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ASTM International - ASTM E1171-15

Standard Test Methods for Photovoltaic Modules in Cyclic Temperature and Humidity Environments

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Organization: ASTM International
Publication Date: 1 February 2015
Status: inactive
Page Count: 4
ICS Code (Solar energy engineering): 27.160
significance And Use:

4.1 The useful life of photovoltaic modules may depend on their ability to withstand repeated temperature cycling with varying amounts of moisture in the air. These test methods provide procedures... View More

scope:

1.1 These test methods provide procedures for stressing photovoltaic modules in simulated temperature and humidity environments. Environmental testing is used to simulate aging of module materials on an accelerated basis.

1.2 Three individual environmental test procedures are defined by these test methods: a thermal cycling procedure, a humidity-freeze cycling procedure, and an extended duration damp heat procedure. Electrical biasing is utilized during the thermal cycling procedure to simulate stresses that are known to occur in field-deployed modules.

1.3 These test methods define mounting methods for modules undergoing environmental testing, and specify parameters that must be recorded and reported.

1.4 These test methods do not establish pass or fail levels. The determination of acceptable or unacceptable results is beyond the scope of these test methods.

1.5 Any of the individual environmental tests may be performed singly, or may be combined into a test sequence with other environmental or non-environmental tests, or both. Certain pre-conditioning tests such as annealing or light soaking may also be necessary or desirable as part of such a sequence. The determination of any such sequencing and pre-conditioning is beyond the scope of this test method.

1.6 These test procedures are limited in duration and therefore the results of these tests cannot be used to determine photovoltaic module lifetimes.

1.7 The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.

1.8 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.

Document History

April 1, 2019
Standard Test Methods for Photovoltaic Modules in Cyclic Temperature and Humidity Environments
4.1 The useful life of photovoltaic modules may depend on their ability to withstand repeated temperature cycling with varying amounts of moisture in the air. These test methods provide procedures...
ASTM E1171-15
February 1, 2015
Standard Test Methods for Photovoltaic Modules in Cyclic Temperature and Humidity Environments
4.1 The useful life of photovoltaic modules may depend on their ability to withstand repeated temperature cycling with varying amounts of moisture in the air. These test methods provide procedures...
April 1, 2009
Standard Test Methods for Photovoltaic Modules in Cyclic Temperature and Humidity Environments
The useful life of photovoltaic modules may depend on their ability to withstand repeated temperature cycling with varying amounts of moisture in the air. These test methods provide procedures for...
March 1, 2004
Standard Test Methods for Photovoltaic Modules in Cyclic Temperature and Humidity Environments
1.1 These test methods provide procedures for stressing photovoltaic modules in simulated temperature and humidity environments. Environmental testing is used to simulate aging of module materials on...
June 10, 2001
Standard Test Method for Photovoltaic Modules in Cyclic Temperature and Humidity Environments
1.1 These test methods provide procedures for stressing photovoltaic modules in simulated temperature and humidity environments. Environmental testing is used to simulate aging of module materials on...
June 10, 2001
Standard Test Method for Photovoltaic Modules in Cyclic Temperature and Humidity Environments
1.1 These test methods provide procedures for stressing photovoltaic modules in simulated temperature and humidity environments. Environmental testing is used to simulate aging of module materials on...
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