
Válvulas de Diafragma para Inmersión Térmica (Serie DH) Swagelok®
Las válvulas de diafragma de inmersión térmica Swagelok Serie DH ofrecen una actuación de alta velocidad y están diseñadas para un rendimiento óptimo en procesos de alta temperatura.
Solicite Más InformaciónSwagelok® DH series thermal-immersion diaphragm valves are designed for applications where the valve needs to be entirely contained within a high-temperature, high-purity environment such as atomic layer deposition (ALD) and precursor delivery applications. These valves have a fully contained high-purity PFA seat that provides compatibility with a broad range of chemicals and excellent resistance to swelling and contamination. The fully swept flow path in the body minimizes entrapment areas and maximizes flow capacity.
Flow coefficients up to 0.60, a variety of 1/4 and 3/8 in. end connections, and pneumatically and manually actuated models are available to meet a wide range of system needs. The “normally closed” is actuator capable of a valve opening or closing time of less than 5 ms, and the valve is designed for optimal performance at 220°C (428°F).
Want to know more about DH series thermal-immersion valves?
Thermal-Immersion Diaphragm Valves Catalogs
Locate detailed product information, including materials of construction, pressure and temperature ratings, options, and accessories.
Swagelok thermal-immersion diaphragm valves offer high-speed actuation and are designed for optimum performance at 220 degrees C (428 degrees F) for high-temperature processes.

Calculate Flow Rate for the Right Valve Selection
Use our valve flow coefficient (Cv) calculator to chose a valve sized correctly for your needs.
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How to Select the Right Valves for Your Industrial Fluid System
Learn how to apply the practical STAMPED method to select the valves most suited to your industrial fluid or sampling system design applications.

Q&A:半導体製造の過去・現在・将来
半導体装置メーカー、マイクロデバイス・メーカー、流体システム・ソリューションのプロバイダーが連携することで、数十年間にわたっていかにして半導体市場はムーアの法則の要求に追いつくことができたのでしょうか。これからの展望と併せて紹介します。

最適な合金で半導体製造の歩留まりを高める
重要な流体システム部品に適した金属材料を選定することで、エンドからエンドまでの製造の歩留まりを高め、長期的な収益性の向上を図る方法を紹介します。

1つの新しいバルブが半導体製造を変える3つの理由
今回は、原子層蒸着(ALD)バルブの最新テクノロジーが、ハイテク半導体メーカーにもたらす影響について紹介します。