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市场调查报告书
商品编码
1846067
异向性导电膜市场类型、应用、基板及地区分析(2024-2031)Anisotropic Conductive Film Market By Type, Application (LCD Panels, Printed Circuit Boards, Camera Modules, Touch Panels), Substrate Material, & Region for 2024-2031 |
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异向性导电膜 (ACF) 的需求不断增长,主要源自于其在先进电气和显示技术中的应用。 ACF 在许多电子设备的製造中至关重要,因为它能够实现电路基板组件之间的可靠连接。由于这些薄膜兼具高性能电子设备所需的导电性和机械稳定性,预计 2024 年市场规模将超过 30.4 亿美元,到 2031 年将达到约 42.7 亿美元。
ACF 在汽车和工业应用中的日益普及正在推动市场扩张。在汽车领域,ACF 用于 ADAS(高级驾驶辅助系统)和资讯娱乐系统,以确保复杂电子元件的正常运作。感测器和电控系统的日益普及以及汽车技术的不断进步,正在推动汽车应用对 ACF 的需求,预计 2024 年至 2031 年期间市场复合年增长率将达到 4.78%。
异向性导电膜市场:定义/概述
异向性导电膜 (ACF) 是一种专用于电子设备的材料,用于在电路基板的各个元件之间建立可靠的电气连接。与其他导电材料不同,ACF 仅在一个方向上导电,因此有「异向性」(「方向相关」)之称。 ACF 的独特特性使其在需要精确电气路径的应用中发挥重要作用。
异向性导电膜 (ACF) 因其独特的特性(在某些方向上导电,在其他方向上绝缘)而广泛应用于电子产品。 ACF 最常见的应用之一是液晶显示器 (LCD) 和触控萤幕的组装。在这些设备中,ACF 将显示面板连接到印刷基板(PCB)。 ACF 的异向性结构确保两个组件之间的电讯号能够正常传输,同时防止短路。
ACF 为这些系统中众多电子元件的连接提供了可靠的解决方案,确保其在严苛的汽车环境中保持强劲性能。随着对更整合、更复杂的车载电子设备的需求不断增长,ACF 在确保高品质、持久连接方面的作用将日益重要。
家用电子电器需求的不断成长是异向性导电膜 (ACF) 市场的主要驱动力。随着消费性电子产品变得越来越复杂和小型化,对高效可靠的连接解决方案的需求也随之飙升。 ACF 能够以小外形规格提供高密度连接,使其成为智慧型手机、平板电脑、笔记型电脑和其他便携式设备的理想选择。
根据美国劳工统计局的数据,个人电脑及相关设备的消费者物价指数预计将在2023年2月至2024年2月期间下降3.6%,显示人们的负担能力有所提高,消费需求也有望增长。此外,美国人口普查局估计,2022年电脑和电子製造业的出货收益将达到3,472亿美元,凸显了消费性电子产业的规模。
智慧型设备和物联网 (IoT) 的成长将增加对活性碳纤维 (ACF) 的需求。根据美国标准与技术研究院 (NIST) 的数据,到 2025 年,物联网连接设备的数量预计将达到 416 亿。此类连接设备的快速发展需要像 ACF 这样的先进连接技术,这些技术能够在越来越小的尺寸下提供稳定的性能。此外,美国能源局估计并预测,到 2025 年,全球智慧家庭设备市场规模将达到 1,350 亿美元,这表明 ACF 在家庭自动化和智慧家电领域的应用潜力巨大。
环境和监管问题正在显着影响异向性导电膜 (ACF) 市场。 ACF 材料的製造和处置过程中会使用有毒化合物,这些化合物可能会造成环境问题。根据美国环保署 (EPA) 的数据,包括废弃 ACF 组件在内的电子废弃物约占掩埋危险废弃物的 70%。 EPA 2021 年的电子废弃物管理报告发现,只有 15% 的电子废弃物得到了妥善回收,这凸显了 ACF 产业迫切需要改进加工流程。
此外,欧盟《限制在电子电气设备中使用某些有害物质指令》(RoHS)限制了某些有害元素在电气和电子设备中的使用,包括活性碳纤维(ACF)製造中使用的某些零件。欧盟委员会在2022年对RoHS指令的审查中发现,虽然合规性有所改善,但电子产品供应链中仍存在问题,可能会影响ACF製造商和消费者。旨在减少电子废弃物和促进永续电子製造的法律规范正变得越来越严格。联合国大学发布的《2020年全球电子垃圾监测报告》显示,2019年全球电子废弃物产生量达5,360万吨,预计2030年这数字将增加至7,470万吨。
The growing demand for anisotropic conductive film (ACF) is primarily driven by its use in sophisticated electrical and display technologies. ACFs are essential in the production of many electronic devices because they enable the reliable connection of components on a circuit board. This film offers both electrical conductivity and mechanical stability which are required for high-performance electronics by enabling the market to surpass a revenue of USD 3.04 Billion valued in 2024 and reach a valuation of around USD 4.27 Billion by 2031.
