National Repository of Grey Literature 27 records found  previous11 - 20next  jump to record: Search took 0.02 seconds. 
Light Source Controlled by Microcomputer
Koláriková, Lucie ; Musil, Petr (referee) ; Zemčík, Pavel (advisor)
Light technology is one of the fastest growing technology. By computer controlled light sources many effects usable in variety of industries can be achieved. This thesis deals with the analysis, design and implementation of an embedded system focusing on the control of three-color LED modules by microcomputer. Information about different light source control options is also provided. The final designed product is a light panel with LED modules which are controlled by the Arduino platform.
System for Management of Wireless Display Modules Using Energy Harvesting Techniques
Veselý, Miroslav ; Strnadel, Josef (referee) ; Šimek, Václav (advisor)
This master thesis is focused on smart display modules and their management. Attention is paid on analysis of the current state with focus on power supply and remote management. The goal of this master thesis is to design and develop a prototype of a wireless display module and management system on the base of gained knowledge. A substantial part of this thesis is also a base station which allows remote access to network with wireless display modules and management.
FPGA implementation of microcomputer
Šulc, Tomáš ; Fujcik, Lukáš (referee) ; Bohrn, Marek (advisor)
This thesis deals with architecture of 8-bit Sinclair ZX Spectrum 48K microcomputer and modification of this architecture for an implementation on an FPGA circuit. Theoretical part of the work is focused at the description of the architecture divided into functional blocks with focus on the flow of the signals on all buses. In practical part the functional blocks are modified to respect the data flow on buses when communicating with microprocessor and to utilize available interfaces of development board with Xilinx Spartan-3 FPGA. The project was implemented on the board to verify the accuracy of the design.
System for Management of Wireless Display Modules Using Energy Harvesting Techniques
Veselý, Miroslav ; Strnadel, Josef (referee) ; Šimek, Václav (advisor)
This master thesis is focused on smart display modules and their management. Attention is paid on analysis of the current state with focus on power supply and remote management. The goal of this master thesis is to design and develop a prototype of a wireless display module and management system on the base of gained knowledge. A substantial part of this thesis is also a base station which allows remote access to network with wireless display modules and management.
Design of suitable HW and SW components for remote data transmission
Pietrowicz, Daniel ; Marada, Tomáš (referee) ; Němec, Zdeněk (advisor)
This thesis is focused on the design of remote data transmission equipment, without access to mains power. The device will measure the voltage of the gas pipeline and send this information to the operator for processing. Analysis of today's technologies for long-distance transmission and based on the selected technology, the device will be designed. According to selected components, its power supply will be designed with the aim of long-term functionality and continuous operation.
Model Train Controlled by Microcomputer
Kavánková, Iva ; Kapinus, Michal (referee) ; Zemčík, Pavel (advisor)
This bachelor thesis is about controlling model trains by camera. It deals with the analysis, design and implementation of the embedded system for modeling track management. The main part is image processing in real-time and following evaluation. Designed and realized product contains model railroad with sensor, which are controlled by open-source platform called Arduino Mega 2560 and microcomputer Rapsberry Pi 3 model B. Final system was implemented in programming language Wiring and scripting language Python.
Computer Controlled Model of Vehicle
Deingruber, Ondřej ; Musil, Petr (referee) ; Zemčík, Pavel (advisor)
This bachelor's thesis covers the topic of controlling models using servos and motors. The target was to design and construct a functional model and use it to demonstrate the principles of controlling models by computer. The work was extended by implementing vehicle detection program used for combat of the vehicles. A vehicle moving on tracks, controlled by two DC motors and one servo was constructed. For the control of the vehicle was selected a combination of single-board computer and microcontroller. For the purposes of detecting the vehicle OpenCV library paired with a camera and IR LEDs was used. 
Light Source Controlled by Microcomputer
Koláriková, Lucie ; Musil, Petr (referee) ; Zemčík, Pavel (advisor)
Light technology is one of the fastest growing technology. By computer controlled light sources many effects usable in variety of industries can be achieved. This thesis deals with the analysis, design and implementation of an embedded system focusing on the control of three-color LED modules by microcomputer. Information about different light source control options is also provided. The final designed product is a light panel with LED modules which are controlled by the Arduino platform.
System with Servos Controlled by Microcomputer
Veselý, Miroslav ; Kolář, Martin (referee) ; Zemčík, Pavel (advisor)
The goal of this bachelor thesis was to investigate possibilities of controlling RC servos by amicrocomputer. A part of this thesis was creation of a device for purpose of browsing distant surfaceby a laser. The created device is based on Arduino platform and it is possible to control this deviceremotely by a computer application.
FPGA implementation of microcomputer
Šulc, Tomáš ; Fujcik, Lukáš (referee) ; Bohrn, Marek (advisor)
This thesis deals with architecture of 8-bit Sinclair ZX Spectrum 48K microcomputer and modification of this architecture for an implementation on an FPGA circuit. Theoretical part of the work is focused at the description of the architecture divided into functional blocks with focus on the flow of the signals on all buses. In practical part the functional blocks are modified to respect the data flow on buses when communicating with microprocessor and to utilize available interfaces of development board with Xilinx Spartan-3 FPGA. The project was implemented on the board to verify the accuracy of the design.

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