1 エグゼクティブ・サマリー
2 序文
2.1 概要
2.2 ステークホルダー
2.3 調査範囲
2.4 調査方法
2.4.1 データマイニング
2.4.2 データ分析
2.4.3 データの検証
2.4.4 リサーチアプローチ
2.5 リサーチソース
2.5.1 一次調査ソース
2.5.2 セカンダリーリサーチソース
2.5.3 前提条件
3 市場動向分析
3.1 はじめに
3.2 推進要因
3.3 抑制要因
3.4 機会
3.5 脅威
3.6 技術分析
3.7 アプリケーション分析
3.8 エンドユーザー分析
3.9 新興市場
3.10 Covid-19の影響
4 ポーターズファイブフォース分析
4.1 供給者の交渉力
4.2 買い手の交渉力
4.3 代替品の脅威
4.4 新規参入の脅威
4.5 競争上のライバル関係
5 波長可変ダイオードレーザーアナライザーーの世界市場、種類別
5.1 はじめに
5.2 単波長
5.3 多波長
6 波長可変ダイオードレーザーアナライザーーの世界市場:コンポーネント別
6.1 はじめに
6.2 レーザーダイオード
6.3 光学部品
6.4 検出器/光検出器
6.5 分光器
6.6 サンプルセル
6.7 データ収集システム
6.8 校正装置
6.9 その他のコンポーネント
7 可変ダイオードレーザー分析装置の世界市場、動作モード別
7.1 はじめに
7.2 連続波(CW)
7.3 パルス波
7.4 チャープ波
7.5 変調波
7.6 その他の動作モード
8 波長可変ダイオードレーザーアナライザーの世界市場、技術別
8.1 はじめに
8.2 吸収分光法
8.3 発光分光法
8.4 光音響分光法
8.5 周波数変調分光法(FMS)
