市場調查報告書
商品編碼
1370864
薄膜電池市場 - 2018-2028 年全球產業規模、佔有率、趨勢、機會和預測,按電池類型、電壓、按應用、地區和競爭細分Thin Film Battery Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, 2018-2028 Segmented By Battery Type, By Voltage, By Application, By Region and Competition |
全球薄膜電池市場預計在 2024-2028 年預測期內將強勁成長,因為這些電池具有較長的備用電池,適合低功耗設備,而且已開發國家和發展中國家對智慧型手機的需求不斷成長、iPad 和其他電子設備,例如物聯網(IoT) 小工具、穿戴式電子產品和醫療追蹤軟體。此外,與鋰離子電池相比,薄膜電池的優勢預計將在預測期內推動全球薄膜電池市場的發展。
薄膜電池是固態電池,或結合了固態電極和固態電解質的電池。與其他電池一樣,薄膜電池也有陽極和陰極以及充當兩個電極之間隔膜的電解質。
與傳統的可充電固態電池相比,薄膜電池具有多種優點。由於其尺寸,它們可以用來製造更小的電子設備,這是第一個也是最明顯的好處。此外,薄膜電池在性能、平均輸出電壓、重量、靈活性、能量密度、電解液洩漏風險、更緊密的包裝和生命週期方面通常優於體積較大的固態電池。這些薄膜電池在電極之間具有有效的可逆鋰插入機制,就像典型的可充電電池一樣。
市場概況 | |
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預測期 | 2024-2028 |
2022 年市場規模 | 5.9億美元 |
2028 年市場規模 | 24.9億美元 |
2023-2028 年年複合成長率 | 27.36% |
成長最快的細分市場 | 可充電的 |
最大的市場 | 北美洲 |
商用薄膜電池具有廣泛的用途,包括再生能源儲存系統、智慧卡、無線射頻識別 (RFID) 標籤、攜帶式電子產品、除顫器、神經刺激器、心律調節器和無線感測器。
由於手機、醫療設備和智慧手錶等電子產品市場的不斷擴大,對電子元件的需求不斷增加。世界各地正在開發許多微型電子產品和系統。由於使用普通電池的電子設備的尺寸很難縮小,因此小型化變得越來越有必要。此外,由於可植入和穿戴式技術的外形尺寸不斷縮小,對微型電池的需求也越來越大。
隨著物聯網 (IoT) 設備和無線感測器技術的發展,無線感測器在全球範圍內得到更廣泛的採用。這些技術開始成為嵌入式系統電源的可行替代品,使無線感測器的使用成為可能。隨著基於能量收集的無線感測器得到更廣泛的使用,電池將有機會成長。使用智慧卡進行身份驗證是促進擴充的另一個因素。穿戴式裝置業務和物聯網運動都將在未來幾年擴大。物聯網支援這些最終用戶細分市場,有助於薄膜電池市場的成長。軟性印刷電子和穿戴式科技是成長最快的兩個應用類別。隨著物聯網連接設備數量的增加,越來越需要薄膜電池來長時間為設備供電。這些小工具需要消耗很少能量、價格低廉且尺寸通常很小的無線通訊。薄膜電池有效地滿足了上述需求。
高密度軟性電池的充電能力極大地促進了靈活性和薄度至關重要的應用。消費性電子和穿戴式科技是迫切需要軟性電池的兩個眾所周知的領域。因此,現有和發展中的企業都期望將這些重要應用與軟性電池成功整合,以提高性能。此外,由於即將實際使用可充電電池用於能源密集型應用,軟性電池將有機會,這將導致軟性電池市場的大幅成長。
與鋰離子電池相比,製造這些電池的原料成本更高。由於其化學性質和價格波動,許多原料還具有大量的材料處理費用。薄膜電池由不同製造商生產的產品不一致,這會導致與其他設備使用時出現相容性問題。此外,這些商品價格的週期性及其高昂的材料處理成本導致最終產品成本較高。此外,儘管產品採用潛力不斷上升,但該行業仍面臨與薄膜電池生產和行銷相關的高初始成本的重大障礙。薄膜電池的製造非常昂貴,因為它依賴鋰等稀土金屬。鋰的高成本進一步提高了薄膜電池的價格,使許多中小型消費品製造商難以負擔。
此外,根據製造商的要求,不同製造商用於生產印刷軟性電池的專有技術也有所不同。由於這些電池是專門為特定電子設備製造的,與其他設備一起使用會導致相容性問題。因此,印刷軟性電池市場因缺乏開發電池時必須遵守的標準而受到限制。
全球薄膜電池市場根據電池類型、電壓、應用和地區進行細分。根據電池類型,市場分為拋棄式電池和可充電電池。根據電壓,市場分為1.5v以下、1.5v至3v和3v以上。根據應用,市場分為穿戴式裝置、醫療、消費性電子、智慧卡等。按地區分類,市場進一步分為北美、亞太地區、歐洲、南美、中東和非洲。
全球薄膜電池市場的主要市場參與者有Brightvolt Inc、Cymbet Corporation、廣州豐江電池新技術有限公司、Excellatron Inc、Jenax Inc、Kurt J. Lesker Company Ltd.、Front Edge Technology Inc、Soleras Advanced Coatings BV、Molex LLC 和STMicroelectronics NV
(註:公司名單可依客戶要求客製化。)
Global Thin film battery market is expected to grow at a robust pace in the forecast period 2024-2028 owing to these batteries having a long battery backup, making them suited for low-power devices along with rising demand in both developed and developing countries for Smartphones, iPad, and other electronic devices such as Internet of Things (IoT) gadgets, wearable electronics, and medical tracking software. Moreover, advantages associated with thin film batteries as compared to lithium-ion are the factors expected to drive the global thin film battery market during the forecast period.
