SAR Reference Dipole Calibration Reports by MVG

Test report SAR4

This document provides a comprehensive overview of SAR (Specific Absorption Rate) reference dipole calibration reports generated by Microwave Vision Group (MVG) in collaboration with NTEK. These reports are essential for ensuring the accuracy and reliability of SAR measurement systems used in evaluating the safety of wireless devices.

The reports detail the calibration process for various COMOSAR reference dipoles, including models SID750, SID835, and SID1800. The calibration procedures adhere to stringent industry standards, including IEC/IEEE 62209-1528 and FCC KDB865664 D01, ensuring compliance with regulatory requirements. Each report includes detailed measurements of mechanical dimensions, S11 parameters, and SAR values in both head liquid, providing a thorough assessment of the dipole's performance.

The calibration results presented in these reports are traceable to national metrology institutions, guaranteeing the accuracy and validity of the measurements. This information is crucial for manufacturers and testing laboratories involved in SAR testing and certification of wireless devices.


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tags: ["SID750", "SID835", "SID1800", "COMOSAR", "IEC/IEEE 62209-1528", "FCC KDB865664 D01", "Certificate #4298.01", "SN 03/15DIP0G750-355", "SN 03/15DIP0G835-347", "SN 03/15DIP1G800-349"]
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This document provides a comprehensive overview of SAR (Specific Absorption Rate) reference dipole calibration reports generated by Microwave Vision Group (MVG) in collaboration with NTEK. These reports are essential for ensuring the accuracy and reliability of SAR measurement systems used in evaluating the safety of wireless devices.

The reports detail the calibration process for various COMOSAR reference dipoles, including models SID750, SID835, and SID1800. The calibration procedures adhere to stringent industry standards, including IEC/IEEE 62209-1528 and FCC KDB865664 D01, ensuring compliance with regulatory requirements. Each report includes detailed measurements of mechanical dimensions, S11 parameters, and SAR values in both head liquid, providing a thorough assessment of the dipole's performance.

The calibration results presented in these reports are traceable to national metrology institutions, guaranteeing the accuracy and validity of the measurements. This information is crucial for manufacturers and testing laboratories involved in SAR testing and certification of wireless devices.

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