This report presents the RF test data for Bluetooth (BT) conducted measurements on the White Noise Generator, model PXBR-000072. The tests were conducted under controlled environmental conditions, with a temperature of 23.8°C, relative humidity of 52.1%, and atmospheric pressure of 100.0 kPa. The testing was performed by Jay Luo and supervised by Nick Peng.
The report includes detailed measurements for various BT parameters, including -20dB bandwidth, maximum peak conducted output power, carrier frequencies separation, dwell time, number of hopping channels, and band edge compliance. The data covers different modes (1-DH5, 2-DH5, 3-DH5) and frequencies (2402 MHz, 2441 MHz, 2480 MHz). The results indicate that the device complies with the relevant regulatory limits for each test.
Specific tests include -20dB bandwidth measurements, which range from 0.943 MHz to 1.31 MHz, all passing the N/A limit. Maximum peak conducted output power measurements are also detailed, with values ranging from 0.4 dBm to 1.04 dBm, all passing the 21 dBm limit. Carrier frequencies separation, dwell time, and number of hopping channels are also within acceptable limits. Band edge compliance is demonstrated through detailed measurements and spectrum analyzer plots.
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The report includes detailed measurements for various BT parameters, including -20dB bandwidth, maximum peak conducted output power, carrier frequencies separation, dwell time, number of hopping channels, and band edge compliance. The data covers different modes (1-DH5, 2-DH5, 3-DH5) and frequencies (2402 MHz, 2441 MHz, 2480 MHz). The results indicate that the device complies with the relevant regulatory limits for each test.
Specific tests include -20dB bandwidth measurements, which range from 0.943 MHz to 1.31 MHz, all passing the N/A limit. Maximum peak conducted output power measurements are also detailed, with values ranging from 0.4 dBm to 1.04 dBm, all passing the 21 dBm limit. Carrier frequencies separation, dwell time, and number of hopping channels are also within acceptable limits. Band edge compliance is demonstrated through detailed measurements and spectrum analyzer plots.
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