市场调查报告书
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RF 滤波器全球市场规模、份额、行业趋势分析报告:按电压、按应用、按地区、展望和预测,2023-2029 年Global RF Filter Market Size, Share & Industry Trends Analysis Report By Voltage (Saw Filter and Baw Filter), By Application, By Regional Outlook and Forecast, 2023 - 2029 |
RF 滤波器市场规模预计到 2029 年将达到 331 亿美元,预测期内復合年增长率为 16.2%。
通带和阻带是射频滤波器使用的两种主要频带类型。 允许通带频带中的信号无衰减地通过,而阻带中的信号则被显着衰减。 射频滤波器有多种类型,包括低通滤波器、带通滤波器、高通滤波器和带阻滤波器。 每种类型都有自己的运作方式。
许多无线通信设备,例如手机、Wi-Fi 热点和无线路由器都需要射频滤波器。 因此,随着无线通信的普及,对射频滤波器的需求越来越大。 因此,製造商在研发方面投入巨资,以开发新的、最先进的过滤技术,以满足不断增长的需求。
COVID-19 影响分析
COVID-19 大流行给射频滤波器市场带来了供应链问题,尤其是在爆发初期。 然而,随着越来越多的人开始在家工作并依赖电子设备进行通信和娱乐,对射频滤波器的需求也在增加。 此外,越来越多地使用电子设备进行影像会议、远程学习和在线娱乐,推动了对这些产品的需求激增,从而增加了对 RF 滤波器的需求。 此外,5G 网路的出现增加了对射频滤波器的需求,需要尖端的滤波技术来确保高速数据传输。 因此,COVID-19 大流行对射频滤波器市场产生了积极和消极的影响。
市场增长因素
物联网设备的使用范围扩大
随着物联网设备在製造、医疗保健和运输等各个领域的使用增加,射频滤波器的市场有望扩大。 新物联网设备的加入将进一步推动这些领域对射频滤波器的需求。 由于物联网设备的日益普及,射频滤波器市场的未来公司可能会有很多机会。 因此,随着物联网技术的快速发展,未来几年射频滤波器市场有望增长。
在许多领域扩大连接设备的使用
预计推动 RF 滤波器使用的主要驱动因素是医疗保健业务从业者之间互联医疗技术的兴起,例如心率监测器和远程监控设备。 此外,互联医疗设备对于帮助医疗保健专业人员专注于他们最优先的任务、鼓励患者积极参与以及提供以患者为中心的护理服务至关重要。 此外,医疗专业人员和医护人员需要高速互联网连接才能使用这些服务。 这支持了市场增长和需求。 教育系统也受益于互联设备和数字技术,以实现多个目标。
市场抑制因素
开发和实施成本高
控制算法设计结构的复杂性减慢了切换速度,影响了控制结构的整体性能。 射频滤波器市场的製造商面临障碍,因为这些复杂的设备需要高度专业化、高度可靠的技术和一系列集成工具。 设计和製造 RF 滤波器是一个困难的过程。 除了高技能人员的知识外,开发过程中还使用了特定的工具和材料。 此外,RF 滤波器通常难以製造并且需要使用复杂的设备和程序。 因此,射频滤波器的开发成本可能成为抑制市场增长的主要因素。
应用展望
按应用划分,射频滤波器市场分为导航和无线电广播、电视广播、蜂窝通信、卫星通信、航空航天和国防等。 2022 年,航空航天和国防领域的射频滤波器市场实现了大幅增长。 航空航天和国防部门对 RF 滤波器产生了巨大的需求,因为通信设备支持战斗前线的部队。 因此,航空航天和国防参与者主要关注更新战术和作战车辆,以提高地面部队的保护、机动性和杀伤力。
电压展望
RF 滤波器市场按电压分为 SAW 和 BAW 滤波器。 到 2022 年,SAW 滤波器部分将占据 RF 滤波器市场的最大收入份额。 电子滤波器,称为表面声波 (SAW) 滤波器,用于射频 (RF) 操作以选择性地通过某些频率并阻止其他频率。 SAW 滤波器在 GPS、雷达和 ADAS(高级驾驶辅助系统)等汽车应用中的需求越来越大,以提高安全性和改善驾驶体验。
区域展望
对北美、欧洲、亚太地区和拉美地区的射频滤波器市场进行了分析。 到 2022 年,北美市场将在射频滤波器市场中获得最大的收入份额。 由于几个主要竞争对手和对无线通信技术不断增长的需求,北美占据了射频滤波器市场的很大一部分。 此外,由于对无线通信技术(包括 5G、物联网、M2M 或机器对机器通信)的需求不断增长,北美的射频滤波器市场正在扩大。 此外,智能手机等移动设备的普及也是各地区需求增加的一个因素。
The Global RF Filter Market size is expected to reach $33.1 billion by 2029, rising at a market growth of 16.2% CAGR during the forecast period.
