| Market Size 2023 (Base Year) | USD 200.85 Million |
| Market Size 2032 (Forecast Year) | USD 458.32 Million |
| CAGR | 8.6% |
| Forecast Period | 2024 - 2032 |
| Historical Period | 2018 - 2023 |
Market Research Store has published a report on the global differential thermal analysis (DTA) market, estimating its value at USD 200.85 Million in 2023, with projections indicating it will reach USD 458.32 Million by the end of 2032. The market is expected to expand at a compound annual growth rate (CAGR) of around 8.6% over the forecast period. The report examines the factors driving market growth, the obstacles that could hinder this expansion, and the opportunities that may emerge in the differential thermal analysis (DTA) industry. Additionally, it offers a detailed analysis of how these elements will affect demand dynamics and market performance throughout the forecast period.
The growth of the differential thermal analysis (DTA) market is fueled by rising global demand across various industries and applications. The report highlights lucrative opportunities, analyzing cost structures, key segments, emerging trends, regional dynamics, and advancements by leading players to provide comprehensive market insights. The differential thermal analysis (DTA) market report offers a detailed industry analysis from 2024 to 2032, combining quantitative and qualitative insights. It examines key factors such as pricing, market penetration, GDP impact, industry dynamics, major players, consumer behavior, and socio-economic conditions. Structured into multiple sections, the report provides a comprehensive perspective on the market from all angles.
Key sections of the differential thermal analysis (DTA) market report include market segments, outlook, competitive landscape, and company profiles. Market Segments offer in-depth details based on Type, Application, End-User, and other relevant classifications to support strategic marketing initiatives. Market Outlook thoroughly analyzes market trends, growth drivers, restraints, opportunities, challenges, Porter’s Five Forces framework, macroeconomic factors, value chain analysis, and pricing trends shaping the market now and in the future. The Competitive Landscape and Company Profiles section highlights major players, their strategies, and market positioning to guide investment and business decisions. The report also identifies innovation trends, new business opportunities, and investment prospects for the forecast period.
This report thoroughly analyzes the differential thermal analysis (DTA) market, exploring its historical trends, current state, and future projections. The market estimates presented result from a robust research methodology, incorporating primary research, secondary sources, and expert opinions. These estimates are influenced by the prevailing market dynamics as well as key economic, social, and political factors. Furthermore, the report considers the impact of regulations, government expenditures, and advancements in research and development on the market. Both positive and negative shifts are evaluated to ensure a comprehensive and accurate market outlook.
| Report Attributes | Report Details |
|---|---|
| Report Name | Differential Thermal Analysis (DTA) Market |
| Market Size in 2023 | USD 200.85 Million |
| Market Forecast in 2032 | USD 458.32 Million |
| Growth Rate | CAGR of 8.6% |
| Number of Pages | 214 |
| Key Companies Covered | PerkinElmer, NETZSCH, Shimadzu Corporation, Hitachi High-Tech, Mettler-Toledo, Rigaku Corporation, Linseis, Setaram, TA Instruments, Nanjing Dazhan |
| Segments Covered | By Type, By Application, By End-User, and By Region |
| Regions Covered | North America, Europe, Asia Pacific (APAC), Latin America, Middle East, and Africa (MEA) |
| Base Year | 2023 |
| Historical Year | 2018 to 2023 |
| Forecast Year | 2024 to 2032 |
| Customization Scope | Avail customized purchase options to meet your exact research needs. Request For Customization |
Key Growth Drivers
The Differential Thermal Analysis (DTA) market is experiencing steady growth, primarily driven by the increasing demand for precise materials characterization across a wide array of industries. As industries like pharmaceuticals, polymers, food and beverage, and materials science continue to innovate and develop new products, there's a heightened need to understand the thermal behavior, phase transitions, and decomposition characteristics of materials. The rising investment in research and development (R&D) activities globally further fuels the adoption of DTA as a fundamental analytical technique. Moreover, advancements in technology leading to more accurate, efficient, and integrated DTA instruments, often combined with other thermal analysis techniques like Thermogravimetric Analysis (TGA), are enhancing their utility and driving market expansion.
