
Plasma Vacuum System (Standard/Batch Type)
Description:
- A closed chamber where parts are loaded in batches.
- Air is evacuated to create a low-pressure (vacuum) environment.
- Plasma is generated to treat the surface of all parts inside.
Advantages:
- Excellent uniformity of treatment.
- Suitable for complex 3D geometries.
- Precise control over gas composition and treatment time.
- Ideal for high-precision or low-to-medium volume applications.
- Can use a wider range of process gases (due to sealed environment).
Limitations:
- Batch processing slows down overall throughput.
- Requires manual or robotic loading/ unloading.
- Not easily integrated into continuous production lines.
- Downtime between cycles.
Best For:
- Medical devices
- Automotive components
- Electronics with sensitive surfaces
- R&D and high-mix, low-volume manufacturing
- Semiconductor and display industries
- High-speed packaging lines

Inline Plasma Vacuum System (Automated Inline Type)
Description:
- Combines vacuum plasma treatment with conveyor-based automation.
- Parts move automatically through a series of vacuum chambers.
- Designed for continuous or semi-continuous production lines.
Advantages:
- Fully automated and integrated into production lines.
- Higher throughput than batch systems.
- Minimizes operator intervention and handling errors.
- Still benefits from the high-quality treatment of vacuum plasma.
Limitations:
- Higher investment cost than standalone systems.
- Requires more complex integration with upstream/downstream processes.
- It may be limited in treating very large or irregularly shaped parts.
Best For:
- Mass production of electronics (e.g., displays, sensors, PCBs)
- Automotive part assembly lines
Please contact Keylink Technology if you would like details on specific plasma treatment methods (e.g., Vacuum Plasma vs. Automated Inline Vacuum Systems)!