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HENGST
1017262B


$1,846.94 USD

Tags:

  • HENGST
  • Material:1017262B
  • Model:R928055628

Quantity in stock: 0

Note: Sales tax, and shipping will be calculated at checkout.
***Disclaimer: The following summary contains information gathered from various sources such as product descriptions, technical specifications and catalogs. While efforts have been made to provide accurate details, inaccuracies may occur. It is advised to verify all information by contacting Hengst directly.***
The Hengst 450PMFAN0630-PWR20B00-M (1017262B) is a high-performance manifold filter designed for demanding applications requiring robust filtration solutions. This model features a multilayer glass fiber material as its filter media, designated by the code PWR, providing superior filtration efficiency. The product is built to withstand high pressures with a maximum working pressure of 450 bar and a collapse pressure rating of 330 bar, making it suitable for use in environments where durability and reliability are critical. Its construction includes carbon steel housing and an NBR seal, ensuring compatibility with various fluids and resistance to wear. The 450PMFA series filter has been designed with practicality in mind, featuring bottom-side mounting and vertical port positioning according to factory standards. Despite its powerful capabilities, this model does not include additional components such as check valves or indicators, which simplifies maintenance and operation. The absence of a cyclone effect or a two-parted bowl further streamlines its design for ease of use. This manifold filter is particularly suited for applications that require adherence to DIN24550 standards and compatibility with HFC/HFA fluids. Its robust design class ensures that it can handle the rigors of continuous operation without compromising performance. With a nominal size of 0630 and filtration grade of 20, the Hengst 450PMFAN0630-PWR20B00-M offers precise filtration tailored to meet specific operational needs while maintaining efficiency under high-pressure conditions.