8.6 その他の技術
9 波長可変ダイオードレーザー分析装置の世界市場、用途別
9.1 はじめに
9.2 環境モニタリング
9.3 プロセスモニタリング
9.4 産業エミッションモニタリング
9.5 ガス分析
9.6 その他のアプリケーション
10 可変ダイオードレーザ分析装置の世界市場、エンドユーザ別
10.1 はじめに
10.2 化学・石油化学
10.3 発電
10.4 ヘルスケア
10.5 自動車
10.6 食品・飲料
10.7 その他のエンドユーザー
11 波長可変ダイオードレーザーアナライザーの世界市場:地域別
11.1 はじめに
11.2 北アメリカ
11.2.1 アメリカ
11.2.2 カナダ
11.2.3 メキシコ
11.3 ヨーロッパ
11.3.1 ドイツ
11.3.2 イギリス
11.3.3 イタリア
11.3.4 フランス
11.3.5 スペイン
11.3.6 その他のヨーロッパ
11.4 アジア太平洋
11.4.1 日本
11.4.2 中国
11.4.3 インド
11.4.4 オーストラリア
11.4.5 ニュージーランド
11.4.6 韓国
11.4.7 その他のアジア太平洋地域
11.5 南アメリカ
11.5.1 アルゼンチン
11.5.2 ブラジル
11.5.3 チリ
11.5.4 その他の南アメリカ地域
11.6 中東/アフリカ
11.6.1 サウジアラビア
11.6.2 アラブ首長国連邦
11.6.3 カタール
11.6.4 南アフリカ
11.6.5 その他の中東/アフリカ地域
12 主要開発
12.1 契約、パートナーシップ、提携、合弁事業
12.2 買収と合併
12.3 新製品上市
12.4 拡張
12.5 その他の主要戦略
13 会社プロフィール
13.1 Emerson Electric Corporation
13.2 Honeywell International Inc.
13.3 ABB Limited
13.4 Siemens AG
13.5 Thermo Fisher Scientific Inc.
13.6 Horiba Limited
13.7 Yokogawa Electric Corporation
13.8 Andover Corporation
13.9 LumaSense Technologies Inc.
13.10 Servomex Group
13.11 KROHNE Group
13.12 Process Analytics
13.13 MKS Instruments Inc.
13.14 Sierra Instruments Inc.
13.15 SPECTRO Analytical Instruments GmbH
13.16 Envea Global
表一覧
表1 波長可変ダイオードレーザーアナライザーーの世界市場展望、地域別(2022-2030年) ($MN)
表2 波長可変ダイオードレーザーアナライザーの世界市場展望、種類別 (2022-2030) ($MN)
表3 波長可変ダイオードレーザーアナライザーの世界市場展望、単一波長別 (2022-2030) ($MN)
表4 波長可変ダイオードレーザーアナライザーの世界市場展望、多波長別 (2022-2030) ($MN)
表5 波長可変ダイオードレーザーアナライザーの世界市場展望、コンポーネント別 (2022-2030) ($MN)
表6 波長可変ダイオードレーザーアナライザーの世界市場展望、レーザダイオード別 (2022-2030) ($MN)
表7 波長可変ダイオードレーザーアナライザーの世界市場展望、光学部品別 (2022-2030) ($MN)
表8 波長可変ダイオードレーザーアナライザーの世界市場展望、検出器/光検出器別 (2022-2030) ($MN)
表9 波長可変ダイオードレーザーアナライザーの世界市場展望、スペクトロメータ別 (2022-2030) ($MN)
表10 波長可変ダイオードレーザーアナライザーの世界市場展望、サンプルセル別 (2022-2030) ($MN)
表11 波長可変ダイオードレーザーアナライザーの世界市場展望、データ収集システム別 (2022-2030) ($MN)
表12 波長可変ダイオードレーザーアナライザーの世界市場展望、校正装置別 (2022-2030) ($MN)
表13 波長可変ダイオードレーザーアナライザーの世界市場展望:その他のコンポーネント別 (2022-2030) ($MN)
表14 波長可変ダイオードレーザーアナライザーの世界市場展望、動作モード別 (2022-2030) ($MN)
表15 波長可変ダイオードレーザーアナライザーの世界市場展望、連続波(CW)別 (2022-2030) ($MN)
表16 波長可変ダイオードレーザーアナライザーの世界市場展望、パルス波別 (2022-2030) ($MN)
表17 波長可変ダイオードレーザーアナライザーの世界市場展望、チャープ波別 (2022-2030) ($MN)
表18 波長可変ダイオードレーザーアナライザーの世界市場展望、変調波別 (2022-2030) ($MN)
表19 波長可変ダイオードレーザーアナライザーの世界市場展望、その他の動作モード別 (2022-2030) ($MN)
表20 波長可変ダイオードレーザーアナライザーの世界市場展望、技術別 (2022-2030) ($MN)
表21 波長可変ダイオードレーザーアナライザーの世界市場展望、吸収分光法別 (2022-2030) ($MN)
表22 波長可変ダイオードレーザーアナライザーの世界市場展望、発光分光法別 (2022-2030) ($MN)
表23 波長可変ダイオードレーザーアナライザーの世界市場展望、光音響分光法別 (2022-2030) ($MN)
表24 波長可変ダイオードレーザーアナライザーの世界市場展望、周波数変調分光法(FMS)別 (2022-2030) ($MN)
表25 波長可変ダイオードレーザーアナライザーの世界市場展望、その他の技術別 (2022-2030) ($MN)
表26 波長可変ダイオードレーザーアナライザーの世界市場展望、用途別 (2022-2030) ($MN)
表27 波長可変ダイオードレーザーアナライザーの世界市場展望、環境モニタリング別 (2022-2030) ($MN)
表28 波長可変ダイオードレーザーアナライザーの世界市場展望、プロセスモニタリング別 (2022-2030) ($MN)
表29 波長可変ダイオードレーザーアナライザーの世界市場展望、産業用エミッションモニタリング別 (2022-2030) ($MN)
表30 波長可変ダイオードレーザーアナライザーの世界市場展望、ガス分析別 (2022-2030) ($MN)
表31 波長可変ダイオードレーザーアナライザーの世界市場展望、その他の用途別 (2022-2030) ($MN)
表32 波長可変ダイオードレーザーアナライザーの世界市場展望、エンドユーザー別 (2022-2030) ($MN)
表33 波長可変ダイオードレーザーアナライザーの世界市場展望:化学・石油化学別 (2022-2030) ($MN)
表34 波長可変ダイオードレーザーアナライザーの世界市場展望、発電別 (2022-2030) ($MN)
表35 波長可変ダイオードレーザーアナライザーの世界市場展望、ヘルスケア別 (2022-2030) ($MN)
表36 波長可変ダイオードレーザーアナライザーの世界市場展望:自動車別 (2022-2030) ($MN)
表37 波長可変ダイオードレーザーアナライザーの世界市場展望:食品・飲料別 (2022-2030) ($MN)
表38 波長可変ダイオードレーザーアナライザーの世界市場展望:その他のエンドユーザー別 (2022-2030) ($MN)
注)北アメリカ、ヨーロッパ、APAC、南アメリカ、中東/アフリカ地域の表も上記と同様に表記しています。
Market Dynamics:
Driver:
Rising demand for real-time monitoring
As industries and regulatory bodies increasingly require continuous, accurate data for process control and environmental compliance, TDLA technology becomes essential. Its ability to provide real-time, precise measurements of gases such as CO, NOx, and VOCs supports timely decision-making and rapid response to changing conditions. This capability enhances operational efficiency, safety, and regulatory compliance, driving adoption across sectors like power generation, manufacturing, and environmental monitoring.
