ASTM E 1125 : 2016
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
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Standard Test Method for Calibration of Primary Non-Concentrator Terrestrial Photovoltaic Reference Cells Using a Tabular Spectrum
Hardcopy , PDF
18-08-2020
English
01-07-2016
Committee |
E 44
|
DocumentType |
Test Method
|
Pages |
10
|
PublisherName |
American Society for Testing and Materials
|
Status |
Superseded
|
SupersededBy | |
Supersedes |
1.1This test method is intended for calibration and characterization of primary terrestrial photovoltaic reference cells to a desired reference spectral irradiance distribution, such as Tables G173. The recommended physical requirements for these reference cells are described in Specification E1040. Reference cells are principally used in the determination of the electrical performance of photovoltaic devices.
1.2Primary photovoltaic reference cells are calibrated in natural sunlight using the relative quantum efficiency of the cell, the relative spectral distribution of the sunlight, and a tabulated reference spectral irradiance distribution. Selection of the reference spectral irradiance distribution is left to the user.
1.3This test method requires the use of a pyrheliometer that is calibrated according to Test Method E816, which requires the use of a pyrheliometer that is traceable to the World Radiometric Reference (WRR). Therefore, reference cells calibrated according to this test method are traceable to the WRR.
1.4This test method is used to calibrate primary reference cells; Test Method E1362 may be used to calibrate secondary and non-primary reference cells (these terms are defined in Terminology E772).
1.5This test method applies only to the calibration of a photovoltaic cell that shows a linear dependence of its short-circuit current on irradiance over its intended range of use, as defined in Test Method E1143.
1.6This test method applies only to the calibration of a reference cell fabricated with a single photovoltaic junction.
1.7The values stated in SI units are to be regarded as standard. No other units of measurement are included in this standard.
1.8This 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.
ASTM E 772 : 2015 | Standard Terminology of Solar Energy Conversion |
ASTM E 1040 : 2010 : R2016 | Standard Specification for Physical Characteristics of Nonconcentrator Terrestrial Photovoltaic Reference Cells |
ASTM E 2236 : 2010 : R2019 | Standard Test Methods for Measurement of Electrical Performance and Spectral Response of Nonconcentrator Multijunction Photovoltaic Cells and Modules |
ASTM E 973 : 2016 | Standard Test Method for Determination of the Spectral Mismatch Parameter Between a Photovoltaic Device and a Photovoltaic Reference Cell |
ASTM E 948 : 2016 | Standard Test Method for Electrical Performance of Photovoltaic Cells Using Reference Cells Under Simulated Sunlight |
ASTM E 1040 : 2010 : R2016 | Standard Specification for Physical Characteristics of Nonconcentrator Terrestrial Photovoltaic Reference Cells |
ASTM E 1040 : 2005 | Standard Specification for Physical Characteristics of Nonconcentrator Terrestrial Photovoltaic Reference Cells |
ASTM E 1021 : 2015 : R2019 | Standard Test Method for Spectral Responsivity Measurements of Photovoltaic Devices |
ASTM E 1362 : 2015 | Standard Test Methods for Calibration of Non-Concentrator Photovoltaic Non-Primary Reference Cells |
ASTM E 1143 : 1999 | Standard Test Method for Determining the Linearity of a Photovoltaic Device Parameter with Respect To a Test Parameter |
ASTM E 1143 : 2005 : R2019 | Standard Test Method for Determining the Linearity of a Photovoltaic Device Parameter with Respect To a Test Parameter |
ASTM E 2554 : 2013 | Standard Practice for Estimating and Monitoring the Uncertainty of Test Results of a Test Method Using Control Chart Techniques |
ASTM E 1021 : 2012 | Standard Test Method for Spectral Responsivity Measurements of Photovoltaic Devices |
ASTM E 1362 : 1999 | Standard Test Method for Calibration of Non-Concentrator Photovoltaic Secondary Reference Cells |
ASTM E 1143 : 2005 : R2015 | Standard Test Method for Determining the Linearity of a Photovoltaic Device Parameter with Respect To a Test Parameter |
ASTM E 1021 : 2006 | Standard Test Method for Spectral Responsivity Measurements of Photovoltaic Devices |
ASTM E 2554 : 2018 : EDT 1 | Standard Practice for Estimating and Monitoring the Uncertainty of Test Results of a Test Method Using Control Chart Techniques |
ASTM E 1143 : 2005 | Standard Test Method for Determining the Linearity of a Photovoltaic Device Parameter with Respect To a Test Parameter |
ASTM E 1362 : 2005 | Standard Test Method for Calibration of Non-Concentrator Photovoltaic Secondary Reference Cells |
ASTM E 1040 : 2010 | Standard Specification for Physical Characteristics of Nonconcentrator Terrestrial Photovoltaic Reference Cells |
ASTM E 1362 : 2015 : R2019 | Standard Test Methods for Calibration of Non-Concentrator Photovoltaic Non-Primary Reference Cells |
ASTM E 2554 : 2007 | Standard Practice for Estimating and Monitoring the Uncertainty of Test Results of a Test Method in a Single Laboratory Using a Control Sample Program |
ASTM E 1040 : 1998 | Standard Specification for Physical Characteristics of Nonconcentrator Terrestrial Photovoltaic Reference Cells |
ASTM E 1021 : 1995 | Standard Test Methods for Measuring Spectral Response of Photovoltaic Cells |
ASTM E 2554 : 2018 | Standard Practice for Estimating and Monitoring the Uncertainty of Test Results of a Test Method Using Control Chart Techniques |
ASTM E 1362 : 2010 | Standard Test Method for Calibration of Non-Concentrator Photovoltaic Secondary Reference Cells |
ASTM E 1021 : 2015 | Standard Test Method for Spectral Responsivity Measurements of Photovoltaic Devices |
ASTM E 1143 : 2005 : R2010 | Standard Test Method for Determining the Linearity of a Photovoltaic Device Parameter with Respect To a Test Parameter |
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