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18V 140W Photovoltaic Solar Cells , Polycrystalline Solar Panel Double Sided Backsheet

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18V 140W Photovoltaic Solar Cells , Polycrystalline Solar Panel Double Sided Backsheet

18V 140W Photovoltaic Solar Cells , Polycrystalline Solar Panel Double Sided Backsheet
18V 140W Photovoltaic Solar Cells , Polycrystalline Solar Panel Double Sided Backsheet 18V 140W Photovoltaic Solar Cells , Polycrystalline Solar Panel Double Sided Backsheet

Large Image :  18V 140W Photovoltaic Solar Cells , Polycrystalline Solar Panel Double Sided Backsheet

Product Details:
Place of Origin: China
Brand Name: Vglory or OEM
Certification: ISO/CE/TUV/IEC
Model Number: VGP135W
Payment & Shipping Terms:
Minimum Order Quantity: 50pcs
Price: negotiation
Packaging Details: Packed in carton firstly,then on wooden pallet
Delivery Time: 10 ~15working days after received your payment
Payment Terms: T/T ,Paypal or western Union
Supply Ability: 5,000pcs per month
Detailed Product Description
Product Name: 140W 18V Polycrystalline Solar Panel Backsheet: Double-sided TPT
Output Cables (mm): Length:1000mm /Section:4.0mm2 Frame: Anodized Aluminum Alloy Whilte Or Black
Open Circuit Voltage(Voc): 22.20 Short Circuit Current(Isc): 8.40
Maximum Power Voltage(Vmp): 18.00 Maximum Power Voltage(Imp): 7.78
High Light:

solar pv panels

,

solar cell panel

18V 140W Photovoltaic Solar Cells , Polycrystalline Solar Panel Double Sided Backsheet

 
 •     There're 7 major inspection procedures for Each piece solar panel during production :
3 times EL testing to ensure panel without micro-break/invisible break;
3 times appearance inspection to ensure panel without defect ,
1 time power testing, power inspection tolerance, we ensure each panel has enough power output;
besides the standard inspection, each production procedure will inspect the upwards procedure; 

 

Vglory Monocrystalline Solar Panels & Polycrystalline Solar Panels range from 1w to 320w, guarantee with excellent electrical performance ,producing by advanced materials and equipments,The exterior design and electrical performance of each module are fully tested to guarantee superior quality. Design to meet unique demand of customers. Built-in diode prevents reverse charging .

Our solar products exported to global like European , UK , Portugal ,America , Egypt , Africa , asia etc

 

 

 Warranties of solar panel :
 

1. 10 years limited product warranty
2. 15 years at 90% of the minimal rated power output
3. 25 years at 80% of the minimal rated power output

 

 

Features:

  1. High Conversion Efficiency Solar Module Using UV-resistant silicon.
  2. 100% A grade cells with positive power tolerance low module price
  3. Anti-reflective and high viscous EVA
  4. High light transmission Anti-reflective glass
  5. high frame resistant TPT to laminate and anodized aluminum alloy frame ,

  6. Be resistant to atmospheric exposure and effects of delaminating

  7. High quality Junction box with Built-in diodes prevents reverse charging and keep excellent protection ; 
  8. Aesthetic appearance with excellent efficiency based on innovative, Be resistant to atmospheric exposure and effects of delaminating
  9. Strong frame, passing mechanical load test of 5400Pa, instead of the normal , 2400Pa,to withstand heavier snow load and higher wind-pressure

  10. 10 years product warranty , 25 years limited power warranty. Strong productive ability and quick delivery. 

 
             •   140W Polycrystalline Solar Panel Electrical Characteristics 

 

Maximum Power(Pmax)

140W

 

Power Tolerance

0~+3%

 

Open Circuit Voltage(Voc)

22.20V

 

Short Circuit Current(Isc)

8.40A

 

Maximum Power Voltage(Vmp)

18.00V

 

Maximum Power Voltage(Imp)

7.78A

 

Cell Efficiency

16.5%

 

Max. System Voltage

1000VDC

 

Solar Cells

Polycrystalline156*156mm(6 inch)

 

Cells series

36cs(4*9)

 

Bypass Diodes

3pcs 12A

 

Temperature Coefficients of Pmax

-0.47%/°C

 

Temperature Coefficients of Voc

-0.33%/°C

 

Temperature Coefficients of Isc

0.05%/°C

 

NOTC-Nominal Operating Cell Tepm.

45℃(±2°C)

 

STC Condition

1000W/m2, AM1.5, 25°C

 

Temperature Range

-40C------+85C

 

Allowable Hail Load

steel ball fall down from 1m height

 

 

 

5> 135W Polycrystalline Solar Module Mechanical Characteristics

Dimension

1470*670*30(mm)

Frame

Anodized Aluminum Alloy

Construction

Front: High transmision 3.2mmTempered glass; Rear: White PET; Encapsulant: EVA

Output cables

4.0m㎡ 12AWG cable with weatherproof connectors.cable lengths 900mm

Weight

12.0KGS

Front Cover

3.2mm thick low iron temperature glass

Back Cover

TPT(Tediar-PET-Tediar)

Encapsulant

EVA(Ethylene vinyl acetate)

Frame

Anodized aluminum alloy, double wall

Junction Box

IP65 rated, TUV certification

Max Load

Certified to 5400Pa

 

 
Efficiency:
 
1. Low voltage-temperature coefficient allows higher power output at high-temperature condition.
2. High efficient, high reliable solar cells ensure our product output stability.
 
 
Benefits:
 
1. High efficiency, high safety, High stability ,high reliability
2. Output power tolerance ofguaranteed +-3% and ensuring investment return .
Optimized Packaging to protect product during loading and delivery .
4. Strong productive ability and quick delivery .
5. Enjoy our Excellent quality, competitive price, prompt delivery and on-time service
 
 
Applications: 
 
1. On-grid commercial ,utiitysolar power systems .
2. Home solar lighting system  .
4. Off-grid solar power system .
5. Communications,pumping and irrigation .
6. Commercial and industrial building roof-top systems 

 

 

History of solar Photovoltaic Technology

The PV effect was observed as early as 1839 by Alexandre Edmund Becquerel, and was the subject of scientific inquiry through the early twentieth century. In 1954, Bell Labs in the U.S. introduced the first solar PV device that produced a amount of electricity, and by 1958, solar cells were being applied in a variety of small-scale scientific and commercial .

The 1970s' energy crisis saw the beginning of major interest in using solar cells to produce electricity in homes and businesses, but prohibitive prices (nearly 30 times higher than current price) made large-scale applications impractical .

Industry developments and research in the following years made PV devices more feasible and a cycle of increasing production and decreasing costs began which continues even today.

 


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