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Printed Electronics Market to Grow by USD 68.68 Billion (2024-2028), Rising Demand for Flexible Displays Drives Growth, Report Highlights AI Evolution – Technavio

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NEW YORK, Nov. 28, 2024 /PRNewswire/ –Report on how AI is driving market transformation – The global printed electronics market size is estimated to grow by USD 68.68 billion from 2024-2028, according to Technavio. The market is estimated to grow at a CAGR of  17.92%  during the forecast period. Growing demand for flexible display is driving market growth, with a trend towards emerging stretchable electronics. However, challenge of encapsulation  poses a challenge. Key market players include Agfa Gevaert NV, BASF SE, DuPont de Nemours Inc., Dycotec Materials Ltd., Enfucell, Fujikura Co. Ltd., Henkel AG and Co. KGaA, InnovationLab GmbH, Jabil Inc., Koch Industries Inc., Nissha Co. Ltd., NovaCentrix, Optomec Inc., Printed Electronics Ltd., Samsung Electronics Co. Ltd., Schreiner Group GmbH and Co. KG, TE Connectivity Ltd., Xerox Holdings Corp., YFY Inc., and Ynvisible Interactive Inc.

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                                                                                                      Printed Electronics Market Scope

Report Coverage

Details

Base year

2023

Historic period

2018 – 2022

Forecast period

2024-2028

Growth momentum & CAGR

Accelerate at a CAGR of 17.92%

Market growth 2024-2028

USD 68679.2 million

Market structure

Fragmented

YoY growth 2022-2023 (%)

15.18

Regional analysis

APAC, North America, Europe, Middle East and Africa, and South America

Performing market contribution

APAC at 48%

Key countries

South Korea, Japan, China, US, and UK

Key companies profiled

Agfa Gevaert NV, BASF SE, DuPont de Nemours Inc., Dycotec Materials Ltd., Enfucell, Fujikura Co. Ltd., Henkel AG and Co. KGaA, InnovationLab GmbH, Jabil Inc., Koch Industries Inc., Nissha Co. Ltd., NovaCentrix, Optomec Inc., Printed Electronics Ltd., Samsung Electronics Co. Ltd., Schreiner Group GmbH and Co. KG, TE Connectivity Ltd., Xerox Holdings Corp., YFY Inc., and Ynvisible Interactive Inc

Market Driver

The Printed Electronics Market is experiencing significant growth, particularly in consumer electronics and IoT applications. OLED displays and printed RFID devices are leading the trend, offering higher efficiency, lower power consumption, and upgrades through easy upgrades and improvisations. Companies like CymMetrik are driving innovation with advanced materials, inks, and substrates. Flexible substrates, such as glass, silicon, flexible foil, paper, and Polyethylene Terephthalate (PET), are used in various devices like photovoltaic, lighting, RFID, and other devices. Ink materials and substrate material segments are key areas of focus, with conductive inks in silver, carbon, and metallic varieties, and graphene ink gaining popularity. Printing technologies like inkjet, screen-printing, gravure, and flexographic are used, with R2R printing and offset printing also in use. While high investment costs are a challenge, the market’s potential for cost-effectivity, accuracy, authenticity, reliability, and innovation in smart packaging, photovoltaic devices, solar energy, and various other devices make it an exciting space to watch. 

Stretchable electronics, a technology for constructing flexible electronic circuits, is gaining significant traction in various industries. These electronics are designed to be placed on stretchable substrates or embedded within materials like silicones and polyurethanes. The market for stretchable electronics is projected to expand, particularly in the healthcare sector. This growth is attributed to the increasing demand for real-time patient monitoring, especially for individuals with critical health conditions, as well as the application of these technologies in military and sports sectors for health tracking and management. Key applications include cyber skins for robotic devices, implantable electronics, moldable energy storage devices, and blood glucose test strips. 

