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HENGST
1019459B


$771.00 USD

Tags:

  • HENGST
  • Material:1019459B
  • Model:R928058077

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 110LEN0160-2X/PWR10A00-V5,0-M-R6 (1019459B) is an inline filter designed to provide efficient filtration in various fluid systems. This model features a multilayer glass fiber material designated as PWR for its filter media, ensuring high-performance filtration with a nominal size of 0160 and a filtration grade of 10. It incorporates an NBR seal and is constructed with aluminum housing, making it durable and reliable under demanding conditions. The filter is suitable for use with HFC and HFA fluids and complies with DIN24550 standards. It has a maximum working pressure of 110 bar, matching its nominal pressure rating, and can withstand collapse pressures up to 30 bar. The port configuration includes an R6 port code with a G1 1/2 designation following ISO228-1 standards, positioned horizontally for ease of integration into existing systems. The design includes an optical indicator for monitoring the filter's status, set to signal at a switching point of 5 bar. The unit does not feature a check valve or lid lifting device but does incorporate a cyclone effect to enhance debris separation efficiency. Additionally, this model has a bypass cracking pressure set at 7 bar to ensure system protection under high-pressure conditions. With its robust construction and advanced filtration capabilities, the Hengst 110LEN0160-2X/PWR10A00-V5,0-M-R6 is ideal for applications requiring reliable fluid cleanliness maintenance in hydraulic or lubrication systems where top mounting is preferred. Its design ensures consistent performance even under varying operational pressures and environmental conditions.