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Safe Product Selection

The complete catalog contents must be reviewed to ensure that the system designer and user make a safe product selection. When selecting products, the total system design must be considered to ensure safe, trouble-free performance. Function, material compatibility, adequate ratings, proper installation, operation, and maintenance are the responsibilities of the system designer and user.

⚠ Warning: Do not mix/interchange Swagelok two-ferrule tube-fitting end connection components (or other products not governed by industrial design standards) with those of other manufacturers.

  • Quick Connects

    Connect quickly and with confidence using our wide variety of quick connect configurations to reduce spillage and air inclusion in your system. Swagelok ® quick connects allow for connections to be made efficiently and easily without twisting, turning, or wrenching thanks to push-to-connect coup...

  • Tube Fittings and Adapters

    Reduce leaks and downtime with two-ferrule tube fittings that have leak-tight seals, superior tube grip, and vibration resistance, even after reassembly. Tube Fittings | Easy to install helping to reduce installer fatigue. Tube Adapters | Enable various connections and help eliminate difficult align...

  • Low Dead Volume Unions — Tube Fittings and Adapters

    Swagelok low dead volume tube fittings are engineered to reliably increase the overall efficiency of your industrial fluid system, even in harsh environments. Fittings available with these specifications: 1/16 in. 316 stainless steel Swagelok low dead volume tube fittings are engineered to reliably ...

  • Miniature Quick Connects — Quick Connects

    Use miniature quick-connects with lightweight, compact design for fingertip operation, with low dead volume to minimize spillage and air inclusion. Valves available with these specifications: 1/16 to 1/8 in. –50°F (–45°C) to 500°F (260°C) 316 stainless steel, brass 150 ps...

  • 4 Areas to Inspect When Measuring Time Delay in Sampling Systems

    4 Areas to Inspect When Measuring Time Delay in Sampling Systems In a process analyzer sampling system, there is always a delay between the moment you grab the sample and the time you obtain a reading. Time delay is cumulative, accounting for the total amount of time it takes for a sample to trave...

  • API Plan 51 Quench from Reservoir

    API Plan 51 is a quench system for use on the atmospheric side of a single seal. This system acts as a dead-ended reservoir for a fluid. API Plan 51 Kit contents shown solid and include some optional components. This plan: Prevents icing on the atmospheric side of the seal Is typically used ...

  • 3 Rules for Analyzer Accuracy

    3 Rules for Analyzer Accuracy Stacey Phillips, Field Engineering Manager (Americas) In most applications, operators trust analyzer results to indicate whether their product is meeting specifications. But when analyzer results are not accurately reflecting an end product’s characteristics, it’s lik...

  • What is Grab Sampling

    Grab sampling… …also known as spot sampling, laboratory sampling, field sampling, or sometimes just sampling—involves the collection of a sample fluid in apipeline, tank, or system. The sample is then analyzed to help operators validate process conditions, evaluate products for environmental emissi...

  • 10 Tips to Improve Chemical Sampling Systems

    10 Tips to Improve Chemical Sampling Systems Managing an analytical instrumentation operation is no small feat. Whether you design, construct, operate, or maintain a chemical sampling system, receiving consistent, reliable results can be a struggle for even the most seasoned engineers and technicia...

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