https://www.calowenauto.com/automatic-stringer-clw-210d.html
Automatic Stringer CLW-210D for High-Efficiency Solar Cell Stringing
The Automatic Stringer CLW-210D is an advanced solar cell stringing machine designed for high-efficiency photovoltaic module production. It supports both conventional solar cells and advanced BC (Back Contact) solar cells, providing flexible production solutions for different PV manufacturing requirements.
With high-speed operation, wide cell compatibility, precise positioning, and low breakage rates, the CLW-210D is suitable for manufacturers producing various solar modules, including PERC, TOPCon, HJT, HIT, IBC, HPBC, and ABC technologies.
Key Features of Automatic Stringer CLW-210D
High-Speed Solar Cell Stringing Performance
The CLW-210D delivers efficient stringing performance to improve solar module production capacity.
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Maximum theoretical speed: up to 1600 cells/hour
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Conventional solar cell stringing speed: 1100-1500 cells/hour
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BC solar cell stringing speed: 700-1200 cells/hour
The machine is designed to maintain stable production efficiency while ensuring accurate soldering and reliable cell handling.
Wide Solar Cell Compatibility
The CLW-210D supports a broad range of solar cell technologies and specifications, making it suitable for flexible PV production lines.
Compatible cell types include:
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Conventional mono and bifacial PERC cells
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Diamond wire TOPCon cells
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Bifacial N-type cells
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HIT and HJT cells
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IBC, HPBC, and ABC back-contact cells
It supports different busbar configurations, including:
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5BB
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6BB
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9BB
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10BB
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11BB
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12BB
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13BB
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16BB
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18BB
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20BB
The machine is compatible with multiple wafer sizes, including:
156.75mm, 157mm, 158.75mm, 164mm, 166mm, 182mm, 210mm, 218.2mm, and 230mm.
Advanced Stringing Capability for Conventional Solar Cells
For conventional solar cells, the CLW-210D provides stable soldering performance with high production efficiency.
Main Performance Parameters
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Working speed: 1100-1500 cells/hour
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Breakage rate: ≤0.03% (Grade A solar cells)
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Applicable busbars: 5BB-20BB
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Temperature control: 300°C
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Soldering stroke: 200mm
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Position adjustment: Adjustable soldering position
The machine supports different ribbon specifications:
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Ribbon width: 0.5-2.0mm
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Ribbon thickness: 0.1-0.25mm
The system is equipped with four tooling kits to accommodate different solar cell and ribbon requirements.
Flexible Solar Cell Size and Thickness Support
The CLW-210D is compatible with various solar cell dimensions and thicknesses.
Applicable Solar Cell Specifications
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Cell size:
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156.75mm
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157-158mm
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164mm
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166mm
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182mm
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210mm
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218.2mm
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230mm
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Cell thickness: 130-220μm
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Cut cell width: 30-166mm
The machine supports both full cells and half-cut cell production:
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Minimum stringing quantity: 2 full solar cells
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Maximum: 230 half-cut cells
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Maximum string length: 2000mm
Additional parameters:
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Adjustable cell spacing: 1-65mm
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Head and end ribbon length: 7-40mm adjustable
Specialized Support for BC Solar Cell Production
The CLW-210D also provides dedicated functions for advanced BC solar cell technologies, including IBC, HPBC, and ABC cells.
BC Solar Cell Stringing Performance
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Working speed: 700-1200 cells/hour
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Applicable cell structures:
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IBC
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HPBC
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ABC
Compatible cell sizes:
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166mm
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182mm
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210mm
Supported cutting formats:
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1/2
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1/4
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1/6
Other specifications:
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Cell thickness: 130-220μm
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Compatible busbars: 5BB-20BB
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Ribbon movement range: ±5mm
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Breakage rate: ≤0.03% (Grade A solar cells)
Intelligent Positioning and Quality Inspection Functions
The CLW-210D combines visual recognition and mechanical positioning technologies to improve stringing accuracy.
Optional EL testing with AI-based image analysis algorithms can be integrated to support defect detection and quality control during production.
The machine can also provide additional functions for BC cell processing:
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Automatic loading paper pickup
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Automatic offloading paper placement
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Cell spacing taping function
The optional taping function supports 5-8mm wide tape for cell spacing applications. Activating this function may slightly reduce production speed depending on process requirements.
Reliable Automation for PV Manufacturing
The Automatic Stringer CLW-210D is designed to improve production flexibility and reduce manual operation requirements. Its adjustable soldering position, precise cell alignment, and multi-format compatibility allow manufacturers to adapt quickly to different solar cell technologies.
The machine is suitable for large-scale PV module production where high efficiency, low breakage, and stable stringing quality are required.
Technical Specifications of Automatic Stringer CLW-210D
| Parameter | Specification |
|---|---|
| Model | CLW-210D |
| Maximum theoretical speed | 1600 pcs/hr |
| Conventional cell speed | 1100-1500 pcs/hr |
| BC cell speed | 700-1200 pcs/hr |
| Breakage ratio | ≤0.03% (Grade A solar cell) |
| Applicable BB | 5BB-20BB |
| Temperature control | 300°C |
| Soldering stroke | 200mm |
| Ribbon width | 0.5-2.0mm |
| Ribbon thickness | 0.1-0.25mm |
| Cell thickness | 130-220μm |
| Cell spacing | 1-65mm adjustable |
| Maximum string length | <2000mm |
| EL test | Optional with AI algorithm |
| Positioning method | Visual + mechanical positioning |
Electrical and Utility Requirements
Power Supply
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Rated applicable power: 12KW
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Peak power: 22KW
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Voltage requirement: Three-phase five-wire, 380V
Air Supply
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Air pressure: 0.5-0.8MPA
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Average air consumption: 400L/min
Equipment Dimensions
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Length: 6100mm
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Width: 1610mm
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Height: 2020mm
Conclusion
The Automatic Stringer CLW-210D is a versatile solar cell stringing solution developed for modern photovoltaic manufacturing. Supporting both conventional and BC solar cells, multiple busbar designs, and various wafer sizes, it enables manufacturers to produce high-quality solar modules with improved efficiency and flexibility.
With high-speed operation, low breakage performance, intelligent positioning, optional AI-based EL inspection, and broad compatibility with advanced cell technologies, the CLW-210D is an ideal choice for PV module manufacturers seeking reliable automation equipment for next-generation solar production lines.
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