A multi-stage upgrade was carried out for the Mercedes-AMG GT 63 4-Door, focused on progressively increasing power and optimizing the platform for high-load operation.
The project began with a Stage 2+ configuration, including ECU, TCU, and CPC calibration, catless downpipes, and a water-methanol injection system. This setup delivered approximately 800 hp and created a solid foundation for further development.
The vehicle was later upgraded to a Stage 3 configuration, focused on achieving higher output while maintaining stability and consistency. The final setup delivers 900 hp and 1100 Nm on 98 octane fuel, even in high ambient temperatures of up to +35°C.
The configuration is based on TTE1050 turbochargers and includes upgraded fueling systems with LPFP and HPFP. This setup ensures sufficient fuel delivery and supports higher boost levels required at this stage.
All components are integrated and calibrated as a complete system, resulting in improved power delivery, strong mid-range performance, and stable operation under high load.
This project reflects a performance-focused approach, combining hardware upgrades and precise calibration into a balanced setup designed for real-world conditions.
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The project began with a Stage 2+ configuration, including ECU, TCU, and CPC calibration, catless downpipes, and a water-methanol injection system. This setup delivered approximately 800 hp and created a solid foundation for further development.
The vehicle was later upgraded to a Stage 3 configuration, focused on achieving higher output while maintaining stability and consistency. The final setup delivers 900 hp and 1100 Nm on 98 octane fuel, even in high ambient temperatures of up to +35°C.
The configuration is based on TTE1050 turbochargers and includes upgraded fueling systems with LPFP and HPFP. This setup ensures sufficient fuel delivery and supports higher boost levels required at this stage.
All components are integrated and calibrated as a complete system, resulting in improved power delivery, strong mid-range performance, and stable operation under high load.
This project reflects a performance-focused approach, combining hardware upgrades and precise calibration into a balanced setup designed for real-world conditions.
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