We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Thermal Analysis Equipment.
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Thermal Analysis Equipment Product List and Ranking from 14 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

Thermal Analysis Equipment Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. TA Instruments Japan (TAInstruments) Tokyo//Testing, Analysis and Measurement
  2. DKSHマーケットエクスパンションサービスジャパン テクノロジー事業部門 Tokyo//Trading company/Wholesale
  3. null/null
  4. 4 ネッチ・ジャパン Kanagawa//Testing, Analysis and Measurement
  5. 5 アイテス Shiga//Electronic Components and Semiconductors

Thermal Analysis Equipment Product ranking

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. [Catalog] Vaccines, Spheronization Agents, Slag Accumulation Preventive Agents, Thermal Analysis Equipment
  2. Setaram's thermal analysis device "Calvet Calorimeter Series" DKSHマーケットエクスパンションサービスジャパン テクノロジー事業部門
  3. Youtube Lecture Materials ~DSC Basic Edition 1~ TA Instruments Japan (TAInstruments)
  4. 4 List of Polymer Melting Heat for DSC Use TA Instruments Japan (TAInstruments)
  5. 5 Analysis case: Characteristic analysis of thermoplastic and thermosetting resins using DSC and DMA. TA Instruments Japan (TAInstruments)

Thermal Analysis Equipment Product List

31~44 item / All 44 items

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STA 2500 Regulus / Simultaneous Thermal Analysis Device for Thermogravimetry and Differential Thermal Analysis

We offer a fully equipped package with high reliability and the capability of TG-DTA measurements up to 1600°C at an attractive price.

Achieves low drift, high sensitivity, and stable measurements even at high temperatures. The balance features a symmetrical structure with "main fulcrum" and "secondary fulcrum," which prevents measurement errors caused by sample set position, thermal expansion of the balance beam, or changes in sample volume. The weighing moment of the balance is independent of the heating temperature, ensuring constant sensitivity even during high-temperature measurements.

  • Analytical Equipment and Devices

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STA 449 Jupiter/TG-DTA Simultaneous Thermal Analysis Device

Simultaneous measurement of thermogravimetric analysis (TG) and differential scanning calorimetry (DSC) is possible.

The STA allows for simultaneous measurement of thermogravimetric analysis (TG) and differential scanning calorimetry (DSC). It is the only device capable of high-temperature specific heat measurements up to 1400°C. Users can choose from six types of heating furnaces, covering a wide measurement temperature range (-150°C to 2400°C). Additionally, the double furnace mechanism allows for the installation of two furnace bodies. It achieves a TG resolution of 0.025μg, with stability at 1400°C holding at 1μg/h. The TG measurement range is up to 35g (volume: 5cm³), accommodating both small and large sample measurements. The newly developed OTS system enables measurements at oxygen concentrations below 1ppm, which was not possible with conventional vacuum replacement. It can also be coupled with QMS, FT-IR, and GCMS.

  • Analytical Equipment and Devices

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STA PT1600 type TG-DTA/DSC system

Measuring with high precision in high-pressure environments! Introduction to the thermogravimetric-differential thermal analysis device.

This product is the STA PT1600 TG-DTA/DSC system manufactured by Linseis. It can measure thermal weight changes and thermal energy changes with high precision in vacuum or high-pressure environments. It can measure temperatures from room temperature to 1600°C, with a maximum temperature of 2400°C. 【Specifications】 ■ Measurement temperature range: -150°C to 700°C         Room temperature to 1600°C *Maximum temperature: 2400°C ■ Weight sensitivity: 0.1μg ■ Heat sensitivity: 0.2μW ■ Vacuum: 10E-5mbar ■ Pressure: 5bar *For more details, please refer to the PDF document or feel free to contact us.

  • Temperature and humidity measuring instruments
  • Other measurement, recording and measuring instruments

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High Pressure STA System

Pressure 150 bar! Introduction of the differential thermal analysis device.

This product is the High Pressure STA (High Pressure TG-DTA/DSC) system manufactured by Linseis. The measurement temperature range is -170°C to 1800°C. It can accurately measure changes in weight and heat under vacuum or high-pressure environments. 【Specifications】 ■ Measurement temperature range: -170°C to 1800°C ■ Weight sensitivity: 0.1μg ■ Heat sensitivity: 0.2μW ■ Vacuum: 10E-4mbar ■ Pressure: 150bar *For more details, please refer to the PDF document or feel free to contact us.

  • Temperature and humidity measuring instruments
  • Other measurement, recording and measuring instruments

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[Measurement Case Studies] Thermal Analysis

We will introduce measurement examples such as differential scanning calorimetry, thermomechanical analysis, and dynamic mechanical analysis.