Thin film batteries are solid state batteries, or batteries that combine both solid electrodes and a solid electrolyte. Thin film batteries, like other batteries, have an anode and a cathode as well as an electrolyte to act as a separator between the two electrodes.
There are various benefits that thin film batteries have over conventional rechargeable solid-state batteries. They may be utilized to make smaller electronic devices due to their size, which is the first and most evident benefit. In addition, thin film batteries frequently outperform bulkier solid-state batteries in terms of performance, average output voltage, weight, flexibility, energy density, electrolyte leakage risk, tighter packing, and life cycles. These thin film batteries have an effective reversible lithium insertion mechanism between the electrodes, just like typical rechargeable batteries.
Market Overview | |
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Forecast Period | 2024-2028 |
Market Size 2022 | USD 0.59 Billion |
Market Size 2028 | USD 2.49 Billion |
CAGR 2023-2028 | 27.36% |
Fastest Growing Segment | Rechargeable |
Largest Market | North America |
Commercially accessible thin film batteries have a wide range of uses, including renewable energy storage systems, smart cards, radio-frequency identification (RFID) tags, portable electronics, defibrillators, neurological stimulators, pacemakers, and wireless sensors.
Thin-film batteries distinguish themselves due to their high safety level. They are preferable to currently utilized liquid electrolyte cells, especially in terms of user proximity, because they only use solid-state components. Additionally, the possibility of stacking individual cells allows for optimal customization of the thin-film battery to each application scenario, and the inherent mechanical flexibility makes integration on a variety of surfaces possible. The thin-film battery's ability to be integrated in this situation is unrestricted. The user has complete freedom in choosing the cell's shape and geometry and it can be tailored to their preferences. These factors are expected to drive the growth of the global thin film battery market.
Thin film batteries have evolved in recent years in terms of their density, life span, and better safety. The major players are driven towards technical improvement by the increased demand for these batteries in electronic gadgets, medical devices, and smartwatches, allowing the batteries to become thinner or more flexible.
