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Frame Mounting Machine for PV Modules

High‑efficiency automatic framing for PV modules, with aluminum corner mullion connections and adjustable size range.


Details Introduction


The Frame Mounting Machine for PV Modules is designed for assembling aluminum frames onto laminated solar panels in photovoltaic module production lines. The pneumatic solar panel framing machine uses cylinders, linear guides, and a rigid steel structure to accurately position and press the aluminum frame around the module, supporting reliable corner and frame connections after lamination.

With a wide adjustment range, the PV module framing machine can accommodate different solar panel and aluminum frame sizes, making it suitable for flexible production requirements. Its pneumatic framing system provides stable and consistent pressing force while simplifying operation and maintenance. The machine can be integrated into semi-automatic or fully automated solar panel production lines to improve framing efficiency, positioning consistency, and overall module assembly quality.

Parameter


Model Pneumatic Frame Mounting Machine for PV Modules
Production Details
Maximum frame size (four corners) 2600X1500X (30-40)mm
Minimum frame size (four corners) 600X1000X (30-40) mm
Long-side edge pressing two ends + middle, three points on the module edge
Frame Accuracy Difference in Edge Size: ±1 mm, Difference in Diagonal Size: ±1.5mm
Assembly Line Docking Height 950±50mm

Keyword:

Frame Mounting Machine for PV Modules

What is the Solar Panel Manufacturing Process?

Cells are loaded by an automatic loader. For half‑cut or third‑cut, cells go through a laser scribing machine for precise splitting. The cells are then fed into a stringer, where ribbons are soldered to form cell strings. After stringing, a bussing machine interconnects the strings, followed by layup, lamination, framing, junction box attachment, and final testing (EL and flash test). The stringer machine and laser scribing machine are the most critical pieces, they determine breakage rate and soldering quality.

How to Calculate Annual Energy Production From Solar Panels?

Simply multiply the total panel power (in kW) by the annual peak sun hours in your location, then apply a system efficiency factor, typically around 80%, to get a rough estimate. But from a manufacturing equipment perspective, what matters just as much is ensuring that processes like stringing and lamination don’t introduce micro‑cracks or poor soldering, because those issues will directly reduce the panel’s actual output.

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.

What is Your Collaboration and After-Sales Process?

From project discussion to stable production, we provide complete technical support and long-term after-sales service to ensure a smooth and efficient cooperation experience.

1. Requirement Discussion

We communicate with you in detail to confirm product specifications, production capacity, factory conditions, and technical requirements, then provide a suitable production line solution.

2. Solution Confirmation & Contract

After confirming the technical proposal, both parties finalize the equipment configuration, layout, delivery schedule, and commercial agreement.

3. Equipment Manufacturing

While your factory prepares utilities and workshop conditions, we carry out equipment production, assembly, and internal testing.

4. Factory Acceptance Test (FAT)

Before shipment, customers can inspect and test the production line at our factory to verify equipment performance and operating conditions.

5. Shipment & Installation

The equipment is shipped to your factory, and our engineers provide on-site installation guidance and positioning support.

6. Commissioning & Site Acceptance

After installation, our engineers complete commissioning, parameter adjustment, and final testing to ensure the line operates according to agreed standards.

7. Training & Trial Production

We provide operation and maintenance training for your team and assist with trial production until stable operation is achieved.

8. Long-Term Technical Support

We provide continuous after-sales support, including remote assistance, spare parts supply, troubleshooting, technical upgrades, and maintenance support to ensure long-term stable production.

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