This document presents a detailed Specific Absorption Rate (SAR) testing report conducted by MORLAB for the S67L device. The report meticulously outlines the experimental conditions, methodologies, and results obtained during the SAR assessment. The primary objective is to evaluate the device's compliance with established safety standards regarding human exposure to radiofrequency (RF) electromagnetic fields.
The report includes comprehensive data on various frequency bands and operational modes, including LTE bands, ISM, and U-NII. It provides detailed information on experimental setups, including probe types, scan parameters, phantom configurations, and device positioning. Permittivity measurements, SAR surface and volume visualizations, and Z-axis scans are presented to provide a thorough understanding of the RF energy absorption characteristics of the S67L device.
The SAR values for 1g and 10g tissue masses are reported, along with variation percentages and validation criteria. The report concludes with a statement regarding the device's compliance with applicable SAR limits, ensuring its safety for consumer use. This report serves as a critical document for regulatory submissions and product certification processes.
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The report includes comprehensive data on various frequency bands and operational modes, including LTE bands, ISM, and U-NII. It provides detailed information on experimental setups, including probe types, scan parameters, phantom configurations, and device positioning. Permittivity measurements, SAR surface and volume visualizations, and Z-axis scans are presented to provide a thorough understanding of the RF energy absorption characteristics of the S67L device.
The SAR values for 1g and 10g tissue masses are reported, along with variation percentages and validation criteria. The report concludes with a statement regarding the device's compliance with applicable SAR limits, ensuring its safety for consumer use. This report serves as a critical document for regulatory submissions and product certification processes.
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