Field Programmable Gate Arrays (FPGAs) have the unique ability to be configured into application-specific architectures that are well suited to specific computing problems. This enables them to achieve performances and energy efficiencies that outclass other processor-based architectures, such as Chip Multiprocessors (CMPs), Graphic Processing Units (GPUs) and Digital Signal Processors (DSPs). Despite this, FPGAs are yet to gain widespread adoption, especially among application and software developers, because of their laborious application development process that requires hardware design expertise. In some application areas, domain-specific hardware synthesis tools alleviate this problem by using a Domain-Specific Language (DSL) to hide t...
Field-programmable gate arrays represent an army of logical units which can be organized in a highly...
Field Programmable Gate Arrays (FPGAs) are configurable integrated circuits able to provide a good t...
Network-on-Chip (NoC) introduces parallelism in communications and emerges with the growing integrat...
After more than 30 years, reconfigurable computing has grown from a concept to a mature field of scien...
After more than 30 years, reconfigurable computing has grown from a concept to a mature field of scien...
The demand for scalable, high-performance computing has increased as the size of datasets has grown ...
Many numerical simulation applications from the scientific, financial and machine-learning domains r...
The embedded DSP blocks in modern Field Programmable Gate Arrays (FPGAs) are highly capable and supp...
Many numerical simulation applications from the scientific, financial and machine-learning domains r...
Field programmable gate arrays or FPGAs are the Swiss army knife of the compute accelerators. They a...
In the field of high-performance computing, FPGA circuits are very attractive for their performance ...
Field Programmable Gate Arrays (FPGAs) are configurable integrated circuits able to provide a good t...
Field Programmable Gate Arrays (FPGAs) are configurable integrated circuits able to provide a good t...
In the field of high-performance computing, FPGA circuits are very attractive for their performance ...
In the field of high-performance computing, FPGA circuits are very attractive for their performance ...
Field-programmable gate arrays represent an army of logical units which can be organized in a highly...
Field Programmable Gate Arrays (FPGAs) are configurable integrated circuits able to provide a good t...
Network-on-Chip (NoC) introduces parallelism in communications and emerges with the growing integrat...
After more than 30 years, reconfigurable computing has grown from a concept to a mature field of scien...
After more than 30 years, reconfigurable computing has grown from a concept to a mature field of scien...
The demand for scalable, high-performance computing has increased as the size of datasets has grown ...
Many numerical simulation applications from the scientific, financial and machine-learning domains r...
The embedded DSP blocks in modern Field Programmable Gate Arrays (FPGAs) are highly capable and supp...
Many numerical simulation applications from the scientific, financial and machine-learning domains r...
Field programmable gate arrays or FPGAs are the Swiss army knife of the compute accelerators. They a...
In the field of high-performance computing, FPGA circuits are very attractive for their performance ...
Field Programmable Gate Arrays (FPGAs) are configurable integrated circuits able to provide a good t...
Field Programmable Gate Arrays (FPGAs) are configurable integrated circuits able to provide a good t...
In the field of high-performance computing, FPGA circuits are very attractive for their performance ...
In the field of high-performance computing, FPGA circuits are very attractive for their performance ...
Field-programmable gate arrays represent an army of logical units which can be organized in a highly...
Field Programmable Gate Arrays (FPGAs) are configurable integrated circuits able to provide a good t...
Network-on-Chip (NoC) introduces parallelism in communications and emerges with the growing integrat...