This paper describes how to realize place-effective synchronous bit-serial constant multiplications, which can be efficiently used for a block of constants (Multiple Constant Multiplication). The architecture combines traditional concepts and new approaches, which leads to the possibility of simultanous fast multiplications of different input values. Fast multiplications are a core for up-to-date embedded systems, as they rely on fast input processing which can be offered by common transformations. As an example, we have realized the Discrete Cosine Transformation (DCT), where we can show that our architecture features an optimal trade-off between area and speed.
International audienceThis paper presents some improvements on the optimization of hardware multipli...
International audienceThis paper presents some improvements on the optimization of hardware multipli...
The main issue in this thesis is to minimize the energy consumption per operation for the arithmetic...
This work covers field programmable gate array (FPGA)-specific optimizations of circuits computing t...
This contribution studies constant multiplication X ·C and X · C (mod P), where constant C achieves ...
International audienceReconfigurable circuits now have a capacity that allows them to be used as flo...
International audienceThe multiplication by a constant is a frequently used operation. To implement ...
International audienceThe multiplication by a constant is a frequently used operation. To implement ...
International audienceThe multiplication by a constant is a frequently used operation. To implement ...
International audienceThe multiplication by a constant is a frequently used operation. To implement ...
Multiple constant multiplication (MCM) operation multiplies an input variable with multiple constant...
Multiple constant multiplication (MCM) operation multiplies an input variable with multiple constant...
Multiple constant multiplication (MCM) operation multiplies an input variable with multiple constant...
Reconfigurable circuits now have a capacity that allows them to be used as floating-point accelerato...
International audienceReconfigurable circuits now have a capacity that allows them to be used as flo...
International audienceThis paper presents some improvements on the optimization of hardware multipli...
International audienceThis paper presents some improvements on the optimization of hardware multipli...
The main issue in this thesis is to minimize the energy consumption per operation for the arithmetic...
This work covers field programmable gate array (FPGA)-specific optimizations of circuits computing t...
This contribution studies constant multiplication X ·C and X · C (mod P), where constant C achieves ...
International audienceReconfigurable circuits now have a capacity that allows them to be used as flo...
International audienceThe multiplication by a constant is a frequently used operation. To implement ...
International audienceThe multiplication by a constant is a frequently used operation. To implement ...
International audienceThe multiplication by a constant is a frequently used operation. To implement ...
International audienceThe multiplication by a constant is a frequently used operation. To implement ...
Multiple constant multiplication (MCM) operation multiplies an input variable with multiple constant...
Multiple constant multiplication (MCM) operation multiplies an input variable with multiple constant...
Multiple constant multiplication (MCM) operation multiplies an input variable with multiple constant...
Reconfigurable circuits now have a capacity that allows them to be used as floating-point accelerato...
International audienceReconfigurable circuits now have a capacity that allows them to be used as flo...
International audienceThis paper presents some improvements on the optimization of hardware multipli...
International audienceThis paper presents some improvements on the optimization of hardware multipli...
The main issue in this thesis is to minimize the energy consumption per operation for the arithmetic...