EUT Test Setup Photographs: Radiated and Conducted Emission

Test Setup Photos 3

This document presents a series of photographs detailing the test setup used for evaluating the Electromagnetic Compatibility (EMC) performance of the Equipment Under Test (EUT). The images showcase the configurations employed for both radiated and conducted emission testing, adhering to relevant industry standards and regulatory requirements.

The radiated emission setups cover a range of frequency bands, including 9KHz-30MHz, 30MHz-1GHz, and above 1GHz, each utilizing appropriate antennas and measurement equipment to capture emissions from the EUT. The conducted emission setup illustrates the configuration used to measure emissions conducted through power and signal cables.

These photographs provide a visual record of the test environment and equipment placement, ensuring transparency and traceability in the EMC testing process. The setups are designed to simulate real-world operating conditions and accurately assess the EUT's potential to cause interference with other electronic devices.


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This document presents a series of photographs detailing the test setup used for evaluating the Electromagnetic Compatibility (EMC) performance of the Equipment Under Test (EUT). The images showcase the configurations employed for both radiated and conducted emission testing, adhering to relevant industry standards and regulatory requirements.

The radiated emission setups cover a range of frequency bands, including 9KHz-30MHz, 30MHz-1GHz, and above 1GHz, each utilizing appropriate antennas and measurement equipment to capture emissions from the EUT. The conducted emission setup illustrates the configuration used to measure emissions conducted through power and signal cables.

These photographs provide a visual record of the test environment and equipment placement, ensuring transparency and traceability in the EMC testing process. The setups are designed to simulate real-world operating conditions and accurately assess the EUT's potential to cause interference with other electronic devices.

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