Weebit Nano Reports on 2025 Targets

Weebit Nano Reports on 2025 Targets
by Daniel Nenni on 01-27-2026 at 10:00 am

Weebit Nano 2025 Success

In early January 2026, Weebit Nano Ltd. (ASX: WBT) released a comprehensive report detailing its performance against the 2025 commercial and technical targets the company had set at its 2024 Annual General Meeting. The announcement highlighted significant progress in both business development and technology qualification,… Read More


Relaxation-Aware Programming in ReRAM: Evaluating and Optimizing Write Termination

Relaxation-Aware Programming in ReRAM: Evaluating and Optimizing Write Termination
by Admin on 06-03-2025 at 6:00 am

Im1 Weebit Relaxation Aware Programming in ReRAM Optimizing Write Termination RRAM 1024x704

Resistive RAM (ReRAM or RRAM) is the strongest candidate for next-generation non-volatile memory (NVM), combining fast switching speeds with low power consumption. New techniques for managing a memory phenomenon called ‘relaxation’ are making ReRAM more predictable — and easier to specify for real-world applications.… Read More


Evolution of Non Volatile Memory for Sensitive Data

Evolution of Non Volatile Memory for Sensitive Data
by Tom Simon on 12-07-2015 at 12:00 pm

When first interested in computers while I was in junior high school in the early 70’s I remember seeing a core memory board for the first time. It was a seriously large circuit board with a myriad of wires woven across it going through the tiny metal doughnuts that stored the bit values. The computers it went into only had a total of around… Read More


Static Timing Analysis for Memory Characterization

Static Timing Analysis for Memory Characterization
by Daniel Payne on 11-11-2012 at 6:18 pm

Modern SoC (System On Chip) designs contain a larger number of RAM (Random Access Memory) instances, so how do you know what the speed, timing and power are for any instance? There are a couple of approaches:
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  • Trust the IP supplier to give you models that use polynomial equations to curve-fit the performance numbers based
  • Read More