TA Instruments – Isothermal Microcalorimeters

  • VIETNAM

    DKSH Technology Co.,Ltd
    Head office: 16th Floor, Peakview Tower Building, 36 Hoang Cau Street, O Cho Dua Ward, Dong Da District, Hanoi City.

    Ho Chi Minh Branch: 5th Floor, Viettel Complex Building, 285 Cach Mang Thang Tam, Ward 12, District 10, Ho Chi Minh City.

    Da Nang Branch: 14th Floor, VietinBank Building, 36 Tran Quoc Toan, Hai Chau District, Da Nang city.

    +84 28 3812 5806 Ext 89604

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  • TA Instruments – Isothermal Microcalorimeters Brochure


  • TA Instruments – TAM IV Brochure


  • TA Instruments – TAM Air Brochure


The Thermal Activity Monitor (TAM) is a high resolution, real-time method for monitoring chemical, biological, and physical reaction process(es) occurring in a sample. The monitoring of heat flow over time allows for determination of the various reaction processes that may occur in a sample over minutes, hours, days, weeks, or years. Samples can be measured under user defined conditions, to control temperature, atmosphere, as well as sample composition.

Key Features

  • Modular system that can be adapted by the researcher to control the sample and sample environment
  • Capability to precisely set temperature within 100uC over a minimum of 24-hours
  • Interchangeable accessories allow for RH, liquid and gas perfusion, liquid titration, addition of solids or pastes, dissolution, pressure monitoring, and electric charge
  • Enables researchers to test materials and products under accelerated or during  operation conditions

Technical Specification

TAM IV
Microreaction system1mL (Baseline drift
µW/24 hours)
4mL (Baseline drift
µW/24 hours)
20mL (Baseline drift
µW/24 hours)
Titration (with titration reference)<0.06<0.08<0.4
Liquid Perfusion<0.8<0.8<1
Gas Perfusion<2<2<2
RH Perfusion<2<2<2
TAM IV 48
Thermal MediaOil
Calorimeter Positions48
Temperature Range4 ˚C to 150 ˚C
Accuracy< ± 0.1 °C
Long Term Stability< ± 100 µ °C/24h
Scanning Rate≤ ± 2 °C/h
TAM Air
Thermostat Specifications3-Channel Large Volume Calorimeter8-Channel Standard Volume Calorimeter
Calorimeter Positions38
Operating Temperature Range5 ºC to 90 ºC5 ºC to 90 ºC
Maximum Sample Size125 mL20 mL
Thermostat Stability± 0.001 ºC± 0.001 ºC

Available Models

The Battery Cycler Microcalorimeter solution is an end-to-end, in-operando measurement tool for elucidating the thermodynamic and electrochemical details of battery cells in real time, in a flexible and intuitive system.

Key Features

  • The Battery Cycler Microcalorimeter solution provides seamless system control of the TAM IV and BioLogic VSP-300 Potentiostat through ONE software interface
  • Data is aggregated in real time alleviating the need to wait for lengthy experiments to complete before viewing initial results
  • TAM Assistant software’s advanced data analytics enables one-touch analysis for data visualization providing faster results and new insights
  • Concurrently cycles and measures parasitic heat of multiple battery cells and form factors at a time (coin cells, pouch cells, cylindrical cells)
  • No wires to handle or manipulate, resulting in a user-friendly, elegant design, eliminating the need for specialized engineering and risks associated with conducting unsafe practices by the customization of OEM products

The vacuum/pressure ampoules are designed for simultaneously monitoring heat flow and any changes in gas pressure in the ampoule.

Key Features

  • Simultaneous measurement of heat flow and pressure up to 10 bar offers reliable safety assessment information on unstable energetic systems
  • Built-in relief valves for safe measurements
  • Choice of Nanocalorimeter (4 mL) or Microcalorimeter/Multicalorimeter (20 mL), depending on sample requirements
  • Optional ampoule holding scaffolding and manifold for easy manipulation or management of initial pressure or vacuum above sample
  • Instrument of choice for performing standard methods for energetic material testing
  • Highest sensitivity for detecting even small amounts of evolved gas

The vacuum/pressure ampoules are designed for simultaneously monitoring heat flow and any changes in gas pressure in the ampoule.

Key Features

  • Simultaneous measurement of heat flow and pressure up to 10 bar offers reliable safety assessment information on unstable energetic systems
  • Built-in relief valves for safe measurements
  • Choice of Nanocalorimeter (4 mL) or Microcalorimeter/Multicalorimeter (20 mL), depending on sample requirements
  • Optional ampoule holding scaffolding and manifold for easy manipulation or management of initial pressure or vacuum above sample
  • Highest sensitivity for detecting even small amounts of evolved gas

TAM IV-48 is a high-throughput version of the TAM IV and can accommodate up to 48 individual 4 mL Minicalorimeters.

The large number of independent and parallel sample-measurements makes this system the optimal solution for sample screening, formulation, and process development. It is equally useful in research laboratories as in industrial laboratories including pharmaceutical production control.

Key Features

  • New and more responsive temperature control provides rapid thermal equilibration and extended temperature range of 4 °C to 150 °C for real-world cold storage applications
  • Unmatched temperature stability for accurate heat flow measurement in experiments that last anywhere from a few hours to days and weeks
  • 48 calorimeter positions that can be equipped with up to 48 4 mL Minicalorimeters, each of which operates simultaneously and independently for high-throughput microcalorimetric measurements

TAM IV Battery Cycler Microcalorimeter Solution

The New TAM Air Isothermal Calorimeter

Brand

TA instruments

TA instruments provides innovative material characterization instruments that are widely used for research, analysis, and quality control in the evaluation of physical properties. We are the world’s leading supplier of thermal analysis, rheology, and microcalorimetry instruments, and our product areas have expanded to include thermal conductivity & diffusivity, dilatometry, rubber testing, and dynamic mechanical characterization.

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