市場調查報告書
商品編碼
1569803
2030 年微型電池市場預測:按組件、類型、容量、應用、最終用戶和地區進行的全球分析Micro Battery Market Forecasts to 2030 - Global Analysis By Component, Type, Capacity, Application, End User and By Geography |
根據Stratistics MRC預測,2024年全球微電池市場規模將達8億美元,預計2030年將達到28億美元,預測期內複合年成長率為23.8%。
微電池是緊湊、高效的能源儲存設備,設計用於為小型電子設備和系統供電。這些電池的特點是尺寸小,適合空間受限的應用,例如穿戴式電子產品、醫療植入和電子機械系統 (MEMS)。儘管尺寸很小,但微電池的目標是提供可靠且持續的電力。使用先進的材料和技術,包括薄膜電極和鋰基化學物質,可提供高能量密度和相對尺寸的長壽命。
據Cisco稱,連網型穿戴裝置數量預計將從 2018 年的 5.93 億台成長到 2022 年的 11.05 億台。
物聯網的普及
隨著物聯網設備在從智慧家庭小工具到工業感測器等各個領域變得越來越普遍,對緊湊、高效電源的需求變得顯而易見。小型但功能強大的微電池對於這些設備至關重要,這些設備通常需要在最小的佔地面積內提供長壽命的能源。微電池技術的進步是由於需要為日益複雜和耗能的物聯網設備供電,而無需頻繁充電或大型電池組。材料和設計的創新,例如提高能量密度和小型化技術,與不斷擴大的物聯網生態系統直接相關。
可擴展性問題
可擴展性問題對微電池的開發和部署有重大影響。這些挑戰主要是由於大規模製造微電池同時保持高性能和可靠性的挑戰。隨著產量的增加,確保電池小型化和複雜設計的一致性變得困難,從而導致潛在的缺陷和效率降低。目前的技術和基礎設施限制往往會導致瓶頸,並影響經濟地大規模生產這些電池的能力。
日益關注電池安全
對電池安全的日益關注正在推動微電池的發展,微電池對於小型攜帶式設備的供電至關重要。隨著電子設備變得越來越小並且越來越融入日常生活,對具有更高能量密度和安全特性的微電池的需求不斷增加。改進的安全措施包括使用固體電解質和先進的溫度控管系統,這不僅可以延長微電池的使用壽命和可靠性,還可以防止潛在的危險。這些安全性增強對於醫療植入、穿戴式裝置和小型電子設備等可靠性至關重要的應用至關重要。
競爭市場
隨著越來越多的公司進入微型電池市場,由於他們試圖透過技術創新和成本效率超越其他公司,因此利潤率下降。競爭的加劇要求公司不斷投資於研發以保持領先地位,而這會帶來巨大的財務成本。新參與企業大量生產低成本、低品質的產品可能會削弱消費者的信心,並損害高品質、高性能微型電池的價值。不斷競相引進最新技術可能會導致產品生命週期縮短,迫使主要企業更頻繁地更新產品,並增加製造成本。
COVID-19 的爆發對微電池產業產生了重大影響,主要是透過全球供應鏈中斷和需求轉移。封鎖和限制導致工廠關閉和物流挑戰,導致微電池所用關鍵材料的延誤和短缺。由於該行業依賴即時庫存系統和全球採購,因此影響尤其顯著。這次疫情加速了數位轉型和遠距工作趨勢,增加了穿戴式裝置、醫療設備和其他電子設備對微電池的需求。
預計電極部分在預測期內將是最大的
預計電極產業在預測期內將是最大的。電極是電池的重要組成部分,負責儲存和釋放能量的電化學反應。電極材料和設計的最新創新集中在增加表面積、提高電導率和提高電池的整體效率。例如,透過結合奈米材料和先進複合材料,可以實現更輕、更強的電極。這些改進使微電池能夠實現更高的能量密度、更長的生命週期和更快的充電時間,同時保持緊湊的尺寸。
印刷電池產業預計在預測期內複合年成長率最高
印刷電池產業預計在預測期內複合年成長率最高。印刷微電池採用網版印刷和噴墨印刷等先進技術製造,可實現靈活、輕巧且緊湊的能源儲存解決方案。透過採用導電墨水和新材料,這些電池可以融入各種應用中,從穿戴式電子產品到智慧感測器和醫療設備。印刷微電池的改進重點在於提高其能量密度、壽命和效率,同時降低製造成本。這項進步使得能夠創造出更多用途和永續的能源來源,突破了小型化技術所能實現的界限。
在估計期間,亞太地區佔據了最大的市場佔有率。隨著智慧型手錶、健身追蹤器和健康監測器等穿戴式科技變得越來越流行,對更小、更有效率電池的需求正在迅速增加。電池可以讓設備在充電後使用更長時間,並支援開發更先進、功能豐富的穿戴式設備。此外,該地區強勁的高科技產業以及消費者對健康和健身日益成長的興趣正在推動微電池技術的創新和投資,進一步加速這一趨勢。
透過促進技術創新和確保永續性,預計歐洲地區在預測期內將實現盈利成長。歐盟 (EU) 嚴格的環境政策和方針,例如廢棄電氣電子設備 (WEEE) 指令和電池指令,正在推動產業轉向更環保的解決方案。這些法規要求電池回收和正確處置,鼓勵製造商開發壽命更長、環境影響更低的電池。此外,歐盟對減少碳排放和提高能源效率的關注與微電池的成長不謀而合,微電池對於為下一代設備和可再生能源發電系統提供動力至關重要。
According to Stratistics MRC, the Global Micro Battery Market is accounted for $0.8 billion in 2024 and is expected to reach $2.8 billion by 2030 growing at a CAGR of 23.8% during the forecast period. A micro battery is a compact and high-efficiency energy storage device designed to power small electronic devices or systems. These batteries are characterized by their miniature size, which allows them to fit into