While Resistive Random Access Memories (RRAM) are perceived nowadays as a promising solution for the future of computing, these technologies suffer from intrinsic variability regarding programming voltage, switching speed and achieved resistance values. Write Termination (WT) circuits are a potential solution to solve these issues. However, previously reported WT circuits do not demonstrate sufficient reliability. In this work, we propose an industrially-ready WT circuit that was simulated with a RRAM model calibrated on real measurements. We perform extensive CMOS and RRAM variability simulations to extract the actual performances of the proposed WT circuit. Finally, we simulate the effects of the proposed WT circuit with memory traces ext...
© 2017 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
RRAM density enhancement is essential not only to gain market share in the highly competitive emergi...
There is currently a surge of interest in RRAM-based FPGAs because of their lower area, power loss r...
International audienceWhile Resistive Random Access Memories (RRAM) are perceived nowadays as a prom...
International audienceWhile Resistive Random Access Memories (RRAM) are perceived nowadays as a prom...
International audienceWhile Resistive Random Access Memories (RRAM) are perceived nowadays as a prom...
The growing need for connected, smart and energy efficient devices requires them to provide both ult...
International audienceEmbedded resistive random access memories (RRAM) are commonly written using vo...
Energy efficiency remains one of the main factors for improving the key performance markers of RRAMs...
Limited endurance of resistive RAM (RRAM) is a major challenge for future computing systems. Using t...
Limited endurance of resistive RAM (RRAM) is a major challenge for future computing systems. Using t...
International audienceLimited endurance of resistive RAM (RRAM) is a major challenge for future comp...
International audienceLimited endurance of resistive RAM (RRAM) is a major challenge for future comp...
International audienceLimited endurance of resistive RAM (RRAM) is a major challenge for future comp...
© 2017 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
© 2017 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
RRAM density enhancement is essential not only to gain market share in the highly competitive emergi...
There is currently a surge of interest in RRAM-based FPGAs because of their lower area, power loss r...
International audienceWhile Resistive Random Access Memories (RRAM) are perceived nowadays as a prom...
International audienceWhile Resistive Random Access Memories (RRAM) are perceived nowadays as a prom...
International audienceWhile Resistive Random Access Memories (RRAM) are perceived nowadays as a prom...
The growing need for connected, smart and energy efficient devices requires them to provide both ult...
International audienceEmbedded resistive random access memories (RRAM) are commonly written using vo...
Energy efficiency remains one of the main factors for improving the key performance markers of RRAMs...
Limited endurance of resistive RAM (RRAM) is a major challenge for future computing systems. Using t...
Limited endurance of resistive RAM (RRAM) is a major challenge for future computing systems. Using t...
International audienceLimited endurance of resistive RAM (RRAM) is a major challenge for future comp...
International audienceLimited endurance of resistive RAM (RRAM) is a major challenge for future comp...
International audienceLimited endurance of resistive RAM (RRAM) is a major challenge for future comp...
© 2017 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
© 2017 IEEE. Personal use of this material is permitted. Permission from IEEE must be obtained for a...
RRAM density enhancement is essential not only to gain market share in the highly competitive emergi...
There is currently a surge of interest in RRAM-based FPGAs because of their lower area, power loss r...