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市场调查报告书
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1698476

环境电子机械系统 (MEMS) 市场:2025-2030 年预测

Environmental MEMS Market - Forecasts from 2025 to 2030

出版日期: | 出版商: Knowledge Sourcing Intelligence | 英文 150 Pages | 商品交期: 最快1-2个工作天内

价格
简介目录

环境电子机械系统 (MEMS) 市场预计将从 2025 年的 1,391,714,000 美元成长到 2030 年的 1,662,429,000 美元,复合年增长率为 3.62%。

感知环境始终是至关重要的。灾难性的威胁、人为气候变迁的可能性以及对更多能源来源的需求使得有针对性的感知对于个人和政府来说成为必需。透过监测天气和其他环境因素(包括农业和生态护理),MEMS 感测器可以帮助维持和保护地球上的生命。工厂、设施、建筑物和住宅不仅监控结构本身,还监控其能源、流体、设备和其他系统。必须考虑车辆和相关的交通基础设施,如道路、桥樑和设施。检测建筑物、工厂、机场、衝突地区等的潜在安全问题。

市场趋势:

  • 自然灾害发生频率增加:由于航空旅行和汽车使用增加等因素导致污染程度逐年增加,环境 MEMS 市场预计将经历显着增长。工业 4.0 和物联网 (IoT) 的兴起推动了对环境感测器的需求,进一步推动了该市场的扩张。
  • 都市化不断加快:随着世界各国政府推行智慧城市计划,降低自然灾害相关风险的解决方案的需求也日益增长。 MEMS 感测器技术越来越多地被用于监测环境条件和自然灾害的预警,预计该领域在预测期内将显着增长。
  • 亚太地区:亚太地区占有最大的市场占有率,预计未来将快速成长。这一快速成长是由智慧城市、自动驾驶汽车、物联网应用、连网家庭、工厂自动化和先进加工技术的兴起所推动的。智慧家庭最初由先进的安全功能驱动,现在涵盖照明控制、火灾和气体侦测、娱乐系统和节能解决方案。智慧家庭的日益普及可望为环境MEMS产业带来光明前景。

报告中介绍的主要企业包括意法半导体、MEMS Vision、博世感测器技术有限公司、Axetris AG、Sensirion AG、荷兰皇家飞利浦电子公司、Silicon Designs, Inc.、Physical Logic AG、霍尼韦尔国际公司、欧姆龙公司、Teledyne Technologies Inc.、Merit Medical Systems, Inc. 和 BAE 系统公司。

本报告的主要优点

  • 深刻分析:获得涵盖主要和新兴地区的深入市场洞察,重点关注客户群、政府政策和社会经济因素、消费者偏好、垂直行业和其他子区隔。
  • 竞争格局:了解全球主要企业采取的策略策略,并了解正确策略带来的潜在市场渗透。
  • 市场趋势和驱动因素:探索动态因素和关键市场趋势以及它们将如何影响市场的未来发展。
  • 可行的建议:利用洞察力进行策略决策,在动态环境中开闢新的业务流和收益。
  • 受众广泛:对于新兴企业、研究机构、顾问公司、中小企业和大型企业都有益且具有成本效益。

它有什么用途?

产业和市场考量、商业机会评估、产品需求预测、打入市场策略、地理扩张、资本支出决策、法律规范与影响、新产品开发、竞争影响

研究范围

  • 2022 年至 2024 年的历史数据和 2025 年至 2030 年的预测数据
  • 成长机会、挑战、供应链前景、法律规范与趋势分析
  • 竞争定位、策略和市场占有率分析
  • 收益成长和预测分析(包括国家在内的细分市场和地区)
  • 公司概况(策略、产品、财务资讯、主要趋势等)

目录

第一章执行摘要

第二章市场概述

  • 市场概览
  • 市场定义
  • 研究范围
  • 市场区隔

第三章 商业景气

  • 市场驱动因素
  • 市场限制
  • 市场机会
  • 波特五力分析
  • 产业价值链分析
  • 政策法规
  • 策略建议

第四章 技术展望

第五章环境MEMS市场(按感测器类型)

  • 介绍
  • 压力类型
  • 温度类型
  • 化学类型
  • 光源类型
  • 其他的

第六章 环境 MEMS 市场:依应用

  • 介绍
  • 农业和耕作
  • 自然灾害警报
  • 海洋环境
  • 土地和水环境
  • 空气环境
  • 石油和天然气蕴藏量

第七章环境MEMS市场(按地区)

