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市场调查报告书
商品编码
1402433
全球整合式被动元件 (IPD) 市场评估:按类型、整合、材料、最终用户、地区、机会、预测(2017-2031 年)Integrated Passive Devices Market Assessment, By Type, By Integration, By Material, By End-user, By Region, Opportunities, and Forecast, 2017-2031F |
全球整合被动元件(IPD)市场规模预计2023年将达到14.1亿美元,2031年将达到29.8亿美元,2024年至2031年复合年增长率为9.8%。
由于对具有高功能的小型化、紧凑型电子设备的需求不断增长,该市场呈现出显着的成长。智慧型手机和连网设备的激增以及半导体技术的进步进一步推动了市场的发展。例如,根据半导体产业协会(SIA)近期发布的统计数据,2021年全球半导体产业销售额为5,559亿美元,2022年将升至5,741亿美元,创历史最高年度总额。2022年全球半导体产业较2021年年增率为3.3%。此外,随着 5G 技术和物联网应用的日益普及,对整合被动元件 (IPD) 的需求将会很大,因为这些元件在实现高频通讯和小型化物联网设备方面发挥关键作用。
对智慧型手机和连接设备的需求不断增长是整合被动元件(IPD)市场成长的主要驱动力。随着世界各地的人们越来越依赖智慧型手机和连网装置进行通讯、娱乐和提高生产力,对更小、更有效率、更强大的电子元件的需求正在迅速增加。整合式被动元件(IPD)将电阻器、电容器和电感器等关键被动元件整合在单一晶片上,在增强这些装置的性能、小型化和能效方面发挥关键作用。
智慧型手机需要小型高性能组件来支援其多功能性。整合式被动元件 (IPD) 使製造商能够提高智慧型手机和其他连接装置的功能和可靠性,同时缩小其整体尺寸。这些组件对于无线通讯技术中的讯号过滤、电源管理和阻抗匹配等功能至关重要,可确保无缝连接和最佳效能。
例如,根据YouAppi.最近发布的数据,智慧型手机普及率将在2023年达到前所未有的水平,全球用户数量将达到惊人的68亿。美国表现最为突出,94.40%的千禧世代和91%的大学毕业生拥有智慧型手机。这种激增对日常生活产生了重大影响,近一半的美国人口每天在智慧型手机上花费 5 至 6 小时。72% 的青少年有起床后立即查看手机讯息和通知的习惯。99.2% 的智慧型手机用户有无手机恐惧症(害怕没有手机)。
5G 技术的快速采用正在对整合式被动元件(IPD)市场产生重大影响。随着 5G 网路在全球的推出,通讯基础设施和行动装置对高效能、紧凑且高效的被动元件的需求正在迅速增加。5G 网路将需要先进的射频组件、天线和滤波器来支援更快的资料速度和增加的网路流量。整合式被动元件 (IPD) 将电阻器、电容器和电感器等各种被动元件组合在一个封装中,正在成为满足 5G 技术严格要求的重要解决方案。
整合式被动元件 (IPD) 提供卓越的小型化和整合能力,支援设计更小、更节能的 5G 设备和基础设施设备。这些组件增强了射频模组的效能,并实现 5G 网路中的无缝资料传输和接收。随着对高速互联网和低延迟通讯的需求不断增长,5G 应用中对整合式被动元件 (IPD) 的需求也在不断增加。此外,整合式被动元件 (IPD) 在支援 MIMO 技术部署方面发挥关键作用,而 MIMO 技术是 5G 网路的基础。大规模 MIMO 依赖先进的天线系统,需要紧凑、高性能的被动元件,而这正是 IPD 所提供的。随着5G技术变得无所不在,由于5G网路在电信、物联网和智慧型设备等各个领域的持续演进和部署,整合被动元件(IPD)市场预计将进一步扩大。
本报告研究和分析了全球整合式被动元件(IPD)市场,提供市场规模和预测、市场动态以及主要参与者的现状和前景。
Global integrated passive devices market size was valued USD 1.41 billion in 2023, the market is forecasted to reach a value of USD 2.98 billion by 2031, displaying a CAGR of 9.8% from 2024 to 2031. Integrated passive devices (IPD) refers to a rapidly growing segment within the electronics industry that involves the integration of passive components, such as resistors, capacitors, and inductors, onto a single chip or substrate. These components are essential for various electronic devices, including smartphones, wearables, automotive electronics, and IoT devices. The integrated passive devices offer several advantages, including reduced footprint, enhanced performance, and improved reliability, making them increasingly popular among manufacturers. As a result, the integrated passive devices are ideal for a wide range of end-users such as consumer electronics, automotive, telecom, healthcare, and energy and power.
