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After teasing glimpses of its first all-electric 5 Series for weeks, BMW has globally debuted the first two available trims of the i5, including an M performance version with 590 horsepower. The German automaker has introduced a lot of new technology in its latest generation of its long-running series, including in-car gaming, a range conservation mode, and eye activated lane changes.

Table of contents

Finally! The all-electric BMW 5 Series has arrived

We’ve been talking about an all-electric 5 series for six years now, but it wasn’t until recently that BMW began hinting at its inevitable arrival.

As a combustion model, the 5 series has been a staple in BMW’s lineup since 1972 and remains the German automaker’s second best-selling vehicle behind the 3 series. We saw BMW kick off its all-electric models with the i3, and the automaker has used that now-defunct EV as an appetizer to larger, better-performing models, like the revamped i4 sport coupe, iX SUV, and i7 sedan.

For months now, we’ve known an all-electric version of the 5 Series was in the works alongside plug-in and combustion variants, but we didn’t really get a feel for what to expect in the new i5 until late April when the sedan was seen enduring summer testing. Still, those images were camo’d.

Last week, we got our first genuine image of the all-electric BMW i5 which we can now recognize as the eDrive40 (seen below). Today however, BMW has pulled the entire veil off both all-electric 5 Series variants, and there’s a lot to get excited about if you’re a fan of the brand.

The electric BMW i5 is longer, wider, taller, and lit up

Boy are German automakers passionate about their work. Their pride in new features is apparent in their consistently “detailed” press releases that leave no tidbits of information left to the imagination. There’s only so much we can cover before you scroll on, so we recommend checking out BMW’s latest press release for all the details of the i5.

The new lineup of the 5 Series is larger all around compared to its previous generation. Its length has been stretched by 3.4 inches to 199.2, it’s wider by 1.3 inches (74.8 in total), and it’s taller by 1.4 inches (59.6 inches in all). As a result of the length, the 5’s wheelbase has been increased by 0.8 inches to 117.9, adding a tad of interior seating space, particularly in the back.

At launch, BMW will provide two all-electric variants of the i5 that feature the automaker’s fifth-generation eDrive technology. Customers can choose from a single-motor RWD i5 eDrive40, or an M60 xDrive performance model, positioned as the pinnacle of the entire 5 Series range.

The M60 variant especially showcases some new exterior features joining the 5 Series, including a black front apron with large air intakes, a grill featuring horizontal slats and the recognizable M performance logo, side skirts and exterior mirror caps finished in high-gloss black, and 19″ M light-alloy wheels.

BMW has also introduced an M Sport Package available to add to all versions of the 5 Series that includes an illuminated kidney grill framed in high-gloss black (seen above), M Shadowline headlights, and a rear spoiler. Customers can also add red calipers to the brakes if they just co choose.

Game on! The 5 Series gets an interior facelift

Moving inward, BMW has introduced a new fully-digital curved display which the automaker states now “represents the heart of the interior redesign.” The electric i5 models will come standard with a new Interaction Bar complete with ambient lighting in the instrument panel and door areas, plus a new gear selector switch in the center console.

The new frameless curved display is comprised of a 12.3″ information screen behind the steering wheel and a 14.9″ control display, merged into one high-­resolution unit powered by BMW’s latest generation Operating System 8.5 – complete with a new graphic display, start screen, and “QuickSelect” access.

BMW says OS 8.5 offers more digital information and entertainment to future drivers, including new streaming programs and for the first time ever in a 5 Series – in-car gaming thanks to the AirConsole platform.

While the EV is stationary, the driver and their passengers can connect their smartphones using a QR code on the curved display, and use them as controllers to begin gaming instantly. BMW says AirConsole already has about 20 game titles including Go Kart Go, which looks similar enough to MarioKart that I’m surprised legal action has not been taken.

Anyways, you can game while you charge, nice!

electric BMW i5

Hands-free driving and eye activated lane changes

One of the cooler features on the upcoming electric i5 is BMW’s optional Driving Assistance Professional package, which includes Highway Assistant. This ADAS features enables the i5 driver to operate hands-free at speeds up to 85 mph where conditions and speed limits allow, as long as they keep their eyes up.

The driver’s attention is continuously monitored by an interior camera, and they are fully responsible for driving and anything that happens on the road, even when Highway Assistant is activated. That means this is still a Level 2 autonomy feature at best.

BMW has utilized its eye monitoring technology in a new and unique way that alleviates the need to activate a turn signal in order to initiate a proposed hands-free lane change. When BMW begins deliveries, electric i5 owners will be able to confirm the movement by simply peering over to the respective sideview mirror.

The i5 can recognize the visual cue, then perform the lane change at speeds again, up to 85 mph (traffic conditions and speed limits permitting). Can’t wait to try this feature out.

Specs, pricing, and an introductory video

Alright, it’s been a journey to get here, but let’s dig into how these two versions of BMW’s first all-electric 5 Series break down. As we previously mentioned, initial customers will get to choose between the standard RWD i5 and the dual-motor M variant.

The i5 M60 xDrive as well as an eDrive40 donning the optional M Sport package, come equipped with a shift paddle left of the steering marked “Boost” that can be tapped to activate the electric BMW’s full drive power and trigger maximum acceleration. The i5’s electric sound design also automatically shifts to “sport” to add to the sensory driving experience.

The single motor in the rear of the electric BMW i5 eDrive40 delivers a maximum power output of 335 hp and of 295 lb-ft maximum torque (317 lb-ft when the Sport Boost or Launch Control function is activated). Its acceleration from 0-60 mph is laggard 5.7 seconds and its max speed has been electronically