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2030 年模拟半导体市场预测:按产品类型、类型、组件、最终用户和地区进行的全球分析Analog Semiconductors Market Forecasts to 2030 - Global Analysis By Product Type, Type, Component, End User and by Geography |
根据Stratistics MRC的数据,2024年全球模拟半导体市场规模为1,050.1亿美元,预计到2030年将达到1,657.2亿美元,预测期内复合年增长率为7.9%。
如果没有类比半导体,现代电子产品就无法正常运作。类比半导体可以轻鬆处理和处理现实世界的讯号,例如光、声音和温度。与数位半导体的二元资料处理能力相比,类比半导体对连续讯号进行操作。这允许类比输入转换为数数位资料以供数位系统处理,反之亦然。这些半导体对于广泛的应用至关重要,包括通讯、医疗和音讯/视讯设备。
根据半导体工业协会 (SIA) 的说法,类比半导体对于将现实讯号转换为数数位资料至关重要,并且在实现各行业各种电子设备的功能方面发挥关键作用。
家用电子电器需求增加
穿戴式装置、平板电脑和智慧型手机等个人电子设备需要先进的类比半导体来管理电源并提供更好的性能。流畅的连接、低功耗以及出色的音讯和视讯功能是这些设备的要求。此外,讯号转换、电池寿命管理以及透过更好的音讯组件来改善使用者体验都是由类比半导体实现的。
开发成本过高
开发、研究和製造先进的模拟半导体成本高。创造新颖的模拟半导体技术需要大量的研发成本、先进的製造工具和高技能的劳动力。此外,小型企业可能在处理此类财务负担方面特别困难,这可能会阻碍它们的创新能力以及与资金雄厚的大公司竞争的能力。
医疗保健技术发展
病患监测系统、医疗设备和诊断方面的创新正在迅速改变医疗保健产业。这些应用中需要模拟半导体来实现精确的讯号处理、电源管理和资料转换。此外,随着对穿戴式和可携式医疗设备、远端医疗解决方案和先进诊断影像设备的需求不断增长,模拟半导体製造商有很多机会为医疗保健行业开发专用组件。
供应链问题
全球模拟半导体供应链错综复杂且多元化。零件和原材料的供应可能会受到任何干扰的影响,包括流行病、自然灾害和供应商纠纷。此外,这可能会导致生产延迟和成本增加。儘管强大的供应链至关重要,但漏洞仍可能严重危害生产计划和产品交付。
由于 COVID-19 大流行,模拟半导体市场既经历了机会,也经历了颠覆。疫情对供应链的严重影响、工厂关闭和物流困难最初导致生产中断和产品交付延迟。然而,由于疫情对消费性电子产品、医疗保健设备和远距工作解决方案的需求增加,对先进模拟元件的需求也随之增加。许多行业向数位化和自动化的转变进一步刺激了物联网和智慧家庭设备市场。
预计运算放大器部分在预测期内将是最大的部分。
在类比半导体市场中,运算放大器占有最大的份额。由于其在讯号处理方面的适应性和效率,运算放大器已成为各种应用中的重要组件。此外,它们也广泛应用于家用电子电器、工业自动化、汽车系统和医疗设备中,用于执行滤波、放大和讯号调节等任务。高性能、低功耗运算放大器由于其巨大的市场占有率以及这些行业的持续创新和发展而受到很高的需求。
目前的加工领域预计在预测期内复合年增长率最高
模拟半导体市场的电流处理部分通常表现出最高的复合年增长率。电源管理、能量转换和讯号调节只是依赖类比半导体处理和管理电流的众多应用中的一小部分。家用电子电器、工业自动化和汽车领域等各行业对有效电源管理解决方案的需求不断增长,推动了该领域的扩张。此外,再生能源来源、电动车的使用增加以及半导体技术的进步正在推动该市场的成长。
模拟半导体市场由亚太地区主导。这一优势得益于该地区强大的电子製造基础,半导体产业的主要参与者包括中国、日本、韩国和台湾。该地区庞大的市场占有率归因于快速的工业化、大量的技术投资以及对家用电子电器和汽车零件的高需求。此外,亚太地区由于其完善的供应链以及对电子和节能技术日益增长的兴趣,在模拟半导体行业中保持主导地位。
在类比半导体市场中,北美的复合年增长率最高。对研发的大量投资、顶尖技术公司的存在以及汽车、通讯和工业自动化等各行业对先进电子产品不断增长的需求是这一增长的主要驱动力。该地区对创新的关注推动了天线半导体的采用,特别是在物联网 (IoT) 和智慧基础设施等领域。此外,北美对提高电子设备性能和转向节能解决方案的关注正在推动市场快速扩张。
According to Stratistics MRC, the Global Analog Semiconductors Market is accounted for $105.01 billion in 2024 and is expected to reach $165.72 billion by 2030 growing at a CAGR of 7.9% during the forecast period. Modern electronics cannot function properly without analog semiconductors, which make it easier to process and work with real-world signals like light, sound, and temperature. Analog semiconductors operate with continuous signals, as opposed to digital semiconductors' binary data handling capabilities. This allows analog inputs to be converted into digital data for processing by digital systems, and vice versa. These semiconductors are essential for a wide range of applications, including telecommunication, medical, and audio and video equipment.
According to the Semiconductor Industry Association (SIA), analog semiconductors are crucial for translating real-world signals into digital data, playing a vital role in enabling the functionality of various electronic devices across multiple industries.
