McLaren

McLaren MSO HS

McLaren MSO HS
Photo: MrWalkr / Wikimedia Commons · CC BY-SA 4.0

The official data lists one version of the McLaren MSO HS (2016), in the United States.

At a glance

Years in the data
2016
Markets
United States
Engines
3.8 L
Fuels
Petrol
Lowest consumption (United States)
13.1 L/100 km (EPA)

What is the McLaren MSO HS?

The MSO HS is a special McLaren road car associated with McLaren Special Operations, the marque’s bespoke division. The initials HS stand for High Sport. MSO works on personalisation and one-off commissions, giving cars such as the HS a distinctive place in the range. McLaren’s story began in motor racing, when founder Bruce McLaren set up his racing team in 1963.

Engines and power

The MSO HS has a 3.8-litre petrol engine. Its United States EPA listing is for the 2016 model year.

Fuel consumption and CO₂

The EPA combined rating is 18 MPG, with a listed figure of 13.1 L/100 km. Test procedures differ by market: Europe uses WLTP or, for older vehicles, NEDC; the United States uses EPA testing, and Canada uses the 5-cycle test.

Where was the MSO HS sold?

The MSO HS appears in United States EPA figures for the 2016 model year.

Questions and answers

What does HS mean in McLaren MSO HS?

HS stands for High Sport; MSO is McLaren Special Operations, the marque’s bespoke division.

What engine does the MSO HS use?

It has a 3.8-litre petrol engine.

What is its EPA fuel economy?

Its combined EPA rating is 18 MPG, with a listed figure of 13.1 L/100 km.

Where was the MSO HS sold?

It appears in United States EPA figures for the 2016 model year.

All MSO HS versions

United States 1 version

Model years sold in the USA, from the EPA and the Department of Energy (fueleconomy.gov). MPG on the EPA test; litres per 100 km = 235.215 ÷ MPG.

Years and versionEngineFuelGearboxDriveConsumption (combined)CO₂
20163.8 LPetrol7-speed automaticRear-wheel drive18 MPG (13.1 L/100 km) EPA310 g/km

Official figures are measured on standard test procedures and differ between markets. Your consumption depends on how, where and in what conditions you drive.