LTE Band 12 Frequency Stability Test Results

Annex A.5 LTE Band 12_2

This document presents the frequency stability test results for LTE Band 12, conducted according to relevant standards. The tests were performed using QPSK modulation with various RB configurations, specifically 50RB#0, across different channels (23095, 23060, 23155, and 23130). The voltage conditions tested include VN, VL, and VH, while temperature variations ranged from -30°C to +50°C.

The results include measurements of frequency deviation in both Hertz (Hz) and parts per million (ppm), along with the specified limit. The FL (lower frequency limit), FH (higher frequency limit), and the verdict (PASS/FAIL) are also provided for each test case. The data confirms that the device meets the frequency stability requirements under the tested conditions, ensuring reliable performance within the LTE Band 12 spectrum.

The tests were conducted to ensure compliance with regulatory requirements and to validate the device's ability to maintain stable frequency operation under varying environmental conditions. The results demonstrate the device's robustness and suitability for deployment in real-world scenarios.


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tags: ["LTE Band 12", "Frequency Stability", "QPSK", "23095", "23060", "23155", "23130", "50RB#0", "RB Configuration", "VN", "VL", "VH", "NV"]
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This document presents the frequency stability test results for LTE Band 12, conducted according to relevant standards. The tests were performed using QPSK modulation with various RB configurations, specifically 50RB#0, across different channels (23095, 23060, 23155, and 23130). The voltage conditions tested include VN, VL, and VH, while temperature variations ranged from -30°C to +50°C.

The results include measurements of frequency deviation in both Hertz (Hz) and parts per million (ppm), along with the specified limit. The FL (lower frequency limit), FH (higher frequency limit), and the verdict (PASS/FAIL) are also provided for each test case. The data confirms that the device meets the frequency stability requirements under the tested conditions, ensuring reliable performance within the LTE Band 12 spectrum.

The tests were conducted to ensure compliance with regulatory requirements and to validate the device's ability to maintain stable frequency operation under varying environmental conditions. The results demonstrate the device's robustness and suitability for deployment in real-world scenarios.

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