Rising consumer electronics demand
Advanced analog semiconductors are required for personal electronic devices such as wearables, tablets, smartphones, and other devices to manage power and perform better. Smooth connectivity, low power consumption, and excellent audio and video capabilities are requirements for these devices. Additionally, signal conversion, battery life management, and improving user experiences with better audio-visual components are all made possible by analog semiconductors.
Exorbitant development expenses
Advanced analog semiconductor development, research, and manufacturing come at a high cost. The creation of novel analog semiconductor technologies necessitates large R&D expenditures, advanced manufacturing tools, and highly qualified labor. Furthermore, smaller businesses may find it especially difficult to handle this financial load, which hinders their capacity to innovate and compete with bigger, better-funded enterprises.
Technological developments in medicine
Innovations in patient monitoring systems, medical devices, and diagnostics are causing the healthcare industry to change quickly. For precise signal processing, power management, and data conversion in these applications, analog semiconductors are necessary. Moreover, there are numerous opportunities for analog semiconductor manufacturers to develop specialized components for the healthcare industry due to the growing demand for wearable and portable medical devices, telemedicine solutions, and advanced imaging equipment.
Supply chain issues
The world's supply chain for analog semiconductors is intricately linked and multifaceted. The availability of components and raw materials can be affected by any disruption, including pandemics, natural disasters, or problems with suppliers. Additionally, this can cause production delays and higher costs. Vulnerabilities can still seriously jeopardize production schedules and product delivery, even though a robust supply chain is essential.
The market for analog semiconductors saw both opportunities and disruptions as a result of the COVID-19 pandemic. Production was hindered and product deliveries were delayed at first by the pandemic's severe effects on the supply chain, factory closures, and logistical difficulties. However, the need for sophisticated analog components was driven by the pandemic's increased demand for consumer electronics, healthcare equipment, and remote work solutions. The market for IoT and smart home devices was further stimulated by the shift towards digitalization and automation that occurred across a number of industries.
The Operational Amplifiers segment is expected to be the largest during the forecast period
In the market for analog semiconductors, operational amplifiers, or Op-Amps, command the largest share. Due to their adaptability and efficiency in signal processing, operational amplifiers are crucial parts in many different applications. Moreover, they are widely used for tasks like filtering, amplification, and signal conditioning in consumer electronics, industrial automation, automotive systems, and medical devices. Because of their substantial market share, high-performance, low-power operational amplifiers are in high demand due to these industries' ongoing innovation and development.
The Electrical Current Processed segment is expected to have the highest CAGR during the forecast period
The Electrical Current Processed segment of the Analog Semiconductors Market usually shows the highest CAGR. Power management, energy conversion, and signal conditioning are just a few of the many applications that depend on analog semiconductors for handling and managing electrical currents. The rising need for effective power management solutions across a range of industries, including consumer electronics, industrial automation, and the automotive sector, is fueling the segment's expansion. Additionally, the growing utilization of renewable energy sources and electric vehicles, along with advancements in semiconductor technology, are driving this market's growth.
The market for analog semiconductors is dominated by the Asia-Pacific region. This dominance is a result of the region's strong foundation in electronics manufacturing, where major players in the semiconductor industry include China, Japan, South Korea, and Taiwan. This region's substantial market share can be attributed to its rapid industrialization, large technological investment, and high demand for consumer electronics and automotive components. Furthermore, the Asia-Pacific area maintains its leading position in the analog semiconductors industry owing to a well-established supply chain and an increasing focus on electronics and energy-efficient technologies.
In the market for analog semiconductors, North America exhibits the highest CAGR. Large investments in R&D, a robust presence of top technology companies, and rising demand for advanced electronics in a variety of industries, such as automotive, telecommunications, and industrial automation, are the main drivers of this growth. Antenna semiconductor adoption is being driven by the region's emphasis on innovation, especially in fields like IoT (Internet of Things) and smart infrastructure. Furthermore, the focus in North America on improving the performance of electronic devices and switching to more energy-efficient solutions facilitates its quick market expansion.
Key players in the market
Some of the key players in Analog Semiconductors market include STMicroelectronics, MediaTek Inc., Emerson Electric Co, Renesas Electronics Corp, Kistler Holding AG, ON Semiconductor Corp, Chiplogic Technologies, Microchip Technology Inc., Intel Corporation, NXP Semiconductors NV, Continental Device India Pvt. Ltd, Qualcomm Inc., Infineon Technologies AG, eInfochips Pvt. Ltd, Texas Instruments Incorporated and Skyworks Solutions Inc.
In April 2024, STMicroelectronics, a global semiconductor leader serving customers across the spectrum of electronics applications, and Centrica Energy Trading A/S ("Centrica Energy") announced that they have signed a ten-year Power Purchase Agreement (PPA) for the supply of renewable energy to its operations in Italy, starting January 2025.
In March 2024, Intel (INTC) and chip designer Arm (ARM) the companies finalized an agreement to collaborate on an initiative providing financial, intellectual property (IP), and manufacturing support to startups. The collaboration, called the Emerging Business Initiative, was first announced at last month's Intel Foundry conference and builds on a partnership established last April, in a move the companies suggested could help propel innovation in artificial intelligence (AI).
In August 2023, Emerson announced a definitive agreement to acquire FLEXIM Flexible IndustriemeBtechnik GmbH, a global leader in clamp-on ultrasonic flow measurement for liquids, gases and steam. Flexim brings highly differentiated, complementary technology and strong customer relationships to Emerson, with an installed base of more than 100,000 flowmeters, as well as approximately 450 employees.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.