全球 K 波段雷达发射机市场 – 行业趋势和 2029 年预测

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全球 K 波段雷达发射机市场 – 行业趋势和 2029 年预测

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Global K Band Radar Transmitter Market

市场规模(十亿美元)

CAGR :  % Diagram

Diagram Forecast Period
2022 –2029
Diagram Market Size (Base Year)
USD 2.93 Billion
Diagram Market Size (Forecast Year)
USD 4.83 Billion
Diagram CAGR
%
Diagram Major Markets Players
  • Dummy1
  • Dummy2
  • Dummy3
  • Dummy4
  • Dummy5

>全球 K 波段雷达发射机市场,按技术(接触式、非接触式)、介质(固体、液体)、应用(液体和浆体、界面、固体)、最终用户(石油和天然气、化学品、水和废水、食品和饮料、制药、发电、金属和采矿、其他)划分 - 行业趋势和预测到 2029 年。

K 波段雷达发射机市场

K 波段雷达发射机市场分析和规模

全球K波段雷达变送器市场正在迅速扩大,预计未来几年将进一步扩大。雷达液位变送器技术广泛应用于石油和天然气、工业、建筑和制造业等各个行业。该技术分为两种类型:接触式变送器和非接触式变送器。

Data Bridge Market Research 分析称,2021 年 K 波段雷达发射机市场价值为 29.3 亿美元,预计到 2029 年将达到 48.3 亿美元,预测期内复合年增长率为 6.45%。除了市场价值、增长率、细分市场、地理覆盖范围、市场参与者和市场情景等市场洞察外,Data Bridge Market Research 团队策划的市场报告还包括深入的专家分析、进出口分析、定价分析、生产消费分析和 pestle 分析。

报告范围和市场细分

报告指标

细节

预测期

2022 至 2029 年

基准年

2021

历史岁月

2020(可定制为 2014 - 2019)

定量单位

收入(单位:十亿美元)、销量(单位:台)、定价(单位:美元)

涵盖的领域

技术(接触式、非接触式)、介质(固体、液体)、应用(液体和浆体、界面、固体)、最终用户(石油和天然气、化学品、水和废水、食品和饮料、制药、发电、金属和采矿、其他)

覆盖国家

北美洲的美国、加拿大和墨西哥、德国、法国、英国、荷兰、瑞士、比利时、俄罗斯、意大利、西班牙、土耳其、欧洲其他地区、中国、日本、印度、韩国、新加坡、马来西亚、澳大利亚、泰国、印度尼西亚、菲律宾、亚太地区 (APAC) 的其他地区、沙特阿拉伯、阿联酋、南非、埃及、以色列、中东和非洲 (MEA) 的其他地区、巴西、阿根廷和南美洲其他地区

涵盖的市场参与者

Honeywell International Inc. (U.S.), DENSO CORPORATION (Japan), OMNIVISION (U.S.), Alpha MOS (France), AMETEK.Inc. (U.S.), AlphaSense Inc. (U.S.), BorgWarner Inc. (U.S.), Figaro Engineering Inc. (Japan), Emerson Electric Co. (U.S.), General Electric (U.S.), Industrial Scientific (U.S.), SAMSUNG (South Korea), Teledyne Monitor Labs (TML), STMicroelectronics (Switzerland), NXP Semiconductors (Netherlands), Infineon Technologies AG (Germany), Qualcomm Technologies, Inc. (U.S.), Microchip Technology Inc. (U.S.), Texas Instruments Incorporated (U.S.), Bosch Sensortec GmbH (Germany), Johnson Controls (Ireland), and Sony Semiconductor Solutions Corporation (Japan)

Market Opportunities

  • Wireless connectivity for IoT-enabled systems
  • Improved industrial growth in emerging economies

Market Definition

K band radar has a frequency range of 18 GHz to 27 GHz and is used in many everyday technologies, which can be frustrating because it can cause false alerts in radar detectors. Collision avoidance and blind spot monitoring systems in newer vehicles frequently use frequencies common to police radar, which can cause a radar detector to alert drivers whenever a vehicle equipped with this technology is nearby.

