Product Overview
Manganese Gallium Sputtering Target (Mn-Ga) is a composition-specific sputtering target for thin-film deposition and PVD process development. The practical specification normally includes chemistry, purity, dimensions, density, target configuration, and any bonding or backing requirement needed by the sputtering cathode.
Material and Deposition Characteristics
Power mode and process conditions should be selected according to the target conductivity, thermal behavior, and the requirements of the cathode system. For less common materials, conservative initial power density and film-composition verification are good practice.
Technical Data
| Parameter | Typical Value / Range | Importance |
|---|---|---|
| Composition | Mn-Ga (e.g., Mn₃Ga, Mn₂Ga) | Controls magnetic behavior |
| Purity | 99.9% – 99.99% | Ensures film consistency |
| Density | ≥ 95% theoretical | Stable sputtering performance |
| Diameter | 50 – 200 mm (custom available) | System compatibility |
| Thickness | 3 – 6 mm | Affects target lifetime |
| Electrical Type | Conductive | Suitable for DC sputtering |
| Bonding | Cu backing / In / elastomer | Improves heat dissipation |
| Material | Key Advantage | Typical Application |
|---|---|---|
| Mn-Ga | Strong PMA, tunable magnetism | Spintronics, memory |
| CoFeB | High spin polarization | MTJs, MRAM |
| FePt | Ultra-high magnetic anisotropy | High-density storage |
| NiFe (Permalloy) | Soft magnetic properties | Sensors, inductors |
| Question | Answer |
|---|---|
| What compositions are commonly used? | Typical stoichiometries include Mn₃Ga and Mn₂Ga, depending on application needs. |
| Is Mn-Ga suitable for DC sputtering? | Yes, due to its conductive nature. |
| Can magnetic properties be tuned? | Yes, by adjusting composition and deposition conditions. |
| Is bonding recommended? | For high-power sputtering, copper backing plates are recommended. |
| Which industries use Mn-Ga targets most? | Spintronics, data storage, and advanced electronics industries. |
Typical Thin-Film Applications
- Thin-film research and materials-development projects requiring a composition-specific sputtering source
- Semiconductor, optical, energy, electronic, or laboratory coatings depending on the material system
- Custom R&D work where target composition, purity, and geometry need to be specified together
Target Configuration and Ordering Considerations
For quotation and manufacturability review, provide target size, thickness, purity or alloy composition, quantity, and the sputtering gun or cathode model if known. If a bonded assembly is required, include backing-plate material, bonding preference, and any dimensional tolerances, surface-finish needs, or inspection-document requirements. TFM can also review customer drawings or old-target samples for replacement builds.
Frequently Asked Questions
What is the main reason to use a Manganese Gallium sputtering target?
It provides a composition-specific source for thin-film deposition when the target material itself is important to the desired film chemistry or process.
How should the sputtering mode for Manganese Gallium be selected?
The power mode should be chosen according to target conductivity, thermal behavior, and equipment capability. Less-conductive materials are commonly evaluated with RF power.
Why are density and microstructure important for Manganese Gallium targets?
These factors can influence erosion stability, thermal behavior, particle generation, and the risk of cracking or local hot spots.
Can Manganese Gallium be supplied with a backing plate?
Yes. If the material is brittle or the cathode requires it, a bonded configuration can be reviewed according to target size, thickness, cooling, and power.
Does target composition always equal film composition?
No. Film chemistry may differ because of sputtering yields, process conditions, substrate temperature, re-sputtering, and chamber history. Film verification is recommended when composition matters.
What should I provide to request a quotation for Manganese Gallium?
Please provide the composition, purity, dimensions, quantity, target configuration, cathode details, and any drawing or inspection requirements.



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