On-chip memory (usually based on Static RAMs-SRAMs) are crucial components for various computing devices including heterogeneous devices, e.g, GPUs, FPGAs, ASICs to achieve high performance. Modern workloads such as Deep Neural Networks (DNNs) running on these heterogeneous fabrics are highly dependent on the on-chip memory architecture for efficient acceleration. Hence, improving the energy-efficiency of such memories directly leads to an efficient system. One of the common methods to save energy is undervolting i.e., supply voltage underscaling below the nominal level. Such systems can be safely undervolted without incurring faults down to a certain voltage limit. This safe range is also called voltage guardband. However, reducing voltage...
Modern computing devices employ High-Bandwidth Memory (HBM) to meet their memory bandwidth requireme...
Abstract Operating at reduced voltages offers substantial energy efficiency improvement but at the ...
©2020 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for al...
On-chip memory (usually based on Static RAMs-SRAMs) are crucial components for various computing dev...
In this work, we evaluate aggressive undervolting, i.e., voltage scaling below the nominal level to ...
In this work, we evaluate aggressive undervolting, i.e., voltage scaling below the nominal level to...
The power and energy efficiency of Field Programmable Gate Arrays (FPGAs) are estimated to be up to ...
We empirically evaluate an undervolting technique, i.e., underscaling the circuit supply voltage bel...
Deep Neural Networks (DNNs) are inherently computation-intensive and also power-hungry. Hardware acc...
In this work, we evaluate aggressive undervolting, i.e., voltage underscaling below the nominal leve...
As more Neural Networks on Field Programmable Gate Arrays (FPGAs) are used in a wider context, the i...
The power consumption of digital circuits, e.g., Field Programmable Gate Arrays (FPGAs), is directly...
As more and more artificial intelligence capabilities are deployed onto resource-constrained devices...
High Bandwidth Memory (HBM) has been introduced as a solution to DRAMs’ bandwidth and power ineffici...
The ever expanding range of applications for embedded systems continues to offer new challenges (and...
Modern computing devices employ High-Bandwidth Memory (HBM) to meet their memory bandwidth requireme...
Abstract Operating at reduced voltages offers substantial energy efficiency improvement but at the ...
©2020 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for al...
On-chip memory (usually based on Static RAMs-SRAMs) are crucial components for various computing dev...
In this work, we evaluate aggressive undervolting, i.e., voltage scaling below the nominal level to ...
In this work, we evaluate aggressive undervolting, i.e., voltage scaling below the nominal level to...
The power and energy efficiency of Field Programmable Gate Arrays (FPGAs) are estimated to be up to ...
We empirically evaluate an undervolting technique, i.e., underscaling the circuit supply voltage bel...
Deep Neural Networks (DNNs) are inherently computation-intensive and also power-hungry. Hardware acc...
In this work, we evaluate aggressive undervolting, i.e., voltage underscaling below the nominal leve...
As more Neural Networks on Field Programmable Gate Arrays (FPGAs) are used in a wider context, the i...
The power consumption of digital circuits, e.g., Field Programmable Gate Arrays (FPGAs), is directly...
As more and more artificial intelligence capabilities are deployed onto resource-constrained devices...
High Bandwidth Memory (HBM) has been introduced as a solution to DRAMs’ bandwidth and power ineffici...
The ever expanding range of applications for embedded systems continues to offer new challenges (and...
Modern computing devices employ High-Bandwidth Memory (HBM) to meet their memory bandwidth requireme...
Abstract Operating at reduced voltages offers substantial energy efficiency improvement but at the ...
©2020 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for al...