How do you do EMI conducted immunity test with LISUN emi receiver?
Testing for electromagnetic compatibility (EMC) known as EMI conducted immunity evaluates the capacity of electronic equipment to tolerate interference from conducted electromagnetic fields. EMC testing is another name for electromagnetic compatibility testing. The following procedures are what you should normally do in order to carry out this test using a LISUN EMI receiver:
- Get the equipment that will be tested (EUT) ready: Ensure that the LED light and its driver are correctly connected to the power source, then set up the apparatus in the testing area and check that it is operating well.
- Connect the LISUN EMI receiver to the EUT's power line. Connect the EMI receiver to the EUT's power line in accordance with the instructions provided by the manufacturer.
- Configure the test settings by using the control software that comes with the EMI receiver to configure the test frequency range, the frequency step, and any other pertinent parameters.
- Launch the exam by saying: Start the test by using the software that came with the EMI receiver and be sure to record the findings for each frequency step. The EMI receiver is going to produce a conducted emission spectrum and offer information on the amount of electromagnetic interference that the EUT is going to emit.
- Consider the following while you do so: When the findings are compared to the applicable requirements for electromagnetic compatibility, we may establish whether or not the EUT satisfies the requisite immunity levels.
- If the EUT does not achieve the specified levels, the test must be repeated with adjustments to the EUT's design or components until it passes the test. If this occurs, the test must be repeated as many times as necessary.
- The EMI performed immunity test is a vital step that must be taken in order to guarantee that electronic equipment, such as LED lights and their drivers, will work in a dependable manner and will not interfere with the operation of other electronic devices.
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