AC Schnitzer Upgrade Intercooler for BMW 4 Series F32 F33
Unlock reliable, repeatable performance with the AC Schnitzer upgrade intercooler for the BMW 4 Series. This uprated front mount intercooler (FMIC) is a high-efficiency, bar-and-plate charge air cooler designed to combat heat soak, lower intake air temperatures and sustain power on the road and track. Perfect for spirited driving, fast road use and tuned or remapped cars, this AC Schnitzer intercooler delivers the consistency and confidence your turbocharged BMW deserves.
Why upgrade your BMW 4 Series intercooler?
- Reduced heat soak for stronger, more consistent power in hot weather and during repeated pulls
- Lower intake temperatures for improved performance and throttle response
- Optimised airflow and cooling efficiency from a larger, bar-and-plate core
- Ideal foundation for Stage 1 and Stage 2 tuning while maintaining reliability
- Engine protection under sustained load, track days and fast road driving
We choose AC Schnitzer hardware for its quality and proven results, and our customers value the real-world gains in consistency, drivability and cooling performance. If you’re searching for a BMW 4 Series intercooler upgrade that delivers reliable power, this AC Schnitzer FMIC is the solution.
Fitment
BMW 4 Series F32 (Coupe) and F33 (Convertible):
- Petrol: 420i, 428i, 435i
- Diesel: 420d, 425d, 430d, 435d
- Including xDrive models
Perfect for
- BMW 4 Series intercooler upgrade, BMW F32 intercooler, BMW F33 intercooler
- 435i intercooler, 428i intercooler, 420i intercooler
- 435d intercooler, 430d intercooler, 425d intercooler, 420d intercooler
- AC Schnitzer intercooler, AC Schnitzer charge cooler, performance FMIC
- BMW turbo intercooler, uprated intercooler, performance intercooler, charge air cooler
Installation and support
Professional fitting available at Nforcd in Warwickshire. For a fitting quote or expert advice, please contact Sales@nforcd.com.
Choose the AC Schnitzer upgrade intercooler for your BMW 4 Series and enjoy cooler intake temps, reduced heat soak and sustained performance where it matters most.