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Piezoelectric Devices Market worth $55.49 billion by 2030 – Exclusive Report by MarketsandMarkets™

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DELRAY BEACH, Fla., Jan. 7, 2025 /PRNewswire/ — The global piezoelectric devices market is expected to grow from USD 35.59 billion in 2024 to USD 55.49 billion by 2030 at a CAGR of 7.7% during the estimated period 2024-2030 according to a new report by MarketsandMarkets™. Rising adoption of piezoelectric materials to enhance efficiency of aircraft structures is driving the demand. Major players in the aerospace industry manufacture, sell, and service commercial aircraft, space vehicles, and satellites. This industry demands advanced solutions that enhance the efficiency, durability, and performance of aircraft, planes, helicopters, and submarines.

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Browse in-depth TOC on “Piezoelectric Devices Market” 
216 – Tables
62 – Figures
283 – Pages

Piezoelectric Devices Market Report Scope:

Report Coverage

Details

Market Revenue in 2024

$ 35.59 billion

Estimated Value by 2030

$ 55.49 billion

Growth Rate

Poised to grow at a CAGR of 7.7%

Market Size Available for

2021–2030

Forecast Period

2024–2030

Forecast Units

Value (USD Million/Billion)

Report Coverage

Revenue Forecast, Competitive Landscape, Growth Factors, and Trends

Segments Covered

By Product, Material, Element, Application and Region

Geographies Covered

North America, Europe, Asia Pacific, and Rest of World

Key Market Challenge

High manufacturing costs

Key Market Opportunities

Growing popularity of 3D printing technologies

Key Market Drivers

Escalating adoption of advanced driving aids and sensing technologies

 One of the major technologies used is piezoelectric actuators, which are applied in active vibration-damping techniques. These actuators monitor several mechanical parts and structures of modern aircraft, thus preventing undesirable vibrations, noise levels, fuel consumption rates, and energy waste. Besides aircraft, piezoelectric technology is applicable in planes, wind turbines, motors, machine tools, and laboratory tables. Piezoelectric devices address common issues in aviation, such as engine vibration, high cabin noise levels, ice formation on wings, flow separation due to turbulence, and performance of control surfaces in cold climates.

Piezoelectric Actuators to hold the largest market share during the forecast period.

Piezoelectric actuators, owing to their benefits, are used in industries such as automotive, aerospace & defense, electronics & semiconductors, bio-nanotechnology, astronomy/aerospace technology, biomedical, optics, photonics, scientific instrumentation, telecommunications, ultrasonic machine control, and metrology. A few common applications of these actuators range from gene manipulation, vibration cancellation, fiber-optic alignment, and active damping to shock wave generation, image stabilization, and wafer-mask alignment. Besides these applications, piezoelectric actuators are also used in ultra-precise positioning, generation, and handling of high forces or pressures in static and dynamic situations. They can also be integrated into micro-scale systems; hydraulic valves, microgrippers, fuel injection systems in diesel engines, and medical tools.

By Material, Piezoelectric Polymers segment is projected to grow at the highest CAGR in piezoelectric devices market during the forecast period.

Piezoelectric polymers, such as PVDF and its copolymers, are gaining popularity. They are flexible, lightweight, and suited for many applications. These materials have lower densities than traditional piezoelectric ceramics, making them preferable for applications that require low-weight and versatile designs. The rising adoption of wearable electronics, medical devices, and energy-harvesting systems is driving the demand for piezoelectric polymers. Their ability to conform to complex shapes and operate under varying mechanical stress conditions positions them as critical components in sensors, actuators, and transducers. Advancements in material science have led to enhanced performance and durability, further fueling their adoption. Moreover, the increasing emphasis on sustainability is pushing industries toward eco-friendly and recyclable alternatives, with piezoelectric polymers fitting well within this trend. With ongoing innovations and expanding application areas, piezoelectric polymers are poised to revolutionize the piezoelectric devices industry, supporting rapid growth and innovation.

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Asia Pacific expected to account for the largest market size during the forecast period.

Asia Pacific’s thriving industrial and consumer electronics sectors serve as primary drivers of demand for piezoelectric technologies, mainly because of the use of the technology such as sensors, actuators, transducers, and energy harvesting in these applications. Growth of the automotive sector, mainly in countries such as China, Japan, and South Korea, increases the utilization of piezoelectric devices, particularly in advanced driver-assistance systems and electric vehicles. Additionally, Asia Pacific’s leadership in electronics manufacturing, with nations like China, Taiwan, and South Korea housing major producers of semiconductors and electronic components, creates a robust supply chain for piezoelectric devices. The region’s significant investments in renewable energy, healthcare, and infrastructure development also contribute to market growth. With emerging economies like India and South East Asia, the adoption of piezoelectric technology in medical devices, aerospace, and industrial automation is increasing. In addition, encouraging government policies, increased R&D spending, and accessible low-cost manufacturing also contribute significantly to Asia Pacific being a market leader, with the region serving as an important center for innovation and production for this technology.

