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Calorimeter Product List and Ranking from 12 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.

Calorimeter 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. null/null
  3. null/null
  4. 4 セイコーフューチャークリエーション Chiba//Testing, Analysis and Measurement
  5. 5 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

Calorimeter 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. ARC Insulated Calorimeter for Lithium-Ion Batteries (LIB)
  2. Isothermal Titration Calorimeter (Affinity ITC) TA Instruments Japan (TAInstruments)
  3. Automatic bomb calorimeter
  4. 4 Differential Scanning Calorimeter Discovery DSC (Calorimeter) TA Instruments Japan (TAInstruments)
  5. 5 YouTube Video: Selection of DSC Sample Pans and Sample Preparation TA Instruments Japan (TAInstruments)

Calorimeter Product List

1~15 item / All 57 items

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High-sensitivity microDSC [manufactured by Setaram Instrumentation]

Continuous heating and cooling measurements can be performed in the range of 45℃ to 120℃.

SETARAM has combined its unique Calvet method with semiconductor sensors to achieve highly sensitive DSC measurements with excellent operability. The main reason why Micro-DSC can be used for a wide range of applications is that, despite being ultra-sensitive, the sample container can be removed separately from the detection area. The Micro-DSC is equipped with 3D Calvet sensor technology and is designed for research on crude oil, emulsions, biopolymers, carbohydrates, biological samples, hydrates, PCM, and more.

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  • Analytical Equipment and Devices
  • Other physicochemical equipment

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Differential Scanning Calorimeter 'Setline DSC/DSC+'

Various measurements can be efficiently conducted! Easily and affordably replaceable sensors.

The "Setline DSC/DSC+" is a differential scanning calorimeter manufactured by Setaram Instrumentation. It employs a simple structured plate-type DSC sensor. Due to its rod-type sensor structure, which can be replaced by the user, it significantly reduces repair time and costs in case of sensor failure. 【Features】 ■ Utilizes a simple structured plate-type DSC sensor ■ Significantly reduces repair time and costs in case of sensor failure ■ Rapid heating and cooling rates ■ Efficiently conducts various measurements *For more details, please refer to the PDF document or feel free to contact us.

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  • Other measurement, recording and measuring instruments

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Isothermal Titration Calorimeter (Affinity ITC)

Provides high reliability! An excellent tool for measuring a wide range of molecular interactions.

The Isothermal Titration Calorimeter (ITC) is a device that detects the heat changes associated with titration at a constant temperature and is primarily used for analyzing molecular interactions. It measures the minute heat changes that occur when molecules bind to each other, allowing for the determination of binding ratio (n), binding constant (Ka), and the enthalpy change of binding (ΔH) from the resulting titration curve. Affinity ITC is an isothermal titration calorimeter that provides high sensitivity, high reproducibility, and advanced ITC technology in life science research environments. With AccuShot technology, it delivers precise amounts of titrant to the appropriate location, and the FlexSpin stirring function achieves efficient mixing and high sensitivity. The automatic cleaning function prevents contamination between samples. It offers the option of standard capacity (1.0 mL) or low capacity cells (190 µL), and a temperature-controlled auto-sampler for 96 wells is also available.

  • Analytical Equipment and Devices

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Differential Scanning Calorimeter Discovery DSC (Calorimeter)

How about one for the lab? Introducing the Discovery DSC series, the world's most outstanding and highly versatile differential scanning calorimeter.

TA Instruments continues to be the leading company in the world of DSC with innovative and outstanding technology. It provides reliable data and enhances workflow and productivity in laboratories. Material property analysis is essential at all stages of product design, manufacturing, processing, and application. Differential Scanning Calorimetry (DSC) is the most widely used thermal analysis instrument for evaluating the physical properties of a wide range of materials, including polymers, pharmaceuticals, food, biomaterials, organic compounds, inorganic compounds, and composites.

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  • Analytical Equipment and Devices

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Examples of Virus Research by Universities and Research Institutions Using TA Equipment

Virus Research Case Study: Characterization of Viruses - Evaluation of Structure and Binding Properties Using Calorimetry -

Currently, the novel coronavirus infection (COVID-19) is a global issue. TA Instruments hopes to contribute, even in a small way, to addressing the challenges posed by COVID-19 by introducing examples of virus research conducted by universities and research institutions using TA equipment. Research institutions that incorporate studies using Differential Scanning Calorimetry (DSC) and Isothermal Titration Calorimetry (ITC) to understand the structure and mechanisms of viruses are rapidly advancing. Please take a look at the examples.

  • Analytical Equipment and Devices

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Differential Scanning Calorimeter nano DSC

A differential scanning calorimeter specialized for studying biological samples. It offers the highest sensitivity and excellent operability.

