Fuel consumption, combined: 6.1–5.3 l/100km
CO2 emissions, combined: 139–121 g/km
Fuel consumption, combined: 6.3–4.4 l/100km
CO2 emissions, combined: 142–115 g/km
Fuel consumption, combined: 6.1–4.3 l/100km
CO2 emissions, combined: 139–112 g/km
Fuel consumption combined¹: 1.5–1.4 l/100 km
Power consumption combined¹: 13.8–13.0 kWh/100 km
CO₂ emissions combined¹: 34–30 g/km
Fuel consumption, combined: 8.3–8.0 l/100km
CO2 emissions, combined: 188–183 g/km
Fuel consumption, combined: 8.0–7.8 l/100km
CO2 emissions, combined: 183–178 g/km
Fuel consumption, combined: 7.0–4.8 l/100km
CO2 emissions, combined: 159–126 g/km
Fuel consumption, combined: 7.1–4.9 l/100km
CO2 emissions, combined: 162–128 g/km
Combined fuel consumption in l/100 km*: 6.2–6.1
Combined CO2 emissions in g/km*: 161–160
Combined fuel consumption in l/100 km*: 6.2–6.1
Combined CO2 emissions in g/km*: 162–160
Fuel consumption, combined*: 9.1 l/100 km
CO₂ emissions, combined*: 208 g/km
Fuel consumption, combined*: 9.2 l/100 km
CO₂ emissions, combined*: 209 g/km
Fuel consumption, combined: 7.3–5.2 l/100km
CO2 emissions, combined: 190–135 g/km
Fuel consumption, combined: 7.4–5.4 l/100km
CO2 emissions, combined: 194–141 g/km
Combined fuel consumption*: 2.1-1.9 l/100 km
Combined electricity consumption*: 17.9-17.4 kWh/100 km
Combined CO₂ emissions*:47-43 g/km
Fuel consumption combined*: 2.1–1.9 l/100 km
Power consumption combined*: 18.1–17.6 kWh/100 km
CO₂ emissions combined*: 48–44 g/km
Fuel consumption, combined: 11.7–11.5 l/100 km
CO2 emissions, combined: 268–263 g/km
Combined fuel consumption*: 2.1–1.9 l/100 km
Combined electricity consumption*: 18.1–17.5 kWh/100 km
Combined CO₂ emissions*: 48–44 g/km
Combined fuel consumption in l/100 km*: 11.6–11.4
Combined CO₂ emissions in g/km*: 265–261
Fuel consumption, combined: 7.6–7.0 l/100km
CO2 emissions, combined: 200–184 g/km
Combined fuel consumption*: 2.6-2.5 l/100 km
Combined electricity consumption*: 21.1-20.8 kWh/100 km
Combined CO₂ emissions*: 60-57 g/km
Combined fuel consumption*: 2.7-2.5 l/100 km
Combined electricity consumption*: 21.2-20.9 kWh/100 km
Combined CO₂ emissions*: 61-57 g/km
Fuel consumption, combined: 7.4–5.4 l/100km
CO2 emissions, combined: 169–142 g/km
Fuel consumption, combined: 7.3–5.5 l/100km
CO2 emissions, combined: 168–143 g/km
Fuel consumption, combined: 10.1–9.6 l/100km
CO2 emissions, combined: 228–218 g/km
Fuel consumption, combined: 8.7–8.4 l/100km
CO2 emissions, combined: 229–219 g/km
Fuel consumption combined¹: 2.8–2.6 l/100 km
CO₂ emissions combined¹: 63–59 g/km
Combined fuel consumption*: 7.8 l/100 km
Combined CO₂ emissions*: 205-204 g/km
Combined fuel consumption*: 7.8 l/100 km
Combined CO₂ emissions*: 205-204 g/km
Fuel consumption, combined*: 9.1 l/100 km
CO₂ emissions, combined*: 208 g/km
Fuel consumption, combined*: 9.2 l/100 km
CO₂ emissions, combined*: 209 g/km
Fuel consumption, combined: 11.7–11.5 l/100 km
CO2 emissions, combined: 268–263 g/km
Combined fuel consumption in l/100 km*: 11.6–11.4
Combined CO₂ emissions in g/km*: 265–261
All pricing information does not include grants, tax rebates, delivery related charges and the Service Plan package.
All pricing information does not include grants, tax rebates, delivery related charges and the Service Plan package.
All pricing information does not include grants, tax rebates, delivery related charges and the Service Plan package.
All pricing information does not include grants, tax rebates, delivery related charges and the Service Plan package.
All pricing information does not include grants, tax rebates, delivery related charges and the Service Plan package.
All pricing information does not include grants, tax rebates, delivery related charges and the Service Plan package.
Manufacturing the electrically powered gran turismo in the Böllinger Höfe, close to Neckarsulm, is where attention to detail meets precision and quality.
In the Audi RS e-tron GT², everything is focused on the functional centre of the interior: the driver’s position.
The sculptural design unites the dynamic proportions of a gran turismo with the unmistakeable characteristics of an Audi RS model.
The optional carbon roof is made of a carbon-fibre-reinforced polymer. The high-tech material is very stable while also being extremely lightweight.
A sporty interior that will captivate all who experience it.
Manufacturing the electrically powered gran turismo in the Böllinger Höfe, close to Neckarsulm, is where attention to detail meets precision and quality.
In the Audi RS e-tron GT², everything is focused on the functional centre of the interior: the driver’s position.
Output
kW
Acceleration
s
Charging system
volt
The boldly sculpted shoulder line and the distinctive rear diffuser give an impression of impressive strength. The gently sloping roofline that extends well into the rear of the Audi RS e-tron GT² expresses the vehicle’s urgency to move forward even while it is stationary.
Striking accents mark its key features. For instance, the vehicle’s low centre of gravity becomes visible thanks to accentuated sills and the long wheelbase.
Another animated light strip stretches across the full width of the rear, framed at its outer edges by individual V-shaped LED segments within the lighting units themselves. This double reversing light and indicator function is a first for Audi.
The optional matrix LED headlights with Audi laser light are a fundamental aspect of a progressive design language. One unmistakable statement is the light signature with the blue X element of the Audi laser light, from where the dynamic light sequencing sees a wave of light extend horizontally.
The boldly sculpted shoulder line and the distinctive rear diffuser give an impression of impressive strength. The gently sloping roofline that extends well into the rear of the Audi RS e-tron GT² expresses the vehicle’s urgency to move forward even while it is stationary.
Striking accents mark its key features. For instance, the vehicle’s low centre of gravity becomes visible thanks to accentuated sills and the long wheelbase.
Energy for 100 km charged in approx
minutes
Battery from 5 % to 80% charged in
min
Range (WLTP)
km
An optional high-performance brake system with either tungsten-carbide-coated or carbon-fibre-reinforced ceramic brake discs provides compelling braking.
Depending on the driving situation, the aerodynamics can be actively adjusted, by way of two settings for the rear wing as well as the cooling air inlets at the front.
Optional aerodynamically optimised wheels round off the efficient and high-performance vehicle concept.
An optional high-performance brake system with either tungsten-carbide-coated or carbon-fibre-reinforced ceramic brake discs provides compelling braking.
Depending on the driving situation, the aerodynamics can be actively adjusted, by way of two settings for the rear wing as well as the cooling air inlets at the front.
The specified fuel consumption and emission data have been determined according to the measurement procedures prescribed by law. Since 1st September 2017, certain new vehicles are already being type-approved according to the Worldwide Harmonized Light Vehicles Test Procedure (WLTP), a more realistic test procedure for measuring fuel consumption and CO2 emissions. Starting on September 1st 2018, the New European Driving Cycle (NEDC) will be replaced by the WLTP in stages. Owing to the more realistic test conditions, the fuel consumption and CO2 emissions measured according to the WLTP will, in many cases, be higher than those measured according to the NEDC. Therefore, the usage of CO2 emission values measured according to WLTP for vehicle taxation from 1st September 2018 on can cause changes in this regard as well. For further information on the differences between the WLTP and NEDC, please visit www.audi.de/wltp.
We are currently still required by law to state the NEDC figures. In the case of new vehicles which have been type-approved according to the WLTP, the NEDC figures are derived from the WLTP data. It is possible to specify the WLTP figures voluntarily in addition until such times as this is required by law. In cases where the NEDC figures are specified as value ranges, these do not refer to a particular individual vehicle and do not constitute part of the sales offering. They are intended exclusively as a means of comparison between different vehicle types. Additional equipment and accessories (e.g. add-on parts, different tyre formats, etc.) may change the relevant vehicle parameters, such as weight, rolling resistance and aerodynamics, and, in conjunction with weather and traffic conditions and individual driving style, may affect fuel consumption, electrical power consumption, CO2 emissions and the performance figures for the vehicle. Further information on official fuel consumption figures and the official specific CO₂ emissions of new passenger cars can be found in the guide “Information on the fuel consumption, CO₂ emissions and electricity consumption of new cars”, which is available free of charge at all sales dealerships and from DAT Deutsche Automobil Treuhand GmbH, Hellmuth-Hirth-Strasse 1, 73760 Ostfildern-Scharnhausen, Germany (www.dat.de).