Best Rv Solar Chargers - Solar Module Mono-Crystalline 190W 125*125 Module

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Product Description:

 

Solar Module Descriptions: 

A solar panel, or photovoltaic PV module, is a device that is composed of solar cells and which, when struck by photons of light from the sun, generates an electrical current which can then be used to power DC or AC electrical loads.

 We are one of the well known manufacturers and suppliers of an extensive range of solar module. Entire  range of our products is well checked before offering to the clients to ensure that our products are free  from any defect. Our products are delivered within the stipulated time frame. These solar module are available for outdoor applications.

 

 

Solar Module Mono-crystalline 190W 125*125 Module

 

Electrical Characteristics 

Module Power                                   

(W)

195> Pm>190

Max –Power                                   (W)              

190

Max-Power Voltage            

(V)

36.5

Max-Power Current             

(A)

5.2

Open-Circuit Voltage             

(V)

45.2

Short-Circuit Current            

 (A)

5.6

Module Efficiency              

 (%)

14.9

Max-System Voltage           

(VDC)

600V(UL)/1000V(IEC)

Max. Series Fuse                 

(A)

10

Pm Temperature Coefficients    

(%/)

-0.4601

Isc Temperature Coefficients    

(%/)

0.0981

Voc Temperature Coefficients  

(%/)

-0.5186

NOCT Nominal Operating Cell Temperature                   

()

45+ 2

Maximum load rating            

( Pa)

5400

 

Mechanical Characteristics

Cable type, Diameter and Length

4mm2, TUV certified, 1000mm

Type of Connector

Compatible with MC4 plug

Arrangement of cells

6*12

Cell Size

125*125

Dimension

1580*808*40

Weight

15.5Kg

No. of Draining Holes in Frame

10

Glass, Type and Thickness

High Transmission, Low Iron, Tempered Glass 3.2mm

 Solar Module Mono-crystalline 190W 125*125 Module

Features 

 

FAQ

 

Q: What kind of loads can I run on PV?

With a correctly designed PV system you can power almost any electrical load. However, as the load size increases the expense also increases. Loads like hot water heaters, air conditioners, room heaters and electric stoves should be avoided. The added cost of trying to power loads like these is very cost prohibitive. If these loads have to be powered it will be a lot less expensive to change the appliance to use an alternative fuel type like propane.

Q: When do I need a charge controller and why?

The safest way to figure out if you need a charge controller is to take Battery Amp Hour Capacity and divide this by the Solar Panel max. power amp rating. If the quotient is above 200, you don't need a controller. If the number is less than 200 than you need a controller.

For example if you have a 100 amp hour battery and a 10 watt panel, you take 100 and divide it by .6 (600mA) and you get 166.6. Since this is less than 200 you need a charge controller. If you have a five-watt panel in the above example you take 100 divided by .3 (300mA) and you come up with 333.3. Since this is larger than 200 you do not need a charge controller. However you still need a blocking diode, to prevent the battery from discharging to the panel at night. So as a general rule of thumb you don't need a charge controller unless you have more than five watts of solar for every 100-amp hours of battery capacity.