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 Market Challenges

 The Printed Electronics Market is experiencing significant growth due to its applications in consumer electronics, IoT devices, and various other sectors. OLED displays and RFID devices are leading the way, offering advantages such as higher efficiency, lower power consumption, and upgrades through easy upgrades and improvisations. Companies like CymMetrik are driving innovation with advanced materials, inks, and substrates. Flexible substrates like glass, silicon, and flexible foil, as well as paper and PET, are used in inkjet printing, screen-printing, and other technologies. Challenges include high investment cost for advanced technologies like R2R printing, gravure printing, offset printing, and inkjet or screen printing. The market for printed batteries, sensors, and medical & healthcare devices is expanding, with a focus on accuracy, authenticity, reliability, and cost-effectivity. Ink materials and substrate material segments include conductive inks, silver, carbon inks, metallic inks, and graphene ink. The photovoltaic devices segment, which includes solar energy, is also gaining traction.The encapsulation process for printed electronics, particularly in the manufacturing of flexible OLED displays and light panels, is a costly challenge. This issue is not limited to flexible substrates but also applies to rigid ones. With mass production of these panels, the cost increases significantly. Companies like Samsung and LG Display, which use vapor deposition techniques for OLED displays with curved form factors, face this expense. This challenge is anticipated to persist in printed OLED displays, where the encapsulation cost will be comparable to vapor deposition methods.

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Segment Overview 

This printed electronics market report extensively covers market segmentation by  

Technology 1.1 Screen1.2 Inkjet1.3 Gravure1.4 FlexographicApplication 2.1 Display2.2 Sensors2.3 Photovoltaics2.4 Battery2.5 OthersGeography 3.1 APAC3.2 North America3.3 Europe3.4 Middle East and Africa3.5 South America

1.1 Screen-  The screen-printing process is a well-established technology in the printed electronics market for creating high-quality and reliable printed circuits. Its advantages include high throughput, high resolution, and a low cost per unit. Screen printing is particularly suitable for large-area and high-volume production in applications such as flexible displays, photovoltaics, and touch screens. Although it may not be ideal for producing small, intricate patterns with high precision, screen printing’s ability to create thick and highly conductive traces makes it suitable for high-current applications. Despite some limitations, such as the need for significant setup time and cost for stencils or masks, screen printing’s popularity continues in the printed electronics market due to its proven performance and versatility. Therefore, the screen-printing segment is expected to contribute significantly to the growth of the global printed electronics market during the forecast period.

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Research Analysis

Printed electronics is a rapidly evolving technology that is revolutionizing the consumer electronics industry. This technology enables the production of electronic components directly onto various substrates, including glass, silicon, flexible foil, paper, and Polyethylene Terephthalate (PET). The market for printed electronics is expanding due to its applications in IoT devices, OLED displays, RFID tags, and various communication devices. Printed electronics offer several advantages over traditional electronics, such as lower production costs, higher efficiency, and low power consumption. This technology is a research arena for upgrades and improvisations, with advancements in materials, inks, and substrates. Ink materials include conductive polymers, metal nanoparticles, and organic semiconductors, while substrate material segments include flexible substrates like PET and glass. Printing techniques such as inkjet printing and screen-printing are commonly used in the production of printed electronics. The market for printed electronics is expected to grow significantly in the coming years due to the increasing demand for smartphones, wearable devices, and other IoT applications. Overall, printed electronics is a dynamic and innovative field that is transforming the consumer electronics industry.

