Revolutionary benchtop R&D tablet press STYL’One Nano
The STYL’One Nano by MEDELPHARM is the revolutionary benchtop R&D tablet press for demanding formulation scientists with price performance in mind. Characterize your API and develop your single layer formulation with only a few grams of powder!
COMPACT, MOBILE & SMALL FOOTPRINT
This compact table top unit can be installed on an existing bench, on its optional mobile base or even inside a downflow booth.
UNCOMPROMISED INSTRUMENTATION
High resolution force and position sensors
are fitted on both punches. Pre- and main compression forces, ejection force and elastic recovery are at your disposal.
PRE- AND MAIN COMPRESSION
A powerful drive technology allows to replicate the pre- and main compression of research rotary presses at the same velocity.
FAST BOTTOM PUNCH DYNAMICS
Compression displacement is performed by the bottom punch which is similar to the movements on rotary tablet presses, where most of the pressure is applied from the lower punches. Punch velocity is twice as fast as any eccentric presses.
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Technical highlights
- Benchtop model compact and mobile with a small footprint
- Driven by Alix, the most powerful integrated R&D software platform
- Force, displacement and radial measurements
- Bottom punch dynamics similar to the movements of a rotary press
- Designed with USP <1062> in mind (square, V-shape, pre- and main compression)
- Force mode for cost-saving on API characterization
- Target thickness to mimic small turret rotary tablet press
- Manual, advanced gravity and force feeding options
- Easy to handle – Easy to clean
An instrumented die or an external lubrication system can be added to your STYL’One Nano.
THE COMPRESSION PROFILE THE WAY YOU WANT
USP <1062> on tablet characterization is natively integrated into STYL’One Nano software. Manufacturability profiles (tablet breaking
force vs compression force) or tabletability profiles (tensile strength vs pressure) are readily available. Compressibility and compactibility profiles are also available when powder true density is known.
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