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市场调查报告书
商品编码
1351054
到 2030 年汽车噪音滤波器的市场预测:按类型、组件、车辆类型、用途和地区进行全球分析Automotive Noise Filter Market Forecasts to 2030 - Global Analysis By Type (Digital Filters and Analog Filters), Component (Control Units, Sensor and Other Components), Vehicle Type, Application and By Geography |
根据 Stratistics MRC 的数据,全球汽车噪音滤波器市场在预测期内将以 7.6%的年复合成长率成长。
汽车杂讯滤波器用于消除扩大机、低音扬声器、扬声器和其他电气零件发出的不必要的杂讯。噪音滤波器是最尖端科技系统,用于透过消除不需要的噪音频率和车内产生噪音的零件产生的声音来降低驾驶员驾驶时的舒适度。噪音滤波器用于导电电缆和汽车电气元件。
根据OICA(国际汽车构造组织)的数据,2021年美国生产了大约920万辆汽车,其中150万辆是汽车,760万辆是商用车,而且这个数字未来还会增加。预计年内将上涨。
随着商用车的销售,对商用车零件的需求将会增加。工业和建设活动的增加以及公路货物运输是商用车需求增加的要素。其中一个例子是用于运输日常用品和乘客的汽车。成长的原因之一是客户对既能载货又能载人的皮卡车辆的偏好发生了转变。与小客车相比,中型、重型卡车等商用车行驶里程较长,因此经常需要维修。因此,随着道路上商用车数量的增加,汽车空气滤清器製造商将有更多创收机会,从而带动整个产业的成长。
除了汽车杂讯滤波器之外,还有多种方法可用于减少射频干扰 (RFI) 和电磁干扰 (EMI)。屏蔽、接地、隔离、滤波和讯号完整性设计是杂讯滤波的常见替代方案。例如,屏蔽是用铜或铝等导电材料覆盖电子设备或小工具,以偏转或防止电磁辐射。相反,接地涉及使用导线和电缆将电气设备和小工具连接到地面,以减少静电的累积并消散所产生的电磁波。因此,所有最尖端科技都阻碍了市场的成长。
汽车噪音过滤器市场也受到消费者对豪华舒适汽车的渴望的推动。豪华汽车配备了各种电气零件和小工具,透过消除驾驶时听不见的噪音和震动来提高乘客的舒适度。为了提供车内舒适性,其中包含许多系统和组件,包括噪音过滤器、资讯娱乐系统、安全系统、音乐系统等。此外,汽车噪音滤波器还可以降低汽车电气部件(例如引擎、低音扬声器、扬声器、放大器和其他系统)产生的高音调噪音。
安装最新的噪音过滤器技术会显着增加汽车的整体成本。这可能是一个限制,特别是对于价格敏感的客户和市场。此外,在汽车中安装噪音滤波器可能是一项艰鉅的任务,需要专门的工具和知识。这可能会给製造商和服务提供者带来挑战,并降低整体采用率。
自 COVID-19 出现以来,很大一部分劳动力一直在家工作。数位滤波器会增加某些频率的音量并减少其他频率的音量。您可以从讯号中分离出重要的频率。在 COVID-19 爆发之前,汽车噪音滤波器市场正在以温和的速度成长。由于 COVID-19 的传播,电子产品的生产已停止。由于COVID-19最常见的传播途径是透过密切的人际接触,一些电子商务公司暂时停止运送非电子设备,特别是电子产品和整体电子产品,这尤其影响了数位滤波器的销售。
由于汽车行业的技术进步,数位滤波器已普遍使用,预计数位滤波器领域将出现良好的成长。有限脉衝响应 (FIR) 和无限脉衝响应 (IIR) 是两种类型的数位滤波器。现代化提高了数位讯号处理 (DSP) 技术的速度。使用数位滤波器处理射频域中的高频讯号。将类比资料传输到处理器进行数位滤波需要在处理器上运行适当的程式码。此外,虽然数位滤波器的声音过滤精度很高,但它们需要数位讯号并且便于携带,这也是市场扩张的驱动力。
汽车资讯娱乐系统领域预计在预测期内年复合成长率最高。汽车资讯娱乐 (IVI) 是一系列汽车技术的集合,它采用语音控制、触控萤幕显示器、按钮面板和音讯视讯介面为驾驶员和乘客提供娱乐和资讯。此外,这份研究报告还展示了车上娱乐系统产业如何推动豪华车需求、技术创新和远端资讯处理法律。而这个因素正在全球扩大市场。
预计亚太地区在预测期内将占据最大的市场份额,因为它占据了汽车杂讯滤波器的首位。据估计,未来年度中国、韩国和印度的需求可能会大幅成长。在亚太地区,汽车和部门部门占据主导地位。这些产品被广泛消费,先进技术的发展和电子规格的改进正在促进汽车噪音滤波器市场的扩大。
不断变化的客户偏好、不断增长的中产阶级人均收入和成本优势正在推动OEM增加该地区的汽车製造,其中中国占最大比例。此外,对配备最先进的内部舒适度和强大引擎的高檔汽车的需求也显着增加。预计这一趋势将在未来年度持续下去。此外,中国、印度等新兴国家电子商务的扩张和大型基础设施项目正在刺激重型商用车市场的扩张。
According to Stratistics MRC, the Global Automotive Noise Filter Market is growing at a CAGR of 7.6% during the forecast period. Automotive noise filters are used to cut down on unwanted noise made by amplifiers, woofers, speakers, and other electrical components. The noise filter is a cutting-edge technological system used to reduce the driver's comfort while driving by removing the frequency and sound of unwanted noise produced by noise-producing components in a vehicle. On sound-conducting cables and on the electrical parts of cars, noise filters are utilized.
According to Organisation Internationale des Constructeurs d'Automobiles (OICA), about 9.2 million motor vehicles produced in the United States in 2021, with 1.5 million being cars and 7.6 million being commercial vehicles, and this figure is expected to rise in the coming years.
