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市場調查報告書
商品編碼
1273293
到 2028 年的薄膜電池和印刷電池市場預測——按類型、容量、電壓、可充電性、應用和地區進行的全球分析Thin Film and Printed Battery Market Forecasts to 2028 - Global Analysis By Type, Capacity, Voltage, Rechargeability, Application and By Geography |
根據 Stratistics MRC 的數據,2022 年全球薄膜和印刷電池市場規模將達到 1.4844 億美元,預計到 2028 年將達到 5.8555 億美元。預計複合年增長率為期間為 25.7%。
薄膜電池重量輕、柔韌且保質期長,柔性電池組可以放入任何形狀或尺寸的產品中。 由於電子產品成本低、使用移動通信和互聯網等方便,以及所有社會經濟階層以合理的價格廣泛使用,對電子產品的需求在過去幾年顯著增長。 移動電話、筆記本電腦、相機、計算器等都是電子設備的示例。
根據 Cisco Systems 的數據,智能手錶的出貨量預計到 2020 年將超過 1 億台,從而推動增長。
隨著手機、手錶和醫療設備變得越來越小,對小型化電子設備零件的需求越來越大。 世界各地正在開發各種微型電子系統和設備。 由於傳統電池難以使電子設備小型化,因此對小型輕量化印刷柔性電池的需求越來越大。 由微型電池供電的醫療設備也將首次推向市場。 可穿戴設備需要採用輕薄的電池。
用於製造印刷柔性電池的專有技術因製造商而異,並根據製造商標準而有所不同。 這些電池專為特定電子設備設計,因此在其他設備中使用它們會產生兼容性問題。 因此,在開發電池時缺乏可遵循的標準是印刷柔性電池市場擴張的製約因素。
隨著物聯網和無線傳感器技術的進步,無線傳感器的使用正在全球範圍內迅速發展。 薄膜電池和印刷電池等能量收集技術正迅速成為嵌入式系統的電力傳輸選項,從而使無線傳感器能夠在以前未開發的應用中使用。 微型電池由於其出色的外形尺寸、超薄和低洩漏特性而能夠實現能量收集。 隨著越來越多地引入具有能量收集功能的自主無線傳感器,薄膜和印刷電池的市場有望增長。
需要深入考慮固體電解質、軟集電器、電極材料和完整的鋰離子電池組件。 因此,我們正在進行薄膜鋰離子電池和印刷柔性鋰離子電池的基本理解和模擬研究。 此外,正在開展研究以評估這些電池的可靠性和性能,而使用當前最先進的技術無法輕易對其進行研究。 因此,薄膜鋰離子電池的製造複雜性是市場擴張的主要障礙。
隨著消費電子設備和能量收集應用對薄膜和印刷電池的採用增加,推動市場增長,薄膜電池和印刷電池市場預計將顯著增長。 由於 COVID-19,大流行將對企業和全球經濟造成嚴重破壞,預計這將限制供應鍊和薄膜和印刷電池的採用,以及對薄膜和印刷電池的期望各種應用。增長預計將放緩。
估計 <10 mAh 部分將有良好的增長。 容量小於 10mAh 的電池常用於醫療植入物、美容貼片、物聯網設備、MEMS、CMOS 存儲器和其他低耗電設備。 由於體積小,這些設備的內部空間有限。 由於體積小,這些設備內部空間有限,可以使用低容量電池供電。 在預測期內,對用於各種應用的薄膜和印刷電池的需求不斷增加,預計將推動 10mAh 以下類別的發展。
由於在消費電子產品和其他小家電中的廣泛應用,低於 1.5V 的部分預計在預測期內將以最高複合年增長率增長。 預計這一趨勢在未來幾年將持續下去,因為世界各地的著名製造商將繼續進行研發工作,以使這些電池更小、更可靠和更穩定。。 使用電池為助聽器、無線鍵盤和鼠標、門鈴和無線安全系統供電也是該行業快速發展的根本原因。
預計在預測期內,北美將佔據最大的市場份額。 薄膜電池由於尺寸較小而受到美國和加拿大客戶的歡迎,這使得它們在智能手錶和健康監測小工具等可穿戴設備中更有用。 此外,該地區醫療電子設備使用量的增長也是推動該市場發展的主要因素。 該行業的許多主要製造商都位於北美,例如 Blue Spark Technologies、Ultralife Corporation 和 Brightvolts Inc。
預計亞太地區在預測期內的複合年增長率最高。 這一需求的主要驅動力預計將在整個 2020 年增加中國和日本的可穿戴電子產品和醫療電子產品(如助聽器和呼吸器)的銷量。 此外,無線傳感器網絡、遙控器和智能卡等消費電子設備越來越多地採用印刷電池技術也將推動這一市場的增長。
2020 年 3 月,Enfucell 最近發布了一款新產品,即可穿戴溫度標籤。 該標籤基於NFC、智能溫度傳感器和SoftBattery(印刷紙電池)的組合技術。
2019 年 8 月,Imprint Energy 宣布擴大提供超薄、安全和靈活的印刷電池開發套件。 該電池組為短距離或長距離通信提供動力,特別是與低功耗藍牙和其他標準相結合,並與 Semtech 的 LoRa 設備集成,用於低功耗廣域網 (LPWAN) 物聯網,旨在為設備供電。
According to Stratistics MRC, the Global Thin Film and Printed Battery Market is accounted for $148.44 million in 2022 and is expected to reach $585.55 million by 2028 growing at a CAGR of 25.7% during the forecast period. Thin Film batteries are lightweight, flexible, have a longer shelf life, and flexible battery packs can be put to any shape or size product. The demand for electronic gadgets has grown significantly over the years due to their low cost, the convenience they give, such as mobile communication and internet access, and their widespread availability in all socioeconomic classes at reasonable costs. Mobile phones, laptop computers, cameras, and calculators are examples of electronic devices.
