HENGST
1015293B
$234.00 USD
Tags:
- HENGST
- Material:1015293B
- Model:R928053246
- 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 10.330LA AS3-A00-0-M SO3000 (1015293B) is a high-performance hydraulic filter element designed to optimize filtration efficiency in various hydraulic systems. Central to its function, the filter element is responsible for the actual filtration process, ensuring that key parameters such as retention capacity, dirt holding capacity, and pressure loss are effectively managed. This model features an Aquasorb material filter media with a nominal size of 330LA, making it suitable for applications where water absorption and dirt retention are critical. The filter element measures 194.5 mm in length, with an outer diameter of 94.5 mm and an inner diameter of 48.3 mm, providing a compact solution for space-constrained environments. Engineered to withstand challenging conditions, this filter element boasts a collapse pressure rating of 30 bar and is constructed with standard support cage material, ensuring durability and reliability in demanding applications. The seal designation NBR ensures compatibility with various fluids commonly used in hydraulic systems. The AS3 filter material configuration enhances its filtration capabilities by efficiently capturing contaminants and maintaining system cleanliness. This particular model does not include suitability for HFC/HFA fluids nor compliance with DIN24550 standards but remains a robust choice for general hydraulic applications requiring efficient particulate removal without additional support cage requirements. Its design class as a filter element emphasizes its role as a critical component in maintaining optimal system performance and extending the lifespan of hydraulic machinery by preventing contamination-related wear and damage.
The Hengst 10.330LA AS3-A00-0-M SO3000 (1015293B) is a high-performance hydraulic filter element designed to optimize filtration efficiency in various hydraulic systems. Central to its function, the filter element is responsible for the actual filtration process, ensuring that key parameters such as retention capacity, dirt holding capacity, and pressure loss are effectively managed. This model features an Aquasorb material filter media with a nominal size of 330LA, making it suitable for applications where water absorption and dirt retention are critical. The filter element measures 194.5 mm in length, with an outer diameter of 94.5 mm and an inner diameter of 48.3 mm, providing a compact solution for space-constrained environments. Engineered to withstand challenging conditions, this filter element boasts a collapse pressure rating of 30 bar and is constructed with standard support cage material, ensuring durability and reliability in demanding applications. The seal designation NBR ensures compatibility with various fluids commonly used in hydraulic systems. The AS3 filter material configuration enhances its filtration capabilities by efficiently capturing contaminants and maintaining system cleanliness. This particular model does not include suitability for HFC/HFA fluids nor compliance with DIN24550 standards but remains a robust choice for general hydraulic applications requiring efficient particulate removal without additional support cage requirements. Its design class as a filter element emphasizes its role as a critical component in maintaining optimal system performance and extending the lifespan of hydraulic machinery by preventing contamination-related wear and damage.
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.