Introduction
The Replacement Parker High-Flow Filter Element, engineered by Xinxiang Lifeierte Filter Corp., Ltd., offers a cost-effective and reliable solution for industries requiring high-capacity filtration. Designed to seamlessly replace Parker’s MegaFlow™ C2055 series, this filter element combines advanced materials and precision engineering to deliver superior contaminant removal, extended service life, and compatibility with Parker filter housings. Ideal for wind power plants, it ensures optimal performance in extreme conditions while reducing operational costs.
The Replacement Parker High-Flow Filter Element, engineered by Xinxiang Lifeierte Filter Corp., Ltd., offers a cost-effective and reliable solution for industries requiring high-capacity filtration. Designed to seamlessly replace Parker’s MegaFlow™ C2055 series, this filter element combines advanced materials and precision engineering to deliver superior contaminant removal, extended service life, and compatibility with Parker filter housings. Ideal for wind power plants, it ensures optimal performance in extreme conditions while reducing operational costs.
Technical Parameters
The Replacement Parker High-Flow Filter Element is built to meet rigorous industrial standards, aligning with Parker’s specifications for seamless integration:
The Replacement Parker High-Flow Filter Element is built to meet rigorous industrial standards, aligning with Parker’s specifications for seamless integration:
| Parameter | Value |
|---|---|
| Model | LF-MF50 (Compatible with Parker MegaFlow™ C2055) |
| Nominal Filtration Rating | 5 µm (Absolute) |
| Effective Length | 40 inches (1,016 mm) |
| Outer Diameter | 6 inches (152 mm) |
| Inner Diameter | 3.5 inches (89 mm) |
| Filter Media | Polypropylene microfiber (P-code) |
| Effective Filtration Area | 4.5 m² (48.4 ft²) |
| Maximum Flow Rate | 175 GPM (662 LPM) |
| Maximum Differential Pressure | 150 PSID (10 bar) |
| Operating Temperature | -20°F to 200°F (-29°C to 93°C) |
| End Cap Material | Glass-filled polypropylene |
| O-Ring Seals | Buna-N, EPR, Silicone, Viton® |

Working Principle
The filter element operates on depth filtration, where contaminants are trapped within the multi-layered media structure:
The filter element operates on depth filtration, where contaminants are trapped within the multi-layered media structure:
- High-Flow Design: The pleated polypropylene media maximizes surface area, allowing rapid water/fluid passage while capturing particles.
- Contaminant Retention: The 5 µm nominal rating ensures removal of 90% of particles ≥5 µm, with progressive layers targeting smaller contaminants.
- Pressure Regulation: Built-in handles and O-ring seals maintain consistent flow and prevent bypass, ensuring filtration integrity.
Performance and Advantages
The Replacement Parker High-Flow Filter Element outperforms traditional filters in critical areas:
The Replacement Parker High-Flow Filter Element outperforms traditional filters in critical areas:
- Cost Efficiency: Reduces cartridge count by 8x compared to standard 2.5-inch filters, cutting replacement labor and housing costs.
- Extended Service Life: High surface area (4.5 m²) minimizes pressure drop, extending time between replacements.
- Extreme Condition Tolerance: Withstands temperatures up to 200°F (93°C) and pressures up to 150 PSID (10 bar).
- FDA-Compliant Materials: Polypropylene media meets food-grade standards, ideal for sensitive applications.
- Easy Maintenance: Built-in handles enable quick, safe cartridge replacement without system downtime.
Product Structure
The filter element features a robust, multi-layered design optimized for durability:
The filter element features a robust, multi-layered design optimized for durability:
- Pleated Media: Polypropylene microfiber layers provide high dirt-holding capacity.
- Support Layers: PP backing prevents media collapse under pressure.
- End Caps: Glass-filled polypropylene ensures structural integrity.
- O-Ring Seals: Multiple elastomer options (Buna-N, Viton®) for compatibility with diverse fluids.
Application in Wind Power Plants
Wind turbines rely on clean hydraulic and lubrication systems for reliability. The Replacement Parker High-Flow Filter Element excels in:
Wind turbines rely on clean hydraulic and lubrication systems for reliability. The Replacement Parker High-Flow Filter Element excels in:
- Hydraulic System Protection: Removes abrasive particles (e.g., sand, metal debris) to prevent component wear.
- Lubricating Oil Filtration: Maintains oil viscosity and cleanliness, reducing gearbox failures.
- Cooling Water Filtration: Prevents scaling and corrosion in closed-loop cooling systems.
- RO Pre-Filtration: Protects reverse osmosis membranes from particulates in boiler feedwater.

Other Industrial Applications
The filter element’s versatility extends to various sectors:
The filter element’s versatility extends to various sectors:
- Reverse Osmosis (RO) Systems: Prevents membrane fouling in desalination and industrial water treatment.
- Food and Beverage: Ensures microbial and particulate removal in processing lines.
- Chemical Processing: Filters solvents and corrosive fluids with chemical-resistant media.
- Marine Systems: Protects engines and hydraulic systems from saltwater contaminants.
- Pharmaceuticals: Meets USP Class VI standards for biopharmaceutical applications.
Conclusion
The Replacement Parker High-Flow Filter Element by Lifeierte combines Parker’s proven design with localized engineering to deliver unmatched performance in wind power and industrial settings. By reducing maintenance costs, enhancing system reliability, and ensuring compliance with global standards, it sets a new benchmark for high-flow filtration.
The Replacement Parker High-Flow Filter Element by Lifeierte combines Parker’s proven design with localized engineering to deliver unmatched performance in wind power and industrial settings. By reducing maintenance costs, enhancing system reliability, and ensuring compliance with global standards, it sets a new benchmark for high-flow filtration.
