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Discover the Synopsys stock price forecast for 2025–2029, with insights into financial performance, AI-driven growth, and investment tips. #Synopsys #SNPS #SNPSstock #stockpriceforecast #EDAsoftware #semiconductorIP #AIchipdesign #stockinvestment #financialperformance #Ansysacquisition #sharebuyback
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South Korea Semiconductor IP Market is driven by AI device demand

Semiconductor intellectual property (IP) cores serve as pre-designed building blocks for complex system-on-chip (SoC) architectures, enabling chip designers to integrate high-performance processor, memory, interface, and encryption modules without investing in ground-up development. These cores accelerate time-to-market, reduce design costs, and enhance power efficiency, making them essential in consumer electronics, automotive systems, and industrial IoT applications.
As chip geometries shrink and functional integration grows, the need for robust verification environments and standardized IP becomes paramount. The market research highlights that adoption of RISC-V, ARM, and custom IP solutions drives product differentiation and competitiveness. Ongoing developments in low-power design, secure processing, and AI accelerators further expand South Korea Semiconductor IP Market opportunities by enabling edge computing and 5G device support. Continuous innovation in packaging and heterogeneous integration underscores evolving market trends, while strategic alliances and licensing agreements shape market dynamics.
The South Korea Semiconductor IP Market is estimated to be valued at USD 2.16 Bn in 2025 and is expected to reach USD 6.68 Bn by 2032, growing at a compound annual growth rate (CAGR) of 17.5% from 2025 to 2032. Key Takeaways
Key players operating in the South Korea Semiconductor IP Market are:
-Arm Holdings
-Synopsys, Inc.
-Cadence Design Systems, Inc.
-Imagination Technologies Limited
-Lattice Semiconductor These market companies hold significant industry share through extensive IP libraries spanning CPUs, GPUs, interconnects, and security modules. Arm Holdings continues to lead with versatile Cortex-series cores, while Synopsys and Cadence bolster their portfolios with advanced verification and custom IP tooling. Imagination Technologies focuses on graphics and neural processing IP, and Lattice Semiconductor addresses low-power FPGA-integrated IP. Collaborative research and licensing agreements among these players foster innovation and help maintain competitive market positions.
‣ Get More Insights On: South Korea Semiconductor IP Market
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How AI and Defense Initiatives Are Shaping the Semiconductor IP Market

The global semiconductor intellectual property (IP) market was valued at US$ 7.1 billion in 2023 and is expected to grow at a compound annual growth rate (CAGR) of 5.9%, reaching US$ 13.5 billion by 2034. The market is being propelled by the rising demand for AI-based applications, government initiatives to modernize defense technologies, and advancements in semiconductor IP commercialization strategies.
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Top Market Trends
AI-Driven Growth: AI-based applications, particularly deep learning (DL) neural networks, are significantly influencing the demand for robust semiconductor IP solutions. AI systems rely on highly efficient and customizable IP cores to enhance processing power, reduce latency, and improve energy efficiency.
Security and Encryption Technologies: As digital threats grow, Hardware Root of Trust (HRoT) and encryption/decryption solutions are becoming critical in semiconductor IP, particularly in defense, IoT, automotive, and industrial applications.
Commercialization of Captive Semiconductor IP: Key players in the industry are developing new business models to commercialize in-house semiconductor IP. This trend is driving innovation and enabling companies to unlock additional revenue streams.
Regional Market Expansion: While North America leads in semiconductor IP due to investments in semiconductor manufacturing and security measures, Asia Pacific is rapidly expanding, with China dominating global semiconductor production and consumption.
Government Investments in Semiconductor Manufacturing: Policies such as the U.S. CHIPS and Science Act are catalyzing semiconductor manufacturing and IP development, ensuring a steady market growth trajectory.
Analysis of Key Players
Key players operating in the global Semiconductor IP market are focusing on licensing ASIC and FPGA semiconductor IP solutions and patent licensing. They are licensing their broad portfolio of memory interface patents to semiconductor and systems companies.
Arm Limited, Rambus, Synopsys, Inc., CEVA, Inc., Maven Silicon, Cadence Design Systems, Inc., Microchip Technology Inc., Achronix Semiconductor Corporation, Marvell, Imagination Technologies, Lattice Semiconductor, Menta, Taiwan Semiconductor Manufacturing Company Limited, Movellus, and Allegro DVT are key players operating in the semiconductor IP industry.
Key Market Drivers
Demand for AI-based Applications: AI, DL, and machine learning (ML) applications are accelerating the demand for high-performance semiconductor IP solutions.
