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DKE German Commission for Electrical, Electronic & Information Technologies of DIN and VDE
DIN EN 50413 ; VDE 0848-1:2020-10 [CURRENT] references following documents:
Document number | Edition | Title |
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DIN EN 62232 ; VDE 0848-232:2019-08 | 2019-08 | Determination of RF field strength, power density and SAR in the vicinity of radiocommunication base stations for the purpose of evaluating human exposure (IEC 62232:2017); German version EN 62232:2017, with CD-ROM More |
EN 50499 | 2019-10 | Procedure for the assessment of the exposure of workers to electromagnetic fields More |
EN 50647 | 2017-06 | Basic standard for the evaluation of workers' exposure to electric and magnetic fields from equipment and installations for the production, transmission and distribution of electricity More |
EN 62110 | 2009-12 | Electric and magnetic field levels generated by AC power systems - Measurement procedures with regard to public exposure (IEC 62110:2009) More |
EN 62226-2-1 | 2005-01 | Exposure to electric and magnetic fields in the low and intermediate frequency range - Methods for calculating the current density and internal electric field induced in the human body by electric or magnetic fields induced in the human body - Part 2-1: Exposure to magnetic fields - 2D models (IEC 62226-2-1:2004) More |
EN 62226-3-1 | 2007-09 | Exposure to electric or magnetic fields in the low and intermediate frequency range - Methods for calculating the current density and internal electric field induced in the human body - Part 3-1: Exposure to electric fields - Analytical and 2D numerical models (IEC 62226-3-1:2007) More |
IEC 61786-2 | 2014-12 | Measurement of DC magnetic, AC magnetic and AC electrical fields from 1 Hz to 100 kHz with regard to exposure of human beings - Part 2: Basic standard for measurements - Proposed Horizontal Standard More |
IEC/IEEE 62704-2 | 2017-06 | Determining the peak spatial-average specific absorption rate (SAR) in the human body from wireless communications devices, 30 MHz to 6 GHz - Part 2: Specific requirements for finite difference time domain (FDTD) modelling of exposure from vehicle mounted antennas More |
IEC/IEEE 62704-3 | 2017-10 | Determining the peak spatial-average specific absorption rate (SAR) in the human body from wireless communications devices, 30 MHz to 6 GHz - Part 3: Specific requirements for using the finite difference time domain (FDTD) method for SAR calculations of mobile phones More |
ISO/IEC 17025 | 2017-11 | General requirements for the competence of testing and calibration laboratories More |