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Optical Proximity Correction (OPC) Software Market (2024-2030): Growth Drivers and Segment Analysis

08-23-2025 06:25 PM CET | Advertising, Media Consulting, Marketing Research

Press release from: Valuates Reports

Optical Proximity Correction (OPC) Software Market

The semiconductor industry is experiencing rapid growth on the back of AI, 5G, IoT, and other high-performance applications. Global chip sales are projected to exceed US$600-700 billion in 2024 and to reach about US$1 trillion by 2030. This expansion drives demand for advanced lithography tools. Optical Proximity Correction (OPC) - software used to pre-distort photomasks to compensate for optical and process distortions - is critical for fabricating cutting-edge nodes.

The global OPC software market, valued at around US$0.6-1.2 billion in 2024, is expected to grow at approximately 8-9% CAGR through 2030, potentially doubling or more by the end of the forecast period.

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Key drivers of growth include:
• Miniaturization of features to 5nm, 3nm, and beyond.
• Surging demand for high-performance logic and memory chips.
• Rising AI, IoT, 5G, and cloud adoption.
• Increased fab investments worldwide, supported by government incentives.
________________________________________

Segment by OPC Type: Model-Based vs. Rule-Based
• Model-Based OPC
o Accounts for about 65% of the market.
o Dominant in advanced nodes requiring high accuracy.
o Uses detailed physics-based simulation.
o Fastest-growing due to increasing chip design complexity.

• Rule-Based OPC
o Holds roughly 35% of the market.
o Applies pre-defined rules for corrections.
o Adequate for legacy nodes and mature processes.
o Growth is slower, with applications mainly in mature fabs.
________________________________________
Segment by Application: Logic/MPU vs. Memory

• Logic/MPU
o Represents about 40% of the market.
o Includes CPUs, GPUs, FPGAs, and SoCs.
o OPC demand driven by AI, mobile, automotive, and advanced data-center chips.

• Memory (DRAM/NAND)
o Accounts for around 35% of the market.
o Fastest-growing segment.
o Growth driven by surging demand for cloud, AI, and big data storage.
o Complex 3D NAND and DRAM scaling require advanced OPC.

• Other Applications
o Make up about 25% of the market.
o Includes analog, sensors, and power devices.
o OPC needs are less intensive due to larger nodes.
________________________________________
Geographic Trends (Global Insights)

• Asia-Pacific
o Largest market with about 42% share.
o Driven by strong semiconductor hubs in Taiwan, Korea, China, and Japan.
o Supported by government funding and major fab expansions.

• North America
o Represents about 28% of the market.
o Growth supported by the CHIPS Act and investments in new fabs.
o Focus on advanced logic and design-led applications.

• Europe
o Holds around 20% share.
o Driven by strong IDM presence and new fab initiatives.
o EU Chips Act initiatives boosting growth.

• Rest of the World
o Around 10% market share.
o Growth from emerging semiconductor regions.

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________________________________________
Latest Technological Trends in OPC

• AI and Machine Learning in OPC
o Speeds up correction modeling and reduces runtimes.
o Uses neural networks and generative AI to optimize corrections.

• GPU and High-Performance Computing
o Accelerates OPC by up to 40-60x compared to CPU-only flows.
o Enables faster turnaround and efficient scaling for fabs.

• EUV and Advanced Patterning
o EUV adoption creates new OPC challenges.
o Curvilinear mask shapes and stochastic modeling gaining traction.

• Cloud-Based OPC Solutions
o On-demand compute scaling lowers costs.
o Makes advanced OPC more accessible to fabless companies.

• Automation and Integration
o OPC increasingly embedded into fab automation systems.
o Feedback loops with in-line metrology improve accuracy.

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