• A Silicon Wafer Solar Cell - Mono Solar Cells 156mm*156mm in Bulk Quantity Low Price Stock System 1
  • A Silicon Wafer Solar Cell - Mono Solar Cells 156mm*156mm in Bulk Quantity Low Price Stock System 2
  • A Silicon Wafer Solar Cell - Mono Solar Cells 156mm*156mm in Bulk Quantity Low Price Stock System 3
A Silicon Wafer Solar Cell - Mono Solar Cells 156mm*156mm in Bulk Quantity Low Price Stock

A Silicon Wafer Solar Cell - Mono Solar Cells 156mm*156mm in Bulk Quantity Low Price Stock

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
10000 pc
Supply Capability:
100000 pc/month

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Specification

Dimension:
156mm*156mm
Efficiency:
17.8

Brief Introduction

 

- Up to 20.0% efficiency, one of the highest performing mono crystalline cells on the market

- Three bus bars boosts current collection over the entire cell area, leading to higher fill factors 

- Blue anti-reflecting coating allows more sunlight be captured and converted to electricity

- Finer, closer fingers improves charge collections for improved energy yield

- Lower light-induced degradation leads to greater power output over the entire module lifetime

- All solar cells are tightly classified to optimize output of module

- Maximum yield and longevity due to hotspot prevention

- Premium appearance results in a highly uniform and aesthetically appealing module

 

 

Specification

- Product Mono-crystalline silicon solar cell 

- Dimension 156 mm x 156 mm ± 0.5 mm 

- Thickness 200 μm ± 30 μm 

- Front 1.5 ± 0.1 mm busbar (silver)

- Silicon nitride antireflection coating 

- Back 3.0 mm continuous soldering pads (silver)

- Back surface field (aluminum)

 

 

 Electric performance parameters 

Mono Solar Cells156mm*156mm in Bulk Quantity Low Price Stock

- Testing conditions: 1000 W/m2, AM 1.5, 25 °C, Tolerance: Efficiency ± 0.2% abs., Pmpp ±1.5% rel.

- Imin : at 0.5 V


 Light Intensity Dependence

Mono Solar Cells156mm*156mm in Bulk Quantity Low Price Stock

 

 Soldering Ability

 

- Peel Strength: > 1.0 N/mm (Pull soldered ribbon from busbar in 5 mm/s of 180°)

 

 

 Dimension Figure

Mono Solar Cells156mm*156mm in Bulk Quantity Low Price Stock


Quick Response

- Any time and anywhere, reply clients' email and solve all problems happen in the work  at the first time.

- Remove clients doubts and offer the best solution at the first time.

- Give our clients the lastest news of the photovoltaic, update the newest stock informtion.

 

 

 Production and Quality Control

- Precision cell efficiency sorting procedures

- Stringent criteria for color uniformity and appearance

- Reverse current and shunt resistance screening

- ISO9001,ISO14001 and OHSAS 18001,TUV Certificated


Mono Solar Cells156mm*156mm in Bulk Quantity Low Price Stock

Mono Solar Cells156mm*156mm in Bulk Quantity Low Price Stock

Mono Solar Cells156mm*156mm in Bulk Quantity Low Price Stock



FAQ:

1. Q: Do you have your own factory?

   A: Yes, we have. Our factory located in Jiangsu

2. Q: How can I visit your factory?
    A: Before you visit,please contact us.We will show you the route or arrange a car to pick you up.
3. Q: Do you provide free sample?
    A: Commenly we provide paid sample.

4. Q: Could you print our company LOGO on the nameplate and package?

   A: Yes, we accept it.And need an Authorization Letter from you.

5. Q: Do you accept custom design on size?

   A: Yes, if the size is reasonable.

6. Q: How can I be your agent in my country?

   A: Please leave feedback. It's better for us to talk about details by email.

7. Q: Do you have solar project engineer who can guide me to install system?

   A: Yes, we have a professional engineer team. They can teach you how to install a solar system.






Q: Begged monocrystalline silicon rod is to use what tools and equipment to cut into silicon. What are the most commonly used methods. Loss big? Thank you
General loss of about 40%, the general thickness of about 190um silicon, cutting seam in 120um
Q: How are solar silicon wafers protected from environmental factors?
Solar silicon wafers are protected from environmental factors through the use of encapsulation materials and coatings. These protective layers shield the wafers from moisture, dust, and other contaminants. Additionally, the wafers are often enclosed within a sturdy and sealed module, further safeguarding them from the elements.
Q: How are solar silicon wafers connected to form a solar panel?
Solar silicon wafers are connected to form a solar panel through a process called soldering. Thin metal strips, typically made of silver or aluminum, are soldered onto the front and back surfaces of the wafers. These metal strips, known as busbars, act as electrical conductors, connecting the wafers in series or parallel. This series or parallel configuration allows for the desired voltage and current output of the solar panel. Once the wafers are connected, they are then encapsulated in a protective layer and mounted onto a frame to create a complete solar panel.
Q: How do solar silicon wafers perform in coastal environments?
Solar silicon wafers perform well in coastal environments due to their high durability and resistance to corrosion. The materials used in their production are designed to withstand exposure to saltwater, humidity, and other coastal elements. However, regular maintenance and cleaning are still necessary to ensure optimal performance and longevity in such environments.
Q: What is the purpose of a power output in a solar silicon wafer?
The purpose of a power output in a solar silicon wafer is to convert sunlight into usable electrical energy. The power output is the measure of how much electricity the solar cell can produce, which determines its efficiency and usefulness in various applications, such as powering homes, businesses, or even charging electronic devices.
Q: How is a fill factor measured in a solar silicon wafer?
A fill factor in a solar silicon wafer is measured by calculating the ratio of the maximum power output of a solar cell to the product of the open-circuit voltage and short-circuit current.
Q: What is the expected lifetime of a solar silicon wafer?
The expected lifetime of a solar silicon wafer is typically around 25 to 30 years.
Q: What is the typical power output of a solar silicon wafer?
The typical power output of a solar silicon wafer can vary depending on various factors such as the size of the wafer, the efficiency of the solar cells, and the amount of sunlight available. However, on average, a typical solar silicon wafer can produce around 4-6 watts of power per square inch.
Q: What is the thickness of a solar silicon wafer?
The thickness of a solar silicon wafer typically ranges from 150 to 200 micrometers (µm).
Q: Why do you use a concentrated sulfuric acid and hydrogen peroxide to wash silicon?
It is very difficult to clean, there are organic residues, this cleaning method is remedial method, belong to after the remedy, the cost is slightly higher

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