Description
Solar Innova uses the latest materials to manufacture photovoltaic solar pavement.
Our solar pavement is ideal for any application that uses the photoelectric effect as a clean energy source because of its minimal chemical pollution and no noise pollution. Thanks to its design, can be integrated easily into any installation.
The front of the solar pavement contains a tempered solar glass anti-slip with high transmissivity, low reflectivity and low iron content.
This PV solar pavement use high-efficiency monocrystalline silicon cells to transform the energy of sunlight into electric energy. Each cell is electrically rated to optimize the behavior of the module.
The cell circuit is laminated using PVB (Polivinil Butiral) as an encapsulant which provides complete protection and seals against environmental agents and electrical insulation.
The rear of the solar pavement contains a layer of tempered glass.
The junction boxes with IP65, are made from high temperature resistant plastics and containing terminals, connection terminals and protection diodes (by-pass). These pavements are supplied with symmetric lengths of cable, with a diameter of copper section of 4 mm and an extremely low contact resistance, all designed to achieve the minimum voltage drop losses.
Our solar pavement comply with all safety requirements not only flexibility but also double insulation and high resistance to UV rays, all are suitable for use in outdoor applications. The design of this solar pavement makes its integration in both industrial and residential buildings (one of the most emerging sectors in the photovoltaic market), and other infrastructure, simple and aesthetic.
Data
Silicon Cell Photovoltaic Module monocrystalline (sc-Si), BIPV-Pavements series, for architectural integration, from the manufacturer SOLAR INNOVA, maximum power (Wp) 146 W, voltage at maximum power (Vmp) 15.76 V, current at maximum power (Imp) 9.25 A, open circuit voltage (Voc) 18.70 V, short circuit current (Isc) 9.78 A, efficiency 12.79%, composed of 28 cells, front layer tempered glass thick 10 mm, encapsulating layers of cells of PVB, back layer of tempered glass thick 10 mm, junction box (diodes, cables 4 mm2, 900 mm and connectors MC-T4), working temperature -40/+85 ºC, dimensions 792x1437 mm, maximum wind load 2400 Pa, maximum snow load 5400 Pa, weight 61.97 kg.
Electrical Characteristics STC
Maximum power (Pmpp)
|
Wp
|
146
|
Tolerance
|
%
|
± 5
|
Voltage at maximum power (Vmpp)
|
Volts
|
15.76
|
Current at maximum power (Impp)
|
Amperes
|
9.25
|
Open circuit voltage (Voc)
|
Volts
|
18.70
|
Short circuit current (Isc)
|
Amperes
|
9.78
|
Maximum system voltage (Vsyst)
|
Volts
|
1,500 (IEC) / 1,000 (UL)
|
Diodes (By-pass)
|
Quantity
|
3
|
Maximum series fuse
|
Amperes
|
20
|
Efficiency (ηm)
|
%
|
12.79
|
Form Factor
|
%
|
79.63
|
STC:
Irradiance: 1000 W/m2 +
Cell Temperature: 25º C +
Air Mass: 1,5
Electrical Characteristics NMOT
Maximum power (Pmpp)
|
Wp
|
107
|
Voltage at maximum power (Vmpp)
|
Volts
|
14.35
|
Current at maximum power (Impp)
|
Amperes
|
7.51
|
Open circuit voltage (Voc)
|
Volts
|
17.10
|
Short circuit current (Isc)
|
Amperes
|
7.93
|
NMOT:
Irradiance: 800 W/m2 +
Ambient Temperature: 20º C +
Air Mass: 1,5 +
Wind Speed: 1 m/s
Mechanical Characteristics
Size
|
Height
|
1,437 mm
|
56.57 inches
|
|
Width
|
792 mm
|
31.18 inches
|
|
Thickness
|
23.46 mm
|
0.92 inches
|
Weight
|
Net
|
61.97 kg
|
136.62 pounds
|
Front
|
Material
|
High transmission tempered glass
|
|
Thickness
|
10 ± 0.2 mm
|
0.39 ± 0.008 inches
|
Cells
|
Type
|
Monocrystalline
|
|