Restraints
Despite its widespread applications, the Differential Thermal Analysis (DTA) market faces certain notable restraints. A primary limitation is that DTA primarily provides qualitative information, focusing on the occurrence and temperature of thermal events (endothermic or exothermic) rather than precise quantitative measurements of heat flow or enthalpy changes. For more quantitative insights, researchers often turn to techniques like Differential Scanning Calorimetry (DSC), which can sometimes be preferred despite DTA's ability to operate at higher temperatures. Additionally, the interpretation of DTA curves can be complex, especially with overlapping thermal events, requiring experienced operators and potentially leading to challenges in data analysis and reproducibility.
Opportunities
The Differential Thermal Analysis (DTA) market presents numerous opportunities for innovation and expansion. The increasing demand for advanced materials with tailor-made properties across sectors like electronics, aerospace, and automotive creates a significant avenue for DTA, as it provides valuable insights into material behavior under thermal stress. Opportunities exist in developing more user-friendly and automated DTA systems that integrate seamlessly with laboratory information management systems (LIMS) to streamline workflows and reduce analysis time. The expansion of DTA applications into specialized fields such as forensic analysis, environmental studies (e.g., pollution and contamination), and quality control in diverse industrial settings offers untapped market potential. Furthermore, the development of portable DTA systems could open new applications for fieldwork and on-site analysis, enhancing accessibility and convenience.
Challenges
The Differential Thermal Analysis (DTA) market faces several critical challenges that demand continuous research and development and strategic adaptation. A significant challenge lies in improving the quantitative capabilities of DTA to offer more precise enthalpy measurements, potentially reducing the need for complementary techniques and increasing its standalone value. Ensuring consistency and reproducibility of results can be challenging due to various instrumental factors (e.g., heating rate, furnace design, thermocouple characteristics) and sample characteristics (e.g., sample weight, particle size, packing density), which can influence DTA curves. The industry must also address the impact of atmospheric interference, as the gaseous environment around the sample can react with it and produce extra peaks or alter the thermogram, requiring careful control and a deeper understanding of sample-atmosphere interactions.
The global differential thermal analysis (DTA) market is segmented based on Type, Application, End-User, and Region. All the segments of the differential thermal analysis (DTA) market have been analyzed based on present & future trends and the market is estimated from 2024 to 2032.
Based on Type, the global differential thermal analysis (DTA) market is divided into Standalone DTA Instruments, Simultaneous DTA-TGA Instruments.
On the basis of Application, the global differential thermal analysis (DTA) market is bifurcated into Polymer Analysis, Pharmaceutical Testing, Food Analysis, Petrochemical Testing, Metallurgical Testing, Others.
In terms of End-User, the global differential thermal analysis (DTA) market is categorized into Research Institutes, Universities, Material Manufacturers, Pharmaceuticals, Chemicals, Others.
The Differential Thermal Analysis (DTA) Market is currently dominated by North America, which holds the largest market share (over 42%), driven by advanced materials research, robust pharmaceutical R&D, and stringent quality control standards in the U.S. and Canada. The region benefits from high adoption in aerospace, polymers, and nanotechnology sectors, with key players like TA Instruments and Netzsch leading innovation. Europe follows as the second-largest market, with strong demand in Germany, France, and the UK for pharmaceutical and automotive material testing, supported by EU Horizon programs. The Asia-Pacific (APAC) region is the fastest-growing market, fueled by expanding electronics and battery research in China, Japan, and South Korea. Latin America and the Middle East & Africa show niche growth in mining and material sciences. North America’s dominance is reinforced by academic-industry collaborations and ASTM/ISO compliance.
The differential thermal analysis (DTA) market report offers a thorough analysis of both established and emerging players within the market. It includes a detailed list of key companies, categorized based on the types of products they offer and other relevant factors. The report also highlights the market entry year for each player, providing further context for the research analysis.
The "Global Differential Thermal Analysis (DTA) Market" study offers valuable insights, focusing on the global market landscape, with an emphasis on major industry players such as;
By Type
By Application
By End-User
By Region
This section evaluates the market position of the product or service by examining its development pathway and competitive dynamics. It provides a detailed overview of the product's growth stages, including the early (historical) phase, the mid-stage, and anticipated future advancements influenced by innovation and emerging technologies.
Porter’s Five Forces framework offers a strategic lens for assessing competitor behavior and the positioning of key players in the differential thermal analysis (DTA) industry. This section explores the external factors shaping competitive dynamics and influencing market strategies in the years ahead. The analysis focuses on five critical forces:
The value chain analysis helps businesses optimize operations by mapping the product flow from suppliers to end consumers, identifying opportunities to streamline processes and gain a competitive edge. Segment-wise market attractiveness analysis evaluates key dimensions like product categories, demographics, and regions, assessing growth potential, market size, and profitability. This enables businesses to focus resources on high-potential segments for better ROI and long-term value.
PESTEL analysis is a powerful tool in market research reports that enhances market understanding by systematically examining the external macro-environmental factors influencing a business or industry. The acronym stands for Political, Economic, Social, Technological, Environmental, and Legal factors. By evaluating these dimensions, PESTEL analysis provides a comprehensive overview of the broader context within which a market operates, helping businesses identify potential opportunities and threats.
An import-export analysis is vital for market research, revealing global trade dynamics, trends, and opportunities. It examines trade volumes, product categories, and regional competitiveness, offering insights into supply chains and market demand. This section also analyzes past and future pricing trends, helping businesses optimize strategies and enabling consumers to assess product value effectively.
The report identifies key players in the differential thermal analysis (DTA) market through a competitive landscape and company profiles, evaluating their offerings, financial performance, strategies, and market positioning. It includes a SWOT analysis of the top 3-5 companies, assessing strengths, weaknesses, opportunities, and threats. The competitive landscape highlights rankings, recent activities (mergers, acquisitions, partnerships, product launches), and regional footprints using the Ace matrix. Customization is available to meet client-specific needs.
This section details the geographic reach, sales networks, and market penetration of companies profiled in the differential thermal analysis (DTA) report, showcasing their operations and distribution across regions. It analyzes the alignment of companies with specific industry verticals, highlighting the industries they serve and the scope of their products and services within those sectors.
This section categorizes companies into four distinct groups—Active, Cutting Edge, Innovator, and Emerging—based on their product and business strategies. The evaluation of product strategy focuses on aspects such as the range and depth of offerings, commitment to innovation, product functionalities, and scalability. Key elements like global reach, sector coverage, strategic acquisitions, and long-term growth plans are considered for business strategy. This analysis provides a detailed view of companies' position within the market and highlights their potential for future growth and development.
The qualitative and quantitative insights for the differential thermal analysis (DTA) market are derived through a multi-faceted research approach, combining input from subject matter experts, primary research, and secondary data sources. Primary research includes gathering critical information via face-to-face or telephonic interviews, surveys, questionnaires, and feedback from industry professionals, key opinion leaders (KOLs), and customers. Regular interviews with industry experts are conducted to deepen the analysis and reinforce the existing data, ensuring a robust and well-rounded market understanding.
Secondary research for this report was carried out by the Market Research Store team, drawing on a variety of authoritative sources, such as:
Market Research Store conducted in-depth consultations with various key opinion leaders in the industry, including senior executives from top companies and regional leaders from end-user organizations. This effort aimed to gather critical insights on factors such as the market share of dominant brands in specific countries and regions, along with pricing strategies for products and services.
To determine total sales data, the research team conducted primary interviews across multiple countries with influential stakeholders, including:
These subject matter experts, with their extensive industry experience, helped validate and refine the findings. For secondary research, data was sourced from a wide range of materials, including online resources, company annual reports, industry publications, research papers, association reports, and government websites. These various sources provide a comprehensive and well-rounded perspective on the market.