The increasing use of ACFs in automotive and industrial applications is driving market expansion. In the automotive sector, ACFs are employed in advanced driver assistance systems (ADAS) and infotainment systems to ensure the proper operation of complicated electronic components. As vehicles become more technologically advanced with increased usage of sensors and electronic control units, the demand for ACFs in automotive applications grows by enabling the market to grow at a CAGR of 4.78 % from 2024 to 2031.
Anisotropic Conductive Film Market: Definition/ Overview
Anisotropic Conductive Film (ACF) is a specialized material used in electronics to make secure electrical connections between various components on a circuit board. Unlike other conductive materials, ACF transmits electricity in only one way, hence the word ""anisotropic,"" which means ""directionally dependent."" ACF's unique feature makes it very valuable in situations requiring precise electrical paths.
Anisotropic Conductive Film (ACF) is frequently utilized in electronics due to its unique ability to allow electrical conductivity in one direction while insulating in others. One of the most common applications for ACF is the assembling of liquid crystal displays (LCDs) and touchscreens. In these devices, ACF connects the display panel to the printed circuit board (PCB). Its anisotropic structure ensures that electrical signals are correctly passed between the two components while preventing short circuits.
ACF provides a dependable solution for connecting numerous electronic components within these systems assuring strong performance in the harsh automotive environment. With the demand for more integrated and sophisticated automotive electronics, ACF's role in guaranteeing high-quality, long-lasting connections will become increasingly important.
The increasing demand for consumer electronics is a major driver of the anisotropic conductive film (ACF) market. As consumer electronics become more complex and compact, the demand for efficient and reliable connecting solutions has skyrocketed. ACF's capacity to deliver high-density connections in a tiny form factor makes it ideal for usage in smartphones, tablets, laptops, and other portable devices.
According to the US Bureau of Labor Statistics, the Consumer Price Index for personal computers and related equipment fell by 3.6% between February 2023 and February 2024 indicating increased affordability and possible consumer demand. Furthermore, the United States Census Bureau estimated that computer and electronic product manufacturing shipments will equal $347.2 billion in 2022 illustrating the consumer electronics industry's substantial size.
The growth of smart devices and the Internet of Things (IoT) increases the demand for ACF. According to the National Institute of Standards and Technology (NIST), the number of IoT-connected devices is expected to reach 41.6 billion by 2025. This exponential development in connected devices demands advanced connectivity technologies like as ACF to provide consistent performance in increasingly small form factors. Furthermore, the United States Department of Energy forecasts that the global market for smart home devices is estimated to reach $135 billion by 2025 indicating a significant possibility for ACF applications in home automation and smart appliances.
Environmental and regulatory concerns have a substantial impact on the anisotropic conductive film (ACF) market. ACF materials are produced and disposed of using potentially toxic compounds which raises environmental problems. According to the US Environmental Protection Agency (EPA), electronic waste including abandoned ACF components accounts for around 70% of hazardous waste in landfills. According to the Environmental Protection Agency's 2021 report on electronic waste management, just 15% of e-waste is adequately recycled underscoring the urgent need for enhanced disposal methods in the ACF industry.
Furthermore, the European Union's Restriction of Hazardous Substances (RoHS) Directive restricts the use of some hazardous elements in electrical and electronic equipment including several components used in ACF manufacturing. The EU Commission's 2022 review of RoHS implementation discovered that while compliance has improved, problems persist in the electronics supply chain possibly harming ACF manufacturers and consumers. Regulatory frameworks designed to reduce electronic waste and promote sustainable electronics manufacture are growing more restrictive. The United Nations University's Global E-waste Monitor 2020 reported that global e-waste generation reached 53.6 million metric tons in 2019 with projections that this figure could rise to 74.7 million metric tons by 2030.
Film Type ACF is currently the dominant segment over the forecast period. This dominance stems mostly from its better performance qualities and wide compatibility with a variety of electronic components and substrates. The adhesive material used in Film Type ACFs is thermoplastic film which has a high adhesion strength, thermal stability, and great mechanical qualities. These characteristics make them ideal for electronics applications requiring great dependability such as display modules, touch panels, and semiconductor packaging. The film's stability at high temperatures enables consistent performance in challenging settings which is critical for consumer electronics and automotive applications that require durability.
