The speed of modern digital systems is severely limited by memory latency (the “Memory Wall” problem). Data exchange between Logic and Memory is also responsible for a large part of the system energy consumption. Logic-in-Memory (LiM) represents an attractive solution to this problem. By performing part of the computations directly inside the memory the system speed can be improved while reducing its energy consumption. LiM solutions that offer the major boost in performance are based on the modification of the memory cell. However, what is the cost of such modifications? How do these impact the memory array performance? In this work, this question is addressed by analysing a LiM memory array implementing an algorithm for the maximum/minimu...
The well-known Moore's Law is about to end after CMOS devices using 7nm process technology are widel...
The need for processing the continuously growing amount of data that is produced every day is promot...
In this paper we propose a Highly Flexible InMemory (HieIM) computing platform using STT MRAM, which...
The speed of modern digital systems is severely limited by memory latency (the ``Memory Wall'' probl...
As the fraction of integrated circuit area dedicated to embedded memory continues to increase, the e...
Abstract—This paper introduces two new cells for Logic-in-Memory (LiM) operation. The first novelty ...
With the growing demand for more energy efficient computing hardware to support edge computing appli...
In-memory computing has been demonstrated to be an efficient computing infrastructure in the big dat...
International audienceThe technology evolution addresses the demand for faster computers. Despite th...
Most modern CPU architectures are based on the von Neumann principle, where memory and processing un...
Over the past years, driven by an increasing number of data-intensive applications, architects have ...
The aim of the project is to propose a RISC-Vlim microprocessor that supports Logic-in-Memory operat...
As modern integrated circuit design pushes further into the deep submicron era, the pseudo-random de...
The technology evolution has tried to address the demand for faster computers. Despite the achieved...
Low-power smart devices are becoming pervasive in our world. Thus, relevant research efforts are dir...
The well-known Moore's Law is about to end after CMOS devices using 7nm process technology are widel...
The need for processing the continuously growing amount of data that is produced every day is promot...
In this paper we propose a Highly Flexible InMemory (HieIM) computing platform using STT MRAM, which...
The speed of modern digital systems is severely limited by memory latency (the ``Memory Wall'' probl...
As the fraction of integrated circuit area dedicated to embedded memory continues to increase, the e...
Abstract—This paper introduces two new cells for Logic-in-Memory (LiM) operation. The first novelty ...
With the growing demand for more energy efficient computing hardware to support edge computing appli...
In-memory computing has been demonstrated to be an efficient computing infrastructure in the big dat...
International audienceThe technology evolution addresses the demand for faster computers. Despite th...
Most modern CPU architectures are based on the von Neumann principle, where memory and processing un...
Over the past years, driven by an increasing number of data-intensive applications, architects have ...
The aim of the project is to propose a RISC-Vlim microprocessor that supports Logic-in-Memory operat...
As modern integrated circuit design pushes further into the deep submicron era, the pseudo-random de...
The technology evolution has tried to address the demand for faster computers. Despite the achieved...
Low-power smart devices are becoming pervasive in our world. Thus, relevant research efforts are dir...
The well-known Moore's Law is about to end after CMOS devices using 7nm process technology are widel...
The need for processing the continuously growing amount of data that is produced every day is promot...
In this paper we propose a Highly Flexible InMemory (HieIM) computing platform using STT MRAM, which...