市場調查報告書
商品編碼
1511278
2030年薄膜二次電池市場預測:按技術、應用、最終用戶和地區進行全球分析Rechargeable Thin Film Battery Market Forecasts to 2030 - Global Analysis By Technology (Ceramic Batteries, Printed Batteries, Lithium Polymer Batteries and Other Technologies), Application, End User and By Geography |
根據Stratistics MRC預測,2024年全球薄膜二次電池市場規模將達到1.543億美元,預計2030年將達到12.87億美元,預測期內複合年成長率為42.4%。薄膜二次電池是一種小型、輕質的能源儲存裝置,利用薄層活性材料來儲存和釋放電能。這些電池通常使用先進的薄膜沉澱技術(例如濺鍍或化學氣相沉澱)來製造,以在基板上形成電極、電解質和集電器層。薄膜設計具有靈活性,適合整合到穿戴式裝置、物聯網感測器和其他小型電子設備。薄膜二次電池具有充電快、能量密度高、循環壽命長等優點。
根據國際數據公司(IDC)的數據,全球智慧型手機出貨量比 2009 年成長了 5.7 倍。
電子設備的小型化
小型化為各種行業的電子產品開拓了新的應用,包括穿戴式技術、物聯網感測器和醫療植入。薄膜充電電池在為這些設備供電、實現外形規格發揮關鍵作用。此外,將電池安裝到越來越小的空間的需求正在推動電池技術的創新。薄膜二次電池製造商面臨著提高能量密度、充電速度和耐用性的壓力,以滿足小型化設備的需求,從而帶來惠及整個市場的進步。
與傳統電池相比能量密度較低
較低的能量密度意味著薄膜二次電池每單位體積或重量能源儲存。結果,電池壽命可能會縮短,電子設備的性能可能會下降,導致消費者不滿意並不願採用採用薄膜電池的產品。例如,電動車和大型能源儲存系統可能更喜歡具有更高能量密度的傳統電池,以有效滿足其電力需求。
穿戴式科技蓬勃發展
智慧型手錶、健身追蹤器和醫療監控設備等穿戴式裝置嚴重依賴小型、輕量電源。薄膜充電電池由於其靈活的設計和小巧的外形規格非常適合整合到這些穿戴式設備中。穿戴式科技的日益普及直接推動了對薄膜電池的需求。
缺乏標準化的製造流程
製造過程中的不一致可能會導致相容性和互通性問題,特別是在多個部件需要無縫協作的應用中。因此,缺乏標準化可能會阻礙可充電薄膜電池整合到各種電子設備和系統中,從而限制其市場範圍和易用性。
COVID-19 的影響
儘管最初供應鏈和製造業的中斷導致生產放緩,但封鎖期間對電子產品和醫療設備的需求增加推動了隨後的市場成長。遠端工作和數位化的趨勢進一步推動了對配備薄膜電池的行動裝置的需求。然而,經濟不確定性和供應鏈挑戰仍然存在,影響著市場動態。
陶瓷電池領域預計將在預測期內成為最大的領域
陶瓷電池領域預計將出現良好成長。陶瓷電池和薄膜電池根據其特性和性能指標,可能會滿足二次電池市場的不同細分市場。例如,薄膜電池在需要靈活性和輕量化設計的應用中可能更優越,而陶瓷電池在高能量密度應用中可能是首選。
家用電子電器領域預計在預測期內複合年成長率最高
由於家用電子電器市場的競爭推動了持續的技術創新,預計家用電子電器領域在預測期內將出現最高的複合年成長率。製造商一直在尋找提高設備效能的方法,包括電池壽命和充電速度。薄膜二次電池具有快速充電能力和高能量密度等優勢,使其成為整合到下一代消費性電子產品中的有吸引力的選擇。
由於產品需求不斷成長、物聯網設備的採用不斷增加以及該地區電子製造業的快速擴張,預計亞太地區將在預測期內佔據最大的市場佔有率。中國、韓國、日本、印度等新興國家引領區域市場。這些國家生產設施數量的增加和應用範圍的擴大預計將在預測期內進一步推動市場成長。
預計北美在預測期內的複合年成長率最高。該地區在電子和半導體行業擁有強大的影響力,再加上對小型和輕型電源不斷成長的需求,正在推動市場擴張。該地區的主要企業正在投資研發,以提高電池性能、提高能量密度並改善製造程序,進一步推動市場成長。
According to Stratistics MRC, the Global Rechargeable Thin Film Battery Market is accounted for $154.3 million in 2024 and is expected to reach $1287.0 million by 2030 growing at a CAGR of 42.4% during the forecast period. A rechargeable thin-film battery is a compact, lightweight energy storage device that utilizes thin layers of active materials to store and release electrical energy. These batteries are typically fabricated using advanced thin-film deposition techniques, such as sputtering or chemical vapor deposition, to create layers of electrodes, electrolytes, and current collectors on a substrate material. The thin-film design allows for flexibility, making them suitable for integration into wearable devices, IoT sensors, and other compact electronics. Rechargeable thin-film batteries offer advantages such as fast charging, high energy density, and long cycle life.
