DocumentCode :
588077
Title :
BEE technology overview
Author :
Rothman, J. ; Chen Chang
Author_Institution :
BEEcube, Fremont, CA, USA
fYear :
2012
fDate :
16-19 July 2012
Firstpage :
277
Lastpage :
277
Abstract :
This presentation will focus on a technology overview of the BEE4 and miniBEE FPGA based reconfigurable platforms. BEEcube supplies advanced system level FPGA prototyping platforms, targeting a wide range of uses including: multi-core computer architecture, wireless communications, 100Gbps+ networking solutions, HD video processing, signal intelligence, radar/sonar array, and High Performance Computing (HPC) needs. This overview will review features, capabilities, unique technology and uses of BEE platforms on both, its state of the art Virtex 6 based multi-array FPGA BEE4™ system, and introduce the first Research in a Box solution, the miniBEE™. miniBEE offers a combination of the latest FPGA, multicore CPU, high-speed networking technology all tightly coupled in one integrated cost effective solution targeting the research and lab community. This flexible system replaces the need for disjointed FPGA boards, PCs, networking devices, and test equipment. The presentation will describe how both algorithm oriented researchers as well as seasoned FPGA experts can utilize BEE technology to achieve their proof of concept or application level prototyping goals based on real time and real world data or conditions. Unique BEE technologies covered include its´ symmetrical Honeycomb Architecture, Full Speed Sting I/O interface, Application Control and Debugging Nectar OS, and the BEEcube Platform Studio software environment. The presentation plans to include BEE technology in action, for real-time imaging manipulation or as a flexible testing platform, an Arbitrary Waveform Generation example.
Keywords :
field programmable gate arrays; logic design; multiprocessing systems; operating systems (computers); parallel processing; reconfigurable architectures; BEE technology; BEEcube Platform Studio software environment; HD video processing; HPC; Nectar OS; Virtex 6 based multiarray FPGA BEE4 system; application control; application debugging; application level prototyping; arbitrary waveform generation; disjointed FPGA boards; full speed Sting I/O interface; high performance computing; high-speed networking technology; integrated cost effective solution; miniBEE FPGA; multicore computer architecture; networking device; radar array; real-time imaging manipulation; reconfigurable platform; signal intelligence; sonar array; symmetrical honeycomb architecture; system level FPGA prototyping platform; test equipment; wireless communication; Abstracts; Computer architecture; Field programmable gate arrays; High definition video; Real-time systems; USA Councils; Wireless communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Embedded Computer Systems (SAMOS), 2012 International Conference on
Conference_Location :
Samos
Print_ISBN :
978-1-4673-2295-9
Electronic_ISBN :
978-1-4673-2296-6
Type :
conf
DOI :
10.1109/SAMOS.2012.6404186
Filename :
6404186
Link To Document :
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