Global K Band Radar Transmitter Market Dynamics

Drivers

  • Growing adoption from the water quality management

As water quality management becomes more severe and stringent, as well as the increasing need for consistent water quality, the water supply industry has been pressed to improve water treatment methods. Radar level transmitter technology can measure levels in harsh environments and is a highly cost-effective solution for water projects. Choosing the right wastewater level transmitter is critical during the wastewater treatment process. Furthermore, wastewater must be stored and pumped to higher levels at pump stations. Radar level transmitters are used in these pump stations to control and monitor the level of wastewater, which controls the pumping operation. Level monitoring of wastewater using radar level transmitters is essential at each stage of the wastewater network and treatment method.

  • functional applications in various production activities and industrial processes

Radar level transmitter techniques, for instance, provide the transmitter of solid and liquid materials by utilising the electromagnetic properties of the measuring materials. As a result, these devices are used in a wide range of industries, including oil and gas, chemicals, marine, food and beverages, paper and pulp, mining, water and wastewater treatment, and pharmaceuticals. Due to their functional applications in various production activities and industrial processes, the instruments have seen unprecedented demand due to the rising demand for improving production output.

Opportunity

Wireless connectivity for IoT-enabled systems and improved industrial growth in emerging economies will further cater to various new opportunities, resulting in the growth of the K band radar transmitter during the forecasted period.

Restraints

Fluctuating market trends in end-use industries will impede the growth of the K band radar transmitter during the forecasted period.

This K band radar transmitter market report provides details of new recent developments, trade regulations, import-export analysis, production analysis, value chain optimization, market share, impact of domestic and localized market players, analyses opportunities in terms of emerging revenue pockets, changes in market regulations, strategic market growth analysis, market size, category market growths, application niches and dominance, product approvals, product launches, geographic expansions, technological innovations in the market. To gain more info on the K band radar transmitter market contact Data Bridge Market Research for an Analyst Brief, our team will help you take an informed market decision to achieve market growth.

COVID-19 Impact on K Band Radar Transmitter Market

The outbreak has had a significant impact on the global market. Global factories have struggled to manufacture and assemble new devices because workers have remained at home, and even existing devices in various warehouses cannot be transported due to current rules and regulations, disrupting global supply chains. The impact of COVID-19 on the radar level transmitter market is only temporary because only the manufacturing and supply chain is halted. Production, supply chains, and demand for these products will gradually increase as the situation improves. This is expected to provide opportunities for businesses to consider ways to increase production, conduct technological research, and improve current products.

Global K Band Radar Transmitter Market Scope

The K band radar transmitter market is segmented on the basis of technology, medium, application and end use. The growth amongst these segments will help you analyse meagre growth segments in the industries and provide the users with a valuable market overview and market insights to help them make strategic decisions for identifying core market applications.

Technology  

  • Contact Type
  • Non-Contact Type

Medium  

  • Solid
  • Liquid

Applications

  • Liquids and Slurries
  • Interfaces
  • Solids

End use

  • Oil & Gas
  • Chemicals
  • Water & Waste
  • Water
  • Food & Beverages
  • Pharmaceuticals
  • Power Generation
  • Metals & Mining
  • Others

K Band Radar Transmitter Market Regional Analysis/Insights

The K band radar transmitter market is analysed and market size insights and trends are provided by country technology, medium, application and end use as referenced above.

K 波段雷达发射机市场报告涵盖的国家包括北美的美国、加拿大和墨西哥、欧洲的德国、法国、英国、荷兰、瑞士、比利时、俄罗斯、意大利、西班牙、土耳其、欧洲其他地区、亚太地区的中国、日本、印度、韩国、新加坡、马来西亚、澳大利亚、泰国、印度尼西亚、菲律宾、亚太地区的亚太地区 (APAC) 其他地区、沙特阿拉伯、阿联酋、南非、埃及、以色列、中东和非洲 (MEA) 其他地区、南美洲的巴西、阿根廷和南美洲其他地区。

北美将主导 K 波段雷达发射机市场,亚太地区预计将以最快的速度增长。北美的市场地位预计将受到该地区主要供应商的存在影响,而亚太地区的增长率将受到该地区电信公司不断增加的投资影响。

