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Full-Race

Full-Race High Pressure Fuel Pump (HPFP) | 17-23+ Civic Type R FK8 & FL5, 23+ Integra Type S DE5

Full-Race High Pressure Fuel Pump (HPFP) | 17-23+ Civic Type R FK8 & FL5, 23+ Integra Type S DE5

Precio habitual $1,999.99 USD
Precio habitual $1,999.99 USD Precio de oferta $1,999.99 USD
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Fits:

  • 2017 - 2021 Honda Civic Type R FK8
  • 2023+ Civic Type R FL5
  • 2023+ Integra Type S DE5

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The ultimate fueling solution for your Type R is here!  Introducing the Full-Race Civic Type R High-Pressure Fuel Pump (HPFP), the largest capacity high-pressure fuel pump available.  Flowing 68% more fuel than stock, our HPFP kit raises the ceiling on what was previously thought possible.

Included in the kit is everything you need for a simple and complete install, including detailed installation instructions, a pre-installed low-pressure feed line, and an all new stainless steel high-pressure tube. Gone are the days of drilling out factory fuel lines, our high-pressure tube completely replaces the factory line and internal orifice which is no longer needed. 

The Full-Race FK8 HPFP is backed by a limited lifetime warranty. Each pump is laser-marked with a unique Hondata code to make tuning a breeze.

FEATURES & BENEFITS

  • Largest Displacement HPFP: The largest capacity high-pressure fuel pump available for any Honda application, offering 68% more fuel flow than the stock pump, without the need for a 5mm camshaft swap.
  • Unmatched Power Potential: Capable of supporting up to 830 wheel horsepower on gasoline and 700 wheel horsepower on E85, this pump ensures your vehicle reaches its highest performance levels.
  • Comprehensive and Easy Installation: The kit includes all necessary components for a hassle-free installation, with no permanent modifications required. The high-pressure tube replaces the OEM line entirely, eliminating the need for drilling.
  • Integrated Pulse Damping: The pump features an integrated high-pressure pulse damping orifice, ensuring smooth operation and better control over fuel pressure.
  • Fuel Compatibility: Designed to work seamlessly with both gasoline and E85 fuels.
  • Hondata Tuning Support: Each unit is laser-marked with a unique Hondata keycode for easy tuning.
  • Engineered to be the Best: We partnered with an industry leader in fuel pumps, Nostrum High Performance, in the development of this component. For this reason our customers know that they can rely on our fuel pumps to be the best built, best performing on the market.
  • Limited Lifetime Warranty: Every pump is dynamically tested and backed by a limited lifetime warranty.

SPECIFICATIONS

  • Fuel Flow: 68% more fuel flow than the stock pump.
  • Max Operating Pressure: 250 bar (3600 psi).
  • Max RPM Capability: Validated up to 8400 RPM.
  • WHP Potential on Gasoline: 830 WHP (based on 7000 RPM power peak).
  • WHP Potential on E85: 700 WHP (based on 7000 RPM power peak).
  • Fuel Compatibility: Gasoline & E85
  • Recommended Tuning Software:
    • Hondata (using the provided Hondata code)
    • Motec (FK8 Tuning & Development)

TESTING OUTCOMES

Graph comparing the fuel flow rates of high-pressure fuel pumps for the FK8 Honda Civic Type R at various RPM levels, including Stock, FullRace, Hondata, and XDI pumps with stock and Hondata camshaft lobes.
FK8 HIGH PRESSURE FUEL PUMP OPTIONS - STOCK, FULL-RACE, HONDATA AND XDI PUMPS WITH STOCK AND HONDATA GDI CAMSHAFT LOBE (LITERS PER HOUR) VS RPM
PUMP & GDI CAM LOBE FLOW PER PUMP REV
CC/REV % V STOCK % V FULL RACE
STOCK FK8 HPFP W 4 MM 1.02 NA -40%
STOCK FK8 HPFP W 5 MM 1.27 25% -26%
FULLRACE HPFP W 4 MM 1.71 68% NA
FULLRACE HPFP W 5 MM* 2.14 110% 25%
HONDATA HPFP W 4 MM 1.26 23% -26%
HONDATA HPFP W 5 MM 1.57 54% -8%
XDI EVO HPFP W 4 MM 1.39 36% -19%
XDI EVO HPFP W 5 MM 1.73 70% 1%

*Note - stock and XDI pump compatibility with 5 mm lift Hondata camshaft not verified.
Max Operating Pressure: 250 bar / 25 MPa / 3600 psi (OEM rail pressure sensor limited to 270 bar)
Max Engine RPM: 8400

Dynojet Research graph showing the power and torque curves for a Honda Civic Type R with Full-Race High-Pressure Fuel Pump. The graph highlights maximum power and torque at different engine RPMs for two different setups, indicated by red and blue lines.
DYNOJET RESEARCH GRAPH SHOWING THE POWER AND TORQUE CURVES FOR A HONDA CIVIC TYPE R WITH THE FULL-RACE HIGH-PRESSURE FUEL PUMP, ILLUSTRATING MAXIMUM POWER AND TORQUE AT VARIOUS ENGINE RPMS FOR DIFFERENT SETUPS.

*Horsepower and Torque numbers are approximate and can vary significantly depending on numerous factors including what supporting upgrades are done to the vehicle, ambient temperature, elevation, road surface, tire selection & condition, fuel octane and quality, vehicle weight, and more.  The advertised numbers herein are based on optimal conditions and utilizing proper supporting modifications.  Your results may vary.


FAQ

Can the Full-Race Civic Type R High-Pressure Fuel Pump be used with aftermarket camshafts that have higher lift fuel pump lobes?

The Full-Race high-pressure fuel pump is intended for use with an OEM-sized 4mm HPFP camshaft lobe. We do not recommend using this HPFP with an oversized 5mm aftermarket camshaft lobe, due to issues with fuel pressure control that may result.

What is the benefit of a higher max operating pressure?

The higher operating pressure of the HPFP allows you to run the fuel injector at a higher pressure, sometimes higher than stock commanded pressure. This allows more injector flow (mass flow) by running the same injector at a higher pressure, like 240 bar (3500psi) rather than 200 bar (2900psi). Increased pressure at the injector improves spray quality and penetration, especially as boost pressure increases.  In highly boosted DI engines it's all about injector capacity and combustion quality (spray quality).

Why do your numbers say I will make less horsepower on E85 than 93 octane?

The numbers we list in the product descriptions are similar to the numbers a turbocharger lists for airflow. The numbers are the "fuel system capacity to generate power" regardless of the other engine system limitations (air handling, mechanical limitations, knock propensity). Essentially the numbers are calculated assuming "sufficiently large turbocharger airflow", "sufficiently capable mechanical assemblies", and disregarding knock limits. The equation uses actual observed engine volumetric efficiency (when available from sponsorship test vehicles) and fuel capacity (including target pressures) to calculate power. Gasoline has more energy per mass volume than E85. So the higher fuel flow capacity will mathematically generate higher power potential for gasoline than a high ethanol content fuel. The other variables (air flow, spark, rotating assembly strength, charge cooling, mechanical assembly strength) are highly variable from build to build. This is why we state horsepower capacity for the fuel system – representing the potential of the fuel system if you have all the other aspects of your build addressed!

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