Market Report · July 24, 2026
Key data points: The growth forecast = 5.6% annually for the next 7 years. Scroll below to get more insights. This market report covers trends, opportunities and forecasts in plastic IC JEDEC tray market to 2031 by type (ABS material, PC material, PPE material, and others), application (for manufacturing process and for transportation), and region (North America, Europe, Asia Pacific, and the Rest of the World)
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• Lucintel forecasts that, within the type category, abs material is expected to witness the highest growth over the forecast period.
• Within the application category, for manufacturing process is expected to witness higher growth.
• In terms of region, APAC is expected to witness the highest growth over the forecast period. Gain valuable insights for your business decisions with our comprehensive 150+ page report. Sample figures with some insights are shown below.


• Improved Electrostatic Discharge Protection: As more sensitive ICs are used, there is a trend towards JEDEC trays constructed from newer conductive polymers and featuring specialized coating to deliver superior and repeatable ESD protection during handling and shipping.
• Precision Engineering for Automated Handling: With greater automation in semiconductor assembly lines, there is an increased need for JEDEC trays with ultra-close dimensional tolerances and capabilities that deliver smooth compatibility with robotic pick-and-place machines.
• Development of Thermally Conductive Plastics: For ICs of high power, there's a new trend toward JEDEC trays of thermally conductive plastics to assist in heat dissipation during processing and testing to enhance overall efficiency and reliability.
• Integration of Traceability and Identification Features: Integration of barcodes, QR codes, or RFID tags into plastic JEDEC trays for real-time tracking, inventory control, and quality control during the semiconductor supply chain is gaining momentum.
• Adoption of Recycled and Sustainable Plastics: Increased environmental concerns are boosting the creation and adoption of JEDEC trays constructed from recycled plastics or bio-based polymers to minimize waste and decrease semiconductor packaging's carbon footprint. All these trends cumulatively reform the plastic IC JEDEC tray industry by compelling higher performance, more efficiency, and better sustainability. Better ESD protection and more precise engineering are essential to high-end semiconductor fabrication. Thermal conducting plastics fill the requirements for high-power components. Traceability functions streamline logistics. The use of sustainable material helps meet ecological objectives, leading to JEDEC trays becoming more embedded and eco-friendlier in the semiconductor environment.

• Introduction of Ultra-Flat and Low-Outgassing Materials: Creation of plastic materials with ultra-flat surfaces and low outgassing to avoid damage and contamination of increasingly sensitive and fragile integrated circuits.
• Improvements in Anti-Static Coating Longevity: Breakthroughs in ESD protective coatings that provide durable performance and resistance to abrasion and wear, providing consistent protection over multiple handling cycles.
• Design of Universal and Adjustable Tray Forms: Initiatives to design more flexible JEDEC tray forms that can handle a broader variety of IC package sizes and configurations, minimizing the number of specialized tray types required.
• Incorporation of Sensors for Environmental Monitoring: Investigation of integrating sensors into JEDEC trays to track temperature and humidity during storage and transport, offering useful information for quality control and avoiding possible damage.
• Higher Adoption of Closed-Loop Recycling Programs: Implementation of programs to reclaim and recycle used plastic JEDEC trays into the production process, encouraging circular economy and minimizing plastic waste. These advances are making a big difference in the plastic IC JEDEC tray industry by increasing the reliability and safety of IC handling. Ultra-flat, low-outgassing materials reduce damage. Tough anti-static coatings offer reliable protection. Universal designs enhance efficiency. Environmental monitoring provides an added layer of quality assurance. Closed-loop recycling programs promote sustainability, making JEDEC trays a more efficient and environmentally friendly part of the semiconductor supply chain.
• Automotive Semiconductor Production: The high quality and reliability demands of semiconductors for the automotive sector generate the need for rugged, precise, and ESD-protective JEDEC trays that can endure aggressive manufacturing conditions.
• High-Performance Computing and AI Chip Handling: The intrinsic sensitivity and high value of sophisticated processors and AI chips make necessary the utilization of ultra-clean, low-outgassing JEDEC trays with high-level ESD protection in production and shipping.
• Medical Device Component Handling: Medical device manufacturing's stringent cleanliness and anti-contamination requirements necessitate the use of biocompatible and low-outgassing plastics to produce JEDEC trays.
• Small Batch and Prototype Handling: Versatile and flexible JEDEC tray designs that can handle different sizes of IC packages are an affordable way to handle smaller quantities and prototypes for research and development purposes.
• Integration with Smart Warehousing and Logistics: JEDEC trays with RFID or other tracking solutions can be integrated into smart warehousing systems effortlessly for effective management of inventory and real-time monitoring of semiconductor components. These growth opportunities are strongly influencing the plastic IC JEDEC tray market by broadening its scope of application beyond the standard semiconductor assembly. By targeting the unique requirements of the automotive, high-performance computing, medical device, R&D, and intelligent logistics industries, the market can access high-value segments and make JEDEC trays an important enabler for secure and efficient manipulation of sensitive electronic components in various industries.
• Daewon
• NISSEN CHEMITEC CORPORATION
• SHINON
• Mishima Kosan
• MTI Corporation
• ITW Electronic
• Akimoto Manufacturing
• EPAK
• RH Murphy Company
• Hwa Shu Enterprise
• ABS Material
• PC Material
• PPE Material
• Others
• For Manufacturing Process
• For Transportation
• North America
• Europe
• Asia Pacific
• The Rest of the World
• United States: The US market, being large in terms of semiconductor design and advanced manufacturing base, requires high-precision and ESD-safe JEDEC trays. Trends have included the use of advanced conductive polymers and coatings to provide superior ESD protection and incorporation of robotic handling features for automated robotic handling by assembly lines.
• China: Being a hub for global semiconductor assembly and packaging, China is a significant market for plastic IC JEDEC trays. New developments include building more domestic production of affordable yet compliant trays, with rising interest in enhancing dimensional stability for automated processes as well as developing recyclable plastic materials.
• Germany: With its strong automotive and industrial electronics sectors, Germany's JEDEC tray market focuses on superior quality and reliability. Prominent developments are the utilization of high-temperature resistant, heavy-duty plastics and the application of rigorous quality controls to guarantee consistent performance in harsh manufacturing environments.
• India: Being the growing electronics manufacturing hub, India is seeing growing demand for plastic IC JEDEC trays. Developments in the recent past involve setting up local manufacturing bases to decrease dependence on imports and using standard JEDEC specifications to provide compatibility with international assembly processes, with a phase-by-phase transition towards better ESD protection.
• Japan: Japan, which has the long experience in semiconductor production, places importance on precision and purity of materials used in plastic IC JEDEC trays. Recent innovation involves the employment of ultra-pure plastics in order to keep contamination to a minimum and creating trays with well-designed structures to facilitate high-density packaging and high-speed handling in advanced assembly lines.
• Daewon
• NISSEN CHEMITEC CORPORATION
• SHINON
• Mishima Kosan
• MTI Corporation
• ITW Electronic
• Akimoto Manufacturing
• EPAK
• RH Murphy Company
• Hwa Shu Enterprise Q5. Which plastic IC JEDEC tray market segment will be the largest in future? Answer: Lucintel forecasts that, within the type category, abs material is expected to witness the highest growth over the forecast period. Q6. In plastic IC JEDEC tray market, which region is expected to be the largest in next 5 years? Answer: In terms of region, APAC is expected to witness the highest growth over the forecast period. Q7. Do we receive customization in this report? Answer: Yes, Lucintel provides 10% customization without any additional cost.
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