Lanthanum Oxide for High-Performance Ferrite Production
Product Details
| Chemical Formula: | La₂O₃ | TREO: | ≥ 99.0% |
|---|---|---|---|
| La₂O₃/TREO: | ≥ 99.5% | D50 Particle Size: | 0.5 – 3.0 μm |
| Moisture: | ≤ 0.5% | Packaging: | Customized |
| Highlight |
Lanthanum Oxide for ferrite production,High-performance Lanthanum Oxide,Rare Earth Oxide with warranty |
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Product Description
Lanthanum Oxide for High-Performance Ferrite Production
Product Overview
Lanthanum Oxide (La₂O₃) is an important rare earth additive used in advanced ferrite manufacturing. It contributes to improved magnetic permeability, optimized crystal structure, enhanced temperature stability, and reduced magnetic losses.
Lanthanum oxide is increasingly adopted by ferrite manufacturers supplying components for electric vehicles, renewable energy systems, 5G infrastructure, industrial automation, and consumer electronics.
Key Features
- High-purity rare earth oxide
- Improves magnetic permeability
- Enhances temperature stability
- Supports grain boundary modification
- Reduces magnetic losses
- Improves ferrite component reliability
- Excellent batch-to-batch consiste
Particle Size Distribution

Applications
- Mn-Zn ferrites
- Ni-Zn ferrites
- Power ferrite cores
- High-frequency ferrites
Frequently Asked Questions
Q1: What advantages does lanthanum oxide provide in ferrites?
Lanthanum oxide improves magnetic permeability, enhances thermal stability, and contributes to lower energy losses.
Q2: Is lanthanum oxide suitable for high-frequency ferrites?
Yes. It is widely used in ferrite formulations designed for high-frequency applications.
Q3: What purity level is recommended?
Most ferrite manufacturers prefer ≥99.5% La₂O₃ purity to ensure stable magnetic performance.
Q4: Can lanthanum oxide be used with other rare earth additives?
Yes. It is often used alongside cerium oxide and other rare earth oxides to optimize ferrite characteristics.
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