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Nonvolatile flip-flops (nvFFs) enable frequent-off processors to achieve fast power-off and wake-up time while maintaining critical local computing states through parallel data movement between volatile FFs and local nonvolatile memory (NVM) devices. However, current nvFFs face challenges in large store energy ($\text{E}_{\mathrm {S}}$ ) and long voltage stress time on the device ($\text{T}_{\mathrm {STRESS}}$ ...
This paper presents a Contact Resistive Random Access Memory (CRRAM) macro with an offset-compensated Sense amplifier for low-voltage operation. The proposed circuit aims to solve the variation and speed issues during low-voltage operations. A 256Kb test-chip was fabricated in TSMC 65nm technology. An improvement of 1.78x in read speed and 85.7% in offset was measured compared to conventional sensing...
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