Off-grid Solar Panel TDB 62.5×125/7-36-P

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Product Description:

 

Off-grid Solar Panel TDB 62.5×125/7-36-P

 

 

Specification

·         Highest performance enabled by higher efficiency monocrystal line cells and the latest Solar Wafer Technology for multicrystal line cells

·         Lower weight design which reduces the total system load on a roof, making it ideal for residential customers. Its shape allows for better roof utilization

·         Its low weight means easier handling for installers

·         Modules are designed to withstand PID (Potential Induced Degradation)*

·         High light transmission Anti-Reflective Glass with improved self-cleaning capability

·         0/+5 W Positive power tolerance for reliable power output 

 

 

Warranty

CNBM Solar provides one of the most comprehensive module warranties in the industry:

·         10 years for product defects in materials and workmanship

·         First 12 years for 90% of warranted minimum power

·         Remaining 25 years for 80% of warranted minimum power

Certification

CNBM Solar strictly carries out the ISO 9001 quality control methodology and has implemented check points at every step of the production process to ensure our product performance durability and safety. The stringent quality control process has been confirmed by numerous independent agencies and LDK Solar modules earned IEC, TUV and UL certifications.

·         IEC:IEC 61215, IEC 61730 (1&2), conformity to CE

·         UL 1703 2002/03/15 Ed:3 Rev:2004/06/30

·         ULC/ORD-C1703-01 Second Edition 2001/01/01

·         UL and Canadian Standard for Safety Flat-Plate

·         ISO 9001: 2008 Quality Management Systems

·         CEC Listed: Modules are eligible for California Rebates

·         PV Cycle: Voluntary module take back and recycling program

·         MCS Certificate

 

Off-grid Solar Panel TDB 62.5×125/7-36-P

Off-grid Solar Panel TDB 62.5×125/7-36-P

Off-grid Solar Panel TDB 62.5×125/7-36-P

 

 

FAQ

1.    How do I decide which system is right for me ?

For protection from long outages, include a generator or solar panels in your Must solar system. Shorter outages can be handled by a battery-only system.

2.    Where my system will be installed ?

Must solar systems are usually wall-mounted near a home's main electrical (circuit breaker) panel.

3. How do I install my system ?

A must solar backup inverter is connected to a home electric system , we will supply detailed installation manual and videos for our customers .

How fast will my system respond to a power outage ?

Must solar inverters typically transfer to battery power in less than 16 milliseconds (less than 1/50th of a second).

What kind of batteries do the systems include ?

Must solar backup electric systems use special high-quality electric storage batteries.

 

 

 

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Q:are solar electric panels viable in the northwest?
The key is the average insolation value for the location. This is a number that represents the effective numbers of sunlight available per day. The insolation for Seattle varies from 2.9 and 3.57, depending on who is reporting the number. The insolation where I live, near San Francisco is 5. For me, solar is paying off.
Q:How to mount solar panel to car.?
Build okorder.com/
Q:how to chose the right solar panel for my home?
One will give you enough DC voltage to light a 25 watt light bulb, [ one 45 watt panel is around $400. ] Now if your wanting AC voltage You have to buy a inverter, 5 or 6 deep cycle batteries, a switch Cables to transfer the voltage, a place out side to store the batteries, instalation brackets for the roof A Permit to Install them
Q:Solar Panels in the 200 Toyota Prius?
Solar Roof Prius
Q:What does it mean when a solar panel is 00w?
That means it can handle UP TO 00W at any given time in bright sunlight. Volts x Amps = Watts. This means you can use of these panels to supply a 9 volt DC appliance at amps. Which is a pretty ridiculous amount of amps for a 9 volt product. About 5 of the 65 Watt panels will give you in excess of 825W of power, which will give you 5kWh per day. But, remember that's DC. When you convert to AC, that changes. I would suggest keeping batteries for storage. Also, You might require an average of 825 W per hour, but at any given time, you'll use a higher peak. You need to find out what the PEAK is before you can decide what to get. That would be with all the lights on in your house, running the vacuum, the dryer, and the washing machine. I think most houses are built with 00Amp breakers. That's 2 kilowatts at one time. That would mean you would need 72 panels to be at the PEAK your house can handle. You'll hopefully never use 2kW at one time. But there's no way for me to know what YOUR peak will be. I think the average kW peak demand is somewhere in the range of 2 kW. That would require 3+ panels.
Q:Why do people use solar panels?
The sun provides power where ever the sun shines. That means you can have power without paying for power cables running for miles across rivers and valleys or just out in the middle of nowhere. Or in the middle of somewhere, you can get more or less off the grid (of electrical delivery) and save money and not be a slave to big business. And since the carbon footprint of making power with solar cells is entirely in the making of them and the batteries, it is a cleaner form of electricity. With the batteries needed to have power at night, it can mean that power doesn't fail when the wires go down in the grid.
Q:Life expectancy of LEDs and Solar panels...?
ED stands for light emitting diode, an electronic device which turns electric power into light with nearly perfect efficiency. When used in flashlight or othe battery powered lights, they will provide equal amounts of light for 00 times as long as ordinary incandescent light bulbs. Because of there very low power usage, led light are ideal for solar powered lighting systems. They are now made in every form and size, for DC or AC power, for homes, automobiles and outdoor lighting. Although they cost more, the savings from 20 year life expectancy and % power use mean savings of 95% over several years. sunsourcepower
Q:I have 700watts ups and 2V,65amp battary..i want to add solar panel to just only charge my 2v,65amp batt.?
What you are stating is that the battery you have will operate the UPS for about 2 hours before it is drained past the point of no return (technically 2.82 hours, but that would be a dead battery - most well-designed UPS systems cut off when the battery gets below about a 30% charge so that battery is not damaged. Lead-Acid batteries have about a 0%/month self-discharge rate if there is no load connected. The very best systems are as low as 3%, the worst are over 20% - and all at a 'normal' temperature. So, you will need a maintenance charger of about ten (0) watts or so - amp will be more than enough. And about any solar panel will handle that much with the proper charging connection.
Q:Why should I use solar panels?
Using solar panels and a converter system will reduce your electric bill, more panels +more reduction down to 0.00, even more and the power company has to pay you for your excess at premium prices. It's the law.It's not necessary but but useful.
Q:Reasons for installing solar panels in a school?
You have to approach it as an investment. Ignoring the cost of an inverter for net metering, if we consider a 500 W panel installed for $0 a watt which is $5,000 and consider an average of 8 hours of usable sunlight per day, and at a rate of $0.0 per kWh (schools probably get $0.03 per kWh) then the panel would be saving $2.7 per month in electricity. Considering that the panel has an expected lifespan of 20 years, that would give you an internal rate of return such that the monthly rate satisfies the equation: $5,000 = $2.7 * ( ( - / R^24 ) / ( - / R ) - ) By binary method we get R = 0.99588342. Taking this to the 2th power to annualize it we get Ra = 0.9570 which means that we are getting an annual return of -4.83% per annum so investing in the solar panel is the same as making an investment at an interest rate of -4.83% per year. True interest rates are low and you only get about .3% per annum by putting money in a CD but that still beats investing in solar panels which gives you a negative return on your money. Solar panels need to get a lot better before they are a good investment.

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