National Repository of Grey Literature 6 records found  Search took 0.01 seconds. 
Java Byte-Code Interpreter for FITKit Platform
Husák, Jiří ; Petrlík, Jiří (referee) ; Fučík, Otto (advisor)
The aim of this bachelor's thesis is to design and implement the Java bytecode interpreter for FITkit platform. At first is analyzed issues of Java programming language, especially properties of portable Byte-Code and Java Virtual Machine. The study also describes the MSP430 microcontroller from Texas Instruments. The result of bachelor's thesis is the interpreter written in C for microprocessor and  application for PC that provides compilation and loading Byte-Code with serial port to the device FITkit. At the end of the work are presented some demonstration applications written in Java that use FITkit peripherals or FPGA to accelerate calculations.
GPS for Teaching HW/SW Platform
Pajgrt, Ondřej ; Bidlo, Michal (referee) ; Fučík, Otto (advisor)
The work deals with a connection between HW/SW platform FITkit and GPS device. Introduces GPS systems from theoretical and practical view desribes FITkit teaching platform and its common use and shows in detail the connection of those two systems into a cooperative unit. Work also analyses communication interfaces and protocols used for that connection. Finally it provides a description of tho whole system data flow from the very beginning in GPS unit to the final displaying on the screen and description of implementation and application usage.
Digital Oscilloscope on FITkit Platform
Veškrna, Ondřej ; Vašíček, Zdeněk (referee) ; Šimek, Václav (advisor)
This thesis deals with the design of a device that enables to monitor the behavior of the measured signal on the computer screen, using the principle of the digital oscilloscope. The control element of the device is the field programmable gate array (FPGA) on FITkit platform.  The FPGA configuration controls the input signal sampling and sends the received samples through the USB interface to the PC. The graphical application implemented in the computer tries to restore the signal and then displays it on the screen.
GPS for Teaching HW/SW Platform
Pajgrt, Ondřej ; Bidlo, Michal (referee) ; Fučík, Otto (advisor)
The work deals with a connection between HW/SW platform FITkit and GPS device. Introduces GPS systems from theoretical and practical view desribes FITkit teaching platform and its common use and shows in detail the connection of those two systems into a cooperative unit. Work also analyses communication interfaces and protocols used for that connection. Finally it provides a description of tho whole system data flow from the very beginning in GPS unit to the final displaying on the screen and description of implementation and application usage.
Java Byte-Code Interpreter for FITKit Platform
Husák, Jiří ; Petrlík, Jiří (referee) ; Fučík, Otto (advisor)
The aim of this bachelor's thesis is to design and implement the Java bytecode interpreter for FITkit platform. At first is analyzed issues of Java programming language, especially properties of portable Byte-Code and Java Virtual Machine. The study also describes the MSP430 microcontroller from Texas Instruments. The result of bachelor's thesis is the interpreter written in C for microprocessor and  application for PC that provides compilation and loading Byte-Code with serial port to the device FITkit. At the end of the work are presented some demonstration applications written in Java that use FITkit peripherals or FPGA to accelerate calculations.
Digital Oscilloscope on FITkit Platform
Veškrna, Ondřej ; Vašíček, Zdeněk (referee) ; Šimek, Václav (advisor)
This thesis deals with the design of a device that enables to monitor the behavior of the measured signal on the computer screen, using the principle of the digital oscilloscope. The control element of the device is the field programmable gate array (FPGA) on FITkit platform.  The FPGA configuration controls the input signal sampling and sends the received samples through the USB interface to the PC. The graphical application implemented in the computer tries to restore the signal and then displays it on the screen.

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