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HENGST
1020715B


$9,906.00 USD

Tags:

  • HENGST
  • Material:1020715B
  • Model:R928060113

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 50FLDKN0400-1X/PWR6T00-V2,2-M-S9 (1020715B) is a high-performance inline duplex filter designed for efficient fluid filtration in demanding applications. This filter features a robust construction with a nodular cast iron housing and is equipped with a multilayer glass fiber material as the filter media, designated as PWR, which provides excellent filtration capabilities with a grade of 6. It is specifically engineered to handle maximum working pressures of up to 50 bar, making it suitable for high-pressure environments. The filter includes an optical indicator for monitoring purposes and has a bypass cracking pressure set at 3.5 bar to ensure optimal performance under varying conditions. The design incorporates a back mounting configuration with an inlet positioned above the outlet, adhering to SAE port standards with a size of 2 1/2\" - 3000psi. It also features a ball valve change-over design and supports the cyclone effect for enhanced separation efficiency. The support cage is made of standard material, and the seal designation is NBR, ensuring reliable sealing under operational conditions. Additionally, this model complies with DIN24550 standards and is suitable for use with HFC and HFA fluids. With its durable construction and advanced filtration technology, the Hengst 50FLDKN0400-1X/PWR6T00-V2,2-M-S9 filter is ideal for applications requiring consistent fluid cleanliness and reliability in harsh environments. Its compact design allows for easy integration into existing systems while providing dependable performance over extended periods.