Electronic circuits known as radio frequency (RF) filters are made to selectively accept or reject a range of radio frequency signals. They are frequently employed in high-frequency electronic circuits, wireless devices, and radio communication systems. By reducing interference from undesirable signals, RF filters primarily enhance the quality and dependability of the communication system. These filters are frequently applied in electronic communication systems to enhance RF signal quality by lowering undesirable frequencies and eliminating interference.
Radio and television transmission, satellite systems, and wireless communication all frequently use RF filters. Filters now play a crucial role and are necessary to reduce interference due to the expansion of wireless standards within the current frequency ranges. They have a set operating frequency and can accept or attenuate RF signals at various frequencies.
Passband and stopband are the two primary frequency band types used by RF filters. Signals in the passband frequency band can pass through with little attenuation, whereas signals in the stopband are considerably attenuated. There are numerous RF filters, including low pass filters, band pass filters, high pass filters, band stop filters, etc. Each type has a unique manner of functioning.
Many wireless communication devices, such as mobile phones, Wi-Fi hotspots, wireless routers, and others, require RF filters. As a result, RF filters are becoming increasingly in demand as wireless communication becomes increasingly popular. As a result, manufacturers have made major investments in research and development to develop new and cutting-edge filter technologies to satisfy the expanding demand.
COVID-19 Impact Analysis
The COVID-19 pandemic caused supply chain problems for the RF filter market, especially during the initial phases of the outbreak. But as more people started working from home and relied on electronics for communication and entertainment, the need for RF filters grew. In addition, an expansion in the use of electronic devices for video conferencing, remote learning, and online entertainment caused a spike in demand for these products, increasing demand for RF filters. Furthermore, the advent of 5G networks increased the demand for RF filters because these networks needed cutting-edge filtering technology to guarantee high-speed data transfer. In this way, the COVID-19 pandemic affected the market for RF filter in both favorable and negative ways.
Market Growth Factors
Increasing use of IoT devices
The market for RF filter will probably increase as IoT devices are increasingly used in several sectors, including manufacturing, healthcare, and transportation. The demand for RF filters in these sectors will be further fueled by the addition of new IoT devices. Future companies in the RF filter market may have a lot of opportunities due to the rising popularity of IoT devices. Therefore, the market for RF filter is anticipated to expand over the coming years with the rapid development of IoT technology.
Growing use of connected devices in the numerous sectors
The key driver projected to fuel development in the use of RF filters is the rise in connected medical technologies among practitioners in the healthcare business, such as heart-rate monitors and remote monitoring equipment. Moreover, connected medical equipment is crucial for healthcare staff to focus on high-priority tasks, promote active patient participation, and offer patient-centered care delivery services. In addition, medical professionals and healthcare workers need high-speed internet connectivity to use these services. This supports market growth and demand. Also, the educational system benefits from connected devices and digital technologies to accomplish several goals.
Market Restraining Factors
High costs of development and implementation
The switching speed is slowed down by the complexity of the control algorithm design structure, which impacts the control structure's overall performance. Manufacturers in the RF filter market face a hurdle since these complicated devices call for high specialization, reliable technique, and a set of integration tools. Designing and producing RF filters is a difficult process. In addition to the knowledge of highly skilled people, the development process uses specific tools and materials. Also, manufacturing RF filters is frequently difficult and necessitates using complex equipment and procedures. Therefore, The RF filter's development costs may be a significant market growth inhibitor.
Application Outlook
Based on application, the RF filter market is categorized into navigation and radio broadcast, TV broadcast, mobile phone communication, satellite communication, aerospace & defense, and others. The aerospace and defense segment procured a considerable growth rate in the RF filter market in 2022. As communication equipment supports troops on the front lines of battle, the aerospace and defense sector produce a significant need for RF filters. As a result, the aerospace and defense sector participants concentrate primarily on updating tactical and combat vehicles to increase ground forces' protection, mobility, and lethality.