Market Research Overview

Printed electronics is an emerging technology that is revolutionizing the consumer electronics industry by enabling the production of flexible, lightweight, and cost-effective electronic devices. This technology is finding extensive applications in IoT, consumer electronics, and various other sectors. The technology offers several advantages such as higher efficiency, lower power consumption, and upgrades through easy upgrades and improvisations. Printed electronics are used in various applications including OLED displays, RFID devices, and communication devices. The market for printed electronics is driven by the demand for IoT devices, smartphones, and display devices. The technology utilizes various materials such as inks, substrates, and ink materials segment like conductive inks made of silver, carbon, metallic inks, and graphene ink. Substrate materials include glass, silicon, flexible foil, paper, and Polyethylene Terephthalate (PET). Printing technologies include inkjet printing, screen-printing, gravure printing, and R2R printing. While screen printing technology is widely used, other printing technologies like gravure and offset printing are also gaining popularity. The market for printed electronics is diverse and includes photovoltaic devices for solar energy, lighting, RFID, other devices like printed batteries, sensors, and medical & healthcare applications. The technology offers benefits such as accuracy, authenticity, reliability, and cost-effectivity. However, the high investment cost associated with the production of these devices remains a challenge for the market. Smart packaging is another growing application area for printed electronics. The market for printed electronics is expected to grow significantly in the coming years due to its numerous advantages and increasing demand from various industries.

Table of Contents:

1 Executive Summary
2 Market Landscape
3 Market Sizing
4 Historic Market Size
5 Five Forces Analysis
6 Market Segmentation

TechnologyScreenInkjetGravureFlexographicApplicationDisplaySensorsPhotovoltaicsBatteryOthersGeographyAPACNorth AmericaEuropeMiddle East And AfricaSouth America

7 Customer Landscape
8 Geographic Landscape
9 Drivers, Challenges, and Trends
10 Company Landscape
11 Company Analysis
12 Appendix

About Technavio

Technavio is a leading global technology research and advisory company. Their research and analysis focuses on emerging market trends and provides actionable insights to help businesses identify market opportunities and develop effective strategies to optimize their market positions.

With over 500 specialized analysts, Technavio’s report library consists of more than 17,000 reports and counting, covering 800 technologies, spanning across 50 countries. Their client base consists of enterprises of all sizes, including more than 100 Fortune 500 companies. This growing client base relies on Technavio’s comprehensive coverage, extensive research, and actionable market insights to identify opportunities in existing and potential markets and assess their competitive positions within changing market scenarios.

Contacts

Technavio Research
Jesse Maida
Media & Marketing Executive
US: +1 844 364 1100
UK: +44 203 893 3200
Email: media@technavio.com
Website: www.technavio.com/

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Ampace Spotlights AI-Ready Battery Solutions for Gigascale Infrastructure at DCW Washington 2026

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WASHINGTON, April 21, 2026 /PRNewswire/ — Ampace, a global leader in advanced lithium-ion battery technology, is participating in Data Center World 2026 at the Walter E. Washington Convention Center (Booth 206), where active visitor engagement reflected growing industry focus on how power infrastructure must evolve for the AI era.

This year, Ampace is showcasing how battery systems are becoming an increasingly important enabler of gigascale AI infrastructure. From cell-level technologies to system-level deployment, spanning applications from commercial and industrial energy storage to UPS systems, Ampace is presenting solutions designed to help data centers manage rising power volatility, improve resilience, and scale more efficiently.

At the center of the showcase is the PU Series, Ampace’s AI-ready battery platform engineered for the increasingly dynamic conditions of modern compute environments. As AI clusters drive 100kW+ rack densities, millisecond-level load spikes, and frequent workload transitions, conventional backup systems are being asked to do far more than emergency support. Ampace’s PU Series is designed to absorb rapid fluctuations, maintain stable output, and support uninterrupted operation under highly variable AI workloads.

A key highlight of Ampace’s presence this week will be its featured TECH TALK session with Eaton on April 22, from 2:30 PM to 3:15 PM (Room 209ABC), titled Powering Gigascale AI: How Advanced Batteries Stabilize Extreme Training Loads.

The session will bring together shared industry perspectives from Aaron Schott, UPS Sales Manager at Ampace, and Jon Hymel, Product Manager at Eaton, two professionals working closely with hyperscale, colocation, enterprise, and mission-critical customers navigating the next wave of AI infrastructure growth.

