Proposed bachelor thesis is focused to the filter design for digital signal processing from digital microphone (MEMS type). The microphone types, structure of AMDP421 digital microphone and digital filter types are described in details. Selected filters are modelled, designed and simulated in MATLAB tool to meet the filter specification. The results are sufficiently commented and assessed. Afterwards the digital filters are described in VHDL language and implemented to the target FPGA circuit. In frame of the work the extended modules to SPARTAN 3 STARTER KIT are developed and designed to evaluate and demonstrate the proper function of the proposed filter design
This diploma thesis deals with digital audio amplifier with universal inputs and its design. The fir...
Increased usage of electronic devices and the fast development of microprocessors has increased the ...
U radu opisan je postupak dizajniranja FIR digitalnog filtra, te njegova implementacija u FPGA. Poja...
The aim of this work is to implement digital filters into programmable gate array. The work also inc...
This bachelor thesis deals with the types and properties of currently used MEMS microphones. This th...
This thesis considers the design of digital filters for electronic instrumentation.The overall desig...
Thesis discusses the possibility of using MEMS microphones in measuring systems. Describes the chara...
he bachelor thesis deals with the modern design of analog filter where the digital potentiometers to...
An observation of the effect in audio signal by using digital filter plays an important role in the ...
The goal of this bachelor thesis has been to investigate if the laboratory exercises in the courses ...
This bachelor's thesis deals with design of a functional prototype universal digitally controlled an...
The main goal of this thesis is design of simple digital audio synthesizer. The synthesis of piano t...
In this bachelor thesis the possibility of implementing a fully functioning Digital Signal Processin...
Proposed bachelor thesis is focused on the design of an IIR filter. This work presents common struct...
The main purpose of this thesis was to design and develop the FPGA based digital section of a Hearin...
This diploma thesis deals with digital audio amplifier with universal inputs and its design. The fir...
Increased usage of electronic devices and the fast development of microprocessors has increased the ...
U radu opisan je postupak dizajniranja FIR digitalnog filtra, te njegova implementacija u FPGA. Poja...
The aim of this work is to implement digital filters into programmable gate array. The work also inc...
This bachelor thesis deals with the types and properties of currently used MEMS microphones. This th...
This thesis considers the design of digital filters for electronic instrumentation.The overall desig...
Thesis discusses the possibility of using MEMS microphones in measuring systems. Describes the chara...
he bachelor thesis deals with the modern design of analog filter where the digital potentiometers to...
An observation of the effect in audio signal by using digital filter plays an important role in the ...
The goal of this bachelor thesis has been to investigate if the laboratory exercises in the courses ...
This bachelor's thesis deals with design of a functional prototype universal digitally controlled an...
The main goal of this thesis is design of simple digital audio synthesizer. The synthesis of piano t...
In this bachelor thesis the possibility of implementing a fully functioning Digital Signal Processin...
Proposed bachelor thesis is focused on the design of an IIR filter. This work presents common struct...
The main purpose of this thesis was to design and develop the FPGA based digital section of a Hearin...
This diploma thesis deals with digital audio amplifier with universal inputs and its design. The fir...
Increased usage of electronic devices and the fast development of microprocessors has increased the ...
U radu opisan je postupak dizajniranja FIR digitalnog filtra, te njegova implementacija u FPGA. Poja...