New Design Flows for High Programmable Logic Desi
K.A. Owyang, Bernice Lockard
Abstract
K.A. Owyang, Bernice Lockard
Abstract
Now that programmable logic devices with gate densities of over 100K gates are commonly available, field programmable gate array (FPGA) and complex programmable logic device (CPLD) designers are adopting new design flows to take advantage of their power. These design flows are based on a high level design methodology with advanced logic synthesis technology. In addition, they require other sophisticated design tools that, in the recent past, were exclusively part of the ASIC design realm. This paper discusses the new challenges that programmable logic designers face and the recent developments in design tools and design flows to satisfy their req ui rements.
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Now that programmable logic devices with gate densities of over 100K gates are commonly available, field programmable gate array (FPGA) and complex programmable logic device (CPLD) designers are adopting new design flows to take advantage of their power. These design flows are based on a high level design methodology with advanced logic synthesis technology. In addition, they require other sophisticated design tools that, in the recent past, were exclusively part of the ASIC design realm. This paper discusses the new challenges that programmable logic designers face and the recent developments in design tools and design flows to satisfy their req ui rements.
Key concepts: Complex programmable logic device, Simple programmable logic device, Programmable logic array, Programmable Array Logic, Programmable logic device, Logic synthesis, Macrocell array, Field-programmable gate array