Together, the speakers will explore how established UPS architectures and advanced lithium battery systems are increasingly working in tandem to meet the operational realities of AI data centers. The discussion will examine how battery technologies can support real-time load balancing, improve reliability, and help operators prepare for the transition from megawatt-scale campuses to gigawatt-scale compute ecosystems.

Their joint appearance reflects a growing alignment across the power infrastructure ecosystem: scalable AI requires not only more electricity, but smarter coordination between UPS systems, energy storage, and facility operations. As data centers evolve, battery-enabled continuity is becoming a shared priority across technology providers, operators, and infrastructure partners.

Built for demanding AI applications, Ampace’s platform is engineered to respond rapidly during ramp-up and ramp-down events, while maintaining stable operation under continuous partial-load cycling. Its semi-solid cell technology further enhances intrinsic safety by reducing leakage risk and lowering thermal runaway gas generation, while cabinet-level validation under UL 9540A standards reinforces readiness for mission-critical deployments.

At Ampace’s booth, visitors have been exploring how advanced battery systems can help reduce infrastructure oversizing, relieve pressure on grid connections, and improve continuity in facilities originally designed for steady-state demand. The strong response reflects a broader market shift: batteries are no longer viewed only as standby assets, but as active components of modern AI power architecture.

Visit Booth 206 to meet the Ampace team, experience the PU Series on site, and join in-depth discussions on how advanced battery solutions are helping build a more resilient, scalable, and efficient AI infrastructure. On-site specialists are available throughout the show for live demonstrations, technical briefings, and media inquiries.

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TÜV Rheinland Opens Advanced Automotive Component Testing Laboratory in Manesar, Haryana

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Empowering automotive industry capabilities through precision testing, international compliance, and innovative solutions for next-generation mobility.

MANESAR, India, April 22, 2026 /PRNewswire/ — TÜV Rheinland, a global leader in independent testing, inspection and certification services, today announced the opening of its state-of-the-art Automotive Component Testing Laboratory (ACT Lab) in Manesar, Haryana. The ACT Lab will support manufacturers in meeting evolving regulatory requirements, adopting emerging technologies, and accelerating time-to-market.

As the world’s third-largest mobility market, India is developing rapidly, and demand for trustworthy, globally recognized testing services continues to rise. TÜV Rheinland’s ACT Lab supports the development of safer and high-performance automotive products.

Strategically located in Manesar, the facility is well-positioned to unlock growth opportunities within India’s automotive and electric mobility ecosystem, while advancing next-generation transport solutions.

Technological Excellence and Advanced Capabilities

The ACT Lab is equipped with advanced testing systems from leading international manufacturers, ensuring precision, reliability, and global acceptance of results.

Its capabilities include structural testing, corrosion and durability assessments, and environmental simulation under extreme conditions. The facility also offers fatigue and lifecycle testing for critical automotive components, alongside comprehensive material analysis for metals and polymers, delivering deep insights into performance under real-world conditions.

By providing end-to-end testing, inspection, and certification solutions under one roof, the lab distinguishes itself through its ability to replicate operational environments, meet global and OEM standards, and deliver highly reliable, traceable results.

Platform for Collaboration, Innovation, and Trust

Commenting on the inauguration, Dr. Matthias Schubert, Executive Vice President Mobility at TÜV Rheinland Group, said: “Our investment in the Automotive Component Testing Laboratory in Manesar reflects TÜV Rheinland’s long-term strategic commitment to India as a key growth market. As the mobility sector undergoes rapid transformation, this facility enables us to support manufacturers with advanced testing capabilities that not only ensure compliance but also drive innovation, safety, and global competitiveness.”

Highlighting the broader strategic intent, Thomas Quernheim, Senior Vice President Mobility, TÜV Rheinland Group, said, “India represents one of the most dynamic opportunities within our global mobility portfolio. This investment reflects our vision to build resilient, future-oriented capabilities that not only respond to market evolution but also shape the standards of tomorrow’s mobility ecosystem.”

