Aeromotive Brushless Spur Gear Fuel Pump w/TVS Controller - In-Tank - 5gpm

$2,820.76 CAD

Aeromotive SKU: aer18053

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18053

P/N 18053 Brushless 5.0 Spur Gear In-Tank Pump with Variable Speed Controller
Ground Shaking Performance – Advanced Technology

Designed as a drop-in Stealth fuel pump for a custom built fuel cell or fuel tank with a fixed depth of 6-5/8″.   This configuration is intended for a stock style, custom built, fabricated fuel tank.

  • Supports
    • Fuel injected engines: GAS
      up to 3400 FWHP – naturally aspirated
      up to 2600 FWHP – forced air induction
    • Carbureted engines: GAS
      Up to 3600 FWHP – naturally aspirated
      Up to 2700 FWHP – forced air induction
    • Fuel injected engines: E85
      up to 2380 FWHP – naturally aspirated
      up to 1820 FWHP – forced air induction
    • Carbureted engines: E85
      Up to 2520 FWHP – naturally aspirated
      Up to 1890 FWHP – forced air induction
  • Lighter than the traditional Pro-Series pumps.
  • Reduced current draw at higher, EFI pressures.
  • Extended service life in methanol and ethanol.
  • New integral spur-gear pumping mechanism.
  • 90-PSI continuous operating pressure and up to 150-PSI peak pressure, base plus boost.
  • Integral, external brushless controller for clean installation, cooler fuel and enhanced reliability.
  • ORB-10 outlet port.
  • Requires straight 12-VDC to 16-VDC power supply.
  • Not compatible with pulse modulated systems or fuel pump speed controllers.
  • This product is not legal for sale or use on emission-controlled vehicles except when used as a direct replacement part matching OEM specifications.

EFI Rated flow of 1,700 lbs./hr. @ 40 psi, 13.5 volts
Carb Rated Flow of 1,850 lbs./hr. @ 9 psi, 13.5 volts

Aeromotive’s True Variable Speed Controller offers the advantages of built-in pump speed control via a dedicated 0-5V analog DC input signal. The Controller capitalizes on our existing brushless technology by reducing fuel flow during low engine demand and decreasing an already low current draw, therefore minimizing both motor heat the introduction of environmental via reduced fuel recycling.

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