LTE Band 12 Test Report: Spurious Emission & Bandwidth Analysis

Appendix Test Data for LTE band 12 part 1

This document presents the test results for LTE Band 12, focusing on spurious emissions, bandwidth compliance, and peak-to-average power ratio (PAPR). The report includes detailed data and graphical representations for various bandwidth configurations (1.4MHz, 3MHz, 5MHz, and 10MHz) and modulation schemes (QPSK and 16QAM). The tests were conducted to ensure compliance with regulatory limits and industry standards.

The report provides a comprehensive analysis of the conducted power, antenna gain, and effective radiated power (ERP) for each configuration. Frequency stability tests were performed under varying temperature and voltage conditions to assess the robustness of the device. Modulation characteristics are evaluated through IQ constellation diagrams, ensuring signal integrity. The 99% occupied bandwidth and 26dB bandwidth are measured and presented graphically.

Spurious emission tests are conducted to verify that unwanted emissions are within acceptable limits. The peak-to-average power ratio is analyzed to ensure efficient power utilization. All test results are compared against specified limits, and a verdict (Pass/Fail) is provided for each test case. The report includes detailed test setups, procedures, and equipment used during the testing process.


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tags: ["AiTSZ-240911024FW3", "LTE Band 12", "B12", "1.4MHz", "3MHz", "5MHz", "10MHz", "QPSK", "16QAM"]
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This document presents the test results for LTE Band 12, focusing on spurious emissions, bandwidth compliance, and peak-to-average power ratio (PAPR). The report includes detailed data and graphical representations for various bandwidth configurations (1.4MHz, 3MHz, 5MHz, and 10MHz) and modulation schemes (QPSK and 16QAM). The tests were conducted to ensure compliance with regulatory limits and industry standards.

The report provides a comprehensive analysis of the conducted power, antenna gain, and effective radiated power (ERP) for each configuration. Frequency stability tests were performed under varying temperature and voltage conditions to assess the robustness of the device. Modulation characteristics are evaluated through IQ constellation diagrams, ensuring signal integrity. The 99% occupied bandwidth and 26dB bandwidth are measured and presented graphically.

Spurious emission tests are conducted to verify that unwanted emissions are within acceptable limits. The peak-to-average power ratio is analyzed to ensure efficient power utilization. All test results are compared against specified limits, and a verdict (Pass/Fail) is provided for each test case. The report includes detailed test setups, procedures, and equipment used during the testing process.

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