This document is a collection of measurement case studies summarizing the contract measurements of "thermal analysis" conducted by Japan Thermal Consulting Co., Ltd. It includes various measurement examples such as "thermal analysis of multilayer films (4 layers)" with a total film thickness of 30 microns, consisting of nylon, PET, and two types of LDPE, as well as "differential scanning calorimetry" with a measurement temperature range of -180 to 500°C and a heating rate of 1°C/min to 100°C/min, all detailed with diagrams and photographs. We encourage you to read it. 【Featured Cases (Excerpt)】 ■ Differential Scanning Calorimetry (DSC, MDSC) ■ Differential Scanning Calorimetry (Chip DSC, PDSC) ■ Thermogravimetric and Differential Thermal Analysis (TGA, TG-DSC/DTA) ■ Thermomechanical Analysis (TMA, Dilatometer) ■ Dynamic Mechanical Analysis (DMA) *For more details, please refer to the PDF document or feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Contract measurement

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[Analysis Case] Quantification of water generated when heating water-absorbent polymers.

This article presents a case where water adhered to the surface of nylon 6, known as a water-absorbing polymer, and water generated during thermal decomposition were quantified separately.

The TG-MS (Thermogravimetric-Mass Spectrometry) method involves introducing gases generated during the TG-DTA (Thermogravimetric Differential Thermal Analysis) measurement of a sample online to a mass spectrometer (MS) for analysis. This technique allows for the acquisition of information regarding the thermal decomposition behavior of the sample, the types of gases generated, and the temperature ranges at which these gases are produced. Additionally, by creating a calibration curve using standard substances, it is possible to quantify the generated gases. [Analysis Sample] Nylon 6 (PA6) [Analysis Equipment] TG-DTA: Rigaku Thermo plus EVO2 GC-MS: Agilent 8890GC/5977B Inert Plus [Analysis Results] The TG-MS method allows for the quantification of water generated from the sample, separated by temperature. [Summary] Using the TG-MS method, it is possible to understand the amount of moisture adhering to the sample length and the amount of moisture generated during thermal decomposition.

  • Contract measurement

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Exploration of reaction model equations from DSC data using AKTS/TK and TKsd.

A function to predict reactions at various temperatures and times, and a function to estimate lifespan from accelerated test data.

This document is a technical note explaining the exploration of reaction model equations from DSC data using AKTS/TK and TKsd. How is the reaction model of self-catalyzed reactions described? The AKTS_TK software includes a feature for exploring reaction models based on accelerated test data called AKTS_TKsd. Please take a look at the analysis results of the reaction model equations obtained using this feature. 【Published Data】 ■ Flowchart for analysis using the free model method and the model method ■ Isothermal conditions for DSC measurements are determined through isothermal simulation ■ Screen for reading accelerated test data ■ After calculating 66 types of reaction model explorations, a ranking table of the estimated reaction model equations will be displayed. *For more details, please download the PDF or feel free to contact us.

  • Business Intelligence and Data Analysis

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Model fitting of the decomposition reaction of DTBP + 20 wt% Toluene.

Calculate TMR24 in three ways! Predict data from analysis results obtained from measured data.

This document is a technical note explaining the model fitting analysis of the decomposition reaction of DTBP + Toluene 20wt%. Two exothermic peaks were separated into 1st_peak, 2nd_peak, and the combined 1st_peak + 2nd_peak to calculate TMR24 in three different ways. It is a common judgment that the TMR24 value should be analyzed using all peaks, but by comparing the three results, the same conclusion is reached. For details, please download and view from the published catalog. 【Published Data (Excerpt)】 ■ Peak separation of the two exothermic peaks in DTBP 20% / Toluene air atmosphere ■ Analysis using three data points from only the 1st_peak with the differential equivalent method ■ Analysis using data obtained by adding the 1st_peak and 2nd_peak ■ Activation energy was determined for both 1st_peak_only and 1st_peak + 2nd_peak ■ Predicted data at 0.001 K/min from the analysis results obtained from the 1st_peak only *For more details, please download the PDF or feel free to contact us.

  • Business Intelligence and Data Analysis

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Introduction to thermal analysis using differential thermal balance - mass spectrometry (TG-MS).

You can overview the physical properties of new substances and materials in the research and development and quality control processes!

