High Purity Male Threaded Adaptor Graphics

High Purity Male Threaded Adaptor

The High Purity Male Threaded Adaptor is a precision-molded fitting designed to connect high-purity piping systems to threaded components or equipment using an external (male) thread. Manufactured from ultra-clean and chemically inert materials such as PFA, PVDF, or PTFE, this adaptor ensures reliable, leak-free connections in systems where cleanliness, chemical resistance, and dimensional accuracy are critical. It is ideal for integrating threaded instrumentation or valves into ultra-pure fluid delivery lines.

Key Features of High Purity Male Threaded Adaptor

  • High-Purity Material Construction: Made from PFA, PVDF, or PTFE to prevent contamination and ensure chemical compatibility.
  • Precision Male Threading: Provides a secure, tight-fitting threaded connection to female-threaded components.
  • Excellent Chemical Resistance: Inert to corrosive chemicals, acids, and solvents used in high-purity processes.
  • Thermal Stability: Suitable for elevated temperature operations without loss of mechanical strength.
  • Smooth Internal Surface: Reduces particle generation and supports laminar flow.
  • Cleanroom Production: Manufactured and packaged in ISO Class 100 or better environments.
  • Compliance Ready: Conforms to SEMI F57, FDA, and USP Class VI standards for purity and safety.

Technical Information

Parameter Details
Available Sizes
1/4” to 2” NPT or BSPT (custom thread types on request)
Material Options
PFA, PVDF, PTFE
Thread Type
Male NPT or BSPT
Connection Type
Male-threaded to socket fusion, flare, or clamp end
Max Operating Temperature
PFA/PTFE: up to 260°C PVDF: up to 150°C
Pressure Rating
Up to 150 psi at 20°C (varies by size and material)
Surface Finish (Ra)
< 15 µin (0.38 µm) for internal bore (PFA)
Compliance Standards
SEMI F57, ASTM D3307/D3222, FDA, USP Class VI
Manufacturing Environment
ISO Class 100 or better cleanroom
Typical Applications
Connection to threaded valves, instruments, or components in ultra-pure systems