Overview
Synopsys Non-Volatile Memory (NVM) IP provides reprogrammable NVM supporting up to 1 million bits (1Mbit) configurations in standard CMOS and BCD process technologies with no additional masks or process steps. Small in area and low in power, Synopsys NVM IP delivers industry-leading reliability in products that support write cycle endurance from 1 to 1M times. Synopsys offers a broad portfolio of NVM, including one-time programmable (OTP), multi-time programmable (MTP), and few-time programmable (FTP) NVM
Validated through rigorous characterization, qualification, and reliability testing, the silicon proven NVM IP is delivered as a hard GDSII block and includes all the required control and support circuitry including the charge pump and high voltage circuits.
With more than a decade of development expertise, Synopsys offers the industry’s broadest portfolio of CMOS NVM IP with strong security, small area, fast access times, and high reliability for target applications in the automotive, industrial, and consumer markets.
Learn more about MTP IP core
Recognition highlights leadership in agentic AI design, advanced-node enablement, co-packaged optics, and silicon-proven IP for next-generation AI systems
Leading portfolio of engineering solutions positions Synopsys to capitalize on the continued expansion of digital and physical AI and the AI-driven transformation of engineering.
The companies signed an expansive, multi-year agreement to jointly develop GPT-Synopsys, a specialized model, optimized to use Synopsys EDA tools to perform semiconductor design workflows.
The multi-year agreement marks the expansion of Synopsys' silicon IP business to serve increasing demand for application-optimized IP with Amazon as its lead customer.
Open and Secure Synopsys Autopilot Platform Accelerates Engineering Productivity, Improves Design Quality, and Achieves Faster Closure Across Silicon to Systems
New collaborations span A14 design enablement, AI-assisted engineering workflows, CoWoS® support for multi-die designs, and unified multiphysics signoff