According to Cisco Systems, the shipments of smart watches worldwide are forecasted to surpass 100 million in 2020, consequently encouraging the growth.
The ongoing miniaturisation of gadgets such as mobile phones, watches, and medical devices has resulted in an increase in demand for miniaturised electronic device components. Various tiny electronic systems and devices are being developed around the world. Because conventional batteries make it difficult to reduce the size of electronic gadgets, there is a rising demand for compact and lightweight printed flexible batteries. Implantable and wearable medical gadgets can only reach the market if miniaturised batteries are utilised to power them. To be integrated with wearable devices, these batteries must be both thin and lightweight.
The proprietary technology utilised to make printed flexible batteries range from one manufacturer to the next dependent on the manufacturer's criteria. These batteries are designed specifically for certain electronic devices, resulting in compatibility concerns when used with other devices. As a result, the lack of standards to follow during battery development works as a constraint on the expansion of the printed flexible battery market.
Because of improvements in IoT and wireless sensor technology, wireless sensors are being rapidly utilised all over the world. Energy harvesting technologies such as thin film and printed flexible batteries are rapidly emerging as a viable power supply option for embedded systems, enabling the use of wireless sensors in previously untapped applications. Micro batteries offer energy harvesting due to their superior form factors, ultra-thin profile, and low leakage characteristics. The growing deployment of energy harvesting-based autonomous wireless sensors is predicted to drive growth in the thin film and printed battery markets.
It necessitates a meticulous examination of solid-state electrolytes, soft current collectors, electrode materials, and complete lithium-ion battery cell assemblies. Studies are being conducted to gain a fundamental understanding and simulation of totally thin film and printed flexible lithium-ion batteries. Furthermore, research is being conducted to assess the reliability and performance of these batteries, which are not easily, investigated utilising current cutting-edge technology. As a result, the fabrication complexity of thin film lithium-ion batteries is a significant barrier to market expansion.
The thin film and printed battery market was subject to significant growth owing to the increased adoption of thin film and printed batteries in consumer electronics and energy harvesting applications, which were driving the growth of the market. As a result of COVID-19, the expected growth of thin film and printed batteries across different applications is expected to decline as the pandemic is expected to restrict the supply chain and adoption of thin film and printed batteries owing to severe disruptions in businesses and the global economy.
The below 10 mAh segment is estimated to have a lucrative growth. Batteries with capacities less than 10 mAh are commonly used in medical implants, cosmetic patches, Internet of Things devices, MEMS, CMOS memory, and other low-drain devices. Because these devices are small, they have a limited amount of internal space. They can be powered by low-capacity batteries. Increasing demand for thin film and printed batteries for usage in various applications is likely to drive development in the below 10 mAh category during the forecast period.
The below 1.5 V segment is anticipated to witness the highest CAGR growth during the forecast period, due to its wide applications in consumer electronic gadgets and other small home appliances. The trend is projected to continue in the coming years as a result of ongoing R&D efforts by prominent manufacturers around the world to make these batteries even more small, reliable, and stable while remaining affordable. The fundamental driving reason that will drive this industry's development rate is the usage of batteries as a power source for hearing aids, wireless keyboards and mice, door bells, and wireless security systems.
North America is projected to hold the largest market share during the forecast period. Thin film batteries, due to their reduced size, are highly useful in wearable devices such as smart watches and health monitoring gadgets, which are popular among customers in the United States and Canada. Furthermore, increased usage of medical electronic devices in the region is another significant factor driving the development of this market. Many key manufacturers in this industry are situated in North America, including Blue Spark Technologies, Ultralife Corporation, and Brightvolts Inc.
Asia Pacific is projected to have the highest CAGR over the forecast period. The demand is primarily driven by predicted growth in sales of wearable electronics and medical electronic devices such as hearing aids and respiratory aids in China and Japan throughout 2020. Furthermore, the increased implementation of printed battery technology in consumer electronics like as wireless sensor networks, remote controls, and smart cards will drive the growth of this market.
Some of the key players profiled in the Thin Film and Printed Battery Market include: Brightvolt Inc., Blue Spark Technologies, Inc., Enfucell OY Ltd., Imprint Energy, Inc., Cymbet Corporation, Inc., Panasonic Corporation, Jiangsu Enfucell Flexible Electronics Co., Ltd., STMicroelectronics, Flexel LLC, Protoflex Corporation, Jenax Inc., Excellatron Solid State LLC., NEC Energy Solutions Inc. and Ilika Plc.
In March 2020, Enfucell recently released its new product the Wearable Temperature Tag. The tag is based on a combined technology of NFC, intelligent temperature sensor, and SoftBattery (printed paper batteries).
In August 2019, Imprint Energy announced the expanded availability of its developer's kit for its ultrathin, safe, flexible, printed batteries. The batteries pack the power to communicate over short or long distances, and were especially designed to power IoT devices integrated with Semtech's LoRa devices for low power wide area networks (LPWAN), as well as working with Bluetooth Low Energy and other standards.