SAB12-0669_02_Installation and Maintenance Manual SFxxx-S
3
Electrical Data at Nominal Operating Cell Temperature Conditions (NOCT 47
°
C)
SF155-S
SF160-S
SF165-S
SF170-S
SF175-S
Maximum Power
Pmax
115W
119W
123W
126W
130W
Open Circuit Voltage
Voc
99.2V
100V
100V
102V
104V
Short Circuit Current
Isc
1.76A
1.76A
1.76A
1.76A
1.76A
Maximum Power Voltage
Vmpp
77.4V
78.8V
80.2V
82.1V
83.9V
Maximum Power Current
Impp
1.49A
1.51A
1.53A
1.55A
1.55A
3.2 Module Performance at Low Irradiance
Efficiency reduction of maximum output from an irradiance of 1,000 W/m
2
to 200 W/m
2
at 25 °C is typically 2. 0%.
The standard deviation for the reduction in efficiency is 1.9%.
3.3 Thermal Characteristics
NOCT
47
°C
Temperature Coefficient of Isc
+ 0.01% / K
Temperature Coefficient of Voc
- 0.30% / K
Temperature Coefficient of Pmax
- 0.31% / K
3.4 Characteristics for System Design
Maximum System Voltage
Vsys
1,500 V IEC / 1,500 V UL
Limiting Reverse Current
Ir
7
A
Maximum Series Fuse Rating
Isf
4
A
The sum of Voc for modules in series must not exceed the maximum system voltage of the module under any
condition, this includes at low temperature.
Reverse current applied to the modules should not exceed 7 A under any circumstances.
UL: Modules installed in a parallel will be provided with the listed maximum series fuse, as specified.
3.5 Mechanical Data
Dimensions (L x W x H)
1,257 x 977 x 35 mm (49.5 x 38.5 x 1.4 in)
Weight
20.0 kg (44.1 lbs) / 16.3 kg/m
2
(3.3 lbs/ft
2
)
Module Operating Temperature
- 40 °C to 85 °C
Application Class on IEC61730
Class A
Fire Safety Class on IEC61730*
1
Class C
Safety Class on IEC61140
膻
Module Fire Performance
Type1
Cable
2.5 mm
2
/ 14 AWG (Halogen Free)
Snow Load (to the front of the module) *
2
2,400 Pa (IEC61646) / 1,600 Pa design load (UL1703)
Wind Load (to the back of the module)
2,400 Pa (IEC61646) /1,600 Pa design load (UL1703)
*1 UL: The fire rating of this module is valid only when mounted in the manner specified in the mechanical mounting instructions.
*2 UL: The load applied to a module under UL testing conditions is 1.5 times greater than the module
’
s design load. Accordingly, 2,400
Pa (50 lbs /ft
2
) is loaded to test the 1,600 Pa (33.4 lbs /ft
2
) UL design load .
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