Restraint:
Complexity of operation
The complexity of operation in TDLAs arises from their sophisticated technology, which requires specialized knowledge for setup, calibration, and maintenance. This complexity can hinder market growth by limiting adoption among users who lack the technical expertise or resources for proper operation. High training requirements and potential operational difficulties can lead to increased costs and longer implementation times. As a result, industries may opt for simpler, more user-friendly alternatives, potentially slowing the broader adoption and growth of TDLAs in the market.
Opportunity:
Growing industrial applications
Industries such as oil and gas, chemical manufacturing, power generation, and pharmaceuticals require accurate measurement of gas concentrations to optimize processes, ensure safety, and comply with environmental regulations. As industrial activities expand and evolve, the need for advanced analytical tools like TDLAs grows. Their ability to deliver high sensitivity, selectivity, and reliability in diverse and harsh environments supports various industrial applications, thereby propelling market expansion and technological adoption.
Threat:
Regular maintenance and calibration
Regular maintenance and calibration are essential for TDLAs to ensure accurate and reliable performance over time. These processes involve checking and adjusting the analyzer's components, recalibrating the sensors, and replacing worn parts. The need for frequent maintenance and calibration can increase operational costs and require specialized personnel. This additional expense and complexity can hamper market growth by making TDLAs less accessible and cost-effective for some potential users, limiting their widespread adoption.
Covid-19 Impact
The covid-19 pandemic initially disrupted the TDLA market due to supply chain interruptions, reduced industrial activity, and delays in project implementations. However, the pandemic also highlighted the importance of real-time, accurate monitoring in health and safety applications, driving increased interest in TDLA technology. Post-pandemic, the market has seen recovery and growth as industries resume operations, with heightened focus on environmental regulations and advanced monitoring solutions for both industrial and environmental applications, boosting demand for TDLA systems.
The industrial emission monitoring segment is expected to be the largest during the forecast period
The industrial emission monitoring segment is estimated to have a lucrative growth, due to their precise and real-time detection of gas concentrations. TDLAs provide high sensitivity and selectivity, enabling accurate measurement of pollutants such as CO, NOx, and VOCs. Their ability to operate in harsh industrial environments and deliver continuous, reliable data supports effective emission control and management. This technology helps industries reduce environmental impact, avoid fines, and enhance process efficiency by ensuring emissions stay within regulatory limits.
The power generation segment is expected to have the highest CAGR during the forecast period
The power generation segment is anticipated to witness the highest CAGR growth during the forecast period. TDLAs play a crucial role in monitoring and optimizing combustion processes. TDLAs help in maintaining optimal combustion conditions, reducing emissions, and improving overall efficiency. By detecting and analyzing trace gases with high sensitivity, TDLAs enable timely adjustments to operational parameters, enhancing fuel utilization and compliance with environmental regulations, while minimizing operational costs and environmental impact.
Region with largest share:
In the Asia-Pacific region, the TDLA market is expanding rapidly due to growing industrialization, stringent environmental regulations, and increasing investments in infrastructure and environmental monitoring. Key drivers include rising demand from sectors like oil and gas, manufacturing, and power generation, coupled with government initiatives to improve air quality and safety. The region's rapid industrial growth and focus on technology advancement are further fueling market growth.