Government Initiatives in Defense Technologies: Defense organizations globally are integrating semiconductor IP to enhance security and performance in military-grade applications.
Increase in Semiconductor Manufacturing Investments: Significant investments in semiconductor fabs and advanced chip manufacturing, particularly in North America and Asia Pacific, are driving market expansion.
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Market Challenges
Intellectual Property Theft and Security Risks: As semiconductor IP gains more prominence, issues related to unauthorized access and IP theft are increasing, posing challenges for industry players.
High R&D Costs: Developing new semiconductor IP solutions requires significant investments in research and development, which can be a barrier for new entrants.
Regulatory and Compliance Issues: The semiconductor IP industry is subject to stringent regulations, especially concerning data security and export controls, which can affect market growth.
Market Segmentation
By Type
Processor IP
Memory IP
Interface IP
ASIC
Verification IP
By Architecture Design
Hard IP Core
Soft IP Core
By IP Source
Licensing
Royalty
By End-user
Integrated Device Manufacturer (IDM)
Foundry
Others
By Industry Vertical
Consumer Electronics
Telecommunications & Data Center
Industrial
Automotive
Commercial
Healthcare
Others
Future Outlook The semiconductor IP market is expected to witness steady growth due to the increasing integration of AI into consumer electronics, automotive, and industrial applications. Furthermore, as AI-driven systems require more advanced SoC architectures, semiconductor IP providers will continue innovating to meet market demands. Investments in security solutions, particularly encryption and HRoT, will remain a focal point for market growth.
Future Prospects: What’s Next for the Industry?
Advancements in Neural Network Processing (NNP): AI-driven processing requirements will continue to shape semiconductor IP, leading to more sophisticated and efficient chip architectures.
Integration of Physical Unclonable Functions (PUF): Security technologies such as PUF are expected to play a significant role in ensuring semiconductor IP integrity.
Expansion of IP Licensing and Royalty Models: Companies will increasingly focus on licensing and royalty-based revenue models to optimize IP monetization.
Strategic Collaborations and Acquisitions: Key players will engage in partnerships and acquisitions to strengthen their semiconductor IP portfolios.
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Acer Swift 14 AI Lunar Lake Features Core Ultra 5 226V

Overview
Much excitement has greeted Acer’s entry into the AI-powered laptop market with the Acer Swift 14 AI. The release of Intel’s Core Ultra 5 226V processor has marked a huge advancement for this unique device, which was initially powered by Qualcomm’s Snapdragon X Elite. This is a turning point in the development of laptops with AI, offering improved effectiveness and performance.
The Growth of Laptops with AI
Artificial intelligence being included into computers is an actual thing now, not just a sci-fi idea. The Acer Swift 14 AI is one of the leading devices in this technological revolution. These laptops are made to be more than simply powerful computers; they are meant to be smart allies that can comprehend and react to human demands in previously unheard-of ways.
The main idea of laptops with AI technology is to enhance human potential. AI-powered computers aim to boost human potential. These technologies aid data analysis, decision-making, and content production and editing. Algorithms and machine learning allow them to learn user preferences and change their behavior to deliver a truly customized computer experience.
Acer Swift 14 AI: A Synopsis
It’s important to comprehend the underlying principles of the Lunar Lake variation before getting into its specifics. Performance and AI capabilities are given first priority in the stylish and lightweight Acer Swift 14 AI notebook.
Its prior version demonstrated the possibilities of integrating AI onto a mobile device and was powered by Qualcomm’s Snapdragon X Elite.
Among the primary attributes of the initial Swift 14 AI were:
Stylish and portable design: Perfect for professionals who are constantly on the road.
Bright display: Providing captivating images for the creation and consumption of content.
Extended battery life: Facilitating continuous work.
Features driven by AI: Increasing creativity and productivity.
Lunar Lake Modernization: A Quantum Advance
The Acer Swift 14 AI is radically different now that Intel’s Core Ultra 5 226V processor is available. This chip promises enhanced performance, efficiency, and artificial intelligence capabilities, marking a substantial advancement in laptop CPU technology.
Core Ultra 5 226V: A More Detailed Exam
The goal of Intel’s Core Ultra series is to provide high-performance processing in a device that uses less electricity. It is anticipated that the 226V version will provide a balance of CPU and GPU performance, making it appropriate for a variety of applications.
The Swift 14 AI’s AI features rely heavily on the chip’s incorporation of cutting-edge AI accelerators. This guarantees the effective handling of AI-intensive activities without sacrificing system performance as a whole.
Expectations for Performance
Customers should expect a significant improvement in performance over earlier versions. It is anticipated that the Core Ultra 5 226V will perform exceptionally well in multitasking, video editing, and content production.
The integrated GPU’s enhanced graphics capabilities will increase visual perception overall, making it appropriate for multimedia consumption and gaming.
AI Improvements
The Swift 14 AI is anticipated to have much improved AI capabilities with a more potent processor. Users may anticipate more accurate AI-powered features, quicker reaction times, and the capacity to manage increasingly difficult AI jobs.
Lunar Lake’s Effect on AI-Powered Laptops
More than just a product improvement, the Acer Swift 14 AI with Lunar Lake is evidence of the market’s quick development for laptops with AI. This gadget opens the door for more advancements by setting a new standard for performance and AI integration.
Quicker Development of AI
The availability of strong CPUs such as the Core Ultra 5 226V will motivate developers to produce more advanced AI laptop apps. This could result in innovations in a number of industries, such as entertainment, healthcare, and education.
Improved User Experience
Intelligent automation, tailored recommendations, and AI assistants that are more receptive and intuitive will all be advantageous to users. With its Lunar Lake processor, the Swift 14 AI offers a peek of computing’s future, one in which advances in technology will easily accommodate user demands.
Motivating Innovation
The race to create the greatest laptops with AI technology is intensifying. They may anticipate seeing tremendous developments in technology and user experience as manufacturers compete with one another.
In summary
Those looking for a powerful and intelligent laptop may find the Acer Swift 14 AI with Lunar Lake to be an appealing option. This signifies a noteworthy advancement in the progression of artificial intelligence-driven computing, providing an insight into the fascinating prospects that await. In the upcoming years, they should anticipate seeing ever more advanced and potent AI-powered gadgets appear as technology progresses.
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Mobile Artificial Intelligence Market Share, Trend & Growth Forecast to 2032
Mobile Artificial Intelligence Market size is projected to expand at 25.5% CAGR from 2023-2032 driven by the ongoing deployment of 5G networks globally. The deployment of 5G technology is revolutionizing mobile communication for providing ultra-fast data speeds and low-latency connectivity. The higher data transfer rate of 5G networks facilitates the efficient execution of complex AI algorithms, fostering the development of AI-driven features in smartphones and other mobile devices. Furthermore, the continuous development of new smartphones embedded with advanced AI technologies is likely to propel the market expansion. To cite an instance, in October 2023, Alphabet's Google unveiled the Pixel 8 smartphone and a new wearable incorporating its AI technology more deeply into its consumer products.
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Based on technology node, the market value from the 20-28nm segment is expected to gain significant traction through 2032. The growth can be attributed to the rising adoption of this semiconductor technology as it enables the development of more power-efficient and compact AI chips for mobile devices. Smaller node sizes help to enhance the processing capabilities while minimizing power consumption to offer improved performance and energy efficiency in mobile AI applications. The growing prominence of AI-driven features, such as voice recognition, image processing, and ML in smartphones and other mobile devices may also propel the demand for 20-28nm technology nodes.
As per application, the mobile artificial intelligence market from the automobile segment is anticipated to witness high demand between 2023 and 2032. The growing popularity of connected and autonomous vehicles is surging the demand for mobile AI technologies to enhance in-car intelligence. Additionally, the increasing integration of AI-powered features, such as ADAS, voice recognition, and predictive maintenance will contribute to the segment growth.
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Regionally, the Asia Pacific mobile AI industry is estimated to expand at a notable CAGR from 2023-2032. The growth is due to rapid technological adoption, the burgeoning smartphone market, and the higher integration of AI-driven features in mobile devices. For instance, in November 2023, Taiwan-based mobile chip designer MediaTek integrated generative AI capabilities into its next chipsets for smartphones. Moreover, the development of 5G infrastructure is also accelerating the deployment of advanced AI functionalities in mobile networks, thereby augmenting the regional industry outlook.
