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380~405W Double Glass Half-Cut Cell Solar Modules <br> (182/108 CELLS)
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380~405W Double Glass Half-Cut Cell Solar Modules
(182/108 CELLS)

Brand: Schutten

Type: STM380-405/108-S3S

Max.Power: 405W(0~+5W)

Dimension: 1722±2mm x1134±2mm x 35(30)±1mm

Weight: 21.0KG±3%

Cable Length: 300mm(Can be customized )

Certificate: TUV/CE/PV CYCLE

Packaging(pcs/40HQ container) :  31/806pcs   37/962pcs

A monocrystalline solar panel is an assembly composed of several mono silicon solar cells assembled on a panel in a certain way.

The photoelectric conversion efficiency of monocrystalline silicon solar cells is about 15%, and the highest is 24%, which 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 up to 15 years, up to 25 years.

It 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.

Considering the cost-effectiveness in the current visible time frame, the comprehensive cost-effectiveness of mono solar panels is a photovoltaic technology with a higher price in the future. 


It is reported that in order to further promote the application and industrial upgrading of photovoltaic cutting-edge technology products, which has laid a good foundation for mono solar panels bifacial. mono solar panels bifacial power generation modules are also likely to become the mainstay of future module applications in the future.

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Product Details

Product Description
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产品别名:
380-405W
案例详情描述:
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mono solar panel
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Schutten bifacial 380~405W mono solar panels have double-sided power generation with reliable quality. Compared with single-side power generation, the double-sided power generation gain increases with the light received on the back side, up to 25%, which significantly reduces the LCOE, providing higher output power,lower temperature coefficient, less shading loss, as well as enhanced tolerance for mechanical loading.For the 182 half cell bifacial Mono solar module series, Schutten retain the half-cell craft and multi-busbar technology for this module at the same time, which reduces energy loss and micro-crack losses while maintaining double-sided efficiency and excellent power generation performance,thereby ensuring maximized energy generation.

 

High Efficiency

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

 

Multi busbar technology

Better light utilization and current collection capabilities, effectively improving product power output and reliability.

 

Longer service life

Excellent double-sided warranty promises a 0-year power warranty of 0.45% linear power attenuation.

 

Severe Weather Resilience

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

 

Double-sided power generation

The double-sided power generation gain increases with the light received on the back side, up to 25%,  which significantly reduces the LCOE.

 

Module Type

STM380/108-S3S

STM385/108-S3S

STM390/108-S3S

STM395/108-S3S

STM400/108-S3S

STM405/108-S3S

Testing Condition

STC

NOCT

STC

NOCT

STC

NOCT

STC

NOCT

STC

NOCT

STC

NOCT

Maximum Power(Pmax/W)

380

286.3

385

290.0

390

293.8

395

297.6

400

301.3

405

305.1

Open Circuit Voltage(Voc/V)

36.31

33.97

36.46

34.11

36.61

34.25

36.76

34.39

36.91

34.53

37.06

34.67

Short Circuit Current(Isc/A)

13.40

10.82

13.47

10.87

13.54

10.93

13.61

10.99

13.68

11.04

13.75

11.10

Voltage at Maximum Power(Vmp/V)

30.56

27.92

30.72

28.14

30.88

28.36

31.04

28.57

31.20

28.79

31.36

29.00

Current at Maximum Power(Imp/A)

12.43

10.25

12.53

10.31

12.63

10.36

12.73

10.41

12.82

10.47

12.91

10.52

Module Efficiency(%)

19.46

19.72

19.97

20.23

20.48

20.74

Norminal Operating Cell Temperature(NOCT)

45±2

Temperature Coefficient of Isc

+0.048%/

Temperature Coefficient of Voc

-0.280%/

Temperature Coefficient of Pmax

-0.350%/

 

 

 

 

 

 

 

 

 

 

 

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