Key Players

Key companies operating in the piezoelectric devices companies are CeramTec GmbH (Germany), CTS Corporation (US), Kistler Group (Switzerland), Physik Instrumente (PI) SE & Co. KG. (US), Aerotech (US), Piezosystem jena (Germany), KEMET Corporation (US), Piezo Technologies (US), APC International, Ltd. (US), Mad City Labs, Inc (US), TE Connectivity (Switzerland), Mide Technology Corp (US), Omega Piezo Technologies (US) , PCB Piezotronics, Inc. (US), and PiezoMotor (Sweden) among others.

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About MarketsandMarkets™

MarketsandMarkets™ has been recognized as one of America’s best management consulting firms by Forbes, as per their recent report.

MarketsandMarkets™ is a blue ocean alternative in growth consulting and program management, leveraging a man-machine offering to drive supernormal growth for progressive organizations in the B2B space. We have the widest lens on emerging technologies, making us proficient in co-creating supernormal growth for clients.

Earlier this year, we made a formal transformation into one of America’s best management consulting firms as per a survey conducted by Forbes.

The B2B economy is witnessing the emergence of $25 trillion of new revenue streams that are substituting existing revenue streams in this decade alone. We work with clients on growth programs, helping them monetize this $25 trillion opportunity through our service lines – TAM Expansion, Go-to-Market (GTM) Strategy to Execution, Market Share Gain, Account Enablement, and Thought Leadership Marketing.

Built on the ‘GIVE Growth’ principle, we work with several Forbes Global 2000 B2B companies – helping them stay relevant in a disruptive ecosystem. Our insights and strategies are molded by our industry experts, cutting-edge AI-powered Market Intelligence Cloud, and years of research. The KnowledgeStore™ (our Market Intelligence Cloud) integrates our research, facilitates an analysis of interconnections through a set of applications, helping clients look at the entire ecosystem and understand the revenue shifts happening in their industry.

To find out more, visit www.MarketsandMarkets™.com or follow us on Twitter, LinkedIn and Facebook.

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SoftBank Corp. and TOPPAN Holdings Develop Lightweight, Durable Skin for Solar HAPS Aircraft Wings

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Skin’s compatibility with stratospheric conditions such as extreme UV rays and ultra-low temperatures makes longer HAPS operations possible

TOKYO, April 27, 2026 /PRNewswire/ — SoftBank Corp. (TYO: 9434) (President & CEO: Junichi Miyakawa, “SoftBank”) and TOPPAN Holdings Inc. (TYO: 7911) (President & COO: Satoshi Oya, “TOPPAN Holdings”) jointly developed a lightweight, durable skin for use on solar High-Altitude Platform Station (HAPS) aircraft wings and devised a testing method that replicates the stratosphere’s environment. Test production will go forward, and the aircraft wing skin is planned for use with HTA-type[1] HAPS, which SoftBank plans to deploy for commercial services from 2029 onwards.     

This jointly developed HAPS aircraft wing skin and test method that reproduces stratospheric conditions were made possible by combining SoftBank’s HAPS expertise and TOPPAN Holdings’ know-how accrued over years of creating advanced multi-layered film technology designed for packaging and construction materials. TOPPAN Holdings also leveraged its proprietary technology that evaluates weather resistance. This joint development mitigates film damage (degradation) caused by strong ultraviolet (UV) rays and ultra-low temperatures of almost -100°C. As a result, the aircraft can stay in the stratosphere for longer periods. 

Development Background
HAPS, also referred to as “base stations in the sky,” provide communication services from uncrewed aircraft that remain airborne in the stratosphere. Being able to keep an aircraft with a communications payload airborne for extended periods of time would make it possible to provide an alternative means of communications in the aftermath of large-scale natural disasters, as well as provide communication services to under-connected areas, such as mountainous regions and remote islands. As these platforms operate from the stratosphere at an altitude of approximately 20 km above, they offer wider-area coverage than base stations on the ground, while also providing high-quality, high-volume, low-latency communications superior to satellite-based communications. However, at this altitude in the stratosphere, UV ray and ozone exposure is far greater than at ground level, and with exposure to extremely cold temperatures that sometimes drop to almost -100℃, impaired efficacy due to these environmental factors had been a serious issue with conventional all-purpose skins. Responding to this challenge, SoftBank and TOPPAN Holdings jointly developed a new ultra-lightweight, high-durability skin for aircraft wings capable of withstanding the harsh conditions of the stratosphere, along with a specialized methodology for its evaluation.     