The "Differential Thermal Balance - Mass Analysis Device (TG-MS)" allows us to understand the weight changes associated with sample heating, measure differential thermal properties, and simultaneously identify the gas components released from the sample. "Thermal analysis" has the characteristic of being able to evaluate the physical and chemical changes occurring within a sample over a wide temperature range in a relatively short time, making it possible to overview the physical properties of new substances and materials for research and development as well as quality control. The fees vary depending on the measurement conditions, so please contact us first. 【Examples】 ■ Analysis of volatile components and pyrolysis gases from organic materials such as plastics and resins ■ Analysis of residual solvents, reaction intermediates, by-products of organic compounds, etc. ■ Measurement of desorption of adsorbed water and adsorbed organic compounds (contaminants) from inorganic materials and semiconductor materials ■ Investigation of structural changes accompanying the heating of various organic materials *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices
  • Weight related measuring instruments

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[High Temperature Edition] Presentation Materials for High-Precision Cp (Specific Heat at Constant Pressure) Measurement Seminar Giveaway!

We are offering materials with Japanese translations for a seminar on high-precision Cp (specific heat at constant pressure) measurement using Setaram's Calvet-type calorimeter, 3D sensors, and DSC!

Specific heat capacity is one of the fundamental and important physical properties utilized in material development and chemical engineering. By using Setaram's Calvet-type calorimeter and DSC equipped with a 3D sensor, it is possible to measure the Cp (specific heat at constant pressure) of various substances with high precision and under diverse conditions. In this seminar, we will introduce high-temperature Cp measurements (up to 1,600°C) using a thermal analysis device equipped with a 3D sensor and a drop-type calorimeter. 【Contents】 ■ Differences between general-purpose DSC sensors and 3D sensors ■ Cp measurements using DSC equipped with a 3D sensor - Tungsten - Fluoride salts - Silicates ■ Cp measurements using a drop-type calorimeter - MgTiO3 - Alumina - Mixed oxides *You can view the seminar materials with Japanese translations for free from the "Download" section below! We hope this will be useful for your company's material analysis and Cp (specific heat capacity) measurements.

  • Food Testing/Analysis/Measuring Equipment
  • Other measurement, recording and measuring instruments

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Reading and Utilizing Thermal Analysis Charts — Application to Quality Control, Lifetime Prediction, and Material Property Interpretation —

Reading and Utilizing Thermal Analysis Charts — Application to Quality Control, Lifetime Prediction, and Material Property Interpretation —

Lecture 1: Thermal Properties of Polymers and Inorganic Materials - Basic Thermodynamics Lecture 2: Measurement Methods and Results (Thermal Analysis Charts) - Principles of Measurement Methods and Interpretation of Results 2.1 DSC 2.2 TG-DTA 2.3 TMA 2.4 Combined Thermal Analysis (especially EGA and TG) 2.5 How to Read Charts - Especially Regarding DSC Lecture 3: Practical Measurement - Introduction of Tips to Obtain Desired Information 2.1 Understanding Principles and Precautions from Equipment Calibration - Especially DSC 2.2 Selection of Measurement Conditions (Temperature Range, Heating Rate, Sample Weight, Sample Form, Container, Atmosphere, etc.) 2.3 Standards such as JIS and ISO [Q&A and Business Card Exchange]

  • Analytical Equipment and Devices
  • Technical Seminar

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[TG-DTA, -MS] Thermogravimetric Differential Thermal Analysis, Differential Thermal Balance - Mass Analysis Method

TG-DTA simultaneously evaluates weight changes caused by heating (TG) and thermal behavior of endothermic and exothermic reactions (DTA).

TG-DTA-MS continuously evaluates not only TG and DTA but also the volatile components (MS). - TG allows for the detection of weight changes on the order of percentage. - DTA provides insights into reactions such as pyrolysis, melting, sublimation, oxidation, combustion, and phase transitions. - MS enables the structural estimation of volatile components and decomposition products.

  • Contract Analysis
  • Contract measurement

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[Web Seminar] Points to Note in the Analysis and Physical Property Testing of Polymer Materials

Points to note and common misconceptions in the analysis and physical property testing of polymer materials.

There are many documents that present analysis and testing methods for polymer materials, but when actually measuring and analyzing data while referring to them, it is common to have lingering doubts or concerns about interpretations, as well as worries about inadvertently making mistakes. This course addresses such current issues and will summarize and convey insights regarding points of caution and common misunderstandings that the instructor has gained through practical experience in analysis and physical property evaluation. 【Program】 1. Introduction 2. DSC 3. Light DSC 4. FT-IR 5. DMA 6. Tensile Testing of Plastics 7. Adhesive Strength Testing 8. Conclusion

  • Company:S&T出版
  • Price:10,000 yen-100,000 yen
  • Management Skills Seminar
  • Technical Seminar

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