Calorimetry / Thermal Analysis Equipment & Devices

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Featured Medical Devices
The STA 6000 simultaneous thermal analyzer offers performance, reliability and productivity you can depend on. Designed with routine and research applications in mind, the STA 6000 simultaneous thermal analyzer applies advanced innovative sensor technology to yield higher accuracy and quality results.
Other Medical Devices
The STA 8000 simultaneous thermal analyzer offers performance, reliability and productivity you can depend on. Designed with routine and research applications in mind, the STA 8000 simultaneous thermal analyzer applies advanced innovative sensor technology and efficient design to yield high accuracy and precise results.
The MicroCal VP-ITC is a powerful and sensitive, easy-to-use isothermal titration calorimeter that offers the ability to investigate any biomolecular interactions.
TAM III is the new generation, multi-channel, microcalorimetric system from TA Instruments. TAM offers maximum sensitivity, flexibility, and performance. It can be used with the most sensitive microcalorimeters and a wide variety of accessories to precisely control the experimental conditions.
The MicroCal VP-DSC is a highly sensitive, easy-to-use differential scanning calorimeter for the study of samples in solution. It is used to directly measure the intramolecular stability of structured macromolecules such as proteins and nucleic acids as well as the intermolecular stability of complexes such as oligomeric proteins, nucleic acid duplexes and lipid and detergent micellar systems.
The Discovery TGA features our industryleading thermobalance, innovative IR-heated furnace, patented Hi-Res TGA, and an autosampler unmatched in flexibility and reliability.
The MicroCal iTC200 is a highly sensitive, low volume isothermal titration calorimeter for the label-free in solution study of biomolecular interactions.
The MicroCal VP-Capillary DSC is a highly sensitive, fully automated, high-throughput differential scanning calorimeter for characterizing protein and biomolecule stability.
Newly released High Sensitivity Differential Scanning Calorimeter X-DSC7000 has the new technology which comprises new sensor and new furnace. New sensor achieves the tripled sensor performance by the multiple thermocouples (compared to the existing products of SIINT).
This is the second generation from our nano-TA family and it adds a powerful DSP controller to this technique which enables sub-100nm local thermal analysis for most commercially available AFMs.
Newly developed simultaneous thermogravimetry and differential thermal analysis (TG/DTA, TGA/DTA) with high performances. µg level weight changes can be detected and precisely measured with high sensitivity horizontal balance systems. The base line performance is improved by adopting newest digital technology.
The MicroCal Auto-iTC200 is a fully automated, low volume, highly sensitive isothermal titration calorimeter. It delivers direct, label-free in solution measurement of all binding parameters in a single experiment.
The Q400 is a sixth-generation product from the world leader in thermal analysis. Its performance, ease-of-use, and reliability aptly demonstrate our long experience in designing novel instruments for high sensitivity mechanical measurements over a wide temperature range.
The Q500 is the world’s no. 1 selling, research-grade thermogravimetric analyzer. Its field-proven performance arises from a responsive low-mass furnace, ultra-sensitive thermobalance, and efficient horizontal purge gas system (with mass flow control).
TMA/SS7000 has super high sensitivity. It can measure a wide range of samples, including thin film and small samples, because the total measurement method has no shape restrictions.
The Nano DSC differential scanning calorimeter is designed to measure the amount of heat absorbed or released by dilute in-solution bio-molecules as they are heated or cooled. Macromolecules such as proteins respond to heating or cooling by unfolding at a characteristic temperature.
Viscoelasticity measurements transforms the samples by bending, tension, shearing etc., and find the elastic modulus and tan σ of the sample from the amount of deformation and response delay.