Partial chapters of report table of contents (TOC):
Chapter 2 Executive Summary
2.1 Mobile artificial intelligence market 360º synopsis, 2018 - 2032
2.2 Business trends
2.2.1 Total Addressable Market (TAM), 2023-2032
2.3 Regional trends
2.4 Technology node trends
2.5 Application trends
Chapter 3 Mobile Artificial Intelligence Industry Insights
3.1 Impact of COVID-19
3.2 Industry ecosystem analysis
3.3 Vendor matrix
3.4 Profit margin analysis
3.5 Technology & innovation landscape
3.6 Patent analysis
3.7 Key news and initiatives
3.7.1 Partnership/Collaboration
3.7.2 Merger/Acquisition
3.7.3 Investment
3.7.4 Product launch & innovation
3.8 Regulatory landscape
3.9 Impact forces
3.9.1 Growth drivers
3.9.1.1 Proliferation of smart devices
3.9.1.2 Rise in mobile commerce and payments
3.9.1.3 Advancements in AI technologies
3.9.1.4 Increased focus on user experience
3.9.2 Industry pitfalls & challenges
3.9.2.1 Data privacy and security concerns
3.9.2.2 Complex regulatory compliance
3.10 Growth potential analysis
3.11 Porter’s analysis
3.12 PESTEL analysis
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Global Market Insights, Inc., headquartered in Delaware, U.S., is a global market research and consulting service provider; offering syndicated and custom research reports along with growth consulting services. Our business intelligence and industry research reports offer clients with penetrative insights and actionable market data specially designed and presented to aid strategic decision making. These exhaustive reports are designed via a proprietary research methodology and are available for key industries such as chemicals, advanced materials, technology, renewable energy and biotechnology.
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Integrated Passive Device Market Predicted Expected to Witness a Sustainable Growth by 2026
Driven by such developments, Global Market Insights, Inc., reports that the integrated passive device market may exceed USD 2 billion by 2026. Growing trends of vehicle electrification and vehicle to vehicle communications along with the proliferation of 5G technology could generate new growth strides in integrated passive device (IPD) market. Miniaturization of consumer durables is expected to drive the demand for these IPD devices. These devices provides smaller footprint, low power consumption and high chip connectivity, hence triggering its use into smart wearable devices.
Integrated passive device market have multiple features including better reliability, improved performance, reduced interconnection complexity, reduced package footprint and enhanced component tolerance & output. These features are expected to fuel product adoption in several IoT and AI-enabled devices, infotainment and navigation systems in automotive. Integration of IPD can help lessen system cost and achieve the required small footprint packages, helping automobile and consumer electronics device manufacturers meet requirements.
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Several IPD companies are integrating new techniques and innovations into the product, such as dielectric metals, 3D passive components, and thick layers to obtain insulation and high capacitance. In 2020, key market player Johanson Technology, Inc. announced the release of its front-end integrated passive device for specific chipsets.
Mentioned below are some of the key trends that may propel integrated passive device market outlook:
1) Increasing adoption of devices fitted with diplexers
Integrated passive devices with filters and diplexers find usage in frequency bands and lumped-elements circuit used for the purpose of impedance matching. Diplexers are used in GPS, antennas, cellular infrastructures like 2G, 3G and LTE, automotive telematics, IoT applications and front-end modules of wireless base stations.
The devices give stable and reliable temperature performance, high-performance and low insertion loss. In 2019, the diplexers segment held around 15% industry share and is anticipated to rise further credited to growing adoption of the devices in 5G communication systems and in the telecommunication industry.
2) Growing demand for ESD/EMI integrated passive devices
The electrostatic discharge/electromagnetic interference accounted for over 40% market share in 2019 and is likely to register more than 8% CAGR by 2026. IPD with ESD/EMI possess the ability to offer flexible designs, giving better solutions like fast rise time and low voltage discharge with enhanced performance and robustness in less development cycle. ESD/EMI integrated passive devices help in improving signal reception and stop transmission loss, which makes them highly popular for mobile phone applications.
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3) Robust application in the automotive industry
The automotive sector held over 17% market share in 2019 and is estimated to record a CAGR of over 8% in the upcoming years owing to surging use of integrated passive devices in car electronics for wireless communication purpose. IPDs are cost-effective and are finding high demand in automotive electronic applications such as digital speedometers, intelligent headlights, and electronic control unit.
Table of Contents (ToC) of the report:
Chapter 1 Methodology and Scope
1.1 Scope & definition
1.2 Methodology & forecast
1.3 Data Sources
1.3.1 Primary
1.3.2 Secondary
Chapter 2 Executive Summary
2.1 Integrated passive device market 3600 synopsis, 2016 - 2026
2.1.1 Business trends
2.1.2 Regional trends
2.1.3 Material type trends
2.1.4 Passive devices trends
2.1.5 Application trends
2.1.6 Industry verticals trends
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Electronics and Semiconductors Research Reports
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Automotive NFC Market
Infrared Camera Market
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#Integrated Passive Devices Market Analysis#Integrated Passive Devices Market by Type#Integrated Passive Devices Market Share#Integrated Passive Devices Market Development
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FinFET Technology Market Research -Upcoming Trends, Growth Drivers and Challenges – Forecast till 2023
A new market study, titled “FinFET Technology Market Research Report - Global Forecast till 2023” has been featured on Market Research Future.
