Hot sale reasonable price Poly-crystalline Solar Panel 150W Manufacturer in Lebanon

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Poly-crystalline Solar Panel 150W

Technical parameter

Maximum Power(W)                           150W

Optimum Power Voltage(Vmp)           17.92V

Optimum Operating Current(Imp)        7.83A

Open Circuit Voltage(Voc)                  21.86V

Short Circuit Current(Isc)                     8.59A

Mechanical Characteristics

Cell Type Poly-crystalline                    156x156mm (6 inch)

No of Cell                                            36 (4x9pcs)

Dimensions                                        1482x678x35mm

Weight                                                11.9KGS

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

Junction box                                        IP65 Rated

Output Cable                                      TUV 1×4.0mm2/UL12AWG,Length:900mm

Temperature and Coefficients

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

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

Maximum Rated Current Series:         15A

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——Poly-crystalline 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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  • My “run a energy safing bulb on one battery and a 2 transistor inverter” experiment was a little bit of a failure. It did blink but I guess nine Volt wasn’t more than enough to make it operate.

    For this job, I utilized 1 inverter transformer and a CCFL (chilly-cathode fluorescent lamp) from an old Lcd observe.

    The 2 transistors are NPN, kind BD737 from a (pretty old) old cassette player.
    The 2 resistors are eighty two Ohm (gray-purple-black) and one/4th Watt.
    I imagine almost any NPN transistor in this offer must do the work.
    It has a BCE pin-out.

    On a whole nine volt battery, I obtained all around 750Volt but the battery was draining rapidly.

    For the schematic diagram I utilized this 1:

    http://www.eleccircuit.com/wp-content/uploads/2007/06/micro-inverter-by-2n5121.jpg



    How to Build a Solar Panel
    00:00:32 Part 1 Assembling the Pieces
    00:00:39 1 – Purchase the cells
    00:01:13 2 – Measure and cut a board
    00:01:47 3 – Measure and cut all of your tabbing wire
    00:02:28 4 – Use the flux pen on each of the three squares (or strip) of each line (usually 2 or 3 lines) on the back of the cell
    00:02:44 5 – Melt a thin coat of solder on the squares/strips of the back of cells
    00:03:09 6 – Heat the first half of a tabbing wire on top of the soldered squares/strip to bond it to the cell
    00:03:27 Part 2 Connecting the Cells
    00:03:34 1 – Glue the cells to the board
    00:04:31 2 – Solder the cells together
    00:05:03 3 – Connect the first row using bus wire
    00:05:39 4 – Connect the second row
    00:06:15 5 – Continue connecting the rows
    00:06:34 Part 3 Building Your Panel Box
    00:06:41 1 – Measure your cell panel
    00:07:19 2 – Cut the flat back
    00:07:42 3 – Form the sides
    00:08:09 4 – Attach the sides
    00:08:35 5 – Paint the box
    00:09:06 6 – Attach the solar panel
    00:09:26 Part 4 Wiring Your Panel
    00:09:33 1 – Connect the final bus wire to a diode
    00:10:13 2 – Connect the wires
    00:10:36 3 – Connect your panel to a charge controller
    00:11:16 4 – Connect the charge controller to your batteries
    00:11:38 5 – Use the batteries
    00:12:01 Part 5 Sealing the Box
    00:12:08 1 – Get a piece of plexiglass
    00:12:40 2 – Attach block stops for the glass
    00:13:11 3 – Insert your plexiglass
    00:13:32 4 – Seal the box
    00:13:57 Part 6 Mounting Your Panels
    00:14:04 1 – You can mount your panels in different ways
    00:14:38 Tips
    00:19:06 Warnings
    00:19:20 Things

    Content taken from WikiHow http://www.wikihow.com/Build-a-Solar-Panel

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