This document presents calibration reports for COMOSAR reference dipoles, specifically for frequencies 750MHz, 835MHz, and 1800MHz. These dipoles are manufactured by MVG and are designed for use with the COMOSAR test bench for SAR measurement system validations. The reports detail the methods and results of accredited SAR reference dipole calibrations performed by MVG, ensuring traceability to national metrology institutions.
The calibration process adheres to the requirements set forth by the IEC/IEEE 62209-1528 and FCC KDB865664 D01 standards. Key aspects of the calibration include mechanical dimension verification, S11 parameter assessment, and SAR measurements in head liquid. Measurement uncertainties are carefully evaluated and reported. The reports include detailed equipment lists, calibration dates, and validation results, confirming the compliance of the dipoles with established standards for SAR measurement accuracy.
Each report provides specific data for the dipole under test, including its serial number, model, and product condition. The calibration results encompass mechanical dimensions, S11 parameter measurements in head liquid, and SAR values normalized to 1W forward power. These results are compared against target values to ensure the dipole meets the required performance criteria for SAR system validation.
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The calibration process adheres to the requirements set forth by the IEC/IEEE 62209-1528 and FCC KDB865664 D01 standards. Key aspects of the calibration include mechanical dimension verification, S11 parameter assessment, and SAR measurements in head liquid. Measurement uncertainties are carefully evaluated and reported. The reports include detailed equipment lists, calibration dates, and validation results, confirming the compliance of the dipoles with established standards for SAR measurement accuracy.
Each report provides specific data for the dipole under test, including its serial number, model, and product condition. The calibration results encompass mechanical dimensions, S11 parameter measurements in head liquid, and SAR values normalized to 1W forward power. These results are compared against target values to ensure the dipole meets the required performance criteria for SAR system validation.
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