What's the difference?
The Mercedes-Benz Sprinter range of vans and cab-chassis models competes for buyers in the Light Duty (3501-8000kg GVM) segment of Australia’s highly competitive Heavy Commercial vehicle market.
In 2024 the German manufacturer expanded its diverse turbo-diesel van range by launching a full-electric variant called the eSprinter, which for the first time offered local buyers the opportunity to drive with zero tailpipe emissions.
We recently spent a working week with this unique offering to assess how competently it could fulfil the diverse job requirements of private tradie buyers and fleet operators.
Meet Ford’s electric pioneer for Australia - the E-Transit.
It may not be as exciting as a Tesla Model S, Porsche Taycan or Audi e-tron, but this electric version of the Blue Oval’s large van will help create a new market for zero-emissions commercial vehicles.
This is seen as a major opportunity by Ford to provide an electric alternative to typically diesel-powered vans, which will no doubt prove popular with fleet operators looking to cut fuel costs and corporate emissions. While unlikely to suit all van buyers, thanks to its limited range and recharging restrictions, for those companies with shorter delivery routes it will certainly have appeal.
Ford’s research (performed by YouGov) suggests up to 58 per cent of business “can see EVs becoming part of their vehicle fleet in the future".
But it’s just Ford’s first step into the larger world of electric vehicles. We’ve already had confirmation the smaller E-Transit Custom is headed our way and there are good odds the Mustang Mach-E will eventually find its way to Australian showrooms, so there’s plenty of exciting models in store for Ford.
In the meantime, though, the E-Transit isn’t due in Australia until sometime in the first half of 2023, but CarsGuide was able to take one for a test drive near Ford’s Detroit headquarters recently to get a taste of what’s to come.
With the convenience of back-to-base charging the eSprinter would be well suited to last-mile logistics or other urban delivery roles, as its driving range is ample for many of these urban tasks with the added benefit of zero tailpipe emissions. However, at more than $100K it is a big spend (like its full-electric rivals) so only a thorough cost-benefit analysis can decide if it’s the right choice for your business.
Ford has taken an unorthodox approach to entering the electric vehicle market in Australia, avoiding the hype around the Mustang Mach-E and F-150 Lightning and instead laying the foundations with the E-Transit.
But it’s a savvy move, giving the brand a chance to enter what should be a largely untapped market with a vehicle that should appeal to what buyers are looking for. With unchanged space compared to the diesel-powered Transit, the switch to a more powerful electric powertrain makes the E-Transit a win-win scenario for those with a suitable daily driving routine.
Note: CarsGuide attended this event as a guest of the manufacturer, with travel, accommodation and meals provided.
This is a substantial vehicle riding on a 3665mm wheelbase and spanning almost 6.0 metres in length (5932mm) and more than 2.0 metres in width (2020mm without mirrors), yet it has a tight kerb-to-kerb turning circle of only 12.4 metres.
And with the optional High Roof as fitted to our example it stands almost 3.0 metres tall (2867mm), so drivers need to be conscious of this extra dimension when accessing underground loading zones, driving under height-restricted bridges etc.
Its rear-wheel drive unitary chassis features simple and rugged McPherson strut front suspension paired with a De Dion-style rigid beam/leaf spring rear axle, along with four-wheel disc brakes and electrically assisted power steering.
There’s prominent use of unpainted dark grey plastic in external areas where bumps, scrapes and wear are usually inflicted, including the grille, front bumper, hubcaps, doorhandles, door mirror shells, side bump-strips and rear bumper.
The cabin design is spacious, neat and functional, with unique instrumentation which replaces the traditional tachometer with a gauge that monitors driving efficiency. There’s also a digital info screen that displays average energy consumption, battery charge, estimated driving range, gear selection and more.
Perhaps the most interesting thing about the design is there’s nothing very different about the E-Transit compared to the regular Transit. Which is a good thing, because the Transit is already a popular delivery van so any change for the sake of difference may have messed with the winning formula.
In fact, the design element that is important is the way Ford has laid the battery packs flat inside the ladder-frame chassis which means none of the cargo space has been compromised. This means the E-Transit has the same load area as its internal combustion equivalent, which is key for any delivery van.
With its hefty 2727kg kerb weight (largely due to the battery) and 4250kg GVM, the eSprinter has a sizeable 1523kg payload rating. It’s also rated to tow up to 2000kg of braked trailer but with its 5000kg GCM (or how much it can carry and tow at the same time) that big payload must shrink to only 273kg to legally tow its maximum trailer weight.
