Exemplos de uso de Programmable gate em Inglês e suas traduções para o Português
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Virtex II Pro Field Programmable Gate Array(FPGA) from Xilinx with PowerPC cores.
Among some currently adopted solutions,we can mention the field programmable gate arrays fpgas.
FPGA is the acronym for Field Programmable Gate Array-something like"Programmable Ports arrangement in field.
Two devices were developed:a microprocessor-based hardware and a fpga(field programmable gate array) soc system on a chip.
The technology uses FPGA(Field Programmable Gate Array) to convert any signal into the DSD sound format….
Searching for reconfigurable devices, computer scientists andengineers used field programmable gate arrays(fpgas) as prototypes for snns.
The use of technology based on field programmable gate arrays(fpgas), a reconfigurable technology, has become a frequent object of study.
This work presents a study on the implementation of matrix operators for the numerical solution of linear systems on fpgas field programmable gate arrays.
The technology utilises FPGA(Field Programmable Gate Array) to convert any signal into the DSD sound format.
The improved filters were described using system verylog hardware description language, andimplemented onto a field programmable gate array fpga.
One of the most viable solutions comes in the form of Field Programmable Gate Arrays(FPGAs), originally designed for developing new hardware.
The programmable gates control state, with a variety of operating modes you can choose, you can set a one-way or two-way control.
All the techniques are explored in order to be implemented in fpga(field programmable gate array) devices, having some advantages over microcontrollers and dsp¿s digital signa.
To get the high data rates and the low latency requiredby real time processing, a parameterized circuit based on field programmable gate array¿fpga was proposed.
Field programmable gate arrays(fpgas) are reconfigurable hardware components that have found great commercial success over the past years in a wide variety of application niches.
Additionally, a customized digital hardware architecture explored the parallelism of the fpgas(field programmable gate arrays), optimizing the use of hardware resources and memory bandwidth.
Nowadays, the evolution of fpgas(field programmable gate arrays) allows them to be employed in applications from rapid prototyping of digital circuits to coprocessor of high performance computing.
The second group targets the design of electronic circuits which employ more than two discrete levels of signals, such as many-valued memories, arithmetic circuits,Field Programmable Gate Arrays(FPGA) etc.
This work is a case study of an industrial plant emulator implemented in fpga(field programmable gate array), to simulate systems together with a plc programmable logic controller.
The second group targets the design of electronic circuits which employ more than two discrete levels of signals, such as many-valued memories, arithmetic circuits, and field programmable gate arrays FPGAs.
The flexibility introduced by the use of fpgas(field programmable gate array) commercial sram in embedded applications, makes this technology becomes an attractive alternative for military and space applications.
The proposed system is a combination of digital system and software for map chamfer welding plates using a 5mp cameraas a visual sensor, an embedded system based on fpga(field programmable gate array) for the control signals, image acquisition and control of the robot and welding equipment parameters.
This work presents an implementation in fpgas(field programmable gate arrays) of a classic digital reverberation audio structure, based on a proposal of manfred schroeder, using sets of all-pass and comb filters. the developed system exploits the use of reconfigurable hardware as a platform development and implementation.
The performance results show that the proposed technique outperforms previous techniques in terms of mean square error¿eb/n0, acceptance ratio in percentage, and bit error rate when the plc channels are indoor and outdoor, corrupted by the presence of additive white gaussian noise(awgn) and additive impulsive gaussian noise(aign), andhardware resource utilization when it is implemented in a field programmable gate array.
This work presents the development of anovel modular hardware architecture(front-end), fpga-based(field programmable gated array) and software(back-end), pc-based or dsp-based, fully programmable, open and flexible, for research and investigation of new techniques for medical us imaging.
In this scenario, the development of the high performance arithmetic co-processor,implemented using field programmable gate arrays(fpgas), has been considered a viable alternative, in order to increase the the capacity of processing existent computational systems, with positive impacts both in investments in infrastructure and energy consumption.