TA Instruments continues to be the leading company in the world of DSC with innovative and outstanding technology. It provides reliable data and enhances workflow and productivity in laboratories. The Nano DSC is a differential scanning calorimeter (DSC) that can detect minute heat changes associated with the conformational changes of biomolecules. Characterization of materials is essential at all stages of product design, manufacturing, processing, and application. Differential scanning calorimeters/nano DSCs are the most widely used thermal analysis instruments for the physical property evaluation of a broad range of materials, including polymers, pharmaceuticals, food, biomaterials, organic compounds, inorganic compounds, and composites.

  • Analytical Equipment and Devices

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Analysis case: Evaluation of substrate decomposition rate and inhibitor efficacy by ITC.

This is an introduction to a protein analysis case study by a specialist in analysis. This time, we evaluated the substrate degradation rate and the effects of inhibitors using ITC.

Measurement capabilities offered by TA Instruments ☆ Thermal analysis / glass transition, crystallization, thermogravimetric analysis, curing reactions, expansion rate, thermal conductivity, shrinkage rate, effects of moisture, etc. ☆ Viscoelastic measurement (rheology) / viscoelasticity, modulus of elasticity, viscosity, stress relaxation, creep, master curve, residual strain, molecular weight, molecular weight distribution, etc. ☆ Microcalorimetry / intermolecular interactions, crystallization, amorphousness, aggregation/precipitation, dispersibility, solubility, compatibility, wettability, stability, adsorption, etc. ☆ Fatigue testing / tensile strength, temperature dependence, viscoelasticity, modulus of elasticity, viscosity, stress relaxation, creep, master curve, residual strain, etc.

  • Analytical Equipment and Devices

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Collection of Thermal Analysis Case Studies for Protein Analysis (Calorimeter) ITC DSC

This is an introduction to protein analysis cases and related equipment by analysis specialists. This time, we will cover three devices: ITC, TAM, and NanoDSC!

Measurement capabilities offered by TA Instruments ☆ Thermal analysis / glass transition, crystallization, thermogravimetric analysis, curing reactions, expansion rate, thermal conductivity, shrinkage rate, effects of moisture, etc. ☆ Viscoelastic measurements (rheology, rheometers) / viscoelasticity, elastic modulus, viscosity, stress relaxation, creep, master curves, residual strain, molecular weight, molecular weight distribution, etc. ☆ Microcalorimetry / intermolecular interactions, crystallization, amorphousness, aggregation/precipitation, dispersibility, solubility, compatibility, wettability, stability, adsorption, etc. ☆ Fatigue testing / tensile strength, temperature dependence, viscoelasticity, elastic modulus, viscosity, stress relaxation, creep, master curves, residual strain, etc.

  • Analytical Equipment and Devices

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Heat flow type single furnace DSC 6000

We respond broadly to various needs, from quality control such as QA/QC to highly reliable analysis!

The "Heat Flux Type Single Furnace DSC 6000" is a compact and highly sensitive heat flux DSC with excellent versatility. It features a space-saving compact design, outstanding operability, and reliability. It is equipped with a mass flow controller that ensures stable gas supply. Additionally, its small, simple, and robust design meets a wide range of needs, from quality management such as QA/QC to improving work efficiency essential for routine analysis and providing reliable analysis. 【Features】 ■ Space-saving compact design ■ Outstanding operability and reliability ■ Stable baseline ■ Built-in mass flow controller for stable gas supply *For more details, please refer to the PDF materials or feel free to contact us.

  • Other measurement, recording and measuring instruments
  • others

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Case Study Collection 2 on Thermal Analysis (DL Available/DSC)

We are thoroughly analyzing chocolate scientifically to explore differences in texture and melting behavior. We also have a proven track record in product comparisons, so please feel free to utilize our services.

In this case study collection, we will introduce examples related to "thermal analysis." Starting with "DSC Measurement of Chocolate 1 (Estimation of Crystal Type)," we also include "DSC Measurement of Chocolate 2 (Comparison Between Products)" and "DSC Measurement of Chocolate 3 (Differences in Melting Behavior)," along with their objectives, methods, and results. Additionally, we present analysis results, discussions, and other analytical examples. We encourage you to read it. [Contents] ■ DSC Measurement of Chocolate 1 (Estimation of Crystal Type) ■ DSC Measurement of Chocolate 2 (Comparison Between Products) ■ DSC Measurement of Chocolate 3 (Differences in Melting Behavior) ■ DSC Measurement of Chocolate 4 (Verification of Optimal Production Conditions) *For more details, please refer to the PDF document or feel free to contact us.