Moreover, the use of these batteries shall be accelerated by the expanding use of smart cards and e-cards in the government and transportation sectors to increase security. Smart cards increase the use of smart cards globally by providing personal identification, authentication, data storage, and application processing. Additionally, the market for thin film battery technology is being driven by the increasing use of smart cards in Europay, Mastercard, and Visa.
The demand for electronics components has increased as a result of the expanding market of gadgets like mobile phones, medical equipment, and smartwatches. Around the world, numerous tiny electronic gadgets and systems are being developed. Because it is difficult to shrink the size of electronics devices using ordinary batteries, miniaturization is becoming more and more necessary. Additionally, the need for tiny batteries has been caused by the diminishing form factors of implantable and wearable technologies.
As Internet of things (IoT) devices and wireless sensor technology evolve, wireless sensors are being adopted more widely across the globe. These technologies are starting to become feasible alternatives for embedded systems' power sources, which would enable the use of wireless sensors. Batteries would have a chance to grow as energy harvesting-based wireless sensors become more widely used. The use of smart cards for authentication is another factor promoting expansion. Both the wearables business and the IoT movement would expand over the upcoming years. The IoT supports these end-user segments, which in turn helps the thin-film battery market grow. Flexible printed electronics and wearable technology are two of the application categories that are growing the fastest. Thin-film batteries are increasingly needed to power devices for prolonged periods of time as the number of IoT-connected devices grows. These gadgets need wireless communication that consumes very little power, is inexpensive, and are often very small in size. The aforementioned needs are effectively satisfied by thin-film batteries.
Applications where flexibility and thinness are crucial are greatly facilitated by the high-density flexible battery's ability to be recharged. Consumer electronics and wearable technology are two well-known areas where flexible batteries are urgently needed. Therefore, successful integration of these important applications with flexible batteries is anticipated by both existing and developing businesses in order to increase performance. Moreover, flexible batteries would have chances as a result of the impending efforts to actually use rechargeable batteries for energy-intensive applications, which would lead to massive growth in the flexible battery market.
When compared to lithium-ion batteries, the cost of the raw materials used to make these batteries is higher. Due to their chemical properties and volatile prices, many raw materials also have substantial material handling expenses. Thin film batteries are not consistently manufactured by different manufacturers, which causes compatibility problems when used with other devices. In addition, the cyclical nature of these commodities prices and their high material handling costs results in high final product costs. Moreover, the industry faces a significant obstacle in the shape of the high initial costs connected with the production and marketing of thin film batteries, despite the rising potential for product uptake. The fabrication of thin film batteries is quite expensive because it depends on rare earth metals like lithium. The high cost of lithium further raises the price of a thin film battery, making it unaffordable for many small- and medium-sized makers of consumer goods.
Additionally, based on the requirements of the manufacturers, the proprietary technologies utilized to produce printed flexible batteries vary from one manufacturer to another. Because these batteries are made specifically for specific electronic devices, using them with other devices will cause compatibility problems. As a result, the market for printed flexible batteries is constrained by the lack of standards that must be adhered to while developing batteries.
The global thin film battery market is segmented based on battery type, voltage, application, and region. Based on battery type, the market is bifurcated into disposable and rechargeable. Based on voltage, the market is bifurcated into below 1.5v, 1.5v to 3v, and above 3v. Based on application, the market is bifurcated into wearable devices, medical, consumer electronics, smart cards, and others. Based on region, the market is further bifurcated into North America, Asia-Pacific, Europe, South America, and Middle East & Africa.
The main market players in the global thin film battery market are Brightvolt Inc, Cymbet Corporation, Guangzhou Feng Jiang Battery New Technology Co. Ltd, Excellatron Inc, Jenax Inc, Kurt J. Lesker Company Ltd., Front Edge Technology Inc, Soleras Advanced Coatings BV, Molex LLC, and STMicroelectronics N.V.
(Note: The companies list can be customized based on the client requirements.)