Item# 1050
GE Energy - GEPV-165-M Solar Power Module
Our solar module product line spans a range from 30 to 165 watts.
All modules are designed and manufactured to meet international
safety and performance certifications. The modules feature heavy
duty anodized frames to give strength and convenient
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Our Most Powerful Performer
Designed for optimum use in residential and
commercial grid tie applications, the GEPV-165-M
solar module contains 54 single-crystal cells
connected in series, and generates a peak power of
165 watts at 25.0 volts.
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• Exacting tolerances of �5
percent ensure the module satisfies maximum
rated power output
• Robust and lightweight anodized aluminum
frame with pre-drilled holes for quick
installation
• Engineered for the most rugged
environments including hail, snow and ice
storms
• Supplied with industry standard
multi-contact connectors
Electrical Performance
I-V parameters are rated
at standard test conditions (irradiance of
1,000 W/m, AM 1.5 G, cell temperature 77� F
/ 25� C). As with all single-crystal PV
modules, light-induced degradation may cause
the module power to decrease about three
percent from the typical maximum during the
stabilization process that occurs during the
first few days in service. All measurements
are guaranteed at the laminate leads.

Physical Characteristics

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Robust & Aesthetic
Designed for optimum use in residential
applications, the
GEPV-055-G Building Integrated Module contains 18
single-crystal cells connected in series, and
generates a peak power of 55 watts at 8.4 volts.
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• Exacting tolerances of �5 percent ensure
the module satisfies maximum rated power
output
• Robust and lightweight anodized aluminum
frame with pre-drilled holes for quick
installation
• Engineered to integrate seamlessly into
tile roofing
• Compatible with MonierLifetile™, Hanson�
and Eagle� roof tiles
Electrical Performance
I-V parameters are rated
at standard test conditions (irradiance of
1,000 W/m, AM 1.5 G, cell temperature 77� F
/ 25� C). As with all single-crystal PV
modules, light-induced degradation may cause
the module power to decrease about three
percent from the typical maximum during the
stabilization process that occurs during the
first few days in service. All measurements
are guaranteed at the laminate leads.

Physical Characteristics

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