HENGST
1011296B
$199.00 USD
Tags:
- HENGST
- Material:1011296B
- Model:R928045218
- Summary:Hydraulic-Filter Element
Quantity in stock: 0
***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 1.32 P10-A00-0-0 (1011296B) is a high-performance hydraulic filter element designed to ensure optimal filtration in hydraulic systems. With a nominal size of 32 and constructed from filter paper, this element is engineered to effectively capture contaminants and maintain the cleanliness of hydraulic fluids. The filter features a collapsible pressure rating of 30 bar, ensuring durability and reliability under demanding conditions. Its dimensions include a length of 80 mm, an outer diameter of 44.5 mm, and an internal diameter of 26 mm, making it suitable for various system configurations. This filter element operates as the core component within a filtration system, where key parameters such as retention capacity, dirt holding capacity, and pressure loss are determined by its construction and materials. The Hengst filter media code 'P' indicates the use of specialized filter paper that enhances its filtration efficiency. Although this model does not include a support cage or suitability for HFC/HFA fluids or DIN24550 compliance, it remains a robust solution for standard hydraulic applications. Designed for ease of integration into existing systems, the Hengst 1.32 P10-A00-0-0 is part of series 1 and features standard support cage material configuration to provide structural integrity during operation. Its design class as a filter element highlights its role in maintaining system performance by preventing particulate contamination that could lead to equipment wear or failure. This product is ideal for users seeking reliable filtration solutions that offer consistent performance across various operational environments without compromising on quality or efficiency.
The Hengst 1.32 P10-A00-0-0 (1011296B) is a high-performance hydraulic filter element designed to ensure optimal filtration in hydraulic systems. With a nominal size of 32 and constructed from filter paper, this element is engineered to effectively capture contaminants and maintain the cleanliness of hydraulic fluids. The filter features a collapsible pressure rating of 30 bar, ensuring durability and reliability under demanding conditions. Its dimensions include a length of 80 mm, an outer diameter of 44.5 mm, and an internal diameter of 26 mm, making it suitable for various system configurations. This filter element operates as the core component within a filtration system, where key parameters such as retention capacity, dirt holding capacity, and pressure loss are determined by its construction and materials. The Hengst filter media code 'P' indicates the use of specialized filter paper that enhances its filtration efficiency. Although this model does not include a support cage or suitability for HFC/HFA fluids or DIN24550 compliance, it remains a robust solution for standard hydraulic applications. Designed for ease of integration into existing systems, the Hengst 1.32 P10-A00-0-0 is part of series 1 and features standard support cage material configuration to provide structural integrity during operation. Its design class as a filter element highlights its role in maintaining system performance by preventing particulate contamination that could lead to equipment wear or failure. This product is ideal for users seeking reliable filtration solutions that offer consistent performance across various operational environments without compromising on quality or efficiency.
The Filter Element is the central component in a filter, where the actual filtration takes place. The key filter parameters such as retention capacity, dirt holding capacity and pressure loss are determined by the Filter Element and the filter media used.