Region with highest CAGR:
In North America, the TDLA market is robust due to stringent environmental regulations, technological advancements, and a strong focus on industrial safety and process optimization. The demand is driven by industries such as oil and gas, chemical manufacturing, and power generation, where precise gas monitoring is crucial. Government policies promoting cleaner technologies and real-time emissions monitoring further support market growth. Additionally, the presence of key players and continuous innovation in TDLA technology contribute to the region's leading position in the global market.
Key players in the market
Some of the key players profiled in the Tunable Diode Laser Analyzer Market include Emerson Electric Corporation, Honeywell International Inc., ABB Limited, Siemens AG, Thermo Fisher Scientific Inc., Horiba Limited, Yokogawa Electric Corporation, Andover Corporation, LumaSense Technologies Inc., Servomex Group, KROHNE Group, Process Analytics, MKS Instruments Inc., Sierra Instruments Inc., SPECTRO Analytical Instruments GmbH and Envea Global.
Key Developments:
In February 2024, Yokogawa Corporation of America released the Extractive Tunable Diode Laser Spectrometer TDLS8220, a new generation OpreX™ Analyzer product. This product joins Yokogawa’s existing lineup that includes the in-situ TDLS8000 and probe type TDLS8100/TDLS8200. The TDLS8220 plays a key role in ensuring accurate and reliable oxygen measurements for safe continuous operation.
In November 2022, ENVEA presented LAS-5000XD, an advanced in-situ laser tunable diode laser spectroscopy (TDLS) gas analyzer. It measures gas concentrations directly in the process stream, without needing sample conditioning or extraction. The LAS-5000XD is positioned as a state-of-the-art solution for industries needing precise, real-time gas analysis, contributing to improved operational efficiency and regulatory compliance.
Types Covered:
• Single-Wavelength
• Multi-Wavelength
Components Covered:
• Laser Diodes
• Optical Components
• Detector/Photodetectors
• Spectrometers
• Sample Cells
• Data Acquisition Systems
• Calibration Equipment
• Other Components
Mode of Operations Covered:
• Continuous Wave (CW)
• Pulsed Wave
• Chirped Wave
• Modulated Wave
• Other Mode of Operations
Technologies Covered:
• Absorption Spectroscopy
• Emission Spectroscopy
• Photoacoustic Spectroscopy
• Frequency Modulation Spectroscopy (FMS)
• Other Technologies
Applications Covered:
• Environmental Monitoring
• Process Monitoring
• Industrial Emission Monitoring
• Gas Analysis
• Other Applications
End Users Covered:
• Chemical & Petrochemical
• Power Generation
• Healthcare
• Automotive
• Food & Beverages
• Other End Users
Regions Covered:
• North America
US
Canada
Mexico
• Europe
Germany
UK
Italy
France
Spain
Rest of Europe
• Asia Pacific
Japan
China
India
Australia
New Zealand
South Korea
Rest of Asia Pacific
• South America
Argentina
Brazil
Chile
Rest of South America
• Middle East & Africa
Saudi Arabia
UAE
Qatar
South Africa
Rest of Middle East & Africa
What our report offers:
- Market share assessments for the regional and country-level segments
- Strategic recommendations for the new entrants
- Covers Market data for the years 2022, 2023, 2024, 2026, and 2030
- Market Trends (Drivers, Constraints, Opportunities, Threats, Challenges, Investment Opportunities, and recommendations)
- Strategic recommendations in key business segments based on the market estimations
- Competitive landscaping mapping the key common trends
- Company profiling with detailed strategies, financials, and recent developments
