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Fe38 Co38Si14B10 alloy sputtering target

Fe38 Co38Si14B10 alloy sputtering target

Fe38 Co38Si14B10 alloy sputtering target
Product No NRE-43587
CAS No. NA
Formula NA
Molecular Weight NA
Purity >99.9%
Density NA
Thickness 3 mm ± 0.5mm (can be customized)
Diameter 50 mm ± 1mm (can be customized)
Shape Round
Resistivity NA
Thermal Conductivity NA

Fe38 Co38Si14B10 alloy sputtering target

The Fe38Co38Si14B10 alloy sputtering target is a specialized material used in sputtering processes to deposit thin films with particular properties. Here’s a breakdown of its composition and potential applications.

Composition:

Fe38: Iron (Fe) at 38% composition.

Co38: Cobalt (Co) at 38% composition.

Si14: Silicon (Si) at 14% composition.

B10: Boron (B) at 10% composition.

Properties:

Magnetic Characteristics: This alloy combines iron and cobalt, both of which contribute to high magnetic permeability and saturation. The addition of silicon and boron further enhances its magnetic properties and structural stability.

Amorphous Structure: In some cases, similar alloys are designed to be amorphous or have a high degree of structural disorder, which can provide unique magnetic and mechanical properties.

Applications:

Magnetic Thin Films: The Fe-Co-Si-B alloy is well-suited for applications requiring high magnetic permeability and low coercivity. These properties are valuable in the production of magnetic thin films for use in sensors, inductors, and transformers.

Magnetic Recording Media: The alloy can be used in the manufacturing of magnetic recording media due to its excellent magnetic properties. This includes applications in hard drives, magnetic tape, and other data storage devices.

Soft Magnetic Materials: The material’s high magnetic permeability and low hysteresis losses make it ideal for soft magnetic components used in electrical and electronic devices. This includes components like magnetic cores in transformers and inductors.

High-Frequency Applications: Due to its magnetic properties and possibly its amorphous nature, this alloy can be useful in high-frequency applications, such as in high-frequency transformers or magnetic shielding.

Electromagnetic Interference (EMI) Shielding: The alloy’s magnetic properties can also be leveraged for EMI shielding applications, helping to protect electronic devices from interference.

Research and Development: Its unique combination of elements makes it a good candidate for experimental work in developing new materials with tailored magnetic properties.

If you have a specific application in mind or need further details about how this target is used in a particular context, feel free to ask!

 

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