5G & Miniaturization Drive US$ 2.8 Billion Non-UV Dicing Tapes Market | FMI Study

Non-UV Dicing Tapes Market
Non-UV Dicing Tapes Market

The global non-UV dicing tapes market is poised for substantial growth, driven by the transformative influence of 5G technology and the growing demand for sophisticated feature-handling semiconductor devices. The market is anticipated to rise at a very promising compound annual growth rate (CAGR) of 6.0% by 2033, ending the forecast period with a projected value of US$ 2.8 billion, up from US$ 1.59 billion in 2023.

Semiconductor devices with improved signal integrity are becoming more and more necessary as 5G technology rolls out, promising faster data rates and better performance. The accuracy and hygienic dicing process depend on non-UV dicing tapes to protect the delicate circuitry of 5G-compatible chips.

The trend toward downsizing and the proliferation of Internet of Things (IoT) devices raise the need for non-UV dicing tapes as manufacturers search for dependable solutions to meet the stringent requirements of modern semiconductor fabrication. The convergence of IoT, 5G, and downsizing underscores the pivotal function of non-UV dicing tapes in enabling the seamless operation of next-generation electronic devices, hence driving the market’s rapid expansion.

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Key points:

  1. Enhanced Yield and Quality: Non-UV dicing tapes offer superior adhesion and stability, minimizing wafer breakage and improving yield rates during the dicing process, ultimately leading to higher-quality chips.
  2. High-Temperature Resistance: These tapes are designed to withstand the high temperatures generated during dicing, ensuring reliable performance and avoiding tape residue or damage to the wafer surface.
  3. Minimal Residue and Clean Removal: Non-UV dicing tapes leave minimal residue on the wafer after removal, reducing the need for additional cleaning processes and enhancing overall production efficiency.
  4. Compatibility with Advanced Materials: The market provides non-UV dicing tapes that are compatible with various advanced semiconductor materials, such as silicon carbide (SiC) and gallium nitride (GaN), meeting the evolving needs of the industry.
  5. Customization Options: Non-UV dicing tapes can be customized to different wafer sizes and thicknesses, ensuring precise and secure bonding during the dicing process.
  6. Environmental Considerations: Many non-UV dicing tapes are designed with eco-friendly materials and processes, aligning with the industry’s focus on sustainability and reducing environmental impact.

Growth Opportunities in the Non-UV Dicing Tapes Market:

  1. Increased Semiconductor Demand: With the proliferation of electronics in various industries, the demand for semiconductor chips is on the rise, consequently driving the demand for non-UV dicing tapes used in semiconductor manufacturing.
  2. Technological Advancements: Ongoing advancements in semiconductor manufacturing technologies are creating opportunities for the development of more efficient and precise non-UV dicing tapes, enhancing productivity and yield rates.
  3. Expanding Electronics Industry: The expanding consumer electronics market, coupled with the growing adoption of IoT devices and wearable technology, presents significant growth prospects for the non-UV dicing tapes market as these devices require semiconductor components.
  4. Rising Automotive Sector: The automotive industry’s increasing integration of advanced electronics and semiconductor components in vehicles, including electric vehicles and autonomous driving systems, is driving the demand for non-UV dicing tapes for semiconductor packaging.
  5. Emerging Markets: Emerging economies, particularly in Asia-Pacific, are witnessing rapid industrialization and infrastructural development, creating a conducive environment for the growth of the non-UV dicing tapes market due to increased semiconductor manufacturing activities.

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Upcoming Trends in the Non-UV Dicing Tapes Market:

  1. Miniaturization in Electronics: The trend towards miniaturization of electronic devices and components is driving the demand for thinner and more precise non-UV dicing tapes to enable the dicing of smaller semiconductor chips.
  2. Shift Towards Wafer-Level Packaging: The semiconductor industry is increasingly adopting wafer-level packaging techniques for cost reduction and improved performance, which necessitates advanced non-UV dicing tapes to facilitate the process.
  3. Demand for Environmentally Friendly Solutions: Growing environmental concerns are prompting manufacturers to develop eco-friendly non-UV dicing tapes with reduced environmental impact, aligning with sustainability goals and regulations.
  4. Integration of Advanced Materials: The integration of advanced materials such as polymers and nanomaterials in non-UV dicing tapes is poised to enhance their mechanical properties, thermal stability, and overall performance in semiconductor manufacturing processes.
  5. Focus on Process Automation: Automation and robotics are becoming integral in semiconductor manufacturing processes, including dicing operations. Non-UV dicing tapes compatible with automated handling systems are anticipated to gain traction as manufacturers strive for greater efficiency and accuracy.

Regional analysis includes

  •          North America
  •          Latin America
  •          Europe
  •          Middle East and Africa (MEA)
  •          East Asia
  •          South Asia
  •          Oceania

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Market Segmentation:

By Material Type:

  •          PVC
  •          PET
  •          PO
  •          Others (EVA, etc.)

By Thickness:

  •          85-125 Micron
  •          126-150 Micron
  •           Below 85 Micron
  •          Above 150 Micron

By Coating Type:

  •          Single Sided
  •          Double Sided

By Application:

  •          Wafer Dicing
  •          Package Dicing
  •          Others (Glass, Ceramics)

Author

Ismail Sutaria (Lead Consultant, Packaging and Materials) has over 8 years of experience in market research and consulting in the packaging & materials industry. Ismail’s strength lies in identifying key challenges faced by the client and offering logical and actionable insights to equip the clients with strategic decision-making power.

Ismail has been an instrumental part of several transformational consulting assignments. His key skills include competitive benchmarking, opportunity assessment, macroeconomic analysis, and business transformation advisory. Ismail is an MBA holder in Marketing and has a Bachelor’s Degree in Mathematics.

About Future Market Insights (FMI)

Future Market Insights, Inc. (ESOMAR certified, recipient of the Stevie Award, and a member of the Greater New York Chamber of Commerce) offers profound insights into the driving factors that are boosting demand in the market. FMI stands as the leading global provider of market intelligence, advisory services, consulting, and events for the Packaging, Food and Beverage, Consumer, Technology, Healthcare, Industrial, and Chemicals markets. With a vast team of over 5000 analysts worldwide, FMI provides global, regional, and local expertise on diverse domains and industry trends across more than 110 countries.

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About the Author

Nikhil Kaitwade

Associate Vice President at Future Market Insights, Inc. has over a decade of experience in market research and business consulting. He has successfully delivered 1500+ client assignments, predominantly in Automotive, Chemicals, Industrial Equipment, Oil & Gas, and Service industries.
His core competency circles around developing research methodology, creating a unique analysis framework, statistical data models for pricing analysis, competition mapping, and market feasibility analysis. His expertise also extends wide and beyond analysis, advising clients on identifying growth potential in established and niche market segments, investment/divestment decisions, and market entry decision-making.
Nikhil holds an MBA degree in Marketing and IT and a Graduate in Mechanical Engineering. Nikhil has authored several publications and quoted in journals like EMS Now, EPR Magazine, and EE Times.

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