2010-2014 Ford F-150 Raptor 6.2L Gen 4 2.9L Whipple Supercharger Stage 1 Kit
WHIPPLE SUPERCHARGERS
Whipple Gen 4 2.9L Stage 1 Supercharger Kit
2010-2014 Ford F-150 Raptor 6.2L
Overview
The Whipple Gen 4 2.9L Stage 1 Supercharger Kit delivers the instant boost, broad torque curve, and proven reliability that have made Whipple one of the most respected names in forced induction. Designed specifically for the 2010-2014 Ford F-150 Raptor 6.2L, this complete bolt-on package transforms the truck with stronger acceleration, improved towing performance, and the kind of power delivery only a twin-screw supercharger can provide.
At the heart of the system is the Whipple Gen 4 W175ax 2.9L twin-screw supercharger, engineered to achieve up to 99% volumetric efficiency while delivering exceptional airflow and immediate throttle response. The Stage 1 package combines the proven 2.9L compressor with a GT500 twin 60mm throttle body, 47 lb/hr fuel injectors, and a 3.50-inch supercharger pulley to create a well-balanced system capable of delivering substantial performance gains while maintaining excellent drivability.
Unlike traditional roots-style superchargers, Whipple's twin-screw design compresses air internally, producing more usable airflow with less heat. The result is stronger low-end torque, improved mid-range power, and a broader powerband that enhances every aspect of the driving experience.
Cooling is a major part of the Whipple advantage. The system utilizes a massive air-to-water intercooler, large intercooler reservoir, and front-mounted heat exchanger to help maintain lower intake air temperatures and consistent performance under demanding conditions. Whipple's unique intercooled bypass system further improves efficiency by reducing parasitic loss during normal cruising while maintaining instant boost response when needed.
The included SCT X4 flash tool provides calibration support, flash-device setup, and datalogging capability, giving owners a straightforward path to installing and maintaining their Whipple system. Designed for stock engines but with room to support future upgrades, the Stage 1 package offers an excellent balance of immediate performance and long-term flexibility.
Designed, manufactured, and assembled in Fresno, California, this Whipple system reflects decades of supercharger development and delivers the performance, reliability, and engineering refinement expected from a premium twin-screw supercharger package.
What's Included
- Gen 4 W175ax 2.9L Whipple twin-screw supercharger
- GT500 twin 60mm throttle body
- 47 lb/hr fuel injectors
- 3.50-inch supercharger pulley
- Massive air-to-water intercooler system
- Front-mounted heat exchanger
- Large intercooler reservoir
- High-flow thermostat
- Adjustable idler system
- SCT X4 flash tool
- Colder spark plugs
- Complete installation hardware
Key Features
- Fits 2010-2014 Ford F-150 Raptor 6.2L applications
- 50-state legal under CARB EO D-231-63
- Gen 4 W175ax 2.9L twin-screw supercharger
- Up to 99% volumetric efficiency
- GT500 twin 60mm throttle body included
- 47 lb/hr high-flow fuel injectors included
- 3.50-inch supercharger pulley included
- Massive air-to-water intercooler system
- Large intercooler reservoir and front-mounted heat exchanger
- Unique intercooled bypass system for improved efficiency and drivability
- SCT X4 flash tool with calibration and datalogging support
- High-flow thermostat and colder spark plugs included
- Complete bolt-on installation
- Designed for stock engines with room for future upgrades
- Instant boost and broad torque curve
- Designed, manufactured, and assembled in the USA
Fitment
- 2010-2014 Ford F-150 Raptor 6.2L
Important Notes
- 91-octane fuel or higher is required.
- SCT X4 flash tool is included for calibration loading and datalogging support.
- Designed around stock engine combinations.
- Professional installation is recommended.
- 50-state legal under CARB EO D-231-63.
Disclaimer: Power results may vary depending on fuel quality, vehicle condition, altitude, weather conditions, supporting modifications, and testing methods.