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High-Performance Fuel Pumps

E85 & Methanol Fuel Pumps for Alcohol Fuel Systems
Points: Alcohol-resistant structure | Brushed/brushless options | High flow | Multiple mounting types | Custom specs, wiring & private label

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External High-Flow Methanol Fuel Pump
An external high-flow pump platform for dedicated methanol fuel systems requiring accessible service,...
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High-Flow Methanol Fuel Pump
A high-flow brushed electric pump platform configured for methanol racing fuel systems and B2B fuel-delivery...
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F90000285 525 LPH In-Tank E85 High-Performance Fuel Pump
An aftermarket 39/50 mm in-tank performance pump positioned against the F90000285 reference for high-output...
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0580254044 044-Type High-Flow External Inline Fuel Pump
An aftermarket 044-type external in-line fuel pump for engineered high-pressure fuel systems, identified...
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265 LPH Universal In-Tank E85-Compatible Performance Fuel Pump
A compact 265 LPH-class in-tank performance pump for gasoline and approved E85 systems, designed for...
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Fuel Pump Series & Application Selection Guidelines

Brushless:Designed for customers who require high flow, stable pressure, improved efficiency and advanced control options. Selection should be based on the complete flow-pressure curve, fuel type, voltage, controller strategy and installation environment.

E85:Developed for designated ethanol-compatible applications where material compatibility and increased fuel-flow demand are critical. Buyers should confirm the exact fuel blend, pressure and target output before selection.

Low Pressure:Built for systems that require controlled low-pressure fuel delivery. Product selection must consider fuel type, target pressure, continuous-duty requirement, mounting position and inlet/outlet configuration.

Methanol:Intended for specialized fuel systems where material, seal and maintenance requirements differ from gasoline applications. Only products explicitly confirmed for methanol should be used.

Motorcycle / ATV / UTV:Available as pump cores and complete assemblies. Matching can be based on OE number, vehicle model, original sample, dimensions, connector and fuel tank structure.

Hangers & Assemblies:Custom layouts can integrate single or multiple pumps, flanges, ports, wiring, filters and level-sensing components according to the customer’s tank and system design.

Pump Core Structure & Technical Specifications

  • Motor and Pump Structure — show brushed/brushless architecture and internal construction.
  • Inlet and Outlet — label port size, thread or hose interface
  • Connector and Wiring — identify connector type, pin function and harness length
  • Filter and Strainer — explain filtration option and fuel compatibility
  • Housing and Sealing — show material and sealing area
  • Dimensions — provide a clear drawing with installation-critical measurements
  • Flow & Pressure Curve — show test voltage, fuel and pressure conditions
  • Assembly Integration — for hangers/modules, label flange, bracket, wiring, filter, sender and pump position
Incoming Material Inspection
Assembly Process Control
Flow & Pressure Validation
Leak, Noise & Electrical Testing
Final Inspection & Traceability

More Than Standard Fuel Pumps

High-Performance Motorsport Fuel Delivery for Every Extreme Build

Product Selection Support
Share your fuel type, target flow, pressure, voltage and application. Our team will help identify a suitable product route.
OEM / ODM Development
Customize the flow curve, pressure, port, connector, wiring harness, filter, housing, logo, packaging and complete assembly.
Testing & Documentation
Performance curves, dimensional drawings, datasheets and available test documentation can be prepared according to the product or project.

How to Select a Fuel Pump

1. Confirm the fuel type:Gasoline, E85/ethanol, methanol, diesel and alcohol systems require different material and flow considerations.

2. Define the required flow:Use engine power, fuel type, efficiency and safety margin to estimate the target flow.

3. Confirm working pressure:Do not compare pumps only by free-flow numbers. Review the flow available at the actual base pressure and boost condition.

4. Choose the installation type:Confirm in-tank or external installation, mounting space, inlet/outlet direction and cooling environment.

5. Check electrical requirements:Confirm voltage, current, connector, wiring size and whether a brushless controller is required.

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