A monolithic computer is an emerging architecture in which a multicore CPU and a high-capacity main memory system are all integrated in a single die. We believe such architectures will be possible in the near future due to nonvolatile memory technology, such as the resistive random access memory, or ReRAM, from Crossbar Incorporated. Crossbar's ReRAM can be fabricated in a standard CMOS logic process, allowing it to be integrated into a CPU's die. The ReRAM cells are manufactured in between metal wires and do not employ per-cell access transistors, leaving the bulk of the base silicon area vacant. This means that a CPU can be monolithically integrated directly underneath the ReRAM memory, allowing the cores to have massively parallel access...
Rapid growth of future information technology depends on energy-efficient computation and ultra-high...
It's been quite a while since scientists are seeking for the ancestor of von Neumann computing archi...
As DRAM faces scaling issues as a high-density memory, emerging technologies are being explored as a...
Emerging non-volatile memories are dense and potentially compatible with standard CMOS processes, en...
The use of memristors and resistive random access memory (ReRAM) technology to perform logic computa...
International audienceIn this paper, authors present a ReRAM memory compiler for monolithic 3D (M3D)...
The paper proposes novel solutions to improve the signal and thermal integrity of crossbar arrays of...
This work presents the co-integration of resistive random access memory crossbars within a 180nm Rea...
A 3D architecture made up of a CMOS layer combined with a 3D stack of bipolar memristor crossbar arr...
Computing systems have seen tremendous growth over the past few decades in their capabilities, effic...
The scalability of DRAM faces challenges from increasing power consumption and the difficulty of bui...
In-memory computing (IMC) utilizing synaptic crossbar arrays is promising for deep neural networks t...
The continued scaling of the CMOS device has been largely responsible for the increase in computatio...
Rapid growth of future information technology depends on energy-efficient computation and ultra-high...
Developing energy-efficient parallel information processing systems beyond von Neumann architecture ...
Rapid growth of future information technology depends on energy-efficient computation and ultra-high...
It's been quite a while since scientists are seeking for the ancestor of von Neumann computing archi...
As DRAM faces scaling issues as a high-density memory, emerging technologies are being explored as a...
Emerging non-volatile memories are dense and potentially compatible with standard CMOS processes, en...
The use of memristors and resistive random access memory (ReRAM) technology to perform logic computa...
International audienceIn this paper, authors present a ReRAM memory compiler for monolithic 3D (M3D)...
The paper proposes novel solutions to improve the signal and thermal integrity of crossbar arrays of...
This work presents the co-integration of resistive random access memory crossbars within a 180nm Rea...
A 3D architecture made up of a CMOS layer combined with a 3D stack of bipolar memristor crossbar arr...
Computing systems have seen tremendous growth over the past few decades in their capabilities, effic...
The scalability of DRAM faces challenges from increasing power consumption and the difficulty of bui...
In-memory computing (IMC) utilizing synaptic crossbar arrays is promising for deep neural networks t...
The continued scaling of the CMOS device has been largely responsible for the increase in computatio...
Rapid growth of future information technology depends on energy-efficient computation and ultra-high...
Developing energy-efficient parallel information processing systems beyond von Neumann architecture ...
Rapid growth of future information technology depends on energy-efficient computation and ultra-high...
It's been quite a while since scientists are seeking for the ancestor of von Neumann computing archi...
As DRAM faces scaling issues as a high-density memory, emerging technologies are being explored as a...