China Suppliers PVD Continuous Coating Line for Photovoltaic Cells - Factory for HJT & Perovskite Solutions
Machine Brief Description
It is PVD continuous coating line for solar cell process, including transparent conductive PVD coating line which developed for HJT process, PVD coating line for perovskite solar cell coating electrode layer and for the replacement of silver electrode copper coating line.
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Automatic coating
The equipment adopts full automatic control system, which can realize high-precision coating operation and ensure uniform coating thickness of each PV cell.
02
Multi-layer coating
Support multi-layer coating process, according to the different needs of different materials can be stacked coating, improve the performance of photovoltaic cells.
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Efficient production
Characterized by high-speed production capabilities, significantly enhances production efficiency, thereby addressing the demands of large-scale manufacturing.
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Intelligent monitoring
Equipped with advanced monitoring system, real-time monitoring of various parameters in the production process, to ensure the stability of the production process and product quality.
Product Feature
- 1. High level of automation, exceptional reliability, and consistent repeatability.
- 2. Utilizing the magnetron sputtering coating process, it is capable of applying a double-sided TCO film layer on HJT solar cell wafers, facilitating the fabrication of the electrode and transmission layers for chalcogenide thin-film solar cells.
- 3. High precision: Advanced coating technology and precise control system are adopted to ensure high precision control of coating thickness.
- 4. High efficiency: The optimized production process and high speed coating speed greatly improve the production efficiency and reduce the production cost.
- 5. High stable: the equipment structure is reasonably designed, stable operation, easy maintenance, suitable for long-term continuous production.
- 6. Environmental protection and energy saving: the use of environmentally friendly materials and energy-saving technology to reduce energy consumption and pollution in the production process, in line with green production standards.
- 7. Strong compatibility: suitable for a variety of photovoltaic materials coating needs, wide applicability.
Technical Parameter
| Series | JRC Series |
| Technology | Microwave Sputtering |
| Chamber Size | Can be designed upon different request. |
| Substrate Material | Silicon based solar cell; Thin film solar cell electrode layer, Transition layer or Absorption layer; |
| Coating Film | THIS、Nine、CuO;Al、At、For、AVOID、With、In、Here; |
| Vacuum System | Vacuum system select international famous brand or China famous brand molecular pumps (or diffusion pumps), polycold, mechanical pumps, etc. |
Frequently Asked Questions
What is this PVD continuous coating line used for?
It is designed for solar cell manufacturing, including transparent conductive PVD coating for HJT processes, electrode layer coating for perovskite solar cells, and replacing silver electrodes with copper coating lines.
What coating technology does the JRC Series utilize?
The JRC Series utilizes Microwave Sputtering technology along with magnetron sputtering coating processes to ensure high-precision, uniform, and reliable thin-film application.
Can the chamber size of the equipment be customized?
Yes, the chamber size is flexible and can be customized and designed according to your specific production needs and substrate dimensions.
What substrate materials are compatible with this system?
The system is highly compatible with silicon-based solar cells, as well as thin-film solar cell electrode layers, transition layers, or absorption layers.
How does the machine ensure coating precision and quality?
The equipment is built with a fully automatic control system for high-precision thickness control, combined with an advanced real-time monitoring system to track key parameters during production.
Does the equipment meet environmental and energy-saving standards?
Yes, the system is designed with green production in mind, utilizing environmentally friendly materials and energy-saving technology to reduce overall energy consumption and emissions.
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