Parameter | Value |
---|---|
Material Composition | FeCuNbSiB |
Thickness (um) | 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 μm | ≥500000 |
Density (g/cm³) | 7.2 |
Electrical resistivity (μΩ.cm) | 130 |
Lamination factor | ≥0.8 |
Operating Temperature Range | -50~120°C |
Part No. | Core Dimension | Finished Dimension |
---|---|---|
JJ8001 | 80×50×50 | 85×45×55 |
JJ7501 | 75×60×20 | 80×55×25 |
Core nanocrystals are synthesized using chemical vapor deposition, colloidal synthesis, and hydrothermal methods. Colloidal synthesis is preferred for producing nanocrystals with specific sizes and shapes by controlling precursor reactions in a solvent. Surfactants prevent agglomeration and promote uniform growth. This process ensures core nanocrystals exhibit optimal electronic and optical properties, making them suitable for various industrial applications.
Core nanocrystals are integral in renewable energy, biomedicine, and electronics. In renewable energy, they enhance solar cell and LED efficiency due to their tunable optical properties. In biomedicine, their small size and modifiable surfaces facilitate targeted drug delivery and diagnostics. Their quantum confinement effects allow them to improve electronic devices, making them indispensable in modern technology.
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Lead time varies based on order size but typically takes 4 to 6 weeks from the confirmation date.
They are securely packaged in bulk with protective casings to prevent damage during transportation.
Yes, we can provide samples upon request to evaluate the product quality and compatibility with your applications.
Core nanocrystals are reshaping electronics with their unique quantum properties. Their integration into modern devices improves efficiency and functionality, driving innovation in industry standards and consumer expectations.
With their adjustable optical properties, core nanocrystals enhance solar cells and LEDs. Their application in renewable energy technology reduces costs and increases output, supporting global sustainability goals.
In biomedicine, core nanocrystals enable precision diagnostics and targeted therapies. Their adaptability allows for enhanced imaging and efficient drug delivery systems, marking a significant advancement in healthcare solutions.
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