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HENGST
1009470B


$2,625.00 USD

Tags:

  • HENGST
  • Material:1009470B
  • Model:R928039362

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 50LDN0400-PWR10A00-V2,2-M-R6 (1009470B) is a robust inline duplex filter designed for high-performance filtration applications. This model features a multilayer glass fiber material with a nominal size of 0400, ensuring efficient filtration with a grade of 10. It is built with nodular cast iron and carbon steel, offering durability and reliability under demanding conditions. The filter supports top or back mounting and includes ports positioned horizontally, adhering to the ISO228-1 standard with G1 1/2 designations. This filter is equipped to handle a maximum working pressure of 50 bar and has a nominal pressure rating of the same value. The bypass cracking pressure is set at 3.5 bar, ensuring optimal performance even under high-pressure scenarios. The Hengst model includes an optical indicator for monitoring purposes, which activates at a switching point of 2.2 bar to provide timely alerts for maintenance needs. The design incorporates PWR10 filter media configuration and features NBR seals coded as M for effective sealing capabilities. With its cyclone effect feature, the filter enhances separation efficiency by directing fluid flow in a manner that minimizes particle re-entrainment. Furthermore, the Hengst 50LDN0400-PWR10A00-V2,2-M-R6 complies with DIN24550 standards and is suitable for use with HFC and HFA fluids, broadening its application scope across various systems requiring reliable filtration solutions. Its stopcock change-over design facilitates seamless transition between operational modes without interrupting system flow, making it an ideal choice for continuous operations requiring minimal downtime.