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Our standard Outlet Check Valve adds back-flow protection to any 1/4-28 flat-bottom port. Made from PEEK, PCTFE, perfluoroelastomer, PTFE and stainless steel it offers excellent chemical resistance. It's spring actuated sealing system eliminates back-flow, helping prevents upstream contamination or damage. It has a 1/4-28 Flat-Bottom Male to 1/4-28 Flat-Bottom Female thread port configuration. -
Our PEEK Column Coupler delivers a low swept-volume connection while maintaining column efficiency. Our couplers are an excellent option for reducing overall flow path volume while coupling two devices together. It is manufactured from biocompatible PEEK giving is excellent chemical resistance to virtually all commonly used solvents. It has a swept volume of 3.6uL, a thru-hole of .010" and a thread port configuration of 10-32 coned. It comes with (2) F-300 PEEK Fittings. -
Our Delrin Column Coupler delivers a low swept-volume connection while maintaining column efficiency. Our couplers are an excellent option for reducing overall flow path volume while coupling two devices together. It is manufactured from Delrin giving is excellent chemical resistance. It has a swept volume of 1.3uL,a thru-hole of .007" and a 10-32 coned port configuration. It comes with (2) F-200 Delrin Fittings. -
Our PEEK Column Coupler delivers a low swept-volume connection while maintaining column efficiency. Our couplers are an excellent option for reducing overall flow path volume while coupling two devices together. It is manufactured from biocompatible PEEK giving is excellent chemical resistance to virtually all commonly used solvents. It has a swept volume of 3.6uL, a thru-hole of .010" and a male to male thread configuration of 10-32 Coned. -
The Biotech knitted open tubular (KOT) reactors are made from tubing which has been knitted into a tortuous path to force the fast moving centre of the liquid stream to mix radially with the slower moving boundary liquid layer, thereby minimizing the axial dispersion. The shape of a chromatographic peak entering the reactor is thus preserved very efficiently. To ensure a stable radial mixing within the KOT, a linear flow rate of 10 cm/s or more is recommended. The KOT reactor is usually the most optimal delay element for use in analytical flow systems, and is typically inserted in the flow path to create a delay line, so that a reaction or other event that requires a certain time can take place. Example of applications: effecient mixing of two fluidic streams, delay coil in a fluidic system, on-line derivatization of a sample with UV light etc. -
Our Bottom Mount Dual-Stage Pump (DST) with Constant Performance PCB is a vacuum control system for use with IDEX film degassing chambers. The system includes a DST vacuum pump and a controller PCB that operates in two modes:- Similar to “Constant Vacuum” degasser pumps, the control system will maintain vacuum levels at a user-defined setpoint (default 120mmHg).
- The Constant Performance algorithm allows the user to set a flow rate and desired efficiency, from which the control algorithms will determine the nominal vacuum level.
With this patent pending algorithm in our Constant Performance Degassing Pump System, the user gains the following benefits:- A Means To Select A Given Efficiency Of Degassing For Any HPLC System
- Direct Link Between The Chromatographic Method Flow Rate And Optimal Vacuum Level.
- Consistent Degassing Efficiency For Flow Rates 0-10mL/Min
- Operates At Highest Possible Pressure Minimizing Solvent Loss To The Laboratory Atmosphere.
- Reduction Of Mobile Phase Concentration Changes Due To Pervaporation
- Reduced Vacuum Pump Wear Due To Lower Pump RPM