Amorphous laminated adhesive back thin film flexible module 105W 25.6V
Negotiable /Kilowatt
Min.Order:200 Kilowatts
Jinan Linquan Import And Export Co., Ltd.
Amorphous laminated adhesive back thin film flexible module 105W 25.6V
Amorphous laminated adhesive back thin film flexible module 105W 25.6V is detailed as follows:
With back adhesive tape or non-adhesive film back, offers a wide options of installation methods for customers.The products are
specifically designed for rooftop installations. These products all use the bandgap-tuned triple-junction thin-film silicon solar cells.
We also welcomes inquiries for custom sized product. Our flexible manufacturing process can allow us to offer custom product at
relative low minimum volumes.Our thin film flexible solar modules can be utilized for either on-grid or off-grid applications and
they come backed by our 25 year power-output warranty. Our solar modules are produced using the innovative and patented
manufacturing process and are designed to deliver high energy efficiency at a low cost for years to come.
Specification
Basic characteristics at STC | LQX11-72 | LQX22-144 | LQX10-65 | LQX12-79 | LQX14-92 | LQX16-105 | LQX18-118 | LQX20-131 | LQX22-140 | |
Power(±10%) | Pm (W) | 72 | 144 | 65.45 | 78.54 | 91.62 | 104.7 | 117.82 | 130.9 | 139.9 |
Open circuit voltage | Voc (V) | 24.2 | 48.4 | 22 | 26 | 30.8 | 35.2 | 39.6 | 44 | 48.4 |
Short circuit current | Isc (A) | 5.1 | 5.1 | 5.1 | 5.1 | 5.1 | 5.1 | 5.1 | 5.1 | 5.1 |
Voltage at Max Power | Vm (V) | 17.6 | 35.2 | 16 | 19.2 | 22.4 | 25.6 | 28.8 | 32 | 35.2 |
Current at Max Power | Im (A) | 4.09 | 4.09 | 4.09 | 4.09 | 4.09 | 4.09 | 4.09 | 4.09 | 4.09 |
Length(±5 mm/0.20in) | L (mm/in) | 2741/107.9 | 5392/212.3 | 1295 | 1536 | 1777 | 2018 | 2259 | 2500 | 2741 |
Width (±3 mm/0.12 in) | W (mm/in) | 378/14.9 | 378/14.9 | 740 | 740 | 740 | 740 | 740 | 740 | 740 |
Weight | M (kg/lbs) | 2.8/6.2 | 5.3/11.7 | 2.6 | 3.1 | 3.5 | 4 | 4.4 | 4.9 | 5.3 |
Thickness | T (mm/in) | 1.5/0.06 | 1.5/0.06 | 1.5 | 1.5 | 1.5 | 1.5 | 1.5 | 1.5 | 1.5 |
The ADVANTAGES of Amorphous laminated adhesive back thin film flexible module 105W 25.6V is detailed as follows:
1. Flexible
Flexible solar modules are produced utilizing a thin stainless steel substrate and flexible lamination polymers which equate to a thickness of ~1.5 mm. This allows our modules to be used for a wide variety of applications.
2. Lightweight
Flexible solar modules(~.5 lbs/sq. ft) are roughly three times lighter than rigid glass based PV modules, which means they can easily be installed on rooftops that may not be able to take the weight of glass modules and their support structures without the need for costly roof reinforcement modifications.
3. High Performance
Thin film amorphous silicon based PV modules offer better power performance in actual outdoor conditions vs. some other solar technologies that currently dominate the market.
4. Durable
Our solar modules are flexible and lightweight and do not utilize glass which make them very durable and resilient to most weather conditions.
5. Easy to Install
Our products can be integrated into a building’s roofing membrane or rolled on and adhered which allows for easy installation and also eliminates the need for roof penetrating racking structures.
Sample order: Carton
Volume order: Carton+pallet
Or according to your requirement.
Our thin film flexible solar panel offers solutions for:
Flat, Corrugated and Standing Seam Metal Roofs
Single Ply TPO and EPDM Membrane Roofs
HDPE Landfill Covers
Residential
Ground installation on membrane material
Metal or TPO/EPDM membrane roofing installation
Golf cart/car
-Product Design
Roll-up thin film solar panels on stainless steel plates are manufactured by a roll-to-roll process.
Which allows the company to produce triple-junction thin-film silicon solar cells on rolls of thin stainless steel substrates, three feet
wide and up to one mile long. The long stainless steel webis guided through a series of vacuum chambers for the deposition of nine
semiconductor layers using a plasma enhanced chemical vapor deposition process,and back reflector and top electrode layers
using a sputtering process. The combined thickness of the layers for the triple-junction solar cellis approximately one hundredth of
the thickness of a typical sheet of paper. Therefore, only a small amount of silicon is used.
We have made advancements to the manufacturing process that allows it to market these products at a very attractive price point.
However, the basic technology used in the cells and packaging techniques used in the modules are well proven, predictable and havean operating history of over ten years in the field.
-Process
The core of thin film flex solar panel’s technology are the semiconductor compositions called thin-film silicon (tf-Si) which are used to
convert sunlight into electricity. These materials are ideal solar energy technologies for many applications for the following reasons:
1. Efficient absorption of sunlight with ~1 µm thick film (vs 180 µm Si wafer)
2. Low manufacturing cost
3. Produced at low temperatures with short energy payback time
4. Can be used with low-cost substrates such as plastic, glass, and metal
5. Proven manufacturing process and product durability
6. More energy output per rated Watt
7. No toxic substance in the product
8. No supply shortage
9. Multi-junction device structure for higher conversion efficiency
To produce tf-Si modules, we utilize its proprietary high-speed, low-cost roll-to-roll manufacturing process. This automated process allows us to transform a roll of steel 3 feet wide by a mile long into highly-efficient solar cells.
As the metal foil is rolled, plasma-enhanced chemical vapor deposition systems and a magnetron sputter deposition system apply
a chemical compound creating high-quality thin-film silicon solar cells.
Once the solar cells are created, the mile-long roll then moves to the module manufacturing stage where the individual modules
are fabricated into finish product. During this significantly automated process, the solar cells are cut to specs, wired, encapsulated, and packaged, which ultimately results in durable, flexible, lightweight, and powerful solar modules.