Solar Modules (Mono crystal )TDB156×156-72-P

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·         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 

 Solar Modules (Mono crystal )TDB156×156-72-P



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


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

Solar Modules (Mono crystal )TDB156×156-72-P

Solar Modules (Mono crystal )TDB156×156-72-P

Solar Modules (Mono crystal )TDB156×156-72-P



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:What things can a solar panel power?
if you have 0 big panel eg: say of 200watts and have 6 hours of proper sunlight.. so u will have 2000watts of energy 2Kw of energy per day.. it depends what is ur household usage.. a 00W bulb for 6hrs= 600W a TV may be 400W for 8 hrs =3200watts.. calculate like this for each equipment u have.. or ucan calculate ur daily use from ur meter... also u need enough batteries for storage and an inverter to covert the DC energy to AC energy.. solar can power anything if it is efficiently stored and generated... depends on the no of panels u have ..area you have for installation......... the cost u can afford.. a 200W solar panel may cost 35000 - 40000 in india..
Q:Computation of Solar panel requirement?
The power output of a solar panel uses a formula to determine kilowatts produced per hour per square meter per day. This calculation is important because, if you plan to install a solar power system for your home, you will want to know how many solar panels will be needed. To calculate solar power requirements correctly, you need to gather the data that is needed for the calculation. First you have to find the average amount of solar radiation available for your area. You can use a solar radiation chart. This can range from a 4 to a 7 depending on the area you live in. Write the number down on a piece of paper and indicate it with the letters RA. Next is determine the amount of electricity that you use daily. Add the kilowatt-hours used per month from your utility bill. Multiply this number by ,000 to get the watt hours in a month. Divide the total by 30 for the amount of electricity you use daily. Write this number down and indicate it with the letters DE. Determine the percentage of your home that you want to power with the solar power system. Write this number down and indicate it with the letter P. Determine the system inefficiency factor for the solar power system. You should be able to find this on the brochure for the system or from the manufacturer's web site. Write this number down and indicate it by the letter I. Determine the power or yield that is required for your home. Use the equation P = I x (DE x P) / RA to find the power requirements in kWh. Divide the number from Step 5 by the peak wattage for a single solar panel to determine the number of panels you will need for your home. Goodluck! :)
Q:How many Solar Panels for my Pool?
Q:Solar Panels power help?
What you really need to calculate is your energy requirements, you are only stating your power requirements. Power (W) = how many watts of power are you using? Time (h) = how long are you going to use the power for? Energy requirement(Wh) = W * h take the answer to that equation and plug it into the exact same equation except substitute how much sunlight you get for h and then solve for W to find what you need in the way of a solar panel. Wattage of solar panel (W) = Energy requirement (Wh)/hour of sunlight per day (h) Now you know what wattage of solar panel you need. For the battery you use a different equation: Energy in the Battery(Wh) = Battery Voltage (V) * Current Capacity (Ah) Solving for Current Capacity: Ah = Wh / V This will tell you how big a battery you need, but you also need to be concerned about how much current it can source. For this you need to know what your peak power requirement is. Wmax = peak power requirement Max discharge current (Amax) = Wmax / Vmax Also you will need an inverter rated to Wmax as well.
Q:Is it worth installing solar panels on a house that has no South-facing roof?
The answer is NO. We can install PV solar panels to properties that are South East – South West facing. Of course it helps if you are 00% South facing but it’s not the end of the world. In fact I would say that the majority of solar panel installations across Britain are not 00% South facing.
Q:Is it truE thet solar panels. . ?
It is a system, you can get a small scale panel that can do things like charge cel phones and ipods. The type of system I have installed on my home needs a converter that turns the dc current that is produced by the panels into ac current to run in my home. I don't have a battery system because I'm not off the grid. When I'm generating more electricity than I am using I sell it back to my utility and at night when I'm not gernerating any electricity I buy it back again. Basically my meter runs backwards durning the day and frontwards during the night.
Q:How can I adapt an automotive reglator to a solar panel?
solar panels will naturally produce a certain DC voltage which is what your battery needs - the current will vary based on the sun light. You need probably 4V to have some over voltage. So based on your specs look at having at least 4 V but not too much over that (tells you how many panels you need in series) I would have blocking diodes (probably the solar cell has them built in) to insure the battery does not discharge thru the panel.
Q:how much do solar panels cost and r thay worth buying?
If you want to get money from the power company you will have to basically put in $0k to $20k worth of solar panels. Currently most solar panels that are available to home owners are not all that efficient. I currently have 3 that are 2 foot x 0 foot on my roof that follow the sun and they only power my water heater. Also some states will give you a tax rebate for installing solar power banks on your roof, mainly in the southwest.
Q:What do i need to use a 2v solar panel to charge a 6v lead acid battery as i cant find a 2v to 6v regulator?
Buy the proper charger or get a degree. Don't screw with making a charger for a lead acid battery of you don't know what you are doing. You could get hurt. You need a hell of a lot more than just a regulator.
Q:Solar Panels, anyone?
Unless you live in an area with a very high UV index, like Las Vegas for example, solar panels are not cost-effective. You definatly should not attempt to install solar power yourself if you intend to power a residence with it (unless you live in a shack). A certified electrician is required in order to connect your equipment to your house's electrical system. It isnt just as simple as a few panels. You need a converter that turns the DC voltage generated into AC. You also need equipment to connect to the metering system for your house. If you want to see if it is cost effective, you will need your electric bills that show usage for a year and the price per kWH. There are a lot of websites that have calculators for solar power systems.

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