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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

46~57 item / All 57 items

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[Information] H.E.L Products China Battery Testing Regulations

Introducing how the BTC series complies with the thermal insulation testing methods specified in GB/T36276-2018!

H.E.L has extensive experience in the manufacture of battery testing calorimeters (BTC). There are two types of calorimeters produced, both of which are used to clarify characteristics from the design and development stages of cells and batteries. To ensure that quality and safety standards meet the requirements in China, battery testing must comply with the regulations outlined in GB/T36276-2018. This document describes how the H.E.L BTC-130 and BTC-500 correspond to the testing procedures specified in the regulations. Both BTC-130 and BTC-500 fully comply with these regulations. [Contents] ■ Compliance of H.E.L products with China's battery testing regulations GB/T36276-2018 ■ Test name: 5.2.1.5 Adiabatic Temperature Rise ■ Standard Heat-Wait-Search (HWS) test ■ Summary *For more details, please refer to the PDF document or feel free to contact us.

  • Calorimeter
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[Technical Data] Heat Generation Characteristics of the Crystallization Process of Substances LIB-06

Technical documentation on the exothermic characteristics of the crystallization process of substances filled in laminate film.

This document includes measurement examples using LIBCAL_A5 (calorimeter) to measure the heat generation and absorption of A5 size lithium-ion batteries. We measured the heat generation reaction of ECO heat packs, which contain heat-generating substances like laminated lithium-ion batteries, packed in polymer film. Instead of deforming a piece of iron to start crystallization, we introduced seed crystals to initiate the crystallization after setting it in the heat flow detection module. [Contents (excerpt)] ■Fig-01: Heat generation curve of ECO heat pack ■Fig-02: Raw data heat flow curve and temperature curve at 3 minutes and 40 seconds after crystallization began ■Fig-03: Heat flow curve and temperature curve with time constant correction for 14 minutes after crystallization began ■Fig-04: Heat flow curve and temperature curve for 4.5 hours after crystallization began, etc. *For more details, please refer to the PDF document or feel free to contact us.

  • Lithium-ion battery
  • Other measurement, recording and measuring instruments
  • Temperature and humidity measuring instruments

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iPhone 5s Complete Heat Measurement [Technical Documentation / Measurement Case Studies]

Applied measurement! Measuring the heat generated by the iPhone and the temperature of the iPhone's surface! Measuring the charge and discharge process of the built-in lithium-ion battery.

Have you ever experienced your iPhone getting hot while watching videos on it? Using a new product, a vehicle-mounted laminated cell calorimeter, we measured the heat generated by the iPhone and the temperature of its surface. Measuring the total heat of a functioning iPhone means measuring not only the heat generated by the iPhone's lithium-ion battery but also the heat generated by the iPhone, which is a super compact PC. Simultaneous measurement of heat generation, heat generation rate, and temperature from a smartphone (iPhone) has not been possible until now. 【Features】 ■ Total heat measurement of a functioning iPhone ■ Measurement of heat generated from the super compact PC that is the iPhone ■ Simultaneous measurement of heat generation, heat generation rate, and temperature from a smartphone (iPhone) ■ Use of vehicle-mounted laminated cell calorimeter (3L-DSC) *For more details, please refer to the PDF document or feel free to contact us.

  • Other measurement, recording and measuring instruments
  • Lithium-ion battery

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Determination of SADT using a small-scale reaction calorimeter (glass vial) in mL size.

A method for determining the thermal hazards of reactive chemicals using DSC measurement! Glass vials are the sample containers.

This document is a technical note explaining the determination of SADT (Self-Accelerating Decomposition Temperature) using a small-scale reaction calorimeter with a mL size (glass vial). We attempted SADT simulation using azobisisobutyronitrile (AIBN) to determine the thermal hazards of reactive chemicals through DSC measurements. In this note, we used a mL size small-scale reaction calorimeter, with a heating rate of 0.025 to 0.20 K/min, which is approximately 1/20 of the typical DSC measurement range of 0.5 to 8 K/min. We encourage you to read it. [Published Data (Excerpt)] - DSC data for 1 mg of AIBN (azobisisobutyronitrile) at 5 K/min - Heating rate of 0.025 K/min - Heating rate of 0.050 K/min - Heating rate of 0.20 K/min - Predictions of what kind of DSC measurement data can be obtained *For more details, please download the PDF or feel free to contact us.

  • Business Intelligence and Data Analysis

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Determination of the SADT of diperoxy dodecanedioate using a small-scale reaction calorimeter.

Calculate SADT from measurement data under isothermal conditions! Does LPO exothermically decompose at temperatures below the melting point?

This document is a technical note explaining the determination of the Self-Accelerating Decomposition Temperature (SADT) of diperoxy dodecanedioate using a small-scale reaction calorimeter. The SADT was calculated from measurement data under isothermal conditions at 51°C for 12 days, with a heating rate ranging from 0.015 K/min to 0.20 K/min. Will LPO indeed decompose exothermically at temperatures below its melting point? Please download and view it from the published catalog. [Contents] ■ Determination of the SADT of diperoxy dodecanedioate using a small-scale reaction calorimeter ■ Determination of SADT using a small-scale reaction calorimeter with ultra-low heating rate control *For more details, please download the PDF or feel free to contact us.

  • Business Intelligence and Data Analysis

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YouTube Video: Selection of DSC Sample Pans and Sample Preparation

To successfully measure DSC, it is important to choose the appropriate pan and lid according to the sample and purpose!

We are explaining on YouTube about the selection of sample pans and sample preparation for effectively measuring with the TA Instruments Differential Scanning Calorimeter (DSC). < Differential Scanning Calorimeter DSC > It measures temperature transitions in materials along with associated thermal temperatures and heat flow. Common applications include research, quality control, and the investigation, selection, comparison, and performance evaluation of materials for manufacturing purposes. The characteristics measured by TA Instruments' DSC technology include glass transition, cold crystallization, phase changes, melting, crystallization, product stability, curing/curing reaction rates, and oxidation stability. The Tzero DSC technology recently developed by TA Instruments is an innovative and highly accurate method for measuring heat flow. It significantly improves baseline flatness, transition resolution, and sensitivity. With Tzero technology, direct measurement of heat capacity becomes possible, and Modulated DSC measurements are faster and more accurate.

  • Analytical Equipment and Devices

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