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480~505W Mono Half-Cut Cell Solar Modules<br>(182/132 CELLS)
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480~505W Mono Half-Cut Cell Solar Modules
(182/132 CELLS)

Brand: Schutten

Type: STM-480-505W/132-S3

Max.Power: 505W(0~+5W)

Dimension: 2094±2mm x1134±2mm x 35(30)±1mm

Weight: 26.3KG±3%

Cable Length: 300mm(Can be customized )

Certificate: TUV/CE/PV CYCLE

Packaging(pcs/40HQ container) : 31/682pcs   37/814pcs

 

High Efficiency Solar Panels is an assembly composed of several mono silicon solar cells assembled on a panel in a certain way.


The photoelectric conversion of high Efficiency Solar Panel cells is the highest photoelectric conversion efficiency of all types of solar cells, but the production cost is so high that it cannot be widely used in large quantities used.


Since monocrystalline silicon is generally encapsulated by tempered glass and waterproof resin, it is strong and durable, and its service life is generally longer.

High Efficiency Solar Panels is mostly used in the production of high-quality solar lamps, and the conversion efficiency of charging is higher than that of polycrystalline solar panels.
 

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Product Details

Product Description
Parameters
Introduce
产品别名:
480-505W
案例详情描述:
Keyword:
Solar Panels
High Efficiency Solar Panels
Wholesale High Efficiency Solar Panels
We could not find any corresponding parameters, please add them to the properties table

 

182 Mono Half-Cut Cells Solar Panel  has a number of outstanding characteristics, such as Ultra-high power for the lowest levelized cost of energy , and highest internal rate of return; Multi Busbars design can decrease power loss effective; Half PERC cell technology that can improve shading tolerance because of splitting a full-cell into half; Adaptable with tracker and fixed mounting systerms; Compatible with central and string inverters;Durable design with high quality, anodized aluminium frame high transmittance tempered glass and IP68 protected junction box with three by pass diodes guarantees modules operational safety with strong mechanical stress loads up to 5400 pascal front load and 2400 pascal backload wide operating temperature ranges from -40 to plus 85 which allows us to use modules of these series in very diverse environments including coastal areas and deserts our modules are salt mist ammonia sand and dust resistant which is confirmed by relevant iec certifications IEC 61701 & 62716. products design is certified with IEC 61215 and operational safety with IEC 61730 and crystalline silicon is certified with IEC 62804.

 

Durability Against Extreme Environmental Conditions
High salt mist and ammonia resistance certified by TUV NORD.

 

PID Resistance
Excellent Anti-PID performance guarantee limited power degradation for mass production.(Potential Induced Degradation)under the test conditions.

 

High Efficiency
Higher module conversion efficiency benefit from half cell structure(low resistance characteristic).

 

Low-light Performance

Advanced glass and cell surface textured design ensure excellent performance in low-light environment.

 

Severe Weather Resilience

Certified to withstand:Wind load(2400 pascal) and snow load(5400 pascal).

 

 

Module Type

STM480/132-S3

STM485/132-S3

STM490/132-S3

STM495/132-S3

STM550/132-S3

STM505/132-S3

Testing Condition

STC

NOCT

STC

NOCT

STC

NOCT

STC

NOCT

STC

NOCT

STC

NOCT

Maximum Power(Pmax/W)

480

361.6

485

365.4

490

369.1

495

372.9

500

376.7

505

380.4

Open Circuit Voltage(Voc/V)

45.07

42.17

45.22

42.31

45.37

42.45

45.52

42.56

45.67

42.73

45.82

42.87

Short Circuit Current(Isc/A)

13.65

11.02

13.72

11.07

13.79

11.13

13.86

11.19

13.93

11.24

14.00

11.30

Voltage at Maximum Power(Vmp/V)

37.65

34.62

37.81

34.80

37.97

34.98

38.13

35.16

38.29

35.34

38.45

35.51

Current at Maximum Power(Imp/A)

12.75

10.44

12.83

10.50

12.90

10.55

12.98

10.60

13.06

10.66

13.13

10.71

Module Efficiency(%)

20.21

20.42

20.64

20.85

21.06

21.27

Norminal Operating Cell Temperature(NOCT)

45±2

Temperature Coefficient of Isc

+0.045%/

Temperature Coefficient of Voc

-0.275%/

Temperature Coefficient of Pmax

-0.350%/

 

 

 

 

 

 

 

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