space-constrained applications such as wearable electronics, medical implants, or microelectromechanical systems (MEMS). Despite their small dimensions, micro batteries aim to deliver reliable and sustained power. They often use advanced materials and technologies, including thin-film electrodes and lithium-based chemistries, to achieve high energy densities and longer lifespans relative to their size.
According to Cisco Systems, the number of connected wearables is expected to increase from 593 million in 2018 to 1,105 million in 2022.
Rising adoption of internet of things
As IoT devices proliferate across various sectors-ranging from smart home gadgets to industrial sensors-the need for compact, efficient power sources becomes more pronounced. Micro batteries, designed to be small yet powerful, are crucial for these devices, which often require long-lasting energy in a minimal footprint. Advancements in micro battery technology are driven by the need to power increasingly sophisticated and energy-demanding IoT devices without frequent recharging or large battery packs. Innovations in materials and design, such as enhanced energy density and miniaturization techniques, are directly linked to the expanding IoT ecosystem.
Scalability issues
Scalability issues significantly impact the development and deployment of micro batteries. These issues primarily stem from the challenges in manufacturing micro batteries at a larger scale while maintaining high performance and reliability. As production volumes increase, ensuring consistency in the battery's small size and intricate design becomes difficult, leading to potential defects and reduced efficiency. The limitations in current technology and infrastructure often lead to bottlenecks, affecting the ability to mass-produce these batteries economically.
Increased focus on battery safety
The increased focus on battery safety is enhancing the development of micro batteries, which are pivotal in powering compact and portable devices. As electronic devices become smaller and more integrated into daily life, the demand for micro batteries with higher energy density and safety features intensifies. Improved safety measures include the use of solid-state electrolytes and advanced thermal management systems, which not only enhance the longevity and reliability of micro batteries but also prevent potential hazards. These safety enhancements are crucial for applications in medical implants, wearables, and miniature electronics, where reliability is paramount.
