20.330 G10-S00-4-M (2 PACK)
Manufacturer: Hengst
Material #: 1009711B (2 Pack)
Model : 20.330 G10-S00-4-M (2 PACK)
***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 20.330 G10-S00-4-M (1009711B) is a hydraulic filter element designed to optimize filtration processes by effectively capturing contaminants and ensuring clean hydraulic fluid flow. The product features a stainless steel wire mesh filter media, designated as G10, which provides robust filtration capabilities with a nominal size of 330. The element measures 273 mm in length, with an outer diameter of 101 mm and an inner diameter of 63 mm, making it suitable for various hydraulic systems requiring precise filtration dimensions. Its design includes a bypass valve code of 4 and a standard collapse pressure rating, indicating its reliability under pressure fluctuations. The filter element's construction emphasizes dirt holding capacity and retention efficiency while minimizing pressure loss, crucial for maintaining system performance and longevity. It includes an NBR seal designation (code M), ensuring compatibility with specific hydraulic fluids and providing reliable sealing under operational conditions. The support cage material is standard, contributing to the structural integrity of the filter element during use. This Hengst filter element is not suitable for HFC/HFA applications or DIN24550 specifications but is engineered to meet general hydraulic filtration needs without requiring additional support cages. With these specifications, the Hengst 20.330 G10-S00-4-M offers dependable performance in maintaining fluid cleanliness in compatible hydraulic systems.
$1,719.12 USD
($859.56 USD/Each)
Sold in packs of 2
Availability: Backordered
Ships from US
Qty:
Delivered as early as August 3, 2026