Market Snapshot
Global FinFET Technology Market is expected to register a 40.3% CAGR, witnessing substantial growth during the forecast period. The market was valued at USD 25.79 billion in 2018; it is expected to reach USD 268.66 Million by 2025.
North America accounted for the largest market value in 2018; the market is expected to register a CAGR of 40.0% during the forecast period.
Source: MRFR Analysis
Based on technology, the FinFET technology market has been classified as 3nm, 5nm, 7nm, 10nm, 14nm, 16nm, 20nm, and 22nm. The 10nm segment accounted for the larger market share in 2018; it is expected to register a steady CAGR during the forecast period. The 10nm technology is used in server applications and smartphones, which requires faster processors and higher resolution screens, as it enables a 10–20% increase in switching performance. The 3nm process is a technology node that uses gate-all-around (GAA), a next-generation device architecture, in the semiconductor manufacturing process. The 5nm technology uses extreme ultraviolet lithography in metal layer patterning and assists in reducing the mask layers to provide better fidelity. The 7nm FinFET process technology provides the most competitive logic density; it is expected to register the highest CAGR during the forecast period. The 14nm FinFET process technology is considered ideal for power-efficient and high-performance system on chips (SoCs); it was the second largest market in 2018.
The surge in demand for high-performance chips and integration of FinFET technology with smartphones and wearable devices are factors expected to drive the FinFET technology market during the forecast period. However, self-heating issues and complexity in the manufacturing process are expected to limit market growth during the forecast period. Further, growing IC industry and advancements in FinFET technology are expected to act as opportunities for the global FinFET technology market during the forecast period.
The FinFET technology market is highly competitive, with the presence of a number of vendors that offer feature-rich and innovative solutions to their customers. Growing demand for miniaturized semiconductor components along with increased device performance is the key driver for FinFET technology. The gate terminals in FinFET are shorted or operated separately for a better design. This results in controlling the threshold voltage between the gates and therefore, improves the performance of application processors. The advancements in FinFET technology is favoring the market for smartphones, tablets, and other convertible computing devices. The demand for high-performance chips and smart electronic devices is further contributing to the growth of the FinFET technology market.
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Regional Analysis
The global FinFET technology market, by region, has been segmented into Asia-Pacific, North America, Europe, and the Middle East & Africa, and South America. North America is expected to dominate the FinFET Technology market during the forecast period due to the growing ownership of smartphones, and emerging technologies such as machine learning and artificial intelligence are driving the demand for FinFET technology in various end-use applications. Mobile manufacturers such as Samsung and Apple Inc. are utilizing FinFET in CPU processors and memory units in their smartphones to support various 5G and mobile applications.
Key Developments
In April 2019, Taiwan Semiconductor Manufacturing Co. Ltd developed the 5-nanometer technology which is now ready for design. This technology offers advanced logic process to address the exponentially growing demand for computing power driven by AI and 5G.
In April 2019, Samsung Electronics Co Ltd completed the development of 5 nm FinFET process technology, which is based on extreme ultraviolet (EUV) advanced nodes. This product provides up to 25% extra efficiency in the logical area, 20% lower power consumption, and 10% higher performance as compared to other FinFET process technology.
In February 2019, Intel Corporation launched 22nm-based embedded MRAM for IoT devices. The MRAM device is ready for production at a large scale and is expected to be highly beneficial for IoT applications.
In September 2018, GLOBALFOUNDRIES launched a new 12nm Leading-Performance (12LP) FinFET semiconductor manufacturing process. This technology delivers better density and a performance boost over GLOBALFOUNDRIES’s current generation 14nm FinFET offering.
In March 2018, UMC collaborated with Synopsys to enable Custom Compiler and Laker custom design tools to be used with UMC’s 14 nanometers (nm) FinFET process. This collaboration also enables creating and validating a UMC 14nm industry-standard interoperable process design kit (iPDK).
In January 2018, Qualcomm Technologies, Inc., a subsidiary of Qualcomm Inc., partnered with Osterhout Design Group (ODG), manufacturer of AR devices and products to launch AR and R headsets based on 10 nm FinFET technology powered by Snapdragon 835 processor.
Segmentation
By Technology: 3nm, 5nm, 7nm, 10nm, 14nm, 16nm, 20nm, and 22nm
By Application: Central Processing Unit (CPU), System-on-Chip (SoC), Field-Programmable Gate Array (FPGA), Graphics Processing Unit (GPU), and Network Processor
By End User: Mobile, Cloud Server/High-End Networks, IoT/Consumer Electronics, Automotive, and Others
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