The need for commercial vehicle parts and components rises along with commercial vehicle sales. Increased industrial and construction activity as well as the transportation of goods by road are factors contributing to the rise in commercial vehicle demand. Motor vehicles that are employed to convey commodities or paying passengers are among these vehicles. One of the causes of the rise is the movement in customer choice toward pick-up vehicles that can carry both freight and people. Compared to passenger automobiles, commercial vehicles like medium and heavy-duty trucks often travel longer distances, they therefore often need maintenance. Thus, when there are more commercial cars on the road, there will be more opportunities for automotive air filter producers to make money, which will help the industry as a whole grow.
In addition to automotive noise filtering, there are a number of different methods that may be utilized to reduce radio-frequency interference (RFI) and electromagnetic interference (EMI). Shielding, grounding, isolation, filtering, and signal integrity design are popular alternatives to noise filtration. For instance, shielding is the process of covering electronic equipment or gadgets with conductive materials like copper or aluminum in order to either deflect or prevent electromagnetic radiation. Contrarily, grounding is connecting electrical equipment or gadgets to the earth using conductive wires or cables in order to lessen the buildup of static electricity and dissipate any electromagnetic waves generated. Thus, all the cutting-edge technologies are hampering the market growth.
The market for automotive noise filters is fueled in part by consumer desire for luxurious and comfortable automobiles. Luxury automobiles come equipped with a variety of electrical parts and gadgets that are in charge of increasing the comfort level of the vehicle for the occupants by removing hindrances such loud inaudible noise and vibrations while driving. In order to provide comfort within the car, numerous systems and components are incorporated, including noise filters, infotainment systems, safety systems, and music systems. Additionally, Automotive Noise Filter lessens High Pitched Noise brought on by the electrical components of the automobile, such as the engine, woofer, speakers, amplifiers, and other systems.
The cost of automobiles as a whole may grow dramatically with the inclusion of modern noise filter technology. This may serve as a constraint, especially for customers and markets that are price sensitive. In addition, noise filter installation in cars may be a challenging operation that calls for specific tools and knowledge. Manufacturers and service providers may have difficulties as a result, which might lower the adoption rate as a whole.
