National Repository of Grey Literature 35 records found  1 - 10nextend  jump to record: Search took 0.00 seconds. 
Design and construction of audio power amplifier
Růžička, Jaroslav ; Kratochvíl, Tomáš (referee) ; Brančík, Lubomír (advisor)
This bachelor’s thesis is concerned with amplifier classes, integration end-level, protective circuits and concrete concept of class AB power amplifier, including concept of preamplifier and power amplifier. Features of designed circuits were simulated in PSpice software. These individual concepts of modules are connected with DPS. This thesis contains results of measurement and photos of amplifier.
Design and making of low-frequency power amplifier in class AB
Dušek, Martin ; Kratochvíl, Tomáš (referee) ; Brančík, Lubomír (advisor)
In this bachelor thesis I am occupied with low frequency amplifiers, theirs important parameters, classes and with integrations end-level. Next I am occupied with miscellaneous types of preamplifiers and additional circuits. There are simulated schemes of corrective preamplifier, protections scheme and high power amplifier in PSpice software in this thesis. These schemes and next additional modules are connected with DPS. This thesis contains result of measurement and photo functional sample.
Design of class AB audio power amplifier
Hynek, Jiří ; Kratochvíl, Tomáš (referee) ; Brančík, Lubomír (advisor)
his thesis is focused on a proposal of an audio power amplifier of class AB with minimum capacity of 2 x 80 Watt and with a possibility to control the frequency characteristics, volume and balance. An usage of this proposal is wide today. The proposal is designed to be made from common available components. This thesis includes proposal of an acceptable power supply and proposal of an active cooling elements.
Audio amplifier with switchable inputs and microcontroller control
Strážnický, Martin ; Petržela, Jiří (referee) ; Kratochvíl, Tomáš (advisor)
This thesis is about design of power amplifier in class AB. Other blocks which this thesis contains is pre-amplifier, headphones amplifier and power supplies. Otcome of this work is complete solution of amplifier include simulations.
Class D audio power amplifier with input selector
Krmela, Tomáš ; Šotner, Roman (referee) ; Kratochvíl, Tomáš (advisor)
This thesis deals with a Class D low-frequency amplifier in class D with an input selector and a tone preamplifier. The preamplifier consists of a Philips TDA1524A electrical circuit. The advantages of this circuit are the usage of simple potentiometers and the absence of potentiometer electronic noise when tuning due to the voltage control of corrections. Core power module is a STmicroelectronics TDA7490 electrical circuit. It is a stereophonic 2 x 25W Class D audio power amplifier.
Design of class AB stereo audio power amplifier
Zatloukal, Tomáš ; Polák, Ladislav (referee) ; Brančík, Lubomír (advisor)
The following work deals with design of class AB low-frequency amplifier, which is appropriately supplemented by correction Pre-amplifier and inrush protection circuit. The original schematic from prof. Leach was edited to fulfill task and to be easily completed from discrete components. The result of this work is the final design of power amplifier and correction pre-amplifier, protection circuit for speakers and power supply. As a next part, the design of printed circuit boards will be described together with assembling and mounting of boards in a construction box. Power amplifier will be verified by simulation and hardware measurements.
Vacuum tube audio amplifier
Hrubý, Ondřej ; Šandera, Josef (referee) ; Musil, Tomáš (advisor)
This bachelor´s thesis deals with a design and simulation of an audio power amplifier using vacuum tubes to process a phono level signal. The frequency response of suggested solution should comply with the norm specified by RIAA. It also describes a principle of usage a magnetodynamic pick-up, reproduction quality requirements, vacuum tube basic description and also its advantages for audio applications usage. Last part contains a comparison of the vacuum tube and semiconductor amplifier considering signal distortion of the active elements.
Application of capacity sensors in technical practice
Michalík, Lukáš ; Kratochvíl, Tomáš (referee) ; Frýza, Tomáš (advisor)
This bachelor work deals with a comparison of several capacity touch sensors from dierent companies. The aim of this comparison is the selection of one type of capacity touch sensors which will be used to construct the audio amplier touch screen control panel. The selected type of capacitive sensors is described and tested. Tested properties are compared with the data specied by its producer. In the second part of this work, there will be designed and constructed audio amplier. With help of the selected capacitive touch sensor the touch screen control panel for this amplier is created. The control touch panel manages all of the available features of ampliers.
Quadrophonic audio amplifier for home use
Gavlák, Antonín ; Kratochvíl, Tomáš (referee) ; Brančík, Lubomír (advisor)
This bachelor work describes the design quadraphonic audio amplifiers for home use that works in class AB. The proposal includes a correction preamplifier integrated circuit LM1036 and power amplifier monolithic integrated circuit LM3886 to the output impedance of 8 with appropriate cooling power element. The work also deals with suitable power supply units and soft start circuit for the amplifier. The work contains materials for the construction of a functional prototype of the low-frequency power amplifier and the results of laboratory measurements.
Correction pre-amplifier with the digital audio processor and digital control
Laník, Jakub ; Frýza, Tomáš (referee) ; Kratochvíl, Tomáš (advisor)
Project solves design of analog audio frequency correction pre-amplifier, which contains digital controlled integrated circuit specialized for the preamplifier operation. Device is controlled by microcontroller and it is extended with LCD display which shows actual pre-amplifier setting and actual indication. User has choice of remote control via infra red controller or local control via rotary encoder.

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