Milton Enterprises, a division of Laboratory Enterprises Manufacturing, offers a reinvented Diffusion Cell Apparatus widely used to study transdermal properties of pharmaceutical substances in colleges, research institutes, and pharmaceutical industries.
Featuring 8 stages, stirrers operate from 50–1000 RPM, with a dual sampling system (semi-automatic and manual) for flexible time-controlled sampling. The apparatus includes a water circulation system to maintain uniform temperature across all cells. Magnetic beads, Teflon caps, and springs ensure smooth bead rotation, maintaining constant fluid dynamics and precise drug delivery results.
Milton Enterprises, a division of Laboratory Enterprises Manufacturing, offers the reinvented Diffusion Cell Apparatus, widely used to study transdermal properties of pharmaceutical substances. Trusted by pharmacy colleges, medical research institutes, and pharmaceutical industries, this apparatus ensures accurate and reproducible drug diffusion testing.
Milton Enterprises, a division of Laboratory Enterprises Manufacturing, proudly introduces the reinvented Diffusion Cell Apparatus, designed for precise analysis of transdermal drug properties. Engineered with advanced technology, it delivers highly accurate and reproducible results, making it an essential tool for pharmaceutical research and quality testing.
Widely trusted by pharmacy colleges, medical research institutes, and pharmaceutical industries, this apparatus ensures reliable drug diffusion studies every time. Its innovative design and consistent performance support researchers in achieving precise, consistent, and meaningful data for effective drug development.
It studies transdermal drug properties and is used in pharmacy colleges, research institutes, and pharmaceutical industries for accurate drug diffusion testing.
It offers Semi-Automatic and Manual Sampling, alerting users at set intervals for precise and timely sample collection.
A water circulation system, magnetic beads, Teflon caps, and springs ensure uniform temperature and smooth fluid dynamics for accurate, reproducible results.