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Calorie meter - メーカー・企業7社の製品一覧とランキング

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Calorie meterのメーカー・企業ランキング

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  1. null/null
  2. 一般財団法人材料科学技術振興財団 MST Tokyo//Testing, Analysis and Measurement
  3. TA Instruments Japan (TAInstruments) Tokyo//Testing, Analysis and Measurement
  4. 4 コスモトレーディング Osaka//Trading company/Wholesale
  5. 5 大西熱学 Tokyo//Machine elements and parts

Calorie meterの製品ランキング

更新日: 集計期間:Dec 03, 2025~Dec 30, 2025
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  1. [Analysis Case] Investigation of Curing Temperature and Glass Transition Temperature of Epoxy Resin 一般財団法人材料科学技術振興財団 MST
  2. Quality Control: Calorimeter C6000
  3. Waste incineration calorimeter
  4. 4 Input compensation type double furnace "DSC8500/8000" コスモトレーディング
  5. 5 Analysis Case: Evaluation of Cell Metabolism and Drug Efficacy Using Isothermal Calorimeter TAM TA Instruments Japan (TAInstruments)

Calorie meterの製品一覧

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Analysis Case: Evaluation of Cell Metabolism and Drug Efficacy Using Isothermal Calorimeter TAM

This is an introduction to case studies related to cells by a specialist in analysis. This time, we will present measurement examples using thermal analysis equipment that is useful for evaluations involving cells.

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.

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Differential Scanning Calorimeter (DSC) with Heat Flux Type Single Furnace

A high-sensitivity heat flux DSC that combines compactness with excellent versatility and reliability, capable of a wide range of applications from research to routine analysis.

Introducing the Differential Scanning Calorimeter (Single Furnace DSC) "DSC 4000 / 6000." This high-sensitivity heat flux DSC combines compact design with excellent versatility and reliability, making it suitable for a wide range of applications from research to routine analysis. Compared to conventional models, it achieves a stable and flat baseline with improved sensitivity. 【Features】 ◆ Equipped with a high-sensitivity sensor disk that enables excellent temperature detection ◆ Utilizes a low heat capacity furnace made of robust, corrosion-resistant, long-lasting inert aluminum ◆ Built-in digital mass flow controller compatible with two types of gases *For more details, please refer to the PDF document or feel free to contact us.

  • Other industrial robots
  • Other physicochemical equipment
  • Gas Generator

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Input compensation type double furnace DSC 8000

Achieve excellent program temperature tracking! Wavelet Analysis further reduces noise.

The "Input Compensation Type Double Furnace DSC 8000" is a differential scanning calorimeter that achieves excellent program temperature tracking with a low-mass furnace. It features a built-in mass flow controller, allowing for automatic switching between two gas lines. With a stable baseline provided by SmartScan, Wavelet Analysis further reduces noise. 【Features】 ■ Low-mass furnace achieves excellent program temperature tracking ■ Stable baseline with SmartScan ■ Wavelet Analysis further reduces noise ■ Automatic switching between two gas lines (built-in mass flow controller) ■ Auto sampler with automatic diagnostic function (optional) *For more details, please refer to the PDF document or feel free to contact us.

  • Other measurement, recording and measuring instruments
  • others

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[Analysis Case] Investigation of Curing Temperature and Glass Transition Temperature of Epoxy Resin

Evaluation of thermal properties by DSC (Differential Scanning Calorimetry) measurement.

For the two-component mixed epoxy resin, we investigated the curing temperature and the glass transition temperature (Tg), which is an indicator of heat resistance, using Differential Scanning Calorimetry (DSC). When measuring the resin before curing with DSC, it was confirmed that a rapid exothermic reaction began around 103°C (Figure 1). This was due to the polymerization (curing) of the resin occurring as a result of the temperature increase. Furthermore, after air cooling the cured resin to room temperature, a second DSC measurement was conducted, which confirmed a shift of the baseline towards the endothermic side due to the glass transition of the resin, with Tg being approximately 116°C (Figure 2).

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Technical Data: Measurement of Heat during Charge and Discharge Processes

Publication on the thermal measurement of the complete charge and discharge process of the Nissan Leaf EV module.