Since the emergence of COVID-19, a large portion of the workforce has been working from home. Digital filters increase the volume of some frequencies while reducing the volume of others. They can isolate key frequencies from a signal. The automotive noise filter market was increasing at a moderate rate before the COVID-19 outbreak. Electronics manufacturing has come to a halt as a result of the disease's spread. Because the most prevalent route for COVID-19 to spread is through close human contact, several e-commerce companies temporarily halted the delivery of non-essential items, particularly electronics devices, impacting sales of electronic products in general and digital filters in particular.
The digital filters segment is estimated to have a lucrative growth, because of technology advancements in the automobile business, digital filters are commonly utilized. Finite impulse response (FIR) and infinite impulse response (IIR) are the two types of digital filters. Modernization has increased the speed of Digital Signal Processing (DSP) technology. High-frequency signals in the radio frequency domain are processed using digital filters. Transferring analog data to a processor for digital filtering involves running the appropriate code on the processor. Additionally, digital filters are more accurate in filtering sound, but they need digital signals to do it, and they are portable, which are driving factors for the market expansion.
The in-vehicle infotainment system segment is anticipated to witness the highest CAGR growth during the forecast period. The In-Vehicle Infotainment (IVI) is a collection of automotive technologies that employ voice controls, touch screen displays, button panels, audio and video interfaces, and more to provide the driver and passengers with entertainment and information. Additionally, the research report has demonstrated how the in-car entertainment industry is boosting luxury vehicle demand, technical innovation, and telematics laws. And this element is expanding the market on a worldwide scale.
Asia Pacific is projected to hold the largest market share during the forecast period owing to the top spot for automotive noise filters. According to estimates, China, South Korea, and India will likely see considerable increases in demand in the coming years. The automobile and electronics sectors are both major in the Asia Pacific region. They are extensively consumed and helping the automotive noise filter market expands as a result of evolving advanced technologies and improved electronics specifications.
Asia Pacific is projected to have the highest CAGR over the forecast period, owing to to changing customer tastes, rising middle-class per capita income, and cost advantages, OEMs have increased car manufacturing in the area, with China accounting for the greatest proportion. Additionally, there has been a noticeable increase in demand for premium-range vehicles outfitted with cutting-edge cabin comfort amenities and strong engines. In the upcoming years, it is projected to stay upbeat. Moreover, expanding e-commerce and major infrastructure projects in developing nations like China and India have sped up the expansion of the heavy commercial vehicles market.
Some of the key players profiled in the Automotive Noise Filter Market include: ARKAMYS, Analog Devices, ARM, Cadence, Fujian Xinsen Carbon, Ingevity Corporation, Intel Corporation, NXP Semiconductors, Qualcomm Incorporated, Renesas, Shenhua Group, Spreadtrum Communications, STMicroelectronics, Thunder Software Technology, Panasonic Industry Co. Ltd, Murata Manufacturing Co Ltd and Vishay International Inc
In August 2023, TSMC, Bosch, Infineon, and NXP Establish Joint Venture to Bring Advanced Semiconductor Manufacturing to Europe. The planned joint venture will be 70% owned by TSMC, with Bosch, Infineon, and NXP each holding 10% equity stake, subject to regulatory approvals and other conditions.
In August 2023, Qualcomm Collaborates with Hyundai Motor Group on Purpose-Built Vehicle Infotainment, as a part of the technology collaboration, the Group will incorporate the latest Snapdragon® Automotive Cockpit Platforms in its PBV infotainment system to provide a holistic, seamlessly connected and smart user experience.
In June 2023, Analog Devices Announces Apollo MxFE™ Advanced Software-Defined Signal Processing Solution for Aerospace & Defense, Instrumentation, and Next-Generation Wireless Communications. The growth of data intensive applications is increasing the need for wider bandwidths and more rapid processing and analysis of data for 5G, 6G, Wi-Fi 7 & 8, radar, signal intelligence, and other applications at the network edge.