PV Module Static Mechanical Load Tester/PV Module High Uniformity Staitc Mechanical Load Tester/ Solar Panel Testing Machine

PV module Static Mechanical Load Tester/PV Module High uniformity staitc Mechnical load tester/ Solar panel testing machine
Purpose
This testing is to determine the ability of the module to withstand wind, snow , staitc or ice loads
Testing Standard
It's conform IEC61215-2:2016, IEC61646 etc testing standard
The Main Technical specifications
| Product Name | PV Module static Mechanical load tester/PV Module high uniformity static mechanical load tester/Solar panel testing machine |
| Testing standard | IEC61215-2:2016,IEC61646 etc testing standard |
| The positive load | 5400Pa |
| The negative load | 2400 pa |
| Cycle times | can set |
| Dynamic load test frequency | 7s±3s |
| Dynamic load | 1000pa, 1000times |
| Pressure control accurate | 5% |
| Testing sample size | 2000mm*1000mm (can customized) |
| Sucker diameter | 120mm |
| Suck quantity | 32 pcs (can customized) |
| Cylinder telescopic stroke | 125mm |
| Cyliner quantity | 8 pcs ( one cylinder atthed 4 suckers) |
| Control ways | Computer control |
| Data display ways | Computer with real-time curve display |
| Current monitor | Real-time curve monitor the pv module's current |
| Electricity | 220V 50HZ |
Testing procedure
1. Equip the module so that the electrical continuity of the internala circuit can be monitored continuously during the test
2.Mount the module on a rigid structure using the method prescribed by the manufacturer including the mounting means
(clips/clamps and any kind of fastener) and underlying support rails, if there are different possibilities each mounting
method needds to be evaluated separately. for all lmounting methods,mount the module in a manner where the distance between
the fixing points is worst case, which is typically at the maximum distance, allow the modules to equilibrate for a minimum of 2h
3.on the front surface, gradually and uniformly apply the test load, load uniformity needs to be better than ±5% across the module with respect to the test load , maintain this load for 1h
4.Apply the sampe procedrue as in step 3, to the back surface of the module or as uplift load to the front surface
5.Reat the step 3 and 4 for a total of three cycles





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