This document is a technical material issued by Parmetrics. It includes measurement data that attempts to assess the degradation of batteries used for a long time based on heat absorption and release curves. [Contents] ■ Heat measurement of the entire charging and discharging process of the Nissan Leaf EV module ■ Specific heat measurement of the entire Nissan Leaf EV module *For more details, please refer to the PDF document or feel free to contact us.

  • Other measurement, recording and measuring instruments

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Input compensation type double furnace "DSC8500/8000"

Low-quality furnaces achieve excellent responsiveness!

We offer the differential scanning calorimeter (DSC) 'DSC8500/8000', which enables ultra-fast scanning at 750°C/min, allowing us to observe thermal properties that were previously unseen. The input compensation type DSC directly measures endothermic and exothermic quantities, demonstrating excellent accuracy and reproducibility of temperature and heat that is independent of sensitivity to temperature. 【Features】 ■ Flat baseline with SmartScan(TM) ■ Smooth analysis with Wavelet Analysis ■ Built-in digital mass flow controller ■ High-precision auto-sampler system (96 samples) *For more details, please contact us.

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Tools Useful for Biofuel Testing - Modular Calorimeter TAM

Evaluation of the generation process and characteristics of biofuels using a modular thermal analysis measurement device (TAM).

The calorimetry measurement device (TAM series) is an instrument known as a microcalorimeter that measures very small amounts of heat. By combining a thermostat with high isothermal performance with a calorimeter (calorimeter) suited to the sample and measurement method, it is possible to measure minute heat generated or consumed during physical processes or chemical reactions with sensitivity exceeding microwatts. It is a useful tool that can contribute to the research and development of biofuels and environmental improvement, allowing real-time calorimetry measurements while performing operations such as the addition, mixing, and titration of chemicals through module combinations. This document provides a detailed explanation of high-sensitivity calorimetry measurements of biofuels, which are difficult to observe with conventional differential scanning calorimeters (DSC), as well as real-time measurements of heat changes associated with chemical reactions. ◇ Quantification of wax based on the heat of solidification reactions ◇ Evaluation of the production rate of biofuels *Please download the document.

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Analysis case: List of thermal analysis devices and measurement cases for bio research.

This is an introduction to analysis cases and related devices for bio research 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) / Viscoelasticity, elastic modulus, 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, elastic modulus, viscosity, stress relaxation, creep, master curve, residual strain, etc.

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Balance-type calorimetry method

It is possible to measure the required supply amount for indoor thermal equilibrium and the total amount of heat for outdoor thermal equilibrium!

The "Balanced Room Type Calorimetry Method" is a testing chamber that simultaneously measures the capacity of both the indoor and outdoor sides with high precision. The indoor side automatically heats and humidifies the cooling and dehumidification provided by the test room air conditioner to achieve thermal equilibrium under JIS conditions, measuring the necessary supply amount to maintain that equilibrium. The outdoor side automatically achieves thermal equilibrium corresponding to the heat dissipation from the test air conditioner condenser, measuring the total heat amount in that state. This device is equipped with the aforementioned calorimeter for both indoor and outdoor measurements, allowing simultaneous measurement. 【Specifications】 ■ Indoor/Outdoor Balance Ratio: 2% or less ■ Reproducibility Accuracy: 1% or less ■ Testing Standards: JIS B8615-1/ISO 5151 *For more details, please download the PDF or feel free to contact us.

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  • Testing Equipment and Devices

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[Research Material] Global Market for Indirect Calorimetry Measurement Devices

World Market for Indirect Calorimetry Devices: Portable, Desktop, Medical, Sports, Fitness

This research report (Global Indirect Calorimeter Market) investigates and analyzes the current state and outlook for the global market of indirect calorimetry devices over the next five years. It includes information on the overview of the global indirect calorimetry device market, trends of major companies (sales, selling prices, market share), market size by segment, market size by major regions, and distribution channel analysis. The segments by type in the indirect calorimetry device market focus on portable and desktop devices, while the segments by application target medical, sports, and fitness uses. The regional segments calculate the market size of indirect calorimetry devices by dividing them into North America, the United States, Europe, Asia-Pacific, Japan, China, India, South Korea, Southeast Asia, South America, the Middle East, and Africa. It also includes the market share of major companies in the indirect calorimetry device sector, product and business overviews, and sales performance.

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