- Supply chain trends mapping the latest technological advancements
1 Executive Summary
2 Preface
2.1 Abstract
2.2 Stake Holders
2.3 Research Scope
2.4 Research Methodology
2.4.1 Data Mining
2.4.2 Data Analysis
2.4.3 Data Validation
2.4.4 Research Approach
2.5 Research Sources
2.5.1 Primary Research Sources
2.5.2 Secondary Research Sources
2.5.3 Assumptions
3 Market Trend Analysis
3.1 Introduction
3.2 Drivers
3.3 Restraints
3.4 Opportunities
3.5 Threats
3.6 Technology Analysis
3.7 Application Analysis
3.8 End User Analysis
3.9 Emerging Markets
3.10 Impact of Covid-19
4 Porters Five Force Analysis
4.1 Bargaining power of suppliers
4.2 Bargaining power of buyers
4.3 Threat of substitutes
4.4 Threat of new entrants
4.5 Competitive rivalry
5 Global Tunable Diode Laser Analyzer Market, By Type
5.1 Introduction
5.2 Single-Wavelength
5.3 Multi-Wavelength
6 Global Tunable Diode Laser Analyzer Market, By Component
6.1 Introduction
6.2 Laser Diodes
6.3 Optical Components
6.4 Detector/Photodetectors
6.5 Spectrometers
6.6 Sample Cells
6.7 Data Acquisition Systems
6.8 Calibration Equipment
6.9 Other Components
7 Global Tunable Diode Laser Analyzer Market, By Mode of Operation
7.1 Introduction
7.2 Continuous Wave (CW)
7.3 Pulsed Wave
7.4 Chirped Wave
7.5 Modulated Wave
7.6 Other Mode of Operations
8 Global Tunable Diode Laser Analyzer Market, By Technology
8.1 Introduction
8.2 Absorption Spectroscopy
8.3 Emission Spectroscopy
8.4 Photoacoustic Spectroscopy
8.5 Frequency Modulation Spectroscopy (FMS)
8.6 Other Technologies
9 Global Tunable Diode Laser Analyzer Market, By Application
9.1 Introduction
9.2 Environmental Monitoring
9.3 Process Monitoring
9.4 Industrial Emission Monitoring
9.5 Gas Analysis
9.6 Other Applications
10 Global Tunable Diode Laser Analyzer Market, By End User
10.1 Introduction
10.2 Chemical & Petrochemical
10.3 Power Generation
10.4 Healthcare
10.5 Automotive
10.6 Food & Beverages
10.7 Other End Users
11 Global Tunable Diode Laser Analyzer Market, By Geography
11.1 Introduction
11.2 North America
11.2.1 US
11.2.2 Canada
11.2.3 Mexico
11.3 Europe
11.3.1 Germany
11.3.2 UK
11.3.3 Italy
11.3.4 France
11.3.5 Spain
11.3.6 Rest of Europe
11.4 Asia Pacific
11.4.1 Japan
11.4.2 China
11.4.3 India
11.4.4 Australia
11.4.5 New Zealand
11.4.6 South Korea
11.4.7 Rest of Asia Pacific
11.5 South America
11.5.1 Argentina
11.5.2 Brazil
11.5.3 Chile
11.5.4 Rest of South America
11.6 Middle East & Africa
11.6.1 Saudi Arabia
11.6.2 UAE
11.6.3 Qatar
11.6.4 South Africa
11.6.5 Rest of Middle East & Africa
12 Key Developments
12.1 Agreements, Partnerships, Collaborations and Joint Ventures
12.2 Acquisitions & Mergers
12.3 New Product Launch
12.4 Expansions
12.5 Other Key Strategies
13 Company Profiling
13.1 Emerson Electric Corporation
13.2 Honeywell International Inc.
13.3 ABB Limited
13.4 Siemens AG
13.5 Thermo Fisher Scientific Inc.
13.6 Horiba Limited
13.7 Yokogawa Electric Corporation
13.8 Andover Corporation
13.9 LumaSense Technologies Inc.
13.10 Servomex Group
13.11 KROHNE Group
13.12 Process Analytics
13.13 MKS Instruments Inc.
13.14 Sierra Instruments Inc.
13.15 SPECTRO Analytical Instruments GmbH
13.16 Envea Global
List of Tables
Table 1 Global Tunable Diode Laser Analyzer Market Outlook, By Region (2022-2030) ($MN)
Table 2 Global Tunable Diode Laser Analyzer Market Outlook, By Type (2022-2030) ($MN)
Table 3 Global Tunable Diode Laser Analyzer Market Outlook, By Single-Wavelength (2022-2030) ($MN)
Table 4 Global Tunable Diode Laser Analyzer Market Outlook, By Multi-Wavelength (2022-2030) ($MN)