That’s only enough payload capacity to cater for the weight of a two-man crew and little more so it’s important to be aware of these numbers if you’re planning to tow this heavy (although we suspect few if any owners would do so).
The cargo bay with the High Roof option is enormous, with 2009mm from floor to roof allowing even tall people to stand without stooping. Its load volume is a cavernous 10.5 cubic metres.
The load floor, which is protected by a hard non-slip surface, is 3375mm long and 1732mm wide with 1350mm between the rear-wheel housings. This allow up to two Aussie pallets or up to four Euro pallets to be carried, secured using a choice of 10 load anchorage points which fold flush with the floor when not in use.
Cargo bay access is through a sliding kerbside door with a big 1260mm-wide opening and a pair of rear barn doors which can open to a full 270 degrees on each side to optimise access to forklifts and loading docks.
The walls and sliding door are neatly lined to roof height and large handles inside both door openings assist access. There’s also bright LED lighting plus handy storage pockets in each rear door.
Its spacious cabin provides a comfortable and efficient workspace. The fabric-trimmed bucket seats offer generous head and legroom for driver and passenger and the ample open floor space between them features a sturdy cradle in which to carry the charging cable (see image).
There’s also ample storage including a large bottle-holder and multiple bins in each door plus a full-width overhead shelf with a key-lockable security box and a central glasses holder.
The top of the dash has two cupholders on each side (so, four in total) plus a large compartment with clamshell lid in the centre equipped with a 12V socket and three USB-C ports. There’s another shelf in the lower dash on the passenger side, a quartet of cupholders in the centre console and yet another compartment hidden beneath the passenger seat.
The cabin is very similar to what you’ll find in the Transit, so there will be familiarity for anyone making the switch from the diesel-powered version. The rotary shifter and 12.0-inch tablet-style multimedia screen make for a smart look but also means minimal space is wasted.
It’s a thoughtfully designed cabin, with plenty of usable storage spaces, including three cup-holders, a pair of bottle-holders and deep storage shelves on the top of the dashboard. The doors are particularly noteworthy, with multiple storage areas carved into the available space.
The seats are comfortable and, naturally with a high-roof van, there’s plenty of head room which creates a spacious feeling.
Behind the seats is the cargo area. In the US-specification E-Transit we drove there was a dividing wall between the cabin and the back of the van, with a small sliding door to access the cargo area, but it’s unlikely this will be offered in Australia. Instead, local models will likely have a hard divider between the cabin and back, with a small window for visibility.
As mentioned earlier, the floorspace in the E-Transit remains the same as the Transit thanks to the battery being laid underneath the floor, so there’s plenty of cargo volume that will please fleet buyers.
In the US the E-Transit’s cargo area measures 11.3-cubic-metres with the medium-height roof and expands to 12.4cu/m with the high-roof body.
Ford says the “targeted payload” will be 1616kg.
The local eSprinter range, which does not include a cab-chassis variant, offers a choice of van-based models comprising the MWB (Medium Wheelbase) with 81kWh motor for a list price of $104,313 and LWB (Long Wheelbase) with 113kWh motor for $121,041. This six-figure pricing is in the same ballpark as full-electric large van equivalents from Ford (E-Transit) and LDV (eDeliver 9).
Our test vehicle, finished in standard 'Arctic White', is the smaller MWB/81kWh model equipped with the optional High Roof (option code DO3) which adds almost half a metre (489mm) to its external height and $2392 (ex GST) to its price.
Its work-focused standard equipment includes 16-inch steel wheels with 225/75 R16 tyres and a full-size spare, DRLs and side marker lights, sealed cabin bulkhead with central window, electric-adjustable truck-style exterior mirrors, heated driver’s seat and exterior mirror, prestige leather-rimmed steering wheel with multiple remote control functions, colour 5.5-inch driver’s information display, reversing camera, front/rear parking sensors and tyre pressure monitoring to name a few.
The cabin also has an electronic parking brake, electric air-conditioning and heating plus multiple USB ports and 12V sockets. The latest 'MBUX' multimedia system features a large 10.25-inch touchscreen as central command offering voice activation, digital radio, wireless Apple/Android connectivity and more.