According to International Data Corporation (IDC), smartphone Shipments across the globe increased 5.7 times compared to 2009.
Miniaturization of electronic devices
Miniaturization opens up new applications for electronic devices in various industries, such as wearable technology, IoT sensors, and medical implants. Rechargeable thin film batteries play a crucial role in powering these devices, enabling innovation in form factors and functionalities. Moreover the need to fit batteries into increasingly smaller spaces drives innovation in battery technology. Manufacturers of rechargeable thin film batteries are pushed to improve energy density, charging speed, and durability to meet the demands of miniaturized devices, leading to advancements that benefit the entire market.
Lower energy density compared to conventional batteries
Lower energy density means that rechargeable thin film batteries may not store as much energy per unit volume or weight compared to conventional batteries. This can result in shorter battery life and reduced performance in electronic devices, which may lead to dissatisfaction among consumers and reluctance to adopt thin film battery-powered products. For example, electric vehicles or large-scale energy storage systems may prefer conventional batteries with higher energy density to meet their power requirements effectively.
Booming wearable technology
Wearable devices such as smartwatches, fitness trackers, and medical monitoring devices rely heavily on compact and lightweight power sources. Rechargeable thin film batteries, with their flexible design and small form factor, are ideal for integration into these wearable gadgets. The growing popularity of wearable technology directly drives the demand for thin film batteries.
Lack of standardized manufacturing processes
Inconsistencies in manufacturing processes can lead to compatibility and interoperability issues, particularly in applications where multiple components need to work together seamlessly. Thus lack of standardization may hinder the integration of rechargeable thin film batteries into diverse electronic devices and systems, limiting their market reach and usability.
Covid-19 Impact
While initial disruptions in supply chains and manufacturing slowed production, the increased demand for electronics and medical devices during lockdowns subsequently drove market growth. Remote work and digitalization trends further boosted demand for portable devices powered by thin film batteries. However, economic uncertainties and supply chain challenges persisted, affecting market dynamics.
The ceramic batteries segment is expected to be the largest during the forecast period
The ceramic batteries segment is estimated to have a lucrative growth, depending on their specific characteristics and performance metrics, ceramic batteries and thin film batteries may cater to different segments within the rechargeable battery market. For example, thin film batteries might excel in applications requiring flexibility and lightweight design, while ceramic batteries might be preferred for high-energy-density applications.
The consumer electronics segment is expected to have the highest CAGR during the forecast period
The consumer electronics segment is anticipated to witness the highest CAGR growth during the forecast period, owing to the competitive nature of the consumer electronics market drives continuous innovation. Manufacturers are constantly seeking ways to improve device performance, including battery life and charging speed. Rechargeable thin film batteries offer advantages such as fast charging capabilities and high energy density, making them attractive options for integration into next-generation consumer electronics.
Asia Pacific is projected to hold the largest market share during the forecast period owing to the rising product demand, increased adoption of IoT devices, and rapidly expanding electronics device manufacturing industry in the region. Emerging countries, such as China, South Korea, Japan, and India, lead the regional market. The rise in the number of production facilities in these countries and growing application scope are further expected to fuel the market growth over the forecast period.
North America is projected to have the highest CAGR over the forecast period, owing to the region's strong presence in the electronics and semiconductor industries, coupled with increasing demand for compact and lightweight power sources, is fueling market expansion. Key players in the region are investing in research and development to enhance battery performance, increase energy density, and improve manufacturing processes, further driving market growth.
Key players in the market
Some of the key players in the Rechargeable Thin Film Battery Market include Blue Spark Technologies, BrightVolt, Cymbet, Enfucell Flexible Electronics LTD, Excellatron, Ilika Ltd., Imprint Energy, Intrinsiq Materials:, Ion Storage Systems, ITEN, ITN Energy Systems, Jenax Inc., Johnson Energy Storage, Inc., Molex, LLC, Neah Power Systems, Panasonic, Prieto Battery Inc, ProLogium and STMicroelectronics
In November 2024, Johnson Energy Storage Unveils Solid-State Batteries with Industry-Leading 5 Micron Separator. This technological leap, achieved through a proprietary low-cost manufacturing process, is a significant step towards more reliable and efficient energy storage solutions.
In January 2024, Johnson STEM Center Launches Creator Zone, the Zone is part of a wider effort to inspire more kids to pursue careers in technology, gaming, AR/VR, and media while also addressing representation across STEM career paths.
In May 2024, STMicroelectronics reveals automotive-grade inertial modules for cost-effective functional-safety applications up to ASIL B. This IMU is pin-to-pin compatible and shares the same configuration of registers as ST's automotive IMUs with a lower operating temperature ranges, permitting a seamless upgrade.