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TS-M10/156G Monocrystalline Module 605W-625W
Basic Parameters
Specification

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High Power Generation, Low LCOE

High-efficiency cell with advanced encapsulation technology
Industry-leading module output
Excellent power temperature coefficient -0.3%/℃

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High Reliability

Cell lossless cutting+multi-busbar (MBB) /Super multi-busbar (SMBB)
Welding technology
Effectively avoid the risk of microcracks
Easily coping with various application scenarios

TS-M10/144G Monocrystalline Module 560W-580W

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Maximum Power up to 625W

Module max output power up to 625W

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Ultra-low LID

1% degradation in the first year, 0.4% annual degradation in the 2nd-30th year
Provide long-term and stable power generation revenue for end customers
Lower degradation with anti-PID cell and encapsulation materials

625W

Maximum Power Output

22.40%

Maximum Module Efficiency

0~+3%

Power Output Guarantee

30

Years performance warranty

Temperature Ratings

Nominal Operating Cell Temperature [NOCT]

42±2℃

Temperature Coefficient of Isc

+0.045%/℃

Temperature Coefficient of Voc

- 0.250%/℃

Temperature Coefficient of PMAX

- 0.300%/℃

Temperature Ratings

Operational Temperature

- 40~+85℃

Maximum System Voltage

1500V DC-[H]

Max Series Fuse Rating

30A


Packaging Configuration

Module per box

36 pieces

Module per 17.5 flatcar

864 pieces

Module per 40 container

648 pieces

* Due to different specifications, the specific loading quantity is subject to the actual arrival of goods.

Optional

Connector

■ Original MC

Cable length

1200mm

Frame

Black


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Electrical Specification [STC*]

Maximum Power

Pmax[W]

605

610

615

620

625

Maximum Power Voltage

Vmp[W]

45.80

45.90

46.10

46.20

46.30

Maximum Power Current

Imp[A]

13.22

13.29

13.35

13.42

13.52

Open Circuit Voltage

Voc[V]

54.80

54.90

55.10

55.20

55.30

Short Circuit Current

Isc[A]

13.97

14.04

14.10

14.17

14.25

Module Efficiency

[%]

21.64

21.82

22.00

22.18

22.36

Power Output Tolerance

[W]

0~+3%

* Irradiance 1000W/m², Module Temperature 25℃, Air Mass 1.5



RearSide Power gain

5%

Maximum Power

[Wp]

635

641

646

651

656

Efficiency STc

[%]

22.75

22.9323.1223.3123.50
15%

Maximum Power

[Wp]

696

702707713719

Efficiency STc

[%]

24.91

25.1225.3225.5325.74
25%

Maximum Power

[Wp]

756

762769775781

Efficiency STc

[%]27.0827.3027.5327.7527.97

* The Electrical performance parameters are neither just referred to onePV panel, nor are a part of the contract; They are only used as reference.

Module Dimension

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Mechanical Data

Number of Cells

156 pieces [6×26]

Dimensions of Module L*W*H{mm}

2465x1134x30mm

Weight{kg}

33.2kg

Front Side Glass

2.0, Anti-reflection coating glass

Back Side Glass

2.0, Hightransparency solar glass

Frame

Anodized aluminium

J-Box

Protection level IP68

Cable

4.0㎜², 300㎜

Number of diodes

3

Wind/Snow Load

2400 Pa/5400 pa*

Connecto

MC4 compatible or MC compatible

* For more details please check the installation manual

Faq

How big will the solar industry be?

The solar energy industry has experienced rapid growth over the past few decades and is likely to continue to experience strong growth in the coming years. This growth is mainly due to the increasing global demand for renewable and clean energy to address challenges such as climate change and energy security. Here are some predictions and trends regarding the size of the solar industry:

Global market size: According to a report by the International Energy Agency (IEA), solar power generation will become one of the most important sources of electricity in the next few decades. According to predictions, by 2030, solar energy will become the main source of new power capacity in the world, and by 2040, about one-third of the world's electricity will come from solar power generation.


What is the difference between monocrystalline and polycrystalline solar modules?

Monocrystalline solar modules are more efficient and space-saving, making them an ideal solution for residential and small commercial rooftop projects.

Polycrystalline solar module production conditions are less demanding than monocrystalline, making them a more economical and versatile choice. Polycrystalline modules are suitable for various application types, including off-grid and grid-connected projects, etc., especially for large ground power stations, with outstanding cost performance.


Why do we need solar energy?

As a renewable energy source, solar energy is of great significance in energy transition and environmental protection. It is important in many aspects:

Environmental sustainability: Solar energy is a clean energy source. The use of solar energy will not produce harmful gas emissions and will not cause pollution to the atmosphere and environment. It helps reduce dependence on fossil fuels, thereby lowering greenhouse gas emissions and mitigating the effects of global climate change.

Reduce energy consumption: The utilization of solar energy can reduce dependence on limited resources such as fossil fuels such as coal, natural gas and oil. This helps reduce the demand for energy, protect limited natural resources and provide a sustainable energy supply for the future.

Regional independence: Solar energy can be used in many places, especially in areas without easy access to traditional energy sources. This energy can provide power in rural, remote areas or areas without stable electricity supply, helping to improve the quality of life and promote the development of local economies.


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