RF Test Data for BT LE Conducted Measurement - Smartphone L68C

Appendix B Test Data for BT LE FCC ID

This document presents the Radio Frequency (RF) test data for Bluetooth Low Energy (BT LE) conducted measurements performed on a smartphone, identified by the model number L68C. The testing was conducted by Shenzhen LCS Compliance Testing Laboratory Ltd., and the report number is LCSA01025169EB. The device's FCC ID is 055680125.

The report includes detailed measurements and analysis of various RF parameters, such as -6dB bandwidth, maximum peak conducted output power, power spectral density, band edge compliance, and spurious emissions. The environmental conditions during testing were carefully controlled, with a temperature of 24.6°C, relative humidity of 53.2%, and atmospheric pressure of 100.0 kPa. The tests were conducted by Jay Luo and supervised by Nick Peng.

The data presented in this report is crucial for verifying the device's compliance with regulatory standards and ensuring its proper operation within the specified frequency bands. The results provide valuable insights into the device's RF performance characteristics and its suitability for use in various wireless communication scenarios.


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tags: ["smartphone", "L68C", "055680125", "LCSA01025169EB", "BT LE"]
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This document presents the Radio Frequency (RF) test data for Bluetooth Low Energy (BT LE) conducted measurements performed on a smartphone, identified by the model number L68C. The testing was conducted by Shenzhen LCS Compliance Testing Laboratory Ltd., and the report number is LCSA01025169EB. The device's FCC ID is 055680125.

The report includes detailed measurements and analysis of various RF parameters, such as -6dB bandwidth, maximum peak conducted output power, power spectral density, band edge compliance, and spurious emissions. The environmental conditions during testing were carefully controlled, with a temperature of 24.6°C, relative humidity of 53.2%, and atmospheric pressure of 100.0 kPa. The tests were conducted by Jay Luo and supervised by Nick Peng.

The data presented in this report is crucial for verifying the device's compliance with regulatory standards and ensuring its proper operation within the specified frequency bands. The results provide valuable insights into the device's RF performance characteristics and its suitability for use in various wireless communication scenarios.

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