Competitive market
As more companies enter the micro battery market, they strive to outpace each other in terms of innovation and cost-efficiency, leading to reduced profit margins. This heightened competition compels companies to continuously invest in research and development to stay ahead, which can be a substantial financial burden. The proliferation of low-cost, low-quality products from new market entrants can erode consumer trust and undermine the value of high-quality, high-performance micro batteries. The constant race to introduce the latest technology can lead to short product lifecycles, forcing companies to frequently update their offerings and potentially increase production costs.
The COVID-19 pandemic had a significant impact on the micro battery industry, primarily through disruptions in global supply chains and shifts in demand. Lockdowns and restrictions led to factory shutdowns and logistical challenges, causing delays and shortages of key materials used in micro batteries. This was particularly impactful given the industry's reliance on just-in-time inventory systems and global sourcing. The pandemic accelerated digital transformation and remote work trends, increasing the demand for micro batteries in wearable devices, medical equipment, and other electronic gadgets.
The Electrodes segment is expected to be the largest during the forecast period
Electrodes segment is expected to be the largest during the forecast period. Electrodes are crucial components in batteries, responsible for the electrochemical reactions that store and release energy. Recent innovations in electrode materials and design focus on increasing surface area, improving conductivity, and enhancing the overall efficiency of the battery. For instance, incorporating nanomaterials and advanced composites can lead to electrodes that are both lighter and more powerful. These improvements enable micro batteries to deliver higher energy density, longer life cycles, and faster charge times while maintaining a compact size.
The Printed Batteries segment is expected to have the highest CAGR during the forecast period
Printed Batteries segment is expected to have the highest CAGR during the forecast period. Printed micro batteries are fabricated using advanced techniques such as screen printing and inkjet printing, which allow for the creation of flexible, lightweight, and compact energy storage solutions. By employing conductive inks and novel materials, these batteries can be integrated into a variety of applications, from wearable electronics to smart sensors and medical devices. The enhancement in printed micro batteries focuses on improving their energy density, longevity, and efficiency, while also reducing production costs. This progress enables the creation of more versatile and sustainable energy sources, pushing the boundaries of what can be achieved in miniaturized technology.
Asia Pacific region commanded the largest share of the market over the extrapolated period. As wearable tech like smartwatches, fitness trackers, and health monitors becomes increasingly popular, the need for smaller, more efficient batteries has surged. They enable longer device usage between charges and support the development of more advanced, feature-rich wearables. Additionally, this trend is further accelerated by the region's robust tech industry and rising consumer interest in health and fitness, driving innovation and investment in micro battery technology.
Europe region is poised to witness profitable growth during the projected period by fostering innovation and ensuring sustainability. The European Union's stringent environmental policies and regulations, such as the Waste Electrical and Electronic Equipment (WEEE) Directive and the Battery Directive, are driving the industry towards more eco-friendly solutions. These regulations mandate recycling and proper disposal of batteries, which encourages manufacturers to develop batteries with longer lifespans and reduced environmental impact. Additionally, the EU's focus on reducing carbon emissions and promoting energy efficiency aligns with the growth of micro batteries, which are essential for powering next-generation devices and renewable energy systems.
Key players in the market
Some of the key players in Micro Battery market include Energizer Holdings, Inc, Fujitsu Limited, Maxwell Technologies, Inc, Murata Manufacturing Co., Ltd, Nippon Chemical Industrial Co., Ltd, Panasonic Corporation, Tadiran Batteries Ltd, TDK Corporation, Toshiba Corporation and Ultralife Corporation.
In November 2022, VARTA AG launched the latest version of its CoinPower series, the A5. These batteries offer up to 15% more capacity than previous CoinPower generations. They offer improved performance, cycle life, and capacity, making them ideal for a wide range of applications such as smartwatches, wearable devices, hearing aids, medical devices, industrial sensors, and IoT devices.
In September 2022, Maxell, Ltd. developed the "PSB401515H", a high-capacity ceramic packaged all-solid-state battery using a solid sulfide electrolyte, increasing the side length to 15mm with double the capacity of the existing product, which enables it to support various applications and situations.