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Avdio ojačevalnik
ID Matjašič, Anže (Author), ID Bürmen, Arpad (Mentor) More about this mentor... This link opens in a new window, ID Olenšek, Jernej (Comentor)

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Abstract
Diplomsko delo obsega teoretično ozadje, zasnovo, načrtovanje in izdelavo tiskanega vezja močnostnega avdio ojačevalnika. Vezje pred načrtovanjem tiskanine preizkusimo s simulacijskimi orodji. Sledijo prototipna izvedba, izdelava tiskanine in dokončanje tiskanega vezja s spajkanjem elementov. Med simulacijo s programskim orodjem SPICE in med praktičnim preizkušanjem prototipnega vezja smo naleteli na omejitve, za katere smo poiskali rešitve ter vezje sproti spreminjali. Ob tem smo spremenili osnovno topologijo vezja in tako zagotovili večjo stabilnost. Vezje sestavlja operacijski ojačevalnik z vhodnim filtrom, nakar peljemo signal na izhodno ojačevalno stopnjo razreda AB v Darlingtonovi vezavi. Ima nastavljivo povratno vezavo, ki določa ojačenje. Nastavljiva je tudi ravnotežna napetost med obema izhodnima Darlingtonovima vezavama, ki vpliva na glajenje signala pri prehodu skozi ničlo, popačenje ojačenega izhodnega signala in s tem kakovost ojačevalnika. Zaradi relativno velike porabe ojačevalnika v AB razredu smo kot končno verzijo zagotovili tiskanino, ki z distančniki omogoča pritrditev na hladilnik z ventilatorjem za odvajanje toplote. Ventilator ima nastavljivo regulacijsko vezje. Izvedli smo meritve, s čimer smo preverili zmogljivosti vezja in dobili vpogled v možne izboljšave.

Language:Slovenian
Keywords:močnostni, vezje, simulacija, popačenje, tiskanina
Work type:Bachelor thesis/paper
Organization:FE - Faculty of Electrical Engineering
Year:2024
PID:20.500.12556/RUL-161596 This link opens in a new window
Publication date in RUL:12.09.2024
Views:42
Downloads:1305
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Secondary language

Language:English
Title:Audio amplifier
Abstract:
The thesis encompasses the theoretical background, design and production of the printed circuit board (PCB) for a power audio amplifier. The circuit is tested with simulation tools before designing the PCB. This is followed by prototype implementation, PCB fabrication, and completion of the circuit by soldering the components. During the simulation with the SPICE software tool and the practical testing of the prototype circuit, we encountered limitations for which we found solutions and modified the circuit accordingly. We changed the topology of the circuit to ensure greater stability. The circuit consists of an operational amplifier with an input filter, followed by a class AB output amplifier stage in a Darlington configuration. The circuit features an adjustable feedback loop that determines the gain. The bias voltage is also adjustable, which affects the distortion of the amplified output signal and thus the quality of the amplifier. Due to the relatively high power consumption of the class AB amplifier, we designed the final version of the PCB to be mountable on a heatsink with a fan using spacers for proper heat dissipation. The fan has an adjustable speed regulation circuit. We conducted measurements to verify the performance of the circuit and to gain insight into possible improvements.

Keywords:power, circuit, simulation, distortion, PCB

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