The market for integrated passive devices is witnessing significant growth due to the rising demand for miniaturized and compact electronic devices with improved functionality. The proliferation of smartphones and connected devices, coupled with advancements in semiconductor technology, is driving the market further. For instance, according to the recent statistics published by the Semiconductor Industry Association (SIA), in 2021, the global semiconductor industry sales were USD 555.9 billion, and in 2022, it was USD 574.1 billion, the highest-ever annual total. In 2022, the year-on-year growth rate of the global semiconductor industry was 3.3% as opposed to 2021. Additionally, the increasing adoption of 5G technology and the Internet of Things (IoT) applications are creating a substantial demand for integrated passive devices, as these components play a crucial role in enabling high-frequency communication and miniaturized IoT devices.
The rise in the demand for smartphones and connected devices is a significant driving force behind the growth of the integrated passive devices (IPD) market. As the global population increasingly relies on smartphones and connected devices for communication, entertainment, and productivity, the demand for smaller, more efficient, and powerful electronic components has surged. Integrated passive devices, which integrate essential passive components like resistors, capacitors, and inductors into a single chip, play a crucial role in enhancing the performance, miniaturization, and energy efficiency of these devices.
Smartphones require compact and high-performance components to support their multifunctional capabilities. Integrated passive devices enable manufacturers to reduce the overall size of smartphones and other connected devices while improving their functionality and reliability. These components are vital for functions like signal filtering, power management, and impedance matching in wireless communication technologies, thereby ensuring seamless connectivity and optimal performance.
For instance, according to recent data published by YouAppi., in 2023, the prevalence of smartphones has reached unprecedented levels, with a staggering 6.8 billion users globally. The United States stands out with 94.40% of millennials and 91% of college graduates owning smartphones. This widespread adoption has significantly impacted daily routines, as almost half of the U.S. population spends 5 to 6 hours on their smartphones every day. 72% of teenagers habitually check their phone messages and notifications immediately upon waking up. Nomophobia, the fear of being without a mobile phone, affects a staggering 99.2% of smartphone users.
The rapid adoption of 5G technologies is significantly influencing the integrated passive devices (IPD) market. There is a surging demand for high-performance, compact, and efficient passive components in telecommunications infrastructure and mobile devices with the rollout of 5G networks worldwide. 5G networks require advanced radio frequency (RF) components, antennas, and filters to handle the higher data speeds and increased network traffic. Integrated passive devices, which combine various passive components like resistors, capacitors, and inductors into a single package, have emerged as a vital solution to meet the stringent requirements of 5G technology.
Integrated passive devices (IPDs) offer superior miniaturization and integration capabilities, enabling the design of smaller and more power-efficient 5G devices and infrastructure equipment. These components enhance the performance of RF modules, enabling seamless data transmission and reception in 5G networks. The need for integrated passive devices (IPDs) in 5G applications escalates as the demand for high-speed internet and low latency communication continues to grow. Moreover, integrated passive devices (IPDs) play a crucial role in enabling the deployment of Massive Multiple-Input, Multiple-Output (MIMO) technology, which is fundamental to 5G networks. Massive MIMO relies on advanced antenna systems that require compact and high-performance passive components, precisely what IPDs offer. As 5G technology becomes more ubiquitous, the integrated passive devices market is poised to expand further, driven by the ongoing evolution and implementation of 5G networks across various sectors, including telecommunications, Internet of Things (IoT), and smart devices.
