National Repository of Grey Literature 17 records found  previous11 - 17  jump to record: Search took 0.01 seconds. 
Educational development boards
Ostřížek, Tomáš ; Fujcik, Lukáš (referee) ; Bohrn, Marek (advisor)
This paper deals with the design process of an FPGA-based development board for educational purposes, as a replacement of the obsolete Spartan-3 Starter Kit Board. Theoretical part describes the basic principles behind FPGAs and compatible digital and analog interfaces. The next chapter focuses on choosing optimal components for the board, mainly an optimal FPGA, in regard to course compatibility, implementation requirements and price. A complete circuit diagram is then designed based on the components as well as a printed circuit board layout. To simplify the process of configuration, a minimalistic Windows application using iMPACT batch commands is programmed. The last chapter describes the process of testing the development board prototype.
Examples in environment ARMmbed
Maraczek, Patrik ; Marada, Tomáš (referee) ; Zuth, Daniel (advisor)
The bachelor’s thesis contains basic information for working with microcontroller properly in ARMmbed integrated development environment. Thesis describe microcontroller, microchips, chip’s periphery, ARMmbed environment. Also manual is written for this environment. Four examples are solved at the end of thesis to explain how extended devices and sensors are working. Devices like 4-bit seven-segmented display, LED diodes, ultrasound sensor SRF02.
Car Air-Condition Control Unit with MCU HCS08GT60
Polóni, Pavol ; Straka, Martin (referee) ; Šimek, Václav (advisor)
The purpose of this project is to desing and produce development board, which is customized with respect to the deployment as an air-condition control unit in car. The following chapters of this work will gradually take its reader through the whole design flow of such embedded system. Literally speaking, selection of a proper MCU and set of external peripherals can be seen as the critical tasks. Particular attention will be also given to PCB (printed circuit board) manufacturing and components assembly. The core of the system is built around HCS08 MCU from Freescale and appropriate firmware written in C language.
Development Board with a Microcontroller and Display "TouchScreen"
Sekanina, Pavel ; Korček, Pavol (referee) ; Polóni, Pavol (advisor)
This work deals with design, produce and complement development board with microcontroller and touch screen.The work also describe problems of complement development board in EAGLE software. Below analyse technology which apply touch screen. Finally show creation software for service touch screen with given microcontroller.
Design and Implementation of CAN Driver on Development Board Atmel ATNGW100
Szurman, Karel ; Straka, Martin (referee) ; Šimek, Václav (advisor)
This bachelor's thesis describe desing and implementation of CAN driver. This bus together with RTC module are located on development board Atmel ATNGW100. Devices communicates over SPI interface. Software driver is implemented as module for kernel of operating system Linux. Thanks to this module, interfaces of implemented CAN bus and RTC are accessed to user.
Universal Development Board for Pic18F Microcontroller Family
Jež, David ; Fučík, Otto (referee) ; Šimek, Václav (advisor)
My work describes design of the universal development board usefull with a various types of microcontrollers and the unified interfaces for the microcontroller's module board. It introduce the design and the interface and list of the Microchip PIC microcontrollers which can be used with development board. It also describes the features of the PIC18F4550 microcontroller and means about an different types of anothers manufactures. There is also describe of the design, creating the schemes of the boards, printed circuit boards and 3D visualization models in my work.
Development Board for 32-bit Microcontroller Atmel AT91SAM9261
Demín, Martin ; Slaný, Karel (referee) ; Šimek, Václav (advisor)
Vestavený hardware je velice populární v této době. Proto jsme se rozhodli vytvořit desku s mikrokontrolérem AT91SAM9261 spolu so standartným a nestandartným hardwarem. Standartným, běžným by se dal nazvat port LAN alebo audio vstup-výstup. Nestandartným, špecialním by mohl být obvod FPGA firmy Xilinx o velikosti 200k. Toto dovoluje využít zažízení v oblastech, kde výpočetní síla obyčejnýho CPU již není dostačující.

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