  • Contract Analysis
  • Analysis Services
  • Other polymer materials

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[DL Available/Thermal Analysis] DSC Measurement of Chocolate 1 (Estimation of Crystal Type)

DSC measurement allows for the understanding of the melting behavior of cocoa butter, the main component of chocolate. Please use it for texture discrimination and quality control of chocolate.

Differential Scanning Calorimetry (DSC) can be used for the analysis of sample melting, glass transition, thermal history, crystallization, curing, Curie point, and the measurement of specific heat. In this case, we introduce an analysis of chocolate, which is familiar to everyone, through "DSC Measurement of Chocolate 1 (Estimation of Crystal Type)." It is useful for distinguishing the texture (melt-in-mouth) of chocolate and for quality control, so please take a moment to read the PDF materials. In addition to DSC, our company also specializes in various thermal analyses such as TG/DTA and TMA. ● TG/DTA: Can be used for analyzing moisture content, ash content, decomposition, oxidation, and heat resistance evaluation. ● TMA: Can be used for measuring sample expansion rate, glass transition, and softening point. We also have a track record with other food products, so please feel free to consult us regarding thermal analysis. Case introduction https://www.seiko-sfc.co.jp/case/index.html *Other materials are also available. If you request through the inquiry button, we will send them to you.

  • Contract Analysis
  • Fats and oils
  • Organic Natural Materials

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[DL Available/Thermal Analysis] DSC Measurement of Chocolate 2 (Comparison Between Products)

By thoroughly scientifically analyzing chocolate, we can compare products from various companies.

Differential Scanning Calorimetry (DSC) can be used for analyzing the melting, glass transition, thermal history, crystallization, curing, Curie point, and measuring specific heat of samples. In this case, we introduce an analysis of familiar chocolate using DSC in "DSC Measurement of Chocolate 2 (Comparison Between Products)." This is the second installment. It is also useful for product comparison in determining the texture (melting) of chocolate, so please take a moment to read the PDF materials. In addition to DSC, our company specializes in various thermal analyses such as TG/DTA and TMA. ● TG/DTA: Can be used for analyzing moisture content, ash content, decomposition, oxidation, and evaluating heat resistance. ● TMA: Can be used for measuring expansion rate, glass transition, and softening point of samples. We also have experience with other food products, so please feel free to consult us regarding thermal analysis. Case Introduction https://www.seiko-sfc.co.jp/case/index.html *Other materials are also available. If you request through the inquiry button, we will send them to you.

  • Contract measurement
  • Food Testing/Analysis/Measuring Equipment
  • Organic Natural Materials

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Introduction to Temperature Modulated DSC Method (Evaluation of Polymer Materials)

Temperature-modulated DSC allows for specific heat measurements using the IS method, providing a wealth of information in high-temperature regions where specific heat measurements have been considered difficult, which cannot be obtained with conventional DSC.

Temperature-modulated DSC provides a wealth of information that cannot be obtained with conventional DSC, enabling the following: - Distinction of thermal history, etc., through comparison of reversible and irreversible components as mentioned above. - Measurement of specific heat in high-temperature regions above around 1000°C, which is considered difficult with the JIS method. - Measurement of specific heat in low-temperature regions below room temperature. Additionally, it is expected to be useful for analyzing relaxation phenomena. In this case, as an example of that technology, we introduce "a case study evaluating PET." For more details, please refer to the PDF materials. Furthermore, in addition to DSC, our company also specializes in various thermal analyses such as TG-DTA and TMA. ● DSC (Differential Scanning Calorimetry): Can be used for analysis of sample melting, glass transition, thermal history, crystallization, curing, Curie point, etc., and for measuring specific heat. ● TG-DTA (Thermogravimetric and Differential Thermal Analysis): Can be used for analysis of sample moisture content, ash content, decomposition, oxidation, and heat resistance evaluation. ● TMA (Thermomechanical Analysis): Can be used for measuring sample expansion rate, glass transition, softening point, etc. For more information, visit here: https://www.seiko-sfc.co.jp/analysis-service/thermal-analysis.html

  • Other polymer materials
  • Contract Analysis
  • plastic

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DSC 3500 Sirius / Differential Scanning Calorimeter

Diversification of cooling options (electric, liquid nitrogen, gas flow) to accommodate various measurements.

Differential Scanning Calorimetry (DSC) is a mainstream device for analyzing the thermal properties of solids and liquids, capable of very robust and stable measurements. It employs an indirect cooling method, allowing for low-noise measurements even in low-temperature regions. The optimization of the furnace structure provides excellent baseline reproducibility (±10μW). The exchange between liquid nitrogen and the electronic cooling system is easy. The sealed structure reduces the influence of moisture in the atmosphere during low-temperature measurements.

  • Analytical Equipment and Devices

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