Rajendra Kisanrao Bandal, Vice President, Mobility at TÜV Rheinland India, added: “This facility goes beyond a conventional testing laboratory – it is a platform for collaboration and innovation. Combining global expertise with local insight, it enables manufacturers to enhance quality, reliability, and performance, while strengthening India’s position in the global mobility landscape.”

About TÜV Rheinland:

TÜV Rheinland is a leading provider of testing and inspection services worldwide. For over 150 years, the company has helped make the world a safer place. Today, more than 28,000 employees test, inspect and certify products, plants and processes, while also providing training for people in a wide range of professions. Operating from 500 locations in more than 50 countries, TÜV Rheinland helps safeguard key areas of business and everyday life. Headquartered in Cologne and generating annual revenue of close to €3 billion, the company plays a key role in quality assurance worldwide. TÜV Rheinland has been a member of the UN Global Compact since 2006, demonstrating its commitment to anti-corruption and sustainability.

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Media Contact:

Samrat Sinha
Communications & PR
TÜV Rheinland
Email: Samrat.Sinha@ind.tuv.com

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EZVIZ joins the United Nations Global Compact, starting a new chapter of its unwavering journey to long-term sustainability and further expanding its contribution to key environmental issues

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HOOFDDORP, Netherlands, April 22, 2026 /PRNewswire/ — EZVIZ, an advocate for greener smart homes, is proud to announce its participation in the United Nations Global Compact (UNGC) in the International Year of Volunteers for Sustainable Development on this Earth Day. As a smart home pioneer joining the world’s largest corporate sustainability initiative, EZVIZ will align its award-winning EZVIZ Green initiative with the UNGC’s Ten Principles, making a transformative impact through responsible business in environmental protection.

The UN Global Compact is a call to companies to adopt ten universal principles in human rights, labour, environment and anti-corruption, and to support the Sustainable Development Goals (SDGs). With over 25,000 participants across 167 countries, the UNGC is keeping the earth green and clean with its growing influence.

Though new to the initiative, EZVIZ has been implementing SDGs in its development, operations and management, including establishing an ESG committee directed by the Board. On April 10, the company published its 2025 ESG report under its commitment “Our Planet. Our Actions” for transparency and awareness. Over the past year, EZVIZ has received international recognition like the European Green Awards, the SEAL Sustainability Business Awards, and the Indigo Design Award with the “Design for Social Change” honor.

To safeguard a green planet, EZVIZ has addressed land degradation, global warming, plastic recycling, community empowerment and more. Partnering with Treedom, EZVIZ has planted 4,190 trees with local farmers, reducing approximately 738.2 tons of CO2. Together with Plastic Bank, EZVIZ has prevented over 1,000,000 plastic bottles from polluting vulnerable environments. The partnerships are reinforced by internally recycling plastics and minimizing waste. In 2025, EZVIZ incorporated over 30 tons of recycled materials into its RE7 Edge robot vacuum’s design and reduced CO2 emissions by 73.1 tons through greener packaging.

“Becoming part of the UNGC is a significant milestone for us. It means our efforts in building a better planet, have been recognized globally,” said Jingwen Cao, EZVIZ Board Secretary and Director of the ESG Committee. “This participation provides us the confidence to further expand our environmental protection, as well as to set stricter boundaries to avoid sacrificing the environment for commercial gain.”

With green in its brand gene, the company has also developed green technology with a low carbon footprint. The AOV low-energy consumption tech, and the ColorFULL low-light night vision mode help reduce energy consumption and light pollution resulted from 24/7 home security. Firstly embedding self-patented wild animal detection in outdoor cameras, EZVIZ continues to implement responsible AI to balance human safety and wildlife protection, according to Sophie Zhang, EZVIZ Global Brand Director.

“We believe in the power of technology and always strive to benefit not only our users, but also everyone and every life,” said Zhang. “Alongside other industry leaders in the UNGC, EZVIZ is motivated to contribute to a better future for generations to come.”

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