Table of Content 1 Report Overview 1.1 Study Scope 1.2 Key Market Segments 1.3 Regulatory Scenario by Region/Country 1.4 Market Investment Scenario Strategic 1.5 Market Analysis by Type 1.5.1 Global Differential Thermal Analysis (DTA) Market Share by Type (2020-2026) 1.5.2 Multi-function Instrument 1.5.3 Single-function DTA 1.6 Market by Application 1.6.1 Global Differential Thermal Analysis (DTA) Market Share by Application (2020-2026) 1.6.2 Food/Biologicals 1.6.3 Mineralogical Research 1.6.4 Pharmaceutical 1.7 Differential Thermal Analysis (DTA) Industry Development Trends under COVID-19 Outbreak 1.7.1 Global COVID-19 Status Overview 1.7.2 Influence of COVID-19 Outbreak on Differential Thermal Analysis (DTA) Industry Development 2. Global Market Growth Trends 2.1 Industry Trends 2.1.1 SWOT Analysis 2.1.2 Porter’s Five Forces Analysis 2.2 Potential Market and Growth Potential Analysis 2.3 Industry News and Policies by Regions 2.3.1 Industry News 2.3.2 Industry Policies 2.4 Industry Trends Under COVID-19 3 Value Chain of Differential Thermal Analysis (DTA) Market 3.1 Value Chain Status 3.2 Differential Thermal Analysis (DTA) Manufacturing Cost Structure Analysis 3.2.1 Production Process Analysis 3.2.2 Manufacturing Cost Structure of Differential Thermal Analysis (DTA) 3.2.3 Labor Cost of Differential Thermal Analysis (DTA) 3.2.3.1 Labor Cost of Differential Thermal Analysis (DTA) Under COVID-19 3.3 Sales and Marketing Model Analysis 3.4 Downstream Major Customer Analysis (by Region) 3.5 Value Chain Status Under COVID-19 4 Players Profiles 4.1 Shimadzu 4.1.1 Shimadzu Basic Information 4.1.2 Differential Thermal Analysis (DTA) Product Profiles, Application and Specification 4.1.3 Shimadzu Differential Thermal Analysis (DTA) Market Performance (2015-2020) 4.1.4 Shimadzu Business Overview 4.2 Innuo 4.2.1 Innuo Basic Information 4.2.2 Differential Thermal Analysis (DTA) Product Profiles, Application and Specification 4.2.3 Innuo Differential Thermal Analysis (DTA) Market Performance (2015-2020) 4.2.4 Innuo Business Overview 4.3 Hitachi 4.3.1 Hitachi Basic Information 4.3.2 Differential Thermal Analysis (DTA) Product Profiles, Application and Specification 4.3.3 Hitachi Differential Thermal Analysis (DTA) Market Performance (2015-2020) 4.3.4 Hitachi Business Overview 4.4 TA Instruments 4.4.1 TA Instruments Basic Information 4.4.2 Differential Thermal Analysis (DTA) Product Profiles, Application and Specification 4.4.3 TA Instruments Differential Thermal Analysis (DTA) Market Performance (2015-2020) 4.4.4 TA Instruments Business Overview 4.5 Dazhan 4.5.1 Dazhan Basic Information 4.5.2 Differential Thermal Analysis (DTA) Product Profiles, Application and Specification 4.5.3 Dazhan Differential Thermal Analysis (DTA) Market Performance (2015-2020) 4.5.4 Dazhan Business Overview 4.6 Linseis 4.6.1 Linseis Basic Information 4.6.2 Differential Thermal Analysis (DTA) Product Profiles, Application and Specification 4.6.3 Linseis Differential Thermal Analysis (DTA) Market Performance (2015-2020) 4.6.4 Linseis Business Overview 4.7 Mettler-Toledo 4.7.1 Mettler-Toledo Basic Information 4.7.2 Differential Thermal Analysis (DTA) Product Profiles, Application and Specification 4.7.3 Mettler-Toledo Differential Thermal Analysis (DTA) Market Performance (2015-2020) 4.7.4 Mettler-Toledo Business Overview 4.8 INESA 4.8.1 INESA Basic Information 4.8.2 Differential Thermal Analysis (DTA) Product Profiles, Application and Specification 4.8.3 INESA Differential Thermal Analysis (DTA) Market Performance (2015-2020) 4.8.4 INESA Business Overview 4.9 Rigaku 4.9.1 Rigaku Basic Information 4.9.2 Differential Thermal Analysis (DTA) Product Profiles, Application and Specification 4.9.3 Rigaku Differential Thermal Analysis (DTA) Market Performance (2015-2020) 4.9.4 Rigaku Business Overview 4.10 PerkinElmer 4.10.1 PerkinElmer Basic Information 4.10.2 Differential Thermal Analysis (DTA) Product Profiles, Application and Specification 4.10.3 PerkinElmer Differential Thermal Analysis (DTA) Market Performance (2015-2020) 4.10.4 PerkinElmer Business Overview 4.11 Henven 4.11.1 Henven Basic