Factory directly sale Poly-crystalline Solar Panel 3W Factory in Casablanca

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The company upholds the philosophy of "Be No.1 in quality, be rooted on credit and trustworthiness for growth", will continue to serve old and new customers from home and overseas whole-heatedly for Factory directly sale Poly-crystalline Solar Panel 3W Factory in Casablanca, As we are moving forward, we keep an eye on our ever-expanding product range and make improvement to our services.


Poly-crystalline Solar Panel 3W

Technical parameter

Maximum Power(W)                        3W

Optimum Power Voltage(Vmp)        9V

Optimum Operating Current(Imp)    0.34A

Open Circuit Voltage(Voc)               10.8V

Short Circuit Current(Isc)                 0.37A

Mechanical Characteristics

Cell Type                              Polycrystalline

No of Cell                                         18 (2x9pcs)

Dimensions                                     145x245x18mm

Weight                                             0.52KGS

Front Glass                                     3.2mm,High Transmission, Low Iron,Tempered Glass

Temperature and Coefficients

Operating Temperature(°C):                -40°C ~ + 85°C

Maximum System Voltage:                  600V(UL)/1000V(IEC) DC

Maximum Rated Current Series:         10A

Temperature Coefficients of Pmax:     -0.435%

Temperature Coefficients of Voc:        -0.35%

Temperature Coefficients of Isc:           0.043%

Nominal Operationg Cell Temperature (NOCT): 47+/-2°C

 Materials of solar panel

1).Solar Cell——Polycrystalline solar cell 156*156mm

2).Front Glass——-3.2mm, high transmission, low iron, tempered glass

3).EVA——-excellent anti-aging EVA

4).TPT——-TPT hot seal made of flame resistance

5).Frame——anodized aluminum profile

6).Junction Box——-IP65 rated, high quality, with diode protection

Superiority: high quality anodized aluminum frame, high efficiency long life, easy installation, strong wind resistance, strong hail resistance.

Features

1. High cell efficiency with quality silicon materials for long term output stability

2. Strictly quality control ensure the stability and reliability, totally 23 QC procedures

3. High transmittance low iron tempered glass with enhanced stiffness and impact resistance

4. Both Poly-crystalline and Mono-crystalline

5. Excellent performance in harsh weather

6. Outstanding electrical performance under high temperature and low irradiance 

Quality assurance testing

Thermal cycling test

Thermal shock test

Thermal/Freezing and high humidity cycling test

Electrical isolation test 

Hail impact test

Mechanical, wind and twist loading test

Salt mist test

Light and water-exposure test

Moist carbon dioxide/sulphur dioxide

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  • System Live View.

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    Programer Jeremy Ohara

    https://www.youtube.com/channel/UCJA-nc00jDIH8Ceu6bGqPig

    100% Solar power is what i wanted. I did it. My home is powered 24 / 7 / 365 days a year from the sun. Solar during the day and of a night i run off the stored sunshine in my 65 kWh Battery bank. Come on and join my many paid subscribers that are watching my videos Ad FREE

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    Please feel free to enjoy my Off-Grid / Grid Hybrid system and my LED lighting videos. as well as my many How to videos.

    Never Be Without Power again.

    My Three most used sayings are.
    1) A house roof looks unfinished until it has solar panels on it.
    2) A man is not looking after his family until he is producing his own power.
    3) Solar systems can be kind of pricey at first. Having power when no one else does, PRICELESS

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    Remember if the power go’s Out Then only the people that Prepared will have Power and Lights. And because of the cost. They have just enough for there needs. NOT YOURS.

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    Paul Chambers had began building a home out of two shipping containers as a project, but when his wife got tired of suburbia and put their four-bedroom home on the market, his project became the couple’s full-time home (Paul’s ebook: www.buildshippingcontainerhous­e.com)

    Paul and Sarah Chambers were living in rural Scotland when Paul received a job offer in Australia. They packed their belongings and moved to a large home with a pool in an Australian suburb. After only a few months, they began to tire of spending so much of their income on their home. They also felt they’d lost touch with nature and a more active lifestyle (“there weren’t even any trails for walking”, explains Sarah).

    So they sold their home and moved with Paul’s “project”: two shipping containers he’d been transforming into a kitchen/bathroom + bedroom/living room. They found someone willing to let them park their new home on their rural property in exchange for making improvements to the land.

    When the couple first moved onto the property, the home was a very simple shelter and over the following three years, they built the containers into a proper home.

    Their home is completely off the electric and water grids. When they first moved to the bush they used a 3kw Honda generator, but they’ve since installed 2Kw of photovoltaic panels and a bank of batteries and phased out the generator. They have enough energy to power their home with all its conventional appliances, including a standard fridge/freezer. For heating, they rely on firewood (collected from fallen trees on the property; they have “not cut down a single tree”). For air conditioning, they use fans and AC “during really hot days”.

    In the beginning they had to rely on water deliveries, but Paul has since installed an extensive rainwater capture setup- both on the roof and gutters beneath the home- which provides for all their water needs: 65 square metres of rain water collection in 10,000 liters of storage. The indoor bathroom includes a shower, but Paul built an outdoor, open air bathtub which they heat with solar in the summertime.

    They’ve also created an extensive vegetable garden inside a netted garden cage (after the animals and hot sun destroyed their first attempts). For eggs, they have two hen houses.

    Paul has published an ebook explaining how he built the home including a step-by-step guide: buying and moving shipping containers, a wiring diagram and schematics, installing solar panels and a breakdown of costs.

    Paul’s youtube channel: https://www.youtube.com/user/paulcreatesuccess

    Original story: http://faircompanies.com/videos/view/aussie-couple-buildsf-grid-mobile-home-with-2-containers/

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