Wing Skin & Evaluation Method Characteristics
1. Use of impact-resistant advanced resin and proprietary structure to achieve both lightweighting and safety
Leveraging converting technology[2] developed for packaging by TOPPAN Holdings, an optimized skin structure was achieved by precisely layering original materials and impact-resistant advanced resin suitable for use at extremely low temperature conditions. The resulting skin weighs the same as or less than average conventional all-purpose skin, and even if damage to the skin were to occur, the break-resistant design keeps damage from spreading, allowing for both a safe and lighter HAPS airframe.    

2. Advanced durability to address harsh stratospheric conditions
SoftBank has contributed real-world data from its stratospheric HAPS flights, including actual temperature measurements and deep ultraviolet (UV-C) ray exposure conditions, and has also defined requirements such as weight reduction and other performance criteria. This has enabled TOPPAN Holdings to design a skin that addresses exposure to the harsh environmental conditions of the stratosphere by applying technology developed for construction materials. These conditions particular to the stratosphere include everything from extremely low temperatures (approximately -50℃ to -95℃) to extreme heat (approximately 100℃) from direct sunlight. The skin is also resistant to short wave UV-C and high-concentration ozone (10-20 ppm, parts per million) exposure that are far stronger than at ground level. This durability will allow for extended HAPS operation periods.      

3. Establishing a testing method that simulates stratospheric conditions to ensure reliability
TOPPAN Holdings leveraged its knowledge of packaging film testing and accelerated durability testing of construction materials, to construct a new test environment that assesses the skin under a simulation of the ultralow temperatures of the stratosphere, while also facilitating the testing of simultaneous exposure from short wave UV rays and the ozone. By using this test environment, it is possible to understand the detailed mechanisms of deterioration particular to the stratosphere and to use that knowledge for improved product design. This understanding and design adjustment makes it possible to carry out a more precise and more reliable evaluation compared to former testing methods.     

Roles of Both Companies
SoftBank
Provide expertise required to evaluate the suitability of the skin as well as expertise on HAPS operations
Supervision of advancing use with HAPS aircraft and transferring advances to practical application

TOPPAN Holdings
Develop and provide skin material suitable for HAPS aircraft
Proposal for evaluation method in stratospheric environment

Future Developments
SoftBank and TOPPAN Holdings will proceed with research to make the skin material developed within the scope of this project even lighter and stronger by fiscal 2027 (the year ending March 31, 2028). Additionally, while evaluating durability in the stratosphere, both companies will also attempt to establish mass production technology capable of ensuring sufficient supply and reliable quality by fiscal 2028. Also, based on testing outcomes, additional functions will be added, and the skin is expected to be used by SoftBank on HTA-type HAPS aircraft that provide commercial services, planned for launch from 2029 onwards. Both companies also plan to apply this skin to other fields that require a high level of durability.

[1] HTA (Heavier-Than-Air) refers to HAPS that remain airborne by generating aerodynamic lift, similar to conventional aircraft.

[2] Converting technology is the process of transforming materials like film into high-function final products through specialized processing such as printing and lamination. 

For more information:
https://www.holdings.toppan.com/en/news/04/newsrelease260427_1.html 

About SoftBank Corp.
Guided by the SoftBank Group’s corporate philosophy, “Information Revolution – Happiness for everyone,” SoftBank Corp. (TOKYO: 9434) operates telecommunications and IT businesses in Japan and globally. Building on its strong business foundation, SoftBank Corp. is expanding into non-telecom fields in line with its “Beyond Carrier” growth strategy while further growing its telecom business by harnessing the power of 5G/6G, IoT, Digital Twin and Non-Terrestrial Network (NTN) solutions, including High Altitude Platform Station (HAPS)-based stratospheric telecommunications. While constructing AI data centers and developing homegrown LLMs specialized for the Japanese language, SoftBank is integrating AI with radio access networks (AI-RAN), with the aim of becoming a provider of next-generation social infrastructure.
https://www.softbank.jp/en/corp/

About the TOPPAN Group
Established in Tokyo in 1900, the TOPPAN Group is a leading and diversified global provider committed to delivering sustainable, integrated solutions in fields including printing, communications, security, packaging, décor materials, electronics, and digital transformation. The TOPPAN Group’s global team of more than 50,000 employees offers optimal solutions enabled by industry-leading expertise and technologies to address the diverse challenges of every business sector and society and contribute to the achievement of shared sustainability goals.
https://www.holdings.toppan.com/en/
https://www.linkedin.com/company/toppan/

 

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TravelingWiki Foundation Launches SportsFanWiki.com, Providing Disabled Fans with Sports Venue Specific Information in Wiki Format

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The setup of SportsFanWiki.com mirrors the extremely successful format of TravelingWiki.com, which documents disability resources for all FAA Large Sized and FAA Medium Sized hub airports and leverages the launch of a GenAI platform to ensure access across society to expanded disability resources information.

