Union, Connector, Tee, high pressure, 0.50 mm / 0.020 through hole with 10-32 screw threads. Carbon PEEK. Use with 1/16 tubing. ARE-Applied Research brand. 10/PK.

Additional Info:

High‑pressure Carbon PEEK Tee unions are designed for connecting tubing in analytical HPLC systems requiring chemically resistant, reinforced metal‑free flow path components. The low dead volume 0.50 mm (0.020") through hole design and standard 10‑32 screw threads provide dependable tubing connections while minimizing system dispersion.

The 47302‑11‑010 (10/Pack) Tee unions are suitable for connecting PEEK or stainless‑steel tubing on all ports in high‑pressure zones of HPLC systems and related analytical fluid handling applications.

These Tee fittings contain an internal T flow pattern commonly used to split one flow stream into two directions or combine two incoming streams into one outlet flow path.

Manufactured from Carbon PEEK material, these fittings are reinforced with carbon fiber to provide increased strength, stiffness, and improved load‑carrying capability compared to standard PEEK materials.

Key Benefits

  • High‑pressure Tee configuration for flow splitting or combining

  • Carbon fiber reinforced PEEK construction

  • Low dead volume design

  • Compatible with PEEK or stainless‑steel tubing

  • Standard 10‑32 screw thread compatibility

  • Suitable for analytical HPLC applications

  • Enhanced mechanical strength and stiffness

  • 10/Pack configuration for laboratory replacement needs

Specifications

  • Product Type: High‑pressure Tee union connector

  • Material: Carbon PEEK

  • Through Hole Diameter: 0.50 mm / 0.020"

  • Thread: 10‑32

  • Configuration: Internal Tee (T)

  • Tubing Compatibility: 1/16" tubing

  • Dead Volume: 1.17 µL

  • Pack Size: 10

Usage Notes

  • For high‑pressure HPLC applications

  • Designed for flow splitting or stream combining

  • Compatible with PEEK or stainless‑steel tubing

  • Requires compatible finger‑tight connector nuts sold separately

  • Suitable for analytical laboratory systems

  • Carbon fiber reinforcement improves mechanical strength

  • Not recommended for UHPLC applications

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