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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.

  • Ultrahigh-Purity Diaphragm Valves, ALD7 Series

    The Swagelok ALD7 ultrahigh-purity valve provides the flow consistency and capacity, actuator speed, temperature rating, and cleanliness necessary to help maximize chip throughput in new or existing semiconductor manufacturing tools. The Swagelok ® ALD7 ultrahigh-purity diaphragm valve for ato...

  • Ultrahigh-Purity Diaphragm Valves, ALD3 and ALD6 Series

    Swagelok ALD3 and ALD6 series diaphragm valves are used in semiconductor manufacturing tools to achieve the controlled dosing necessary for atomic layer deposition (ALD) processing. They offer ultrahigh cycle life, high-speed actuation, and flow coefficients up to 0.62. Ultrahigh-purity Swagelok &r...

  • Atomic Layer Deposition (ALD) Valves

    Swagelok ultrahigh-purity atomic layer deposition (ALD) valves offer the ultrahigh cycle life, high-speed actuation, flow rates, thermal immersibility, and extreme cleanliness needed to enable precise dosing and maximize chip yield in advanced semiconductor manufacturing applications. Since introdu...

  • Ultrahigh-Purity Valves for High-Flow Applications, ALD20 Series

    Swagelok ALD20 ultrahigh-purity valves offer a high flow capacity ideal for atomic layer deposition processes that require low-vapor pressure precursor gases. The high-flow Swagelok ® ALD20 ultrahigh-purity valve provides the reliability and performance expected of Swagelok ® ALD valves w...

  • How to Optimize Semiconductor ALD Processes

    How the Right Valve Can Improve Accuracy and Consistency in Your ALD Process The challenge of maximizing throughput combined with the increasingly complex and precise processes needed to manufacture the latest microchip is driving semiconductor  manufacturers to pursue tighter and tighter process ...

  • Solving ALD Semiconductor Processing Challenges

    How to Solve Top ALD and ALE Semiconductor Processing Challenges In the highly precise world of semiconductor fabrication , some essential fluid system component qualities are the cost of entry. In atomic layer deposition (ALD) and atomic layer etching (ALE) processes, for example, extreme cleanli...

  • Swagelok Announces Release of the ALD7 UHP Valve

    New Swagelok ® ALD7 UHP Valve Enables Semiconductor Manufacturers to Improve Chip Yield Advanced diaphragm valve provides maximum dosing precision, fast actuation, and consistent performance over tens of millions of production cycles. Solon, Ohio (August 2, 2022) — Swagelok, a leading provider o...

  • Innovation for The Next Generation of Semiconductor Manufacturing

    Innovation for the Next Generation of Semiconductor Manufacturing Masroor Malik The rapid progression of smart technologies has accelerated the transition of semiconductors from microelectronics to atomic-scale dimensions. As highlighted at this year’s SEMICON West Expo in California , the ind...

  • Small Footprint, Big Potential: How Improved ALD Valves Will Catalyze Semiconductor Success

    One New Valve. Three Reasons It Could Change Semiconductor Manufacturing. Matt Ferraro The semiconductor market is not an easy one to navigate. Semiconductor wafer fabricators are under constant pressure to maintain maximum precision in highly complex processes that involve expensive materials,...

  • Semiconductor

    Jump to Section: Products Services Benefits Resources Productivity for Today, Innovation for Tomorrow We know that innovation is the foundation of semiconductor industry success. Relentless advancement in electronic technology demands more complex, more compact ...

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