Monocrystalline Module
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Price:
Negotiable
- minimum:
- Total supply:
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Delivery term:
The date of payment from buyers deliver within days
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seat:
Shaanxi
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Validity to:
Long-term effective
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Last update:
2021-03-27 23:14
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Browse the number:
307
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- Contactaixin:
yuanfagj(Mr.)
- Email: telephone: phone:
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Arrea:
Shaanxi
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Website:
http://www.ht-solalife.com/ http://yuanfagj.15269268807.com/
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HT60-156M/HT60-156M(V) series Monocrystalline Modules are composed of 60 pcs Full-cut mono perc cells, and it can match different output such as 300W/305W/310W/315W/320W. Moreover all the modules are sorted and packaged by amperage, reducing mismatch losses and maximizing system output, and they are Microcrack resistant, Ammonia/Salt mist corrosion resistant, PID resistant, etc. It can be up to 19.7% module efficiency, and it is usually suitable for Asia and Africa market.
Engineering Drawing
After years of development, our company has formed high-quality HT series monocrystalline module products, including conventional 60/72 single polycrystalline components, high-efficiency double glass components, N-type components, half-chips and MBB components, large-size components, adhering to aerospace quality Requirements, and strive to create products that satisfy customers.
Electrical Charateristricts
Module |
HT60-156M / HT60-156M(V) |
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Maximum Power at STC(Pmax) |
300W |
305W |
310W |
315W |
320W |
Open-Circuit Voltage(Voc) |
39.9V |
40.1V |
40.3V |
40.5V |
40.7V |
Short-Circuit Current(Isc) |
9.71A |
9.78A |
9.85A |
9.92A |
9.99A |
Optimum Operating Voltage (Vmp) |
32.8V |
33.2V |
33.6V |
34.0V |
34.4V |
Optimum Operating Current(Imp) |
9.16A |
9.21A |
9.25A |
9.29A |
9.33A |
Module Efficiency |
18.4% |
18.7% |
19.1% |
19.4% |
19.7% |
Power Tolerance |
0 ~ +5W |
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Maximum System Voltage |
1000V / 1500V DC(IEC) |
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Maximum Series Fuse Rating |
15A |
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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 |
HT60-156M / HT60-156M(V) |
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Maximum Power |
221W |
225W |
229W |
232W |
236W |
Open Circuit Voltage (Voc) |
37.2V |
37.4V |
37.6V |
37.8V |
38.0V |
Short Circuit Current (Isc) |
7.84A |
7.90A |
7.96A |
8.01A |
8.07A |
Maximum Power Voltage (Vmp) |
30.5V |
30.9V |
31.3V |
31.7V |
32.1V |
Maximum Circuit Current (Imp) |
7.24A |
7.27A |
7.31A |
7.33A |
7.36A |
NOCT |
45°C ± 2°C |
*NOCT:Irradiance 800W/m2,ambient temperature 20°C,wind speed 1 m/s
Mechanical Characteristics
Solar Cells |
Monocrystalline 156.75 × 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 |
MC / MC Compatible |
Packaging Configuration |
30pcs / box, 840pcs / 40'HQ Container |
Temperature Characteristics
Temperature Coefficient of Pmax |
γ (Pm) |
-0.39%/K |
Temperature Coefficient of Voc |
β (Voc) |
-0.29%/K |
Temperature Coefficient of Isc |
α (Isc) |
0.049%/K |
Warranty
10-year product warranty |
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25-year warranty on power output |
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Specific information is referred to the product quality guarantee |
I-V Curves
The production process of a PERC battery includes depositing a passivation layer on the back side and then opening to form a back contact. These are two more important steps than the conventional Monocrystalline Module production process. In addition, the edge isolation step based on the chemical wet table needs to be adjusted slightly for back polishing. In other words, the suede pyramid structure on the back of the silicon wafer needs to be eroded away. The degree of polishing varies depending on the technology selected. Therefore, both passivation film deposition equipment and film opening equipment (both laser and chemical etching can be used) require additional processing equipment on the traditional battery production line. For the production line of the laser edge isolation treatment process with less application, a chemical wet worktable needs to be added for back polishing.
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