Information 4.11.2 Differential Thermal Analysis (DTA) Product Profiles, Application and Specification 4.11.3 Henven Differential Thermal Analysis (DTA) Market Performance (2015-2020) 4.11.4 Henven Business Overview 4.12 Setaram 4.12.1 Setaram Basic Information 4.12.2 Differential Thermal Analysis (DTA) Product Profiles, Application and Specification 4.12.3 Setaram Differential Thermal Analysis (DTA) Market Performance (2015-2020) 4.12.4 Setaram Business Overview 4.13 Netzsch 4.13.1 Netzsch Basic Information 4.13.2 Differential Thermal Analysis (DTA) Product Profiles, Application and Specification 4.13.3 Netzsch Differential Thermal Analysis (DTA) Market Performance (2015-2020) 4.13.4 Netzsch Business Overview 5 Global Differential Thermal Analysis (DTA) Market Analysis by Regions 5.1 Global Differential Thermal Analysis (DTA) Sales, Revenue and Market Share by Regions 5.1.1 Global Differential Thermal Analysis (DTA) Sales by Regions (2015-2020) 5.1.2 Global Differential Thermal Analysis (DTA) Revenue by Regions (2015-2020) 5.2 North America Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 5.3 Europe Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 5.4 Asia-Pacific Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 5.5 Middle East and Africa Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 5.6 South America Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 6 North America Differential Thermal Analysis (DTA) Market Analysis by Countries 6.1 North America Differential Thermal Analysis (DTA) Sales, Revenue and Market Share by Countries 6.1.1 North America Differential Thermal Analysis (DTA) Sales by Countries (2015-2020) 6.1.2 North America Differential Thermal Analysis (DTA) Revenue by Countries (2015-2020) 6.1.3 North America Differential Thermal Analysis (DTA) Market Under COVID-19 6.2 United States Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 6.2.1 United States Differential Thermal Analysis (DTA) Market Under COVID-19 6.3 Canada Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 6.4 Mexico Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 7 Europe Differential Thermal Analysis (DTA) Market Analysis by Countries 7.1 Europe Differential Thermal Analysis (DTA) Sales, Revenue and Market Share by Countries 7.1.1 Europe Differential Thermal Analysis (DTA) Sales by Countries (2015-2020) 7.1.2 Europe Differential Thermal Analysis (DTA) Revenue by Countries (2015-2020) 7.1.3 Europe Differential Thermal Analysis (DTA) Market Under COVID-19 7.2 Germany Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 7.2.1 Germany Differential Thermal Analysis (DTA) Market Under COVID-19 7.3 UK Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 7.3.1 UK Differential Thermal Analysis (DTA) Market Under COVID-19 7.4 France Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 7.4.1 France Differential Thermal Analysis (DTA) Market Under COVID-19 7.5 Italy Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 7.5.1 Italy Differential Thermal Analysis (DTA) Market Under COVID-19 7.6 Spain Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 7.6.1 Spain Differential Thermal Analysis (DTA) Market Under COVID-19 7.7 Russia Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 7.7.1 Russia Differential Thermal Analysis (DTA) Market Under COVID-19 8 Asia-Pacific Differential Thermal Analysis (DTA) Market Analysis by Countries 8.1 Asia-Pacific Differential Thermal Analysis (DTA) Sales, Revenue and Market Share by Countries 8.1.1 Asia-Pacific Differential Thermal Analysis (DTA) Sales by Countries (2015-2020) 8.1.2 Asia-Pacific Differential Thermal Analysis (DTA) Revenue by Countries (2015-2020) 8.1.3 Asia-Pacific Differential Thermal Analysis (DTA) Market Under COVID-19 8.2 China Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 8.2.1 China Differential Thermal Analysis (DTA) Market Under COVID-19 8.3 Japan Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 8.3.1 Japan Differential Thermal Analysis (DTA) Market Under COVID-19 8.4 South Korea Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 8.4.1 South Korea Differential Thermal Analysis (DTA) Market Under COVID-19 8.5 Australia Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 8.6 India Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 8.6.1 India Differential Thermal Analysis (DTA) Market Under COVID-19 8.7 Southeast Asia Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 8.7.1 Southeast Asia Differential Thermal Analysis (DTA) Market Under COVID-19 9 Middle East and Africa Differential Thermal Analysis (DTA) Market Analysis by Countries 9.1 Middle East and Africa Differential Thermal Analysis (DTA) Sales, Revenue and Market Share by Countries 9.1.1 Middle East and Africa Differential Thermal Analysis (DTA) Sales by Countries (2015-2020) 9.1.2 Middle East and Africa Differential Thermal Analysis (DTA) Revenue by Countries (2015-2020) 9.1.3 Middle East and Africa Differential Thermal Analysis (DTA) Market Under COVID-19 9.2 Saudi Arabia Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 9.3 UAE Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 9.4 Egypt Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 9.5 Nigeria Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 9.6 South Africa Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 10 South America Differential Thermal Analysis (DTA) Market Analysis by Countries 10.1 South America Differential Thermal Analysis (DTA) Sales, Revenue and Market Share by Countries 10.1.1 South America Differential Thermal Analysis (DTA) Sales by Countries (2015-2020) 10.1.2 South America Differential Thermal Analysis (DTA) Revenue by Countries (2015-2020) 10.1.3 South America Differential Thermal Analysis (DTA) Market Under COVID-19 10.2 Brazil Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 10.2.1 Brazil Differential Thermal Analysis (DTA) Market Under COVID-19 10.3 Argentina Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 10.4 Columbia Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 10.5 Chile Differential Thermal Analysis (DTA) Sales and Growth Rate (2015-2020) 11 Global Differential Thermal Analysis (DTA) Market Segment by Types 11.1 Global Differential Thermal Analysis (DTA) Sales, Revenue and Market Share by Types (2015-2020) 11.1.1 Global Differential Thermal Analysis (DTA) Sales and Market Share by Types (2015-2020) 11.1.2 Global Differential Thermal Analysis (DTA) Revenue and Market Share by Types (2015-2020) 11.2 Multi-function Instrument Sales and Price (2015-2020) 11.3 Single-function DTA Sales and Price (2015-2020) 12 Global Differential Thermal Analysis (DTA) Market Segment by Applications 12.1 Global Differential Thermal Analysis (DTA) Sales, Revenue and Market Share by Applications (2015-2020) 12.1.1 Global Differential Thermal Analysis (DTA) Sales and Market Share by Applications (2015-2020) 12.1.2 Global Differential Thermal Analysis (DTA) Revenue and Market Share by Applications (2015-2020) 12.2 Food/Biologicals Sales, Revenue and Growth Rate (2015-2020) 12.3 Mineralogical Research Sales, Revenue and Growth Rate (2015-2020) 12.4 Pharmaceutical Sales, Revenue and Growth Rate (2015-2020) 13 Differential Thermal Analysis (DTA) Market Forecast by Regions (2020-2026) 13.1 Global Differential Thermal Analysis (DTA) Sales, Revenue and Growth Rate (2020-2026) 13.2 Differential Thermal Analysis (DTA) Market Forecast by Regions (2020-2026) 13.2.1 North America Differential Thermal Analysis (DTA) Market Forecast (2020-2026) 13.2.2 Europe Differential Thermal Analysis (DTA) Market Forecast (2020-2026) 13.2.3 Asia-Pacific Differential Thermal Analysis (DTA) Market Forecast (2020-2026) 13.2.4 Middle East and Africa Differential Thermal Analysis (DTA) Market Forecast (2020-2026) 13.2.5 South America Differential Thermal Analysis (DTA) Market Forecast (2020-2026) 13.3 Differential Thermal Analysis (DTA) Market Forecast by Types (2020-2026) 13.4 Differential Thermal Analysis (DTA) Market Forecast by Applications (2020-2026) 13.5 Differential Thermal Analysis (DTA) Market Forecast Under COVID-19 14 Appendix 14.1 Methodology 14.2 Research Data Source
Differential Thermal Analysis (DTA)
Differential Thermal Analysis (DTA)
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