Dolomite Microfluidics' Mitos P-Pumps enable reliable production of highly monodisperse droplets

Dolomite Microfluidics' Mitos P-Pumps are proving popular with customers around the globe. Designed specifically for microfluidic systems, this key enabling technology is ideally suited for the production of highly monodisperse droplets in a diverse array of scientific sectors, such as food, cosmetics, agrochemicals, pharma, diagnostics and biomedicine.

Dolomite Microfluidics Mitos P-Pumps are proving popular with customers around the globe. Designed specifically for microfluidic systems, this key enabling technology is ideally suited for the production of highly monodisperse droplets in a diverse array of scientific sectors, such as food, cosmetics, agrochemicals, pharma, diagnostics, drug delivery and biomedicine. Typical applications include the generation of emulsions, capture of single or multiple cells in monodisperse droplets, and the production of polymer beads and hydrogel particles.


Mitos P-Pumps offer the ultimate flexibility for single chips and process scale-up, accommodating a wide range of standard and non-standard vessels, from milliliters to many liters. They can also be easily integrated with Telos high throughput droplet manufacture systems, enabling production of up to a tonne of highly monodisperse droplets, particles or emulsions per month. Easy to use and quick to set up, they offer precise pressure control from 0 to 10 bar, and deliver extremely stable, pulseless liquid flow, seamlessly integrating with Mitos Flow Sensors to allow accurate control of a wide range of flow rates, from nanoliters to milliliters per minute. A choice of modules is available, which can be controlled either directly from the pump or via PC software.

For more information, visit www.dolomite-microfluidics.com

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T.J. Davies' Retention Knobs

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Our retention knobs are manufactured above international standards or to machine builder specifications. Retention knobs are manufactured utilizing AMS-6274/AISI-8620 alloy steel drawn in the United States. Threads are single-pointed on our lathes while manufacturing all other retention knob features to ensure high concentricity. Our process ensures that our threads are balanced (lead in/lead out at 180 degrees.) Each retention knob is carburized (hardened) to 58-62HRC, and case depth is .020-.030. Core hardness 40HRC. Each retention knob is coated utilizing a hot black oxide coating to military specifications. Our retention knobs are 100% covered in black oxide to prevent rust. All retention knob surfaces (not just mating surfaces) have a precision finish of 32 RMA micro or better: ISO grade 6N. Each retention knob is magnetic particle tested and tested at 2.5 times the pulling force of the drawbar. Certifications are maintained for each step in the manufacturing process for traceability.