Skip to content. Skip to navigation
Sections
Personal tools
You are here: Home Press Releases Syrris Asia Chip Climate Controller – advanced microreactor temperature control
Document Actions

Syrris Asia Chip Climate Controller – advanced microreactor temperature control

by Sarah Ballard last modified 04-30-12 08:16 AM

Syrris, a world leader in flow chemistry systems, offers the unique Asia Chip Climate Controller module for its revolutionary range of Asia flow chemistry products. The Asia Chip Climate Controller provides advanced microreactor temperature control for faster, cleaner reactions in glass or quartz microreactors, offering maximum chemical resistance, excellent mixing and easy visualization of reactions.

Syrris Asia Chip Climate Controller – advanced microreactor temperature control

The Asia flow chemistry system from Syrris, 110 configuration

Syrris, a world leader in flow chemistry systems, offers the unique Asia Chip Climate Controller module for its revolutionary range of Asia flow chemistry products. The Asia Chip Climate Controller provides advanced microreactor temperature control for faster, cleaner reactions in glass or quartz microreactors, offering maximum chemical resistance, excellent mixing and easy visualization of reactions.


The compact Asia Chip Climate Controller allows quick and accurate temperature control without the need for an external circulator or cold water supply, ensuring a small footprint while improving the yield and consistency of exothermic and endothermic reactions. A range of chips – including 62.5 µl, 250 µl, 1 ml and micromixer options – can be swiftly and easily clipped into the Asia Chip Climate Controller, enabling cooling or heating from -15 °C to +150 °C at 1 °C intervals. It can be controlled manually from the module’s front panel, or automated using either the Asia Automator with an Asia Pump or the Asia Manager PC software, offering a robust solution to meet your flow chemistry needs, from entry level systems to advanced reactor set-ups.

Sponsors
Web Search
 

Powered by Plone CMS, the Open Source Content Management System

This site conforms to the following standards: