Power and energy consumption is a major issue and a design constraint in many types of systems. However, the knowledge of average power consumption is not enough, since many issues may arise due to dynamic power characteristics, such as IR drop, and side channel attacks in cryptographic circuits via DPA. Analog simulation (e.g. Spice), which has been used for decades as an accurate mean for estimating current and power, is no longer an option when it comes to medium to large circuits, due to the unacceptable simulation time. This paper presents an open framework for fast and accurate dynamic power estimation based on gate-level simulation, and standard tools and libraries. Our solution was thoroughly evaluated using standard benchmark and c...
Differential Power Analysis (DPA) is a powerful side channel attack aiming at recovering secret info...
International audienceThe physical implementation of cryptographic algorithms may leak to some attac...
In this paper, we present a new gate-level approach to power and current simulation. We propose a sy...
Paul Kocher has proposed a cryptanalysis technique called differential power analysis (DPA), in whic...
Orientador: Mário Lúcio CôrtesDissertação (mestrado) - Universidade Estadual de Campinas, Instituto ...
[[abstract]]In this paper, we present the power estimation methodologies for the development of a lo...
Design methodologies based on intellectual property (IP) reuse have been widely accepted as a soluti...
Mainstream Field Programmable Gate Array (FPGA) power estimation tools are based on probabilistic ac...
Differential power analysis (DPA) attack is a major concern for secure embedded devices (Ravi et al....
Observations of peak and average currents are important for designed circuits, as faulty circuits ha...
The main goal of power estimation is to optimize the power consumption of a electronic design. Power...
High performance, low power and low cost will continue to be driving factors for digital signal proc...
Differential Power Analysis (DPA) is a powerful side channel attack aiming at recovering secret info...
The physical implementation of cryptographic algorithms may leak to some attacker security informati...
Differential Power Analysis (DPA) is a powerful side channel attack aiming at recovering secret info...
Differential Power Analysis (DPA) is a powerful side channel attack aiming at recovering secret info...
International audienceThe physical implementation of cryptographic algorithms may leak to some attac...
In this paper, we present a new gate-level approach to power and current simulation. We propose a sy...
Paul Kocher has proposed a cryptanalysis technique called differential power analysis (DPA), in whic...
Orientador: Mário Lúcio CôrtesDissertação (mestrado) - Universidade Estadual de Campinas, Instituto ...
[[abstract]]In this paper, we present the power estimation methodologies for the development of a lo...
Design methodologies based on intellectual property (IP) reuse have been widely accepted as a soluti...
Mainstream Field Programmable Gate Array (FPGA) power estimation tools are based on probabilistic ac...
Differential power analysis (DPA) attack is a major concern for secure embedded devices (Ravi et al....
Observations of peak and average currents are important for designed circuits, as faulty circuits ha...
The main goal of power estimation is to optimize the power consumption of a electronic design. Power...
High performance, low power and low cost will continue to be driving factors for digital signal proc...
Differential Power Analysis (DPA) is a powerful side channel attack aiming at recovering secret info...
The physical implementation of cryptographic algorithms may leak to some attacker security informati...
Differential Power Analysis (DPA) is a powerful side channel attack aiming at recovering secret info...
Differential Power Analysis (DPA) is a powerful side channel attack aiming at recovering secret info...
International audienceThe physical implementation of cryptographic algorithms may leak to some attac...
In this paper, we present a new gate-level approach to power and current simulation. We propose a sy...