报告的国家部分还提供了影响市场当前和未来趋势的各个市场影响因素和市场监管变化。下游和上游价值链分析、技术趋势和波特五力分析、案例研究等数据点是用于预测各个国家市场情景的一些指标。此外,在提供国家数据的预测分析时,还考虑了全球品牌的存在和可用性以及它们因来自本地和国内品牌的大量或稀缺竞争而面临的挑战、国内关税和贸易路线的影响。    

竞争格局和 K 波段雷达发射机市场份额分析

K 波段雷达发射机市场竞争格局按竞争对手提供详细信息。详细信息包括公司概况、公司财务状况、产生的收入、市场潜力、研发投资、新市场计划、全球影响力、生产基地和设施、生产能力、公司优势和劣势、产品发布、产品宽度和广度、应用主导地位。以上提供的数据点仅与公司对 K 波段雷达发射机市场的关注有关。

K 波段雷达发射机市场的一些主要参与者包括:

  • 霍尼韦尔国际公司(美国)
  • 电装株式会社(日本)
  • OMNIVISION (美国)
  • Alpha MOS(法国)
  • AMETEK.Inc.(美国)
  • AlphaSense Inc.(美国)
  • 博格华纳公司(美国)
  • Figaro Engineering Inc.(日本)
  • 艾默生电气公司(美国)
  • 通用电气(美国)
  • 工业科学(美国)
  • 三星(韩国)
  • Teledyne Monitor Labs (TML)(美国)
  • 意法半导体(瑞士)
  • 恩智浦半导体(荷兰)
  • 英飞凌科技股份公司(德国)
  • 高通技术公司(美国)
  • Microchip Technology Inc.(美国)
  • 德州仪器公司(美国)
  • Bosch Sensortec GmbH(德国)
  • 江森自控(爱尔兰)
  • 索尼半导体解决方案公司(日本)


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研究方法

Data collection and base year analysis are done using data collection modules with large sample sizes. The stage includes obtaining market information or related data through various sources and strategies. It includes examining and planning all the data acquired from the past in advance. It likewise envelops the examination of information inconsistencies seen across different information sources. The market data is analysed and estimated using market statistical and coherent models. Also, market share analysis and key trend analysis are the major success factors in the market report. To know more, please request an analyst call or drop down your inquiry.

The key research methodology used by DBMR research team is data triangulation which involves data mining, analysis of the impact of data variables on the market and primary (industry expert) validation. Data models include Vendor Positioning Grid, Market Time Line Analysis, Market Overview and Guide, Company Positioning Grid, Patent Analysis, Pricing Analysis, Company Market Share Analysis, Standards of Measurement, Global versus Regional and Vendor Share Analysis. To know more about the research methodology, drop in an inquiry to speak to our industry experts.

可定制

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Frequently Asked Questions

The K Band Radar Transmitter Market value is expected USD 18.29 billion by 2029.
The K Band Radar Transmitter Market is to grow at a CAGR of 6.45% during the forecast by 2029.
On the basis of application, the K Band Radar Transmitter Market is segmented into Liquids and Slurries, Interfaces, Solids.
The major players operating in the K Band Radar Transmitter Market are Honeywell International Inc. (U.S.), DENSO CORPORATION (Japan), OMNIVISION (U.S.), Alpha MOS (France), AMETEK.Inc. (U.S.), AlphaSense Inc. (U.S.), BorgWarner Inc. (U.S.), Figaro Engineering Inc. (Japan), Emerson Electric Co. (U.S.), General Electric (U.S.), Industrial Scientific (U.S.), SAMSUNG (South Korea), Teledyne Monitor Labs (TML), STMicroelectronics (Switzerland), NXP Semiconductors (Netherlands), Infineon Technologies AG (Germany), Qualcomm Technologies, Inc. (U.S.), Microchip Technology Inc. (U.S.), Texas Instruments Incorporated (U.S.), Bosch Sensortec GmbH (Germany), Johnson Controls (Ireland), and Sony Semiconductor Solutions Corporation (Japan).