市場調查報告書
商品編碼
1530649
全球印刷電子市場,預測 2030 年:按類型、材料、分銷管道、技術、應用、最終用戶、地區Printed Electronics Market Forecasts to 2030 - Global Analysis By Type (Sensors, Batteries, Memory, Photovoltaic Cells, Radio Frequency Identification and Other Types), Material, Distribution Channel, Technology, Application, End User and By Geography |
根據Stratistics MRC預測,2024年全球印刷電子市場規模將達185億美元,預計2030年將達到467億美元,預測期內複合年成長率為16.7%。
印刷電子產品是使用印刷技術(通常在塑膠或紙張等軟式電路板上)創建電子設備的過程。這種創新的製造方法將傳統印刷方法與電子產品結合,能夠生產輕量、靈活甚至一次性的電子產品。它涵蓋了廣泛的應用,從軟性顯示器和感測器到智慧包裝和穿戴式技術。我們為製造複雜的電子元件提供經濟高效的解決方案,並加速醫療保健、消費性電子和汽車等產業新產品的開發。
根據美國卡內基美隆大學2018年2月發布的關於奈米級電子產品和感測器的可擴展印刷的報告,印刷電子產品的製造成本比矽基感測器低10至100倍。
物聯網 (IoT) 的發展
在物聯網 (IoT) 技術整合的推動下,市場正在經歷顯著成長。物聯網可實現設備之間的無縫連接和資料交換,為印刷電子應用中的即時監控、智慧感測和自動化等功能提供支援。這種協同效應正在推動穿戴式裝置、智慧包裝和軟性電子產品的創新,從而提高醫療保健、消費性電子和汽車等行業的市場採用率。
環境考慮
製造印刷電子設備通常涉及對環境有害的材料和工藝,例如重金屬和不可生物分解性的基板。這些產品在生命週期結束時的處置引起了人們對電子廢棄物管理的擔憂。應對這些挑戰需要永續材料、回收技術和節能生產方法的創新,以減輕環境影響並促進產業的長期永續性。
穿戴式裝置的需求不斷成長
穿戴式裝置輕巧、靈活且經濟高效,導致市場需求快速成長。這些設備無縫整合到服裝和配件中,並提供健康監測和健身追蹤等功能。智慧紡織品和電子紡織品的日益普及進一步支持了這一趨勢,滿足了消費者對日常穿戴裝置的舒適性和功能性的不同需求。這種成長凸顯了印刷電子產品的未來性,印刷電子產品利用材料和製造技術的進步來滿足不斷變化的消費者偏好。
初始投資高
印刷電子市場面臨較高的初始投資要求的主要障礙。建立配備專業印刷設備的生產設施並進行廣泛的研究和開發以改善印刷流程需要大量資金。此外,整合導電油墨和基板等先進材料也會增加成本。儘管該技術在軟性顯示器、RFID 標籤和智慧包裝方面前景廣闊,但這種財務障礙阻礙了潛在進入者並阻礙了市場成長。
COVID-19 的爆發對印刷電子市場產生了重大影響,最初擾亂了供應鏈和製造業務。然而,隨著遠距工作和健康監測需求對穿戴式裝置的需求激增,市場開始復甦。隨著各行業適應數位化新常態和增加遠端連接,軟性電子產品和物聯網應用的創新進一步推動了成長。總體而言,最初面臨挑戰的印刷電子市場在健康技術和消費性電子產品的新興趨勢的推動下已加速採用。
網版印刷領域預計將在預測期內成為最大的領域
預計網版印刷在預測期間的需求量最大。此方法適用於在軟性和硬質表面上進行列印,有助於穿戴式裝置、智慧包裝和汽車應用的市場成長。它能夠處理各種導電和功能性墨水,使其成為製造輕質、薄型和可客製化電子產品的理想選擇,以滿足各行業對軟性電子產品不斷成長的需求。
預計汽車領域在預測期內複合年成長率最高
預計汽車領域在預測期內複合年成長率最高。這些進步包括用於智慧內飾的印刷感測器、用於儀表板的軟性顯示器、用於輕質耐用佈線解決方案的印刷導體等等。電動車趨勢將進一步推動更節能的電子系統的創新。製造商越來越注重透過將印刷電子技術應用於車輛設計和生產來使汽車更具功能性和永續性。
由於各行業對軟性顯示器和感測器的需求不斷成長,預計北美將在預測期內佔據最大的市場佔有率。主要應用包括智慧包裝、汽車電子和消費性電子產品,其中材料科學和製造技術的進步至關重要。該地區的領先製造商正專注於研究以提高其產品的性能和耐用性,與技術公司和研究機構的合作正在推動創新。
由於技術進步、物聯網設備的日益採用以及主要製造商和供應商的存在等因素,預計亞太地區在預測期內將保持最高的複合年成長率。印刷技術、材料科學和奈米技術的進步正在推動創新並擴大印刷電子的潛在應用。政府促進電子和半導體產業研發的支持措施正在推動市場擴張。
According to Stratistics MRC, the Global Printed Electronics Market is accounted for $18.5 billion in 2024 and is expected to reach $46.7 billion by 2030 growing at a CAGR of 16.7% during the forecast period. Printed electronics is the process of creating electronic devices using printing techniques, typically on flexible substrates like plastic or paper. This innovative manufacturing approach integrates traditional printing methods with electronics, enabling the production of lightweight, flexible, and even disposable electronics. It encompasses a range of applications from flexible displays and sensors to smart packaging and wearable technology. It offers cost-effective solutions for creating complex electronic components, facilitating the development of new products in diverse industries such as healthcare, consumer electronics, and automotive sectors.