Ford Australia originally announced the E-Transit would arrive by “mid-2022” but that date has been pushed back thanks to the ongoing supply challenges faced by most car companies.
While the initial technical details have been confirmed - the first model available will be the 420L long-wheelbase version - the company hasn’t locked in detailed local specifications and pricing yet.
The closest comparison in the current Transit range is the 350L, which is available in both mid- and high-roof variants. Based on the model we test drove in the US, there are similar specifications between the two, including 16-inch steel wheels, partial-leather-trimmed seats and Ford’s SYNC4 multimedia system displayed on a 12.0-inch centrally mounted screen.
While pricing isn't confirmed, it's likely the E-Transit will carry a premium over the Transit so we'd estimate a starting price in the mid-$60,000 range.
The eSprinter is powered by a single electric motor producing 150kW of power and 400Nm of torque. It’s mounted under the rear floor where it drives the rear wheels through a single-speed transmission.
This compact motor-trans unit shares underfloor space with an 81kWh lithium-ion battery that provides the motor’s energy. This battery occupies most of the underfloor between the front and rear axles and features a slimline design to optimise ground clearance.
Drivers have a choice of three drive modes comprising 'Comfort', 'Economic' and 'Max Range', plus different levels of energy recuperation using steering wheel-mounted paddles that adjust the intensity of regenerative braking.
The electric motor also features a ‘boost’ function which temporarily increases power output when fast acceleration or overtaking is required. The eSprinter’s maximum speed is capped at 120km/h.
One element of the E-Transit we are clear on is what’s under the bonnet. The E-Transit is powered by an 198kW/430Nm electric motor that powers the rear wheels and draws energy from a 68kWh battery.
That means the E-Transit is the most powerful member of the Transit family, with the rest of the range powered by the 125kW/390Nm 2.0-litre four-cylinder turbo diesel engine.
Ford claims the E-Transit has a range of 317km (on the WLTP cycle), which may not sound like a lot for a commercial van but Ford claims in the US the daily average for such vehicles is only 120km.
In order to save charge, the E-Transit is equipped with an Eco Mode which limits top speed, regulates acceleration and limits climate control settings. Ford claims this allows the driver to cut energy usage by between eight to 10 per cent when driven at highway speeds or when unladen.
Mercedes-Benz’s official driving range for the 81kWh eSprinter, based on combined WLTP testing, is up to 264km. When we collected the vehicle for our test, the battery was fully charged but the estimated driving range displayed was only 234km, or 30km less than the official figure.
The eSprinter’s towering height also stopped us accessing local charging infrastructure (located inside multi-storey car parks) so our test was conducted using the initial single charge. This included a mix of suburban and city driving best suited to electric van use and covered a total distance of 190km.
At the completion of our test, the dash display claimed average energy consumption of 29kWh/100km, with 25 per cent battery charge remaining and 63km of estimated range. So, based on these figures, the official WLTP range of up to 264km is credible.
The eSprinter comes standard with a Mode 3/Type 2 charging cable and the charging port is in the centre of the grille behind a spring-loaded flap displaying a three-pointed star badge.
Mercedes-Benz claims 11kW AC charging of the 81kWh battery from 10-80 per cent takes around eight hours while 115kW DC fast charging reduces that to around 32 minutes.
Charging will be a key element of the E-Transit’s appeal (or not) to buyers, with fleets needing to maximise the van’s time on the road. Ford claims that with a 115kW DC fast-charger the E-Transit battery can go from 15 per cent charge to 80 per cent in just 34 minutes.
With the onboard 11.3kW charger it takes 8.2 hours to get the battery back to 100 per cent capacity.
The E-Transit supports bi-directional use of the battery too. In the US the E-Transit is available with its Pro Power Onboard technology as an option. This allows for the driver to draw up to 2.4kW of power from the vehicle’s battery to power tools and other equipment as necessary.
One feature that is confirmed for the Australian-bound E-Transit is what Ford calls, Scheduled Pre-Conditioning. This is a system that allows the operator to pre-set the climate control for the cabin while the van is still on charge so that you can still have maximum charge available when you start driving.
There are large handles on the front door window frame and overhead shelf to assist climbing aboard, where you’ll find a comfortable and commanding driving position.
This is thanks to supportive seating (albeit with no lumbar adjustment), ample steering wheel height/reach positioning and a spacious footwell, combined with a clear rear view through the bulkhead window and along the sides thanks to large truck-style mirrors.
