This document presents the RF test data for conducted measurements on a 2.4G WiFi module. The tests were performed on the MK-LR model, a thermal imaging scope equipped with laser ranging capabilities. The report includes detailed measurements and analysis of key RF parameters, ensuring compliance with regulatory standards.
The tests cover a range of essential characteristics, including -6dB bandwidth, maximum conducted output power, power spectral density, band edge compliance, and conducted RF spurious emissions. Each test is conducted under controlled environmental conditions, with temperature, relative humidity, and atmospheric pressure carefully monitored and recorded. The test setup and procedures are designed to provide accurate and reliable results, ensuring the device meets the required performance specifications.
The data presented in this report provides a comprehensive assessment of the RF performance of the 2.4G WiFi module in the MK-LR thermal imaging scope. The results demonstrate the device's ability to operate within the specified frequency bands and power limits, while maintaining acceptable levels of spurious emissions and band edge compliance. This information is crucial for regulatory approval and ensuring the device's reliable operation in real-world scenarios.
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The tests cover a range of essential characteristics, including -6dB bandwidth, maximum conducted output power, power spectral density, band edge compliance, and conducted RF spurious emissions. Each test is conducted under controlled environmental conditions, with temperature, relative humidity, and atmospheric pressure carefully monitored and recorded. The test setup and procedures are designed to provide accurate and reliable results, ensuring the device meets the required performance specifications.
The data presented in this report provides a comprehensive assessment of the RF performance of the 2.4G WiFi module in the MK-LR thermal imaging scope. The results demonstrate the device's ability to operate within the specified frequency bands and power limits, while maintaining acceptable levels of spurious emissions and band edge compliance. This information is crucial for regulatory approval and ensuring the device's reliable operation in real-world scenarios.
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