According to a report published on the scalable printing of nanoscale electronics and sensors by the Carnegie Mellon University (US) in February 2018, the cost of manufacturing printed electronics is 10 to 100 times less than the manufacturing cost of silicon-based sensors.
Growth of the internet of things (IoT)
The market is witnessing substantial growth fueled by the integration of Internet of Things (IoT) technologies. IoT enables seamless connectivity and data exchange between devices, enhancing functionalities like real-time monitoring, smart sensing, and automation in printed electronics applications. This synergy is driving innovations in wearable devices, smart packaging, and flexible electronics, expanding market adoption across industries such as healthcare, consumer electronics, and automotive.
Environmental concerns
The production of printed electronic devices often involves materials and processes that can be environmentally harmful, such as heavy metals and non-biodegradable substrates. Disposal of these products at the end of their lifecycle raises concerns about electronic waste management. Addressing these challenges requires innovations in sustainable materials, recycling technologies, and energy-efficient production methods to mitigate environmental impact and promote long-term sustainability in the industry.
Increasing demand for wearable devices
The market is experiencing a surge in demand for wearable devices due to their lightweight, flexible, and cost-effective nature. These devices integrate seamlessly into clothing and accessories, offering functionalities like health monitoring, fitness tracking. The growing adoption of smart textiles and e-textiles further drives this trend, catering to diverse consumer needs for comfort and functionality in everyday wearables. This growth emphasizes the prospects of printed electronics, leveraging advancements in materials and manufacturing techniques to meet evolving consumer preferences.
High initial investment
The market faces a significant hurdle in its high initial investment requirements. Establishing production facilities equipped with specialized printing equipment and conducting extensive research and development to refine printing processes demand substantial capital. Moreover, integrating advanced materials such as conductive inks and substrates escalates costs. This financial barrier deters potential entrants and hinders market growth, despite the technology's promise in flexible displays, RFID tags, and smart packaging.
The COVID-19 pandemic significantly impacted the Printed Electronics market, initially causing disruptions in supply chains and manufacturing operations. However, as the demand for wearable devices surged due to remote working and health monitoring needs, the market rebounded. Innovations in flexible electronics and IoT applications further fueled growth, as industries adapted to the new normal of increased digitalization and remote connectivity. Overall, while facing initial challenges, the Printed Electronics market saw accelerated adoption driven by emerging trends in health tech and consumer electronics.
The screen printing segment is expected to be the largest during the forecast period
The screen printing is expected to be the largest during the forecast period. This method offers versatility in printing on flexible and rigid surfaces, contributing to the market's growth in wearable devices, smart packaging, and automotive applications. Its ability to handle a wide range of conductive and functional inks makes it ideal for manufacturing lightweight, thin, and customizable electronic products, meeting the increasing demand for flexible electronics across diverse industries.
The automotive segment is expected to have the highest CAGR during the forecast period
The automotive segment is expected to have the highest CAGR during the forecast period. These advancements include printed sensors for smart interiors, flexible displays for dashboards and printed conductors for lightweight and durable wiring solutions. The trend towards electric vehicles further drives innovation, more energy-efficient electronic systems. Manufacturers are increasingly focusing on enhancing vehicle functionality and sustainability through the application of printed electronics in automotive design and production.
North America is projected to hold the largest market share during the forecast period driven by increasing demand for flexible displays, sensors across various industries. Key applications include smart packaging, automotive electronics, and consumer electronics, where advancements in material sciences and manufacturing technologies are pivotal. Major players in the region are focusing on R&D to enhance product capabilities and durability, while collaborations with technology firms and research institutes are fostering innovation.
Asia Pacific is projected to hold the highest CAGR over the forecast period driven by factors such as technological advancements, increasing adoption of IoT devices, and the presence of key manufacturers and suppliers. Advances in printing technologies, materials science, and nanotechnology are driving innovation and expanding the potential applications of printed electronics. Supportive government initiatives promoting research and development in electronics and semiconductor industries are fostering market expansion.
Key players in the market
Some of the key players in Printed Electronics market include BASF SE, Samsung Electronics Co., Ltd., Panasonic Corporation, LG Display Co., Ltd., Avery Dennison Corporation, Thinfilm Electronics AB, Blue Spark Technologies, Printed Electronics Ltd., Cymbet Corporation, Toppan Forms Co., Ltd., DuPont, XENON Corporation, GSI Technologies, NovaLED and Fujikura Ltd.
In June 2024, Samsung Electronics Co., Ltd. announced SmartThings Pro and next-generation display technologies for its award-winning digital signage lineup. The announcement is part of the company's participation at InfoComm, the largest professional audio-visual industry trade show in North America.
In March 2023, Panasonic has introduced BEYOLEX(TM), a new thermoset stretchable film polymer substrate for printed electronics (PE). This novel material is based on a proprietary non-silicone thermoset polymer chemistry developed by Panasonic researchers at the Electronic Materials laboratory in Kadoma, Osaka, Japan.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.