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Description

The RuboSORP MSB DVS is an advanced dynamic vapor sorption system that employs magnetic-suspension balance technology, designed for high-precision sorption experiments under challenging conditions. The instrument integrates controlled vapor delivery, broad temperature capability, and compatibility with aggressive or corrosive sample environments, enabling complex DVS measurements in diverse research fields. The contactless weighing principle ensures a contamination-free measurement environment and stable baseline performance.

Key Features

  • Magnetic suspension balance technology: Achieves microgram-level resolution by eliminating mechanical contact between sample and balance; reduces drift and friction artifacts.

  • Wide thermal and vapor environment control: Capable of handling dynamic vapor sorption (DVS) experiments over a broad temperature range and varied vapor/chemical atmospheres.

  • Dual-sample (high-throughput) capability: Supports simultaneous measurement of two samples, increasing productivity and reproducibility in comparative studies.

  • Corrosion and aggressive atmosphere compatibility: The sample is isolated in a sealed chamber, enabling safe use of reactive, corrosive vapors or other challenging environments.

  • High stability and drift zeroing: Designed for long-duration sorption runs with minimal baseline drift, enabling accurate isotherm, kinetic, and multicomponent sorption measurements.

Applications

This system is well-suited for:

  • Characterisation of moisture-/vapor-sorption behaviours of pharmaceuticals, polymers, and biomaterials.

  • Studies of organic vapor uptake and desorption in functional materials and porous frameworks.

  • Investigations requiring harsh vapour/chemical environments or corrosion-resistant setups.

  • Comparative simultaneous sorption experiments (two samples) for material screening or process optimisation.

Benefits & Why Choose This System

  • Enhanced precision and measurement stability due to magnetic-suspension design.

  • Flexibility in experimental design: supports dynamic vapour dosing, wide temperature control, and aggressive atmosphere compatibility.

  • Increased throughput via dual-sample capability.

  • Robust performance suitable for advanced research settings requiring high-quality sorption data.

Considerations

  • Given its advanced capabilities, infrastructure requirements (vapor/gas supplies, temperature control, safety for aggressive atmospheres) should be addressed.

  • Operator training and proper experimental protocol are key to obtaining reliable data from complex sorption studies.

  • Configuration (temperature range, vapor-dosing module, dual-sample setup) should be matched to specific experimental needs to maximise value.

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