After more than 30 years, reconfigurable computing has grown from a concept to a mature field of science and technology. The cornerstone of this evolution is the field programmable gate array, a building block enabling the configuration of a custom hardware architecture. The departure from static von Neumannlike architectures opens the way to eliminate the instruction overhead and to optimize the execution speed and power consumption. FPGAs now live in a growing ecosystem of development tools, enabling software programmers to map algorithms directly onto hardware. Applications abound in many directions, including data centers, IoT, AI, image processing and space exploration. The increasing success of FPGAs is largely due to an improved toolchai...
Many computationally intensive scientific applications involve repetitive floating point operations ...
In the the last decades several performance walls were hit. The memory wall and the power wall are l...
In the the last decades several performance walls were hit. The memory wall and the power wall are l...
After more than 30 years, reconfigurable computing has grown from a concept to a mature field of scien...
Field-programmable gate arrays represent an army of logical units which can be organized in a highly...
Field-programmable gate arrays represent an army of logical units which can be organized in a highly...
Field-programmable gate arrays represent an army of logical units which can be organized in a highly...
The symposium ParaFPGA focuses on parallel techniques using FPGAs as accelerator in high performance...
This paper investigates the possibility of using Field-Programmable Gate Arrays (Fr’GAS) as reconfi...
The symposium ParaFPGA focuses on parallel techniques using FPGAs as accelerator in high performance...
The symposium ParaFPGA focuses on parallel techniques using FPGAs as accelerator in high performance...
Field Programmable Gate Array (FPGA) provides the ability to use, and re-use, hardware with minimal ...
Field Programmable Gate Array (FPGA) provides the ability to use, and re-use, hardware with minimal ...
Field programmable gate arrays or FPGAs are the Swiss army knife of the compute accelerators. They a...
The capabilities of an ASIC (Application Specific Integrated Circuit) cannot be changed once it has ...
Many computationally intensive scientific applications involve repetitive floating point operations ...
In the the last decades several performance walls were hit. The memory wall and the power wall are l...
In the the last decades several performance walls were hit. The memory wall and the power wall are l...
After more than 30 years, reconfigurable computing has grown from a concept to a mature field of scien...
Field-programmable gate arrays represent an army of logical units which can be organized in a highly...
Field-programmable gate arrays represent an army of logical units which can be organized in a highly...
Field-programmable gate arrays represent an army of logical units which can be organized in a highly...
The symposium ParaFPGA focuses on parallel techniques using FPGAs as accelerator in high performance...
This paper investigates the possibility of using Field-Programmable Gate Arrays (Fr’GAS) as reconfi...
The symposium ParaFPGA focuses on parallel techniques using FPGAs as accelerator in high performance...
The symposium ParaFPGA focuses on parallel techniques using FPGAs as accelerator in high performance...
Field Programmable Gate Array (FPGA) provides the ability to use, and re-use, hardware with minimal ...
Field Programmable Gate Array (FPGA) provides the ability to use, and re-use, hardware with minimal ...
Field programmable gate arrays or FPGAs are the Swiss army knife of the compute accelerators. They a...
The capabilities of an ASIC (Application Specific Integrated Circuit) cannot be changed once it has ...
Many computationally intensive scientific applications involve repetitive floating point operations ...
In the the last decades several performance walls were hit. The memory wall and the power wall are l...
In the the last decades several performance walls were hit. The memory wall and the power wall are l...