Table 5 Global Tunable Diode Laser Analyzer Market Outlook, By Component (2022-2030) ($MN)
Table 6 Global Tunable Diode Laser Analyzer Market Outlook, By Laser Diodes (2022-2030) ($MN)
Table 7 Global Tunable Diode Laser Analyzer Market Outlook, By Optical Components (2022-2030) ($MN)
Table 8 Global Tunable Diode Laser Analyzer Market Outlook, By Detector/Photodetectors (2022-2030) ($MN)
Table 9 Global Tunable Diode Laser Analyzer Market Outlook, By Spectrometers (2022-2030) ($MN)
Table 10 Global Tunable Diode Laser Analyzer Market Outlook, By Sample Cells (2022-2030) ($MN)
Table 11 Global Tunable Diode Laser Analyzer Market Outlook, By Data Acquisition Systems (2022-2030) ($MN)
Table 12 Global Tunable Diode Laser Analyzer Market Outlook, By Calibration Equipment (2022-2030) ($MN)
Table 13 Global Tunable Diode Laser Analyzer Market Outlook, By Other Components (2022-2030) ($MN)
Table 14 Global Tunable Diode Laser Analyzer Market Outlook, By Mode of Operation (2022-2030) ($MN)
Table 15 Global Tunable Diode Laser Analyzer Market Outlook, By Continuous Wave (CW) (2022-2030) ($MN)
Table 16 Global Tunable Diode Laser Analyzer Market Outlook, By Pulsed Wave (2022-2030) ($MN)
Table 17 Global Tunable Diode Laser Analyzer Market Outlook, By Chirped Wave (2022-2030) ($MN)
Table 18 Global Tunable Diode Laser Analyzer Market Outlook, By Modulated Wave (2022-2030) ($MN)
Table 19 Global Tunable Diode Laser Analyzer Market Outlook, By Other Mode of Operations (2022-2030) ($MN)
Table 20 Global Tunable Diode Laser Analyzer Market Outlook, By Technology (2022-2030) ($MN)
Table 21 Global Tunable Diode Laser Analyzer Market Outlook, By Absorption Spectroscopy (2022-2030) ($MN)
Table 22 Global Tunable Diode Laser Analyzer Market Outlook, By Emission Spectroscopy (2022-2030) ($MN)
Table 23 Global Tunable Diode Laser Analyzer Market Outlook, By Photoacoustic Spectroscopy (2022-2030) ($MN)
Table 24 Global Tunable Diode Laser Analyzer Market Outlook, By Frequency Modulation Spectroscopy (FMS) (2022-2030) ($MN)
Table 25 Global Tunable Diode Laser Analyzer Market Outlook, By Other Technologies (2022-2030) ($MN)
Table 26 Global Tunable Diode Laser Analyzer Market Outlook, By Application (2022-2030) ($MN)
Table 27 Global Tunable Diode Laser Analyzer Market Outlook, By Environmental Monitoring (2022-2030) ($MN)
Table 28 Global Tunable Diode Laser Analyzer Market Outlook, By Process Monitoring (2022-2030) ($MN)
Table 29 Global Tunable Diode Laser Analyzer Market Outlook, By Industrial Emission Monitoring (2022-2030) ($MN)
Table 30 Global Tunable Diode Laser Analyzer Market Outlook, By Gas Analysis (2022-2030) ($MN)
Table 31 Global Tunable Diode Laser Analyzer Market Outlook, By Other Applications (2022-2030) ($MN)
Table 32 Global Tunable Diode Laser Analyzer Market Outlook, By End User (2022-2030) ($MN)
Table 33 Global Tunable Diode Laser Analyzer Market Outlook, By Chemical & Petrochemical (2022-2030) ($MN)
Table 34 Global Tunable Diode Laser Analyzer Market Outlook, By Power Generation (2022-2030) ($MN)
Table 35 Global Tunable Diode Laser Analyzer Market Outlook, By Healthcare (2022-2030) ($MN)
Table 36 Global Tunable Diode Laser Analyzer Market Outlook, By Automotive (2022-2030) ($MN)
Table 37 Global Tunable Diode Laser Analyzer Market Outlook, By Food & Beverages (2022-2030) ($MN)
Table 38 Global Tunable Diode Laser Analyzer Market Outlook, By Other End Users (2022-2030) ($MN)
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.