive pricing.
- What safety standards do you adhere to? Our transformers comply with international safety standards, ensuring safe operation across all applications.
Product Hot Topics
- The Role of E and I Core Transformers in Energy Efficiency E and I Core Transformers play a crucial role in enhancing energy efficiency by minimizing core losses and optimizing magnetic flux. As a leading supplier, our focus is on improving these aspects to support sustainable energy solutions, particularly in high-demand applications such as electric vehicles and power conversion systems.
- Innovations in Transformer Materials Our use of nanocrystalline materials in E and I Core Transformers marks a significant advancement in transformer technology. These materials offer superior properties such as higher permeability and lower coercive force, making transformers more efficient and compact, which is beneficial for applications in telecommunications and other electronic devices.
Image Description
There is no picture description for this product