Half Cut Solar Cell Module

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price: Negotiable
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Delivery term: The date of payment from buyers deliver within days
seat: Fujian
Validity to: Long-term effective
Last update: 2020-08-25 13:52
Browse the number: 393
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Product details

Half cell mono solar modules adopted with half cut solar cells technology, tempered and high transparent low-iron glass. With excellent low-light performance, advanced solar panel sealing technology and well-suitable module size, this mono solar panel fits your requirements well.


Features

1. Half-cut Cell Technology

New circuit design,lower internal current,lower resistance loss;

2. High Strength Frame

2400Pa wind load,5400Pa snow load,25mm hail stones at 82km/h;

3. Significantly Lower the Risk of Hot Spot

Reduce power loss,increase module output power;

4. Excellent Anti-PID Performance

Stringent quality control,high reliablity,internal testing far beyond the industry standards;

5. Drainaging Designs

To prevent deforming and fracturing due to freezing or other forces.

6. Higher Yield Due to Better Shading Response

By cutting solar cells into halves, the internal power loss will be lower and the hot spot effect will also be reduced.

Half Cell Module comprises two separated and identical solar cell arrays, which means the ordinary strings of cells are cut into halves, and these shorter strings compose which has separated current paths. When a module is shaded, only one side shaded array's current will be impacted, while the other array will still be functionally producing power. Under this circumstance, when a module is shaded, the affected working areas of Blade will be 50% less.

7. Less Mismatch Loss

Instead of 6 internal strings of cells, half cell module has 2*6 shorter ones. This design effectively deals with the mismatch happened between cells caused by shadow, out of sync performance degradation, etc.


First-class Half Cell Mono Solar Modules Warranty Reliable Quality

① 12 Years Product Material Workmanship;

② 25 Years Linear Performance Warranty;

③ 0~5W Positive Power Output Guarantee;

④ 100% Double Full EL Inspection.


Electrical Characteristics (STC)

Maximum Power at STC(Pmax)(W)

290

295

300

305

310

315

320

325

Optimum Operating Voltage(Vmp)(V)

32.64

32.98

33.37

33.82

33.67

33.87

33.96

34.18

Optimum Operating Current(Imp)(A)

8.87

8.93

8.99

9.02

9.22

9.30

9.42

9.51

Open Circuit Voltage(Voc)(V)

39.90

40.22

40.58

40.79

40.85

40.96

41.12

41.33

Short Circuit Current(Isc)(A)

9.30

9.33

9.42

9.61

9.75

9.84

9.98

10.11

Module Efficiency(%)

17.45%

17.75%

18.05%

18.36%

18.66%

18.96%

19.26%

19.56%

Operating Temperature(℃)

-40~85℃

Nominal Operating Cell Temperature(NOCT)

45+/-2℃

Maximum System Voltage(V)

1500V DC

Maximum Series Fuse Rating(A)

20A

Module Fire Safety Class

Class C

Output Power Tolerance

0~+5Wp

STC:Irradiance of 1000W/㎡, spectrum AM=1.5,Module temperature of 25℃


Electrical Characteristics (NOCT)

Maximum Power at STC(Pmax)(W)

215

219

222

226

230

234

237

241

Optimum Operating Voltage(Vmp)(V)

30.89

31.21

31.58

31.73

31.86

32.05

32.14

32.35

Optimum Operating Current(Imp)(A)

6.95

7.00

7.04

7.12

7.22

7.29

7.38

7.45

Open Circuit Voltage(Voc)(V)

36.85

37.15

37.48

37.60

37.73

37.83

37.98

38.18

Short Circuit Current(Isc)(A)

7.52

7.54

7.61

7.74

7.88

7.95

8.07

8.17

NOCT:Irradiance of 800W/㎡, Ambient Temperature 25℃,Wind Speed 1m/s.




Mechanical Characteristics

Cell Type

Monocrystalline 156.75x78.375

Number of Cells

120(6x20)

Dimensions

1675x992x35mm

Weight

18KGS

Front Glass

3.2mm, Tempered Glass,Low Iron

Frame Material

Anodized Aluminium Alloy

Backsheet

White

Junction Box

IP67,3 Diodes

Connector

MC4 Compatible

Cables

PV-F 4mm2

Encapsulant Material

EVA

Fire Safety Class

Class C



Packaging Configuration

Container

40HQ

20GP

Piece per Pallet

30

Pallet per Container

26

5

Piece per Container

780

150



What does it mean to go “off the grid”?

Installing solar panels on your roof doesn’t mean that you’re off the grid. Most solar systems can’t consistently generate enough electricity to be a home’s only power source, which is why the vast majority of solar homeowners maintain a connection with their utility company. When you generate more power than you use, your utility gives you a net metering credit on your electricity bill. When you need to, you can then spend your credits to supplement your solar power with electricity from your utility company. If/when you don’t have credits, you’re simply charged the going rate for electricity at that time. For the average solar homeowner, this process typically means you’re generating more power than needed during daylight hours, and less than needed at night.


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