Item | Performance |
---|---|
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 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 | |
JJ7501 | 8060 | 8555 | |
JJ8002 | 8060 | 8550 |
The manufacturing process for Split Type Current Transformer cores involves precise construction techniques to ensure excellent magnetic properties and durability. According to authoritative sources, the process begins with the selection of high-grade amorphous or nanocrystalline materials, known for their high permeability and low losses. The material is carefully cut into strips and then wound into core shapes, typically using automated machinery to ensure consistency and precision. These cores undergo heat treatment processes to optimize their magnetic properties, often in controlled atmospheres to maintain material integrity. The final step is the assembly of the split core design, which requires precise engineering to ensure exact alignment and closure, critical for maintaining measurement accuracy. In conclusion, the manufacturing process of Split Type Current Transformer cores is a meticulous procedure that guarantees high performance and reliability, essential for modern power systems.
Split Type Current Transformers are integral in various power management applications, providing precise current measurements essential for system monitoring and control. Authoritative papers highlight their extensive use in retrofit projects, where they are the preferred choice due to their non-invasive installation capability. These transformers are crucial in energy management systems, where accurate load monitoring can lead to better efficiency and significant cost savings. Additionally, they play a vital role in predictive maintenance strategies, allowing operators to identify irregular current patterns that might indicate potential faults, thereby preventing costly downtimes. In conclusion, the versatility and precision of Split Type Current Transformers make them indispensable tools in enhancing the reliability and efficiency of electrical systems.
Our Split Type Current Transformer cores are packaged securely using industry-standard materials to prevent damage during transit. We collaborate with trusted logistics partners to ensure timely and safe delivery. Tracking information is provided for real-time updates on shipment status. Special arrangements can be made for urgent or custom orders, ensuring that our products reach you in perfect condition and on time.
The main advantage of split type current transformers is their non-invasive installation. This feature allows them to be placed around conductors without disconnecting, significantly reducing installation time and labor costs. This makes them ideal for retrofitting and upgrading existing systems.
Our split type current transformers ensure accuracy through precise engineering and high-quality materials. The core design is carefully aligned and constructed to maintain magnetic properties, minimizing measurement errors associated with misalignments.
The cores are made from advanced nanocrystalline or amorphous materials, known for their excellent magnetic properties. These materials provide high permeability, low core losses, and ensure the transformers are effective in various applications.
Yes, split type current transformers are suitable for high-frequency applications. The materials and design are optimized for high-frequency performance, making them ideal for modern electrical systems that demand precision and efficiency.
Our split type current transformers operate efficiently within a temperature range of -50°C to 120°C. This range ensures reliable performance in varied environmental conditions.
We provide comprehensive after-sales support, including 24/7 customer service, warranty coverage, and access to replacement parts. Our team is dedicated to ensuring customer satisfaction and product reliability.
We offer a variety of sizes to accommodate different conductor dimensions and applications. Custom sizes can also be manufactured to meet specific customer requirements, ensuring versatility and adaptability.
Yes, split type current transformers are designed for easy maintenance. Their robust construction and high-quality materials ensure longevity, while the split design allows for straightforward inspection and cleaning.
Transport safety is ensured through secure packaging and collaboration with reliable logistics partners. We provide tracking information for shipments to offer transparency and peace of mind.
We offer customization in core dimensions, material selection, and even casing design to fit specific application needs. This flexibility allows us to deliver tailored solutions to meet diverse customer requirements.
The latest innovations in Split Type Current Transformers focus on enhancing accuracy and reducing installation barriers. By utilizing advanced materials and smart design concepts, suppliers have developed models that maintain magnetic integrity even in challenging settings, broadening the applications of these devices. This innovation is driven by the growing demand for efficient energy monitoring systems, increasingly relying on real-time data for decision-making. Split type transformers, with their ease of installation and high reliability, have positioned themselves as critical components in modern electrical infrastructure.
When comparing split type and solid core transformers, several key differences emerge. Split type transformers excel in retrofit applications due to their non-invasive installation process, saving time and cost. On the other hand, solid core transformers are traditionally favored for new installations where precision alignment is easily controlled. With technological advances, split type transformers now rival solid cores in performance while offering unparalleled convenience, making them a preferred choice for system upgrades.
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