LTE Band 13 Effective Radiated Power & Frequency Stability Test

Annex A.5 LTE Band 13

This document presents the test results for Effective (Isotropic) Radiated Power (EIRP) and frequency stability of devices operating in LTE Band 13. The report, identified as PD20250041-R3A, details the testing procedures and outcomes, confirming compliance with regulatory limits.

The tests were conducted using various modulation schemes, including QPSK and 16QAM, across different channels (23205, 23230, and 23255) and Resource Block (RB) configurations. The EIRP measurements, including gain, were recorded and compared against the specified limits, with all tests resulting in a 'PASS' verdict.

Furthermore, the frequency stability of the devices was evaluated under varying temperature and voltage conditions. The frequency deviation was measured and compared against the allowable limits, ensuring that the devices maintain stable operation within the specified frequency band. The results demonstrate that the devices meet the required frequency stability criteria, contributing to reliable communication performance.


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tags: ["LTE Band 13", "PD20250041-R3A", "QPSK", "16QAM", "23205", "23230", "23255"]
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This document presents the test results for Effective (Isotropic) Radiated Power (EIRP) and frequency stability of devices operating in LTE Band 13. The report, identified as PD20250041-R3A, details the testing procedures and outcomes, confirming compliance with regulatory limits.

The tests were conducted using various modulation schemes, including QPSK and 16QAM, across different channels (23205, 23230, and 23255) and Resource Block (RB) configurations. The EIRP measurements, including gain, were recorded and compared against the specified limits, with all tests resulting in a 'PASS' verdict.

Furthermore, the frequency stability of the devices was evaluated under varying temperature and voltage conditions. The frequency deviation was measured and compared against the allowable limits, ensuring that the devices maintain stable operation within the specified frequency band. The results demonstrate that the devices meet the required frequency stability criteria, contributing to reliable communication performance.

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