North America boasts a thriving consumer electronics market, with a high demand for miniaturized and efficient electronic devices. Integrated passive devices (IPDs), with their ability to offer compact integration of passive components catering perfectly to this demand. The automotive industry, another significant sector in the region, has embraced integrated passive devices (IPDs) in electronic control units, infotainment systems, and advanced driver assistance systems (ADAS). Additionally, the region's early adoption of cutting-edge technologies, such as 5G, IoT, and smart devices, has created a substantial demand for high-performance, compact passive components like integrated passive devices (IPDs). The telecommunications sector, in particular, has witnessed a rapid deployment of 5G networks in North America, thereby driving the need for advanced radio frequency (RF) components, where integrated passive devices (IPDs) play a pivotal role.
The governments of various countries are implementing strategic initiatives and policies to boost the revenue advancement of the integrated passive devices (IPDs) market growth. For instance, the European Commission and its member states have taken decisive actions to reinforce Europe's "strategic autonomy" in the semiconductor industry. The European Commission initiatives include earmarking a substantial sum of up to USD 37.8 billion (Euro 35 billion) to bolster advanced semiconductor production capabilities within the European Union (EU). In March 2021, the European Union countries implemented the "2030 Digital Compass Initiative," which explicitly outlines an objective to elevate the EU's global chip manufacturing share to 20% by 2030, a substantial increase from the current share of under 10%.
Likewise, in May 2021, South Korean President Moon Jae-in launched a new national semiconductor industrial policy, known as the "K-Belt Semiconductor Strategy," which focuses on geographic clusters. This strategy encompasses various measures, including significant tax credits for research and development (up to 50%) and manufacturing (16%), substantial long-term loans amounting to USD 886 million, federal R&D investments totaling USD 1.3 billion, regulatory simplifications, and infrastructure upgrades. These efforts come in response to intensified competition from the countries such as the United States and China, both of which are intensifying their focus on bolstering their respective semiconductor industries. The Semiconductor Industry Association (SIA) estimates that these tax incentives for South Korean chip companies could provide incentives totaling approximately USD 55-65 billion over the next three years.
The COVID-19 pandemic had a notable impact on integrated passive devices market. The semiconductor industry, a major consumer of these components, experienced disruptions due to supply chain challenges, factory closures, and reduced demand caused by lockdowns and economic uncertainty. Production slowdowns and delays in technology upgrades affected the market, causing temporary setbacks. Additionally, travel restrictions impeded collaborations and hindered the timely delivery of materials, impacting project timelines.
However, the pandemic also accelerated certain trends within the market. The increased reliance on digital technologies, remote working, and the surge in demand for electronics, particularly for healthcare equipment and devices, bolstered the need for advanced semiconductors. This demand, coupled with ongoing technological advancements, created opportunities for integrated passive devices market to rebound.
The top players operating in the global integrated passive devices market are: STMicroelectronics N.V., Murata Manufacturing Co., Ltd., Semiconductor Components Industries, LLC, Infineon Technologies AG, Johanson Technology Inc, Taiwan Semiconductor Manufacturing Company, Johanson Technology Incorporated, OnChip Devices, Inc, Texas Instruments Incorporated, and Jiangsu Changdian Technology Co., Ltd. The integrated passive devices market is witnessing a swift growth trajectory due to the increasing emphasis placed by companies worldwide on establishing advanced semiconductor industry infrastructure. Furthermore, the market expansion is greatly facilitated by digitalization, along with significant investments made by companies to enhance research and development resources, engage in collaboration projects, bolster marketing efforts, and expand distribution networks. These factors collectively contribute to the rapid expansion of the market.
For instance, TSMC significantly raised its capital expenditure from around USD 15 billion in 2019 to an estimated USD 42-44 billion in 2022. Likewise, Samsung revealed its intention in 2023 to invest USD 230 billion in South Korea over the next two decades to establish new chip production capabilities. It's important to note that these investments require considerable time to come to fruition. Constructing semiconductor plants usually spans three to four years, and it may take an additional three to four years for these facilities to operate at maximum capacity.
In September 2023, X-FAB Silicon Foundries SE has recently announced the addition of new integrated passive device (IPD) fabrication capabilities to its existing offerings. This development reflects the growing significance of integrated passive devices in various industries. Therefore, the continuous expansion and innovation in this sector indicates a promising future for integrated passive devices.
All segments will be provided for all regions and countries covered:
Companies mentioned above DO NOT hold any order as per market share and can be changed as per information available during research work.