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Izdelava M3 sklopno razklopnega vezja
ID Frankovič, Žiga (Author), ID Begeš, Gaber (Mentor) More about this mentor... This link opens in a new window

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Abstract
V diplomskem delu je obravnavan standard IEC 61000-4-6:2023, ki določa preizkusne metode odpornosti elektronskih naprav na radio frekvenčne prevodne motnje. Poudarek je na vlogi sklopno-razklopnih vezij (CDN), ki omogočajo natančno, ponovljivo in standardizirano vsiljevanje motenj v preizkušano napravo. Predstavljene so različne vrste CDN ter njihov pomen pri zagotavljanju elektromagnetne združljivosti (EMC). Glavni cilj naloge je bila izdelava sklopno-razklopnega vezja tipa M3, skladnega s standardom, z namenom zagotavljanja ustrezne skupne impedance v območju od 150 kHz do 230 MHz. V praktičnem delu je bilo vezje izdelano, nadgrajeno z ustreznimi feritnimi elementi ter vgrajeno v prilagojeno ohišje. Meritve izvedene s pomočjo vektorskega analizatorja so potrdile, da vezje ohranja predpisano impedanco 150 Ω ± tolerance v celotnem frekvenčnem območju, kar potrjuje skladnost z zahtevami standarda. Rezultati potrjujejo, da je z ustrezno izbiro komponent in premišljeno izvedbo mogoče izdelati funkcionalno CDN-M3 vezje, primerno za preizkušanje elektromagnetne odpornosti elektronskih naprav. Delo prinaša tako teoretični vpogled v področje EMC kot tudi praktične izkušnje pri načrtovanju, izdelavi in merjenju sklopno-razklopnih vezij.

Language:Slovenian
Keywords:elektromagnetna združljivost, sklopno-razklopno vezje, IEC 61000-4-6, CDN-M3, prevodne motnje.
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FE - Faculty of Electrical Engineering
Year:2025
PID:20.500.12556/RUL-174248 This link opens in a new window
COBISS.SI-ID:262553347 This link opens in a new window
Publication date in RUL:30.09.2025
Views:129
Downloads:22
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Secondary language

Language:English
Title:Making an M3 transducer circuit
Abstract:
This assigment focuses on the IEC 61000-4-6:2023 standard, which defines test methods for assessing the immunity of electronic devices to radio-frequency conducted disturbances. Special attention is given to the role of coupling/decoupling networks (CDNs), which enable precise, repeatable, and standardized injection of disturbances into the equipment under test. Different types of CDNs and their importance in ensuring electromagnetic compatibility (EMC) are presented. The main objective of the thesis was to design and build an M3-type coupling/decoupling network compliant with the standard, ensuring the required common-mode impedance up to 230 MHz. In the practical part, the circuit was constructed, optimized with ferrite components, and mounted into a custom enclosure. Measurements performed with a vector network analyzer confirmed that the device maintained the prescribed 150 Ω ± tolerance across the entire frequency range, thereby fulfilling the requirements of the standard. The results demonstrate that with proper component selection and careful design, it is possible to construct a functional CDN-M3 suitable for testing the electromagnetic immunity of electronic equipment. The work thus combines a theoretical overview of EMC with valuable practical experience in designing, building, and testing coupling/decoupling networks.

Keywords:electromagnetic compatibility, coupling/decoupling network, IEC 61000-4-6, CDN-M3, conducted disturbances.

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