Voltage Outlook
On the basis of voltage, the RF filter market is divided into SAW filter and BAW filter. The SAW filter segment witnessed the largest revenue share in the RF filter market in 2022. Electronic filters called surface acoustic wave (SAW) filters are employed in radio frequency (RF) operations to selectively pass some frequencies while blocking others. SAW filters are increasingly in demand in automotive applications like GPS, radar, as well as advanced driver assistance systems (ADAS) to increase safety and improve the driving experience.
Regional Outlook
Based on region, the RF filter market is analyzed across North America, Europe, Asia Pacific, and LAMEA. The North America segment procured the maximum revenue share in the RF filter market in 2022. Due to several important competitors and the rising need for wireless communication technologies, North America holds a sizeable portion of the RF filter market. In addition, the RF filter market is expanding in North America due to the rising demand for technologies for wireless communication, including 5G, IoT, and M2M or machine-to-machine communications. Furthermore, regional demand expansion is also driven by the increased adoption of mobile devices such as smartphones.
The market research report covers the analysis of key stake holders of the market. Key companies profiled in the report include Anatech Electronics, Inc., RS Microwave Company, Inc., Bird Technologies Group, Inc., NXP Semiconductors N.V., Analog Devices, Inc., STMicroelectronics N.V., Murata Manufacturing Co., Ltd., Broadcom, Inc. (CA Technologies, Inc.), API Technologies Corp., and K&L Microwave (Dover Corporation).
Strategies deployed in RF Filters Market
Mar-2023: STMicroelectronics launched nine new devices for expanding its RF IPDs portfolio. These devices integrate harmonic filter, balun, and antenna impedance-matching circuitry that has been specially designed for STM32WL wireless MCUs. The STM32WL MCUs from ST combine wireless communication and application-level computing for smart, connected devices. This has been done by fusing an Arm Cortex-M4 MCU with a sub-GHz long-range radio controlled by a Cortex-M0+ core. The STM32CubeWL MCU software package includes the LoRaWAN and Sigfox stacks, and the radio is LPWAN compliant and supports a variety of modulation schemes.
Dec-2022: Broadcom came into partnership with Skyworks for providing power efficiency for next-generation Wi-Fi 6/6E Devices. The partnership helped the former company's customers in delivering high-speed connectivity in the cutting-edge end market dependent on these technologies.
Mar-2022: Murata Manufacturing completed the acquisition of Resonant, Inc., a company focused on RF Filter design. The acquisition boosted Murata's position as a leader in the telecommunications market through integrating process and filter technologies and proprietary manufacturing capabilities with Resonant's XBAR technology for delivering advanced high-frequency filters.
Nov-2021: Anatech Electronics signed a distribution agreement with EPI Vietnam Technologies. Following the agreement, EPI Vietnam would work as the exclusive representative and distributor of Anatech's products in all areas of Vietnam.
Oct-2021: Broadcom extended its partnership with Resonant, a company focused on providing radio frequency filter solutions, for the development of 5G XBAR RF Filters. The expansion covers additional bands and RF filter designs utilizing Resonant's own XBAR® technology.
Sep-2021: Broadcom introduced the BCM4778, its lowest power L1/L5 GNSS receiver chip developeed for wearable and mobile applications. The third-generation chip is 35% smaller and uses five times less power than the previous generation while still having the most recent GNSS advancements. Third-generation dual-frequency GNSS receiver with improved multipath mitigation, L5 collection capability, and LTE filtering and jamming protection is available in the BCM4778.
Aug-2021: Analog Devices acquired Maxim Integrated Products, a company engaged in designing, manufacturing, and selling analog and mixed-signal integrated circuits. The acquisition boosts ADI's position as a manufacturer of high-performance analog semiconductors. Together, the companies aim to shape a more wholesome, secure, and sustainable future for all while advancing the next waves of analog semiconductor innovation.
Oct-2020: STMicroelectronics took over SOMOS Semiconductor, a fabless company specializing in RF front-end modules and RF power amplifiers based on mainstream CMOS technology. The acquisition reinforced STMicroelectronics' position in terms of IP and know-how, during the preparation for emerging IoT and 5G markets.
Market Segments covered in the Report:
By Voltage
By Application
By Geography
Companies Profiled
Unique Offerings from KBV Research
List of Figures