High-Speed Laser Scribing Machine
Model: CT-HP-800 1.Cell Size: 156 x 156-230 x 230mm, Thickness 120-220μm 2. Equipment Capacity: ≤ 800pcs/h 3. Fragmentation Rate: ≤ 0.05% 4. 1/2 cutting, optional 1/3
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Details Introduction
The non-destructive solar scribing machine is a fully automated equipment that can cut monocrystalline silicon cells. It is suitable for scribing battery slices with a size of 156mm*156mm-230mm*230mm, with 1/2 scribing as standard and 1/3 scribing as optional. Realize the fully automatic production from cell loading to cell slivers after cutting. The scribing section is smooth without cracks and has strong bearing capacity. The solar scribing machine can effectively improve the packaging yield of the current solar module new technology (small pitch, negative pitch, large size, and thin-film modules), and reduce costs and increase efficiency for module factories. It is the development trend of the cell dicing machine in the future.
Parameter
| Project | Technical Specs | Remarks |
| Basic Functions | Fully Automatic Laser Scribing | |
| Cell Size | 156 x 156 ~ 230 x 230mm, Thickness 120 ~ 220μm | Adjustment for size change |
| Equipment Capacity | ≤800pcs/h | |
| Fragmentation Rate | ≤0.05% | Grade A wafer |
| Slicing specifications are optional | 1/2 piece (factory standard one size battery specification) 1/3 piece (optional) |
Keyword:
High-Speed Laser Scribing Machine
Production Strength
What Are Photovoltaic Panels Made of?
A photovoltaic solar panel is a laminated assembly of five essential layers: the front is high-transmittance tempered glass, followed by an encapsulant layer (typically EVA or POE) that bonds and protects, then the solar cells which generate electricity, another encapsulant layer, and finally a backsheet that seals the rear surface. For bifacial modules, the backsheet is replaced with transparent glass or fluoropolymer film to capture energy from both sides. The entire stack is fused together under heat and vacuum in solar panel laminator—a critical stage in the pv panel manufacturing process, then framed with anodized aluminum and fitted with a junction box.
Is BC technology the Future?
BC (Back Contact) technology is undoubtedly a key direction for next-generation high-efficiency PV modules. Its busbar-free front side offers not only superior aesthetics but also significantly reduces shading, leading to higher light absorption and increased power output. Rather than simply declaring BC as the only future,In fact, BC is a platform technology that can be combined with techniques such as Topcon HJT and perovskite tandem cells to squeeze out the last drop of efficiency gains.
Therefore, we believe BC technology will remain at the forefront of the upcoming technological transformation, making now the opportune moment to invest in BC.
Why We Say "NO" to Fast Quotes ?
Whilst we offer some of the most competitive pricing in the industry, we firmly believe that a well-designed production line holds far greater value than the mere pursuit of low cost. A single quotation cannot suit all. Only after gathering the necessary information and undertaking a bespoke design tailored to each product's characteristics and process requirements can we provide a quotation truly worthy of discussion.
What Information is Required to Establish a Production Line?
This is straightforward.
Firstly, we need to understand the type of modules you wish to manufacture: conventional or flexible, large-format or small-format, and whether any specialised processes are required. Secondly, we require details of your production line capacity requirements – be it a 50MW manual solar panel production line or a 2GW fully automated dark factory.
Finally, if you have already constructed a facility for your project, we need to know the dimensions of the building; a CAD file would be most helpful if available. Naturally, should you be unfamiliar with photovoltaic module manufacturing, there is no need for concern. We shall recommend the most suitable solar panel production line design based on your market requirements.
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