Quantity
|
4 x 7 units
|
|
Size
|
156.75 x 156.75 mm
|
6 inches
|
Serial connection
|
Quantity
|
28 units
|
Parallel connection
|
Quantity
|
1 unit
|
Encapsulation
|
Material
|
PVB
|
|
Thickness
|
0.76 ± 0.03 mm
|
0.03 ± 0.0012 inches
|
Back-Sheet
|
Material
|
Tempered glass
|
|
Thickness
|
10 mm
|
0.39 inches
|
Junction box
|
Material
|
PVC
|
|
Protection
|
IP65
|
|
Isolation
|
Versus humidity and inclement weather
|
Cables
|
Type
|
Polarized and symmetric in length
|
|
Length
|
650 mm
|
25.6 inches
|
|
Section
|
4 mm2
|
0.16 inches2
|
|
Features
|
Low contact resistance
|
|
Minimal losses for voltage drop
|
Connectors
|
Material
|
PVC
|
|
Type
|
MC4
|
|
Protection
|
IP67
|
Thermal Characteristics
Temperature coefficient of short circuit current α (Icc)
|
%/º C
|
+ 0.0814
|
Temperature coefficient of open circuit voltage β (Voc)
|
%/º C
|
- 0.3910
|
Temperature coefficient of maximum power γ (Pmpp)
|
%/º C
|
- 0.5141
|
Temperature coefficient of current at maximum power (Impp)
|
%/º C
|
+ 0.10
|
Temperature coefficient of voltage at maximum power (Vmpp)
|
%/º C
|
- 0.38
|
NMOT (Nominal Module Operating Temperature)
|
º C
|
+ 47 ± 2
|
Tolerances
Working temperature
|
º C
|
º F
|
- 40 ~ + 85
|
- 40 ~ + 185
|
Dielectric Isolation Voltage
|
Volts
|
3000
|
Relative humidity
|
%
|
0 ~ 100
|
Wind resistance
|
m/s
|
60
|
|
kg/m2
|
Pa
|
245
|
2,400
|
|
pounds/feet2
|
491.56
|
Mechanical load-bearing capacity
|
kg/m2
|
Pa
|
551
|
5,400 (IEC)
|
|
pounds/feet2
|
Pa
|
75.2
|
3,600 (UL)
|
Fire resistance
|
Class
|
A
|
Hail resistance
|
Level
|
4
|
Measurements
MEASUREMENTS PERFORMED IN ACCORDANCE WITH STANDARD TEST METHODS
EN 60904-3 AND ASTM E1036, CORRECTED TO STANDARD TEST CONDITIONS (STC)
|
Air quality/Spectral distribution
|
AM
|
1.5 ASTM G173-03e1 (2,008)
|
Luminous intensity/Radiation
|
W/m2
|
1000
|
Cell temperature
|
º C
|
25 ± 2
|
MEASUREMENTS PERFORMED IN SOLAR SIMULATOR
|
Class
|
AAA (according to IEC 60904-4)
|
Power measurement uncertainty is within
|
± 3 %
|
Structural Characteristics
Cells
High efficiency cells with anti-reflective layer of Silicon Nitride.
Electric conductors
Flat Copper (Cu) bath in a Tin (Sn) and Silver (Ag) alloy, which improves weldability.
Welds
Cell and drivers in installments for stress relief.
Laminate
Composed of ultra-clear tempered glass on the front, thermostable, PVB encapsulant embedding cells and electrical insulation on the rear formed by a layer of tempered glass.
Junction box
Hoses and quick connectors with anti-error. Include bypass diodes, interchangeable thanks to the wiring system has no welds, all electrical contacts are made by pressure, thus avoiding the possibility of cold welding.
Characteristics of Work
The power of solar cells varies in the output of the production process. The different power specifications of these modules reflect this dispersion.
Cells during the early months of light exposure, may experience a degradation photonics could decrease the value of the maximum power the module up to 3%.
The cells, in normal operating conditions, reach a temperature above the standard measurement conditions of the laboratory. The NMOT is a quantitative measure of the increase. NMOT measurement is performed under the following conditions: radiation of 0.8 kW/m2, temperature 20º C and wind speed of 1 m/s.
The electrical data reflect typical values of the modules and laminates as measured at the output terminals at the end of the manufacturing process.
Performance Graphs
Modules
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Drawings
Front
Back
Section
Junction Box
Pictures