Great Solar Cell

  • Price:

    Negotiable

  • minimum:

  • Total supply:

  • Delivery term:

    The date of payment from buyers deliver within days

  • seat:

    Shaanxi

  • Validity to:

    Long-term effective

  • Last update:

    2021-03-08 02:20

  • Browse the number:

    217

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Company Profile

Xi'An Yuanfar International Trade Company

By certification [File Integrity]

Contact:yuanfagj(Mr.)  

Email:

Telephone:

Phone:

Area:Shaanxi

Website:http://www.ht-solalife.com/ http://yuanfagj.tongguanw.com/

Product details

HT60-156P / HT60-156P(V) series great Solar Cell insists of 60 pieces full-cut polycrystalline solar cells, and its power output can be up to 270W/275W/280W/285W/290W. Moreover, it is designed for high voltage systems of up to 1500 VDC, increasing the string length of solar systems and saving on BoS costs. Its module efficiency can be 17.8%. With its advantages, it is usually used in Asia and Africa market.


Engineering Drawing

Electrical Charateristricts

Module

HT60-156P / HT60-156P(V)





Maximum Power at STC(Pmax)

270W

275W

280W

285W

290W

Open-Circuit Voltage(Voc)

38V

38.2V

38.4V

39.2V

39.4V

Short-Circuit Current(Isc)

9.11A

9.18A

9.25A

9.42A

9.49A

Optimum Operating Voltage (Vmp)

32.1V

32.5V

32.9V

32.4V

32.8V

Optimum Operating Current(Imp)

8.42A

8.47A

8.52A

8.81A

8.86A

Module Efficiency

16.6%

16.9%

17.2%

17.5%

17.8%

Power Tolerance

0 ~ +5W





Maximum System Voltage

1000V / 1500V DC(IEC)





Maximum Series Fuse Rating

15A





Operating Temperature

-40 °C to + 85 °C





*STC:Irradiance 1000W/m2,module temperature 25, AM=1.5

Optional black frame or white frame module according to customer requirements


NOCT

Module

HT60-156P / HT60-156P(V)





Maximum Power

198W

202W

205W

209W

213W

Open Circuit Voltage (Voc)

35.2V

35.4V

35.6V

36.3V

36.5V

Short Circuit Current (Isc)

7.36A

7.42A

7.47A

7.61A

7.67A

Maximum Power Voltage (Vmp)

29.7V

30.1V

30.4V

30.0V

30.4V

Maximum Circuit Current (Imp)

6.68A

6.72A

6.75A

6.98A

7.02A

NOCT

45°C±2°C





*NOCT:Irradiance 800W/m2,ambient temperature 20°C,wind speed 1 m/s



Performance & advantages:

1. Higher power

2. Larger effective power generation area

3. Large size technology is suitable for a variety of cells

4. Suitable for a variety of packaging component technologies (including double glass double-sided, slicing, MBB, shingle)

5. Reduce the power station system cost by about 0.8%



I-V Curves

Mechanical Characteristics

Solar Cells

Polycrystalline 156.75 x 156.75mm

No.of Cells

60 (6 × 10)

Dimensions

1640mm ×992mm×35mm

Weight

18.5kg

Front Glass

High transmission tempered glass

Frame

Anodized aluminium alloy

Junction Box

IP67

Cable

4mm² (IEC)

Connectors

MC4/MC4 Compatible

Packaging Configuration

30pcs / box, 840pcs / 40'HQ Container


Temperature Characteristics

Temperature Coefficient of Pmax

γ (Pm)

-0.41%/K

Temperature Coefficient of Voc

β (Voc)

-0.32%/K

Temperature Coefficient of Isc

α (Isc)

0.050%/K


Warranty

10-year product warranty

25-year warranty on power output


Specific information is referred to the product quality guarantee



As the end of 2019, great Solar Cell solar energy accounted for only 2% of the global energy structure. Nam said he expects the learning curve, or experience curve, to develop at the same rate due to the application of Lay's law, and the world will increase by at least two times. The photovoltaic power generation capacity reaches 2.4 terawatts, which is 8% of the world's electricity demand today. Nahm believes that by that stage, the cost of solar power will be halved from the current level.


Namm’s research pointed out: “In sunny areas with low capital, labor and land costs, we can often see unsubsidized photovoltaic electricity prices between 0.01-0.02 USD/kWh.” In California, we may look at To $0.025 per kilowatt-hour of unsubsidized solar energy. In Northern Europe, we can see that utility-scale solar energy is usually priced at $0.04-0.05/kWh.


At present, the cost of photovoltaics has been 30-40 years ahead of the International Energy Agency's (IEA) forecast in its 2014 solar technology roadmap, and 7-10 years ahead of the 2015 forecast by Biham in 2015. Only data from Lawrence Berkeley Laboratories and the United States were used.


The IEA claimed that it announced possible scenarios for future solar applications, rather than predictions, to reiterate the possible impact of public policy. Nam said: "It is clear that the new policy has played a role in deployment, but it is also obvious that no matter what you expect from the global energy policy, cost for great Solar Cell is a very important fact. If you always expect a technology The cost is 2-4 times its actual cost, it is impossible to truly predict its growth.


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