2002Proceedings of WESCON '94Requires access

A high speed graphics processing application using FPGAs

K.A. Owyang

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Abstract

This graphics processing application shows that high level design methods using VHDL or Verilog HDL input with synthesis tools are an excellent choice for FPGA-based systems. The 50 MHz design integrates several complex, high signal count functions in a single FPGA, all described in VHDL code. The advantages of high level FPGA design are not limited to this industry. They apply to any market where time-to-market and ease-of-design are important. The benefits usually far outnumber and outweigh any risks associated with these design techniques.>

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What this paper is about

This graphics processing application shows that high level design methods using VHDL or Verilog HDL input with synthesis tools are an excellent choice for FPGA-based systems. The 50 MHz design integrates several complex, high signal count functions in a single FPGA, all described in VHDL code. The advantages of high level FPGA design are not limited to this industry. They apply to any market where time-to-market and ease-of-design are important. The benefits usually far outnumber and outweigh any risks associated with these design techniques.>

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Available abstract

This graphics processing application shows that high level design methods using VHDL or Verilog HDL input with synthesis tools are an excellent choice for FPGA-based systems. The 50 MHz design integrates several complex, high signal count functions in a single FPGA, all described in VHDL code. The advantages of high level FPGA design are not limited to this industry. They apply to any market where time-to-market and ease-of-design are important. The benefits usually far outnumber and outweigh any risks associated with these design techniques.>

Key concepts: VHDL, Verilog, Field-programmable gate array, Computer science, Graphics, Hardware description language, Computer architecture, Time to market

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