LAS VEGAS, April 27, 2026 /PRNewswire-PRWeb/ — TravelingWiki Foundation announces the launch of SportsFanWiki.com, providing a comprehensive database of sports venue information for fans with Non Visible Disabilities. The setup of SportsFanWiki.com mirrors the extremely successful format of TravelingWiki.com, which documents disability resources for all FAA Large Sized and FAA Medium Sized hub airports.

Leadership of TravelingWiki Foundation is honored to expand to sports venue disability information, offered free to the public and funded via the the sale of cards from the extraordinary careers of Michael Jordan, Lebron James, Shohei Ohtani and Mickey Mantle.

The launch of SportsFanWiki occurs at the same time as the launch of ShoheiAutographs.com; MantleRookies.com; KobeRookies.com; and LebronRookies.com, offering market leading sports card inventory of Shohei Ohtani, Mickey Mantle, Kobe Bryant and Lebron James, respectively. The launch highlights TravelingWiki’s services offered including new Generative AI functionality via a GenAI platform currently in beta testing. The launch also spotlights TravelingWiki’s CardForACause.com platform for free disability resources offered to 20 million Americans for no cost as funded with sports cards sales nationwide via the most two recent White House administrations.

TravelingWiki CEO Jonathan Sutter notes, “Leadership of TravelingWiki Foundation is honored to expand to sports venue disability information, offered free to the public and funded via the the sale of cards from the extraordinary careers of Michael Jordan, Lebron James, Shohei Ohtani and Mickey Mantle, to highlight the critical resources offered via TravelingWiki for the Non Visible Disability community.”

More information about the non-profit work of TravelingWiki foundation is available via visiting http://www.Travelingwiki.com.

Media Contact

Jonathan Sutter, TravelingWiki Foundation, 1 4044033333, jonathan.sutter@travelingwiki.com, http://www.TravelingWiki.com

Jonathan Sutter, TravelingWiki Foundation, 1 4044033333, jonathan.sutter@travelingwiki.com, http://www.TravelingWiki.com

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AiPPT.com Expands Its Approach to Turning Information into Ready-to-Use Presentations in India

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NEW DELHI, April 27, 2026 /PRNewswire/ — AiPPT.com has refined its platform as demand continues to grow in India for faster ways to turn everyday information into structured presentations.

Across universities, coaching centers, startups, and corporate teams, presentation work often begins with scattered material from notes, documents, and online sources. The platform focuses on converting this workflow into a single process that produces usable slides from raw input. The aim is to reduce preparation time while keeping presentations clear and ready for use.

A Workflow Built Around Content

AiPPT.com allows users to start in familiar ways. A topic can be entered directly, or files such as Word and PDF documents can be uploaded. Web content can also be converted into slides via the URL-to-PPT feature, which turns online information into structured presentations.

The system analyzes the input and builds a presentation with clear sections and logical flow. Slides are generated with formatting applied automatically, reducing manual effort.

For users looking for inspiration, AiPPT.com also provides resources such as easy presentation topics to help them get started more quickly.

From Scattered Information to Clear Communication

In academic and workplace settings, information is often spread across multiple formats. Turning this into a structured presentation can take time.

AiPPT.com simplifies this process. A report can become a meeting deck. A research paper can be turned into a seminar presentation. Startups can quickly build investor materials using the AI pitch deck generator. Educators can create structured lessons with support from tools designed for teaching, such as AI for teachers.

A Flexible System for Editing and Conversion

AiPPT.com supports full editing after generation. Users can adjust text, change slide order, or refine structure. Presentations can also be edited directly through its online PPT editor.

Users can also choose from a range of presentation templates to match different use cases. This flexibility helps users adapt presentations for classrooms, meetings, and digital sharing without rebuilding them.

About AiPPT.com

AiPPT.com is an AI-powered PPT generator focused on turning information into structured presentations. The company builds tools that connect content creation, organization, and presentation in one workflow. Its goal is to support clearer communication by helping users transform ideas and materials into ready to use slides efficiently.

Contact Information
Company Name: PIXELBLOOM PTE. LTD.
Email: support@aippt.com

Website: https://www.aippt.com/

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