The Ranger is one of Australia's most popular vehicles and one of the most frequent visitors to our workshop. We see them in 3.2 TDCi, 2.0L EcoBlue single and bi-turbo, and — on the older shape — the 2.5 L Duratorq. Every generation has factory mapping that's been tuned down for emissions compliance; every generation responds well to a proper dyno remap. Ranger owners generally want two things: better towing confidence (the 3.5 tonne ball weight is where the factory calibration feels thin) and better everyday fuel economy. We deliver both, measurably, on the dyno.
The 2.2 L 4-cylinder in the Ford Ranger is a solid, mid-range diesel — enough torque to be genuinely useful, calibrated cautiously enough to survive every market where the manufacturer sells it. The result is a factory map that's deliberately muted. Most of the real-world gain we make on a remap comes from recovering that headroom safely.
Our dyno-developed map for the Ford Ranger adds an average of 23 kW (25%) at the wheels and 62 Nm (16%) of engine torque. At this level the car genuinely changes character — overtaking on single-lane highways stops being a commitment, and the mid-range pull from around 1,500 to 3,000 rpm is transformed. You notice it most on the highway on-ramp and in the first third of an overtake.
In practical terms, that works out to around 9 fewer tanks of diesel over 40,000 km. At a typical 15,000 km annual mileage, most Ford Ranger owners save roughly 225 L and $405 per year at the pump — purely from improved combustion efficiency at part-throttle, where diesels spend most of their time.
This Ford Ranger variant ran from 2016–2018. The factory calibration changed very little across that production window; we have the original file for each year and always confirm which one matches the car in front of us before we start.