The paste type ACF is gaining popularity because of its distinct benefits, particularly in applications demanding flexibility and fine pitch capability. Paste Type ACFs use conductive adhesive paste as the bonding medium which allows for low-temperature bonding and makes them ideal for use with fragile or heat-sensitive components. This sort of ACF is especially beneficial for connecting devices with curved surfaces or uneven substrates which are becoming more frequent in modern electronic products such as flexible displays and wearable electronics. The paste's flexibility allows it to adjust to different surface profiles increasing its application in creative electronic designs.
The primary application is in LCD screens. This domination stems from the extensive usage of ACFs in the manufacture of numerous display devices such as smartphones, tablets, laptops, monitors, and televisions. LCD panels require precise and dependable bonding of flexible printed circuit (FPC) connectors to glass substrates or driver integrated circuits (ICs) for which ACFs are ideal. The increased demand for high-definition and larger display screens combined with advances in display technology fuels the need for effective interconnection solutions. ACFs provide good electrical conductivity while keeping the flexibility required for current display assemblies making them essential in the manufacture of LCD panels.
The use of ACFs in flexible displays is gaining popularity and has the potential to challenge the dominance of LCD panels in the future. The advent of flexible OLED displays, foldable displays, and rollable displays has opened up new potential for ACFs which are required to provide electrical connections between flexible substrates, driver ICs, and display components. Flexible screens are gaining popularity due to their unique design options and use in high-end consumer goods like folding smartphones and advanced wearables. This sector's growth is fueled by advancements in display technology and the increasing need for adaptable, portable electronic gadgets.
The Anisotropic Conductive Film (ACF) market in North America is predicted to rise significantly owing to increasing demand in the consumer electronics sector. The United States, in particular, dominates this industry owing to its strong technology infrastructure and high consumer expenditure on electronic gadgets. The consumer electronics business in North America, particularly in the United States has been steadily growing. According to the U.S. Bureau of Economic Analysis, consumer expenditure on electronics and appliances climbed by 12.4% in 2021 over the previous year. This spike in consumer electronics demand directly affects the ACF market because these films are critical components in numerous electronic products such as smartphones, tablets, laptops, and wearables.
The U.S. Census Bureau reported that computer and electronic product manufacturing contributed USD 301.5 Billion to GDP in 2020 emphasizing the sector's economic importance. Furthermore, the US Department of Commerce's International Trade Administration predicts that the US consumer electronics market will reach USD 505 Billion by 2024 expanding at a 6% CAGR. This increase is linked to rising disposable income, technical developments, and the growing popularity of smart home devices. The development of 5G technology is also likely to increase demand for ACF which necessitates modern electrical components in devices and infrastructure.
The Asia Pacific region is poised to be the fastest-growing market for anisotropic conductive film (ACF) due to rapid industrialization and technological advancements. This expansion is mostly driven by countries like China, Japan, South Korea, and Taiwan which are at the forefront of electronic production and innovation. Rapid industrialization in the Asia Pacific region is a major driver of the ACF market. According to the Asian Development Bank, industrial production in emerging Asia will rise by 6.5% in 2023 with manufacturing playing a large role. China, the region's largest economy, increased industrial production by 4.6% year on year in December 2023, according to the National Bureau of Statistics of China.
This industrial expansion has resulted in increased demand for electronic components and displays in which ACF is widely utilized. The semiconductor industry, a major consumer of ACF has also experienced significant expansion in the region. According to World Semiconductor Trade Statistics (WSTS), the Asia Pacific semiconductor market is predicted to increase by 14.7% in 2024, reaching USD 340 Billion. Another important driver of the ACF market is regional technological improvements. The Asia Pacific region has emerged as a powerhouse for electronic and advanced manufacturing research and development.
The Anisotropic Conductive Film Market is a dynamic and competitive space, characterized by a diverse range of players vying for market share. These players are on the run for solidifying their presence through the adoption of strategic plans such as collaborations, mergers, acquisitions, and political support. The organizations are focusing on innovating their product line to serve the vast population in diverse regions.
Some of the prominent players operating in the anisotropic conductive film market include:
Henkel AG & Co. KGaA
Hitachi Chemical Co., Ltd.
Sumitomo Bakelite Co., Ltd.
Panasonic
LG Chem, Ltd.
Son
Creative Materials, Inc.
In September 2022, SunRay Scientific successfully created a magnetic Anisotropic Conductive Epoxy (ACE), allowing for dependable interconnects on textiles and is specifically built for wearable devices. This new ACE solution has an amazing pitch as low as 50µm and is currently under development. The newly developed ACE by SunRay Scientific has exceptional structural bonding qualities, removing the need for further encapsulation.