This document provides a visual overview of the testing setup used to evaluate the electromagnetic compatibility (EMC) of the SolarCam D1 Classic Kit. The images illustrate the configurations for both conducted and radiated emissions testing, crucial steps in ensuring the product meets regulatory standards and operates without causing interference to other electronic devices.
Conducted emissions testing, depicted in the first image, focuses on measuring the radio frequency (RF) noise emitted through the AC power line. This setup involves connecting the SolarCam D1 Classic Kit to a power source and using specialized equipment to analyze the RF signals present on the power line within the frequency range of 150kHz to 30MHz. The second and third images showcase the radiated emissions testing setup, where the device is placed in an anechoic chamber. This chamber is designed to minimize reflections and external noise, allowing for accurate measurement of RF energy radiated by the device in the 30MHz-1GHz and above 1GHz frequency ranges. The antenna captures the radiated signals, and the data is analyzed to ensure compliance with established limits.
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Conducted emissions testing, depicted in the first image, focuses on measuring the radio frequency (RF) noise emitted through the AC power line. This setup involves connecting the SolarCam D1 Classic Kit to a power source and using specialized equipment to analyze the RF signals present on the power line within the frequency range of 150kHz to 30MHz. The second and third images showcase the radiated emissions testing setup, where the device is placed in an anechoic chamber. This chamber is designed to minimize reflections and external noise, allowing for accurate measurement of RF energy radiated by the device in the 30MHz-1GHz and above 1GHz frequency ranges. The antenna captures the radiated signals, and the data is analyzed to ensure compliance with established limits.
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