10.330LA G100-A00-6-V (2 PACK)
Manufacturer: Hengst
Material #: 1019578B (2 Pack)
Model : 10.330LA G100-A00-6-V (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 10.330LA G100-A00-6-V (1019578B) is a precision-engineered hydraulic filter element designed to optimize filtration performance in hydraulic systems. This component serves as the core of a filter, responsible for critical parameters such as retention capacity, dirt holding capacity, and pressure loss. The filter media is crafted from stainless steel wire mesh, designated with the code 'G100,' which ensures robust filtration efficiency and durability. The dimensions of this filter element are 194.5 mm in length, 94.5 mm in outer diameter, and 48.3 mm in inner diameter, making it suitable for specific system requirements. The design incorporates a bypass valve with a cracking pressure of 3 bar and features an FKM seal code 'V' for reliable sealing under various operating conditions. It is built to withstand a collapse pressure rating of up to 30 bar, ensuring it can handle demanding environments without compromising performance. The nominal size of this series '10' filter element is specified as '330LA,' and it includes standard support cage material for added structural integrity. While it does not include suitability for HFC or HFA fluids or adherence to DIN24550 standards, its robust construction makes it ideal for applications where high-pressure resistance and effective filtration are critical. This product does not require an additional support cage due to its inherent design strength, providing ease of use while maintaining reliability in operation.
$294.42 USD
($147.21 USD/Each)
Sold in packs of 2
Availability: Backordered
Ships from US
Qty:
Delivered as early as August 26, 2026