  • 介绍
  • 北美洲
    • 依感测器类型
    • 按应用
    • 按国家
      • 美国
      • 加拿大
      • 墨西哥
  • 南美洲
    • 依感测器类型
    • 按应用
    • 按国家
      • 巴西
      • 阿根廷
      • 其他的
  • 欧洲
    • 依感测器类型
    • 按应用
    • 按国家
      • 英国
      • 德国
      • 法国
      • 西班牙
      • 其他的
  • 中东和非洲
    • 依感测器类型
    • 按应用
    • 按国家
      • 沙乌地阿拉伯
      • 阿拉伯聯合大公国
      • 其他的
  • 亚太地区
    • 依感测器类型
    • 按应用
    • 按国家
      • 中国
      • 日本
      • 印度
      • 韩国
      • 台湾
      • 其他的

第八章竞争格局及分析

  • 主要企业和策略分析
  • 市场占有率分析
  • 合併、收购、协议和合作
  • 竞争仪錶板

第九章 公司简介

  • STMicroelectronics
  • MEMS Vision
  • Bosch Sensortec GmbH
  • Axetris AG
  • Sensirion AG
  • Koninklijke Philips NV
  • Silicon Designs, Inc.
  • Physical Logic AG
  • Honeywell International Inc.
  • Omron Corporation
  • Teledyne Technologies Inc.
  • Merit Medical Systems, Inc.
  • BAE Systems

第十章 附录

  • 货币
  • 先决条件
  • 基准年和预测年时间表
  • 相关人员的主要利益
  • 调查方法
  • 简称
简介目录
Product Code: KSI061612926

The environmental MEMS market is expected to attain $1,662.429 million in 2030 from $1,391.714 million in 2025, growing at a CAGR of 3.62%.

Sensing the environment has always been vital. Targeted sensing has become a requirement for individuals and governments due to cataclysmic catastrophes, the potential of human-caused climate change, and the need for more energy sources. By monitoring the weather and other environmental factors, such as agricultural and ecological concerns, micro-electronic mechanical systems (MEMS) sensors can assist in maintaining and preserving life on Earth. Energy, fluid, equipment, and other systems, as well as the structures themselves, are monitored in factories, facilities, buildings, and residences. Vehicles and accompanying transportation infrastructures, such as roads, bridges, and equipment, should all be considered. Detect potential security and safety issues in structures, factories, airports, and conflict zones, among other places.

Market Trends:

  • Increasing Frequency of Natural Disasters: The environmental MEMS market is poised for significant growth as pollution levels climb annually, driven by factors such as increased air travel and vehicle use. The rise of Industry 4.0 and the Internet of Things (IoT), both of which heighten the need for environmental sensors, further supports this market's expansion.
  • Rising Urbanization: With governments globally pushing toward smart city initiatives, there's a growing demand for solutions to reduce the risks tied to natural disasters. MEMS sensor technology is increasingly deployed to monitor environmental conditions and provide early warnings for natural calamities, positioning this segment for substantial growth over the forecast period.
  • Asia Pacific: The Asia Pacific region holds the largest market share and is set to experience rapid growth. The proliferation of smart cities, autonomous vehicles, IoT applications, connected homes, factory automation, and advanced processing technologies is driving this surge. Smart homes, originally promoted for their advanced security features, now encompass lighting controls, fire and gas detection, entertainment systems, and energy-saving solutions. This rise in smart home adoption is expected to create a bright outlook for the environmental MEMS industry.

Some of the major players covered in this report include STMicroelectronics, MEMS Vision, Bosch Sensortec GmbH, Axetris AG, Sensirion AG, Koninklijke Philips N.V., Silicon Designs, Inc., Physical Logic AG, Honeywell International Inc., Omron Corporation, Teledyne Technologies Inc., Merit Medical Systems, Inc., and BAE Systems, among others.

Key Benefits of this Report:

  • Insightful Analysis: Gain detailed market insights covering major as well as emerging geographical regions, focusing on customer segments, government policies and socio-economic factors, consumer preferences, industry verticals, and other sub-segments.
  • Competitive Landscape: Understand the strategic maneuvers employed by key players globally to understand possible market penetration with the correct strategy.
  • Market Drivers & Future Trends: Explore the dynamic factors and pivotal market trends and how they will shape future market developments.
  • Actionable Recommendations: Utilize the insights to exercise strategic decisions to uncover new business streams and revenues in a dynamic environment.
  • Caters to a Wide Audience: Beneficial and cost-effective for startups, research institutions, consultants, SMEs, and large enterprises.

What do businesses use our reports for?

Industry and Market Insights, Opportunity Assessment, Product Demand Forecasting, Market Entry Strategy, Geographical Expansion, Capital Investment Decisions, Regulatory Framework & Implications, New Product Development, Competitive Intelligence

Report Coverage:

  • Historical data from 2022 to 2024 & forecast data from 2025 to 2030
  • Growth Opportunities, Challenges, Supply Chain Outlook, Regulatory Framework, and Trend Analysis
  • Competitive Positioning, Strategies, and Market Share Analysis
  • Revenue Growth and Forecast Assessment of segments and regions including countries
  • Company Profiling (Strategies, Products, Financial Information, and Key Developments among others)

Environmental MEMS Market Segmentation:

By Sensor Type

  • Pressure
  • Temperature
  • Chemical
  • Light
  • Others

By Application

  • Agriculture and Farming
  • Natural Calamity Warning
  • Marine Environment
  • Land and Water Environment
  • Air Environment
  • Oil and Gas Reserves

By Region

  • North America
  • Europe
  • Asia Pacific
  • South America
  • Middle East & Africa

TABLE OF CONTENTS

1. EXECUTIVE SUMMARY

2. MARKET SNAPSHOT

  • 2.1. Market Overview
  • 2.2. Market Definition
  • 2.3. Scope of the Study
  • 2.4. Market Segmentation

3. BUSINESS LANDSCAPE

  • 3.1. Market Drivers
  • 3.2. Market Restraints
  • 3.3. Market Opportunities
  • 3.4. Porter's Five Forces Analysis
  • 3.5. Industry Value Chain Analysis
  • 3.6. Policies and Regulations
  • 3.7. Strategic Recommendations

4. TECHNOLOGICAL OUTLOOK

5. ENVIRONMENTAL MEMS MARKET BY SENSOR TYPE

  • 5.1. Introduction
  • 5.2. Pressure
  • 5.3. Temperature
  • 5.4. Chemical
  • 5.5. Light
  • 5.6. Others

6. ENVIRONMENTAL MEMS MARKET BY APPLICATION

  • 6.1. Introduction
  • 6.2. Agriculture and Farming
  • 6.3. Natural Calamity Warning
  • 6.4. Marine Environment
  • 6.5. Land and Water Environment
  • 6.6. Air Environment
  • 6.7. Oil and Gas Reserves

7. ENVIRONMENTAL MEMS MARKET BY GEOGRAPHY

  • 7.1. Introduction
  • 7.2. North America
    • 7.2.1. By Sensor Type
    • 7.2.2. By Application
    • 7.2.3. By Country
      • 7.2.3.1. USA
      • 7.2.3.2. Canada
      • 7.2.3.3. Mexico
  • 7.3. South America
    • 7.3.1. By Sensor Type
    • 7.3.2. By Application
    • 7.3.3. By Country
      • 7.3.3.1. Brazil
      • 7.3.3.2. Argentina
      • 7.3.3.3. Others
  • 7.4. Europe
    • 7.4.1. By Sensor Type
    • 7.4.2. By Application
    • 7.4.3. By Country
      • 7.4.3.1. United Kingdom
      • 7.4.3.2. Germany
      • 7.4.3.3. France
      • 7.4.3.4. Spain
      • 7.4.3.5. Others
  • 7.5. Middle East and Africa
    • 7.5.1. By Sensor Type
    • 7.5.2. By Application
    • 7.5.3. By Country
      • 7.5.3.1. Saudi Arabia
      • 7.5.3.2. UAE
      • 7.5.3.3. Others
  • 7.6. Asia Pacific
    • 7.6.1. By Sensor Type
    • 7.6.2. By Application
    • 7.6.3. By Country
      • 7.6.3.1. China
      • 7.6.3.2. Japan
      • 7.6.3.3. India
      • 7.6.3.4. South Korea
      • 7.6.3.5. Taiwan
      • 7.6.3.6. Others

8. COMPETITIVE ENVIRONMENT AND ANALYSIS

  • 8.1. Major Players and Strategy Analysis
  • 8.2. Market Share Analysis
  • 8.3. Mergers, Acquisitions, Agreements, and Collaborations
  • 8.4. Competitive Dashboard

9. COMPANY PROFILES

  • 9.1. STMicroelectronics
  • 9.2. MEMS Vision
  • 9.3. Bosch Sensortec GmbH
  • 9.4. Axetris AG
  • 9.5. Sensirion AG
  • 9.6. Koninklijke Philips N.V.
  • 9.7. Silicon Designs, Inc.
  • 9.8. Physical Logic AG
  • 9.9. Honeywell International Inc.
  • 9.10. Omron Corporation
  • 9.11. Teledyne Technologies Inc.
  • 9.12. Merit Medical Systems, Inc.
  • 9.13. BAE Systems

10. APPENDIX

  • 10.1. Currency
  • 10.2. Assumptions
  • 10.3. Base and Forecast Years Timeline
  • 10.4. Key benefits for the stakeholders
  • 10.5. Research Methodology
  • 10.6. Abbreviations