The leather-rimmed steering wheel feels nice in your hands, all major controls are easy to see and operate and the electric air-conditioning and heating systems are effective.
It’s a pleasant vehicle to drive as the most noise you hear is the tyres, given the near silence of the rear-mounted motor and drivetrain. The underfloor location of the battery also creates a low centre of gravity, which optimises handling with minimal body lean when cornering.
Unladen ride quality is excellent, enhanced by the weight of the battery which helps the suspension iron out bumps. And the electric motor’s 400Nm of torque provides energetic performance, with acceleration delivered in a smooth liquid-like surge.
Selecting the strongest regenerative braking not only optimises energy harvesting for the battery but also creates enough retardation to ensure mostly single-pedal driving (accelerator only) as the brake pedal is rarely required. This mode is also handy on steep descents.
To test its payload rating we forklifted 975kg into the cargo bay, which combined with our two-man crew equalled a total payload of 1155kg that was still comfortably below its legal limit.
The rear leaf springs compressed less than 30mm under this loading, leaving ample bump-stop clearance to ensure no bottoming out on our test route. The e-motor’s response was more subdued as you’d expect but it still hauled this payload with apparent ease.
Overall, the driving experience was hard to fault, apart from the vertical pillar between the fixed and sliding glass in the driver’s door blocking the outer third of the exterior mirror’s view, at least with the driver’s seat positioned far enough rearwards to suit my 186cm frame.
We also noted, when travelling at highway speeds on a windy day, that our test vehicle was prone to being moved within its lane by strong crosswinds, even though ‘Crosswind Assist’ is included in the active safety menu.
We suspect the High Roof option was responsible for this given the larger bodysides it creates and is something to be mindful of when driving in high wind conditions.
Electric vehicles have earned a reputation for rapid, exciting acceleration… but that’s not the case with the E-Transit. Performance could best be described as modest, with adequate but unspectacular acceleration.
Which is fine, because the E-Transit is not meant to be a ‘ludicrously’ quick van, instead it’s meant to haul a load as efficiently as possible. On that front it does a good job, with smooth (albeit gentle) acceleration and steady pulling power.
It’s important to note, though, that our test car was unladen - with only some shelving installed in the back. So we’ll have to reserve judgement on how the E-Transit performs with a full load on-board, on Australian roads.
The rest of the driving experience is as you’ll find with the Transit. The steering is nicely weighted and direct, which makes manoeuvring such a huge vehicle straightforward.
The ride is on the firm side, which isn’t unusual for either a van or an electric vehicle as it needs to control so much weight, but it isn’t uncomfortable and offers good control.
There’s no ANCAP star rating for commercial vans above 3.5-tonne GVM but the eSprinter did score the maximum Platinum grade in ANCAP’s Commercial Van Safety Comparison in 2024.
It comes standard with six airbags, active distance assist (can automatically brake and accelerate in traffic), lane-keeping, multiple blind-spot monitoring, rear cross-traffic alert, tyre pressure monitoring, reversing camera, front/rear parking sensors, crosswind assist and many more.
The current Transit is not rated by ANCAP, as is the case with most of its full-size van rivals because the safety authority tends to focus on the mid-size vans - such as the Transit Custom, Toyota HiAce and Hyundai Staria-Load.
However, the E-Transit does have a solid safety package, with driver and passenger front, side and curtain airbags all standard. While the E-Transit’s local safety package isn’t locked in, the Transit already boasts autonomous emergency braking with pedestrian detection, lane-keep assist with lane-departure warning, rollover mitigation, side-wind stabilisation, trailer sway control and traffic-sign recognition, so it’s probably a safe bet these will all be included on the E-Transit.
We drove the high-roof E-Transit in the US and with a high-mounted reversing camera it was surprisingly easy to navigate for such a big vehicle.
Then eSprinter comes standard with a five-year/250,000km warranty including 24/7 roadside assist for the same duration. There’s also a separate eight years/160,000km warranty covering the lithium-ion battery.
Scheduled servicing is every 12 months/40,000km whichever occurs first. Capped pricing applies to the first five scheduled services totalling $1920, or an average of $384 per service. Pre-paid service packages offer additional savings.
Ford Australia has already confirmed that the E-Transit will be covered by Ford’s now-standard five-year, unlimited kilometre warranty, plus an extended eight-year/160,000km warranty specifically for the battery and high-voltage electric components.