BCTC SAR Reference Dipole Calibration Report

SAR Test Report 3

This document presents a comprehensive SAR (Specific Absorption Rate) reference dipole calibration report, meticulously prepared by BCTC (Shenzhen BCTC Technology Co., Ltd.). The report details the methodologies and outcomes of an accredited calibration process, adhering strictly to the guidelines set forth by IEC/IEEE 62209-1528 and FCC KDB865664 D01 standards. The calibration was performed using the COMOSAR test bench, ensuring traceability to national metrology institutions.

The report encompasses a detailed examination of various parameters, including return loss, impedance, and mechanical dimensions of the dipole. It also presents the measurement uncertainty analysis, calibration results in both air and liquid, and validation measurements in head and body simulating liquids. The document provides a thorough assessment of the dipole's performance, ensuring its suitability for accurate SAR measurements in compliance testing and regulatory evaluations.

The calibration process involves rigorous testing and analysis to guarantee the dipole's reliability and accuracy in SAR measurement systems. The report serves as a critical reference for ensuring the validity and integrity of SAR testing procedures.


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tags: ["SID750", "SID835", "SID1800", "SID1900", "SID2600", "SID5000", "EPGO420", "DIP 0G750-620", "DIP 0G835-621", "DIP 1G800-623", "DIP 1G900-624"]
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This document presents a comprehensive SAR (Specific Absorption Rate) reference dipole calibration report, meticulously prepared by BCTC (Shenzhen BCTC Technology Co., Ltd.). The report details the methodologies and outcomes of an accredited calibration process, adhering strictly to the guidelines set forth by IEC/IEEE 62209-1528 and FCC KDB865664 D01 standards. The calibration was performed using the COMOSAR test bench, ensuring traceability to national metrology institutions.

The report encompasses a detailed examination of various parameters, including return loss, impedance, and mechanical dimensions of the dipole. It also presents the measurement uncertainty analysis, calibration results in both air and liquid, and validation measurements in head and body simulating liquids. The document provides a thorough assessment of the dipole's performance, ensuring its suitability for accurate SAR measurements in compliance testing and regulatory evaluations.

The calibration process involves rigorous testing and analysis to guarantee the dipole's reliability and accuracy in SAR measurement systems. The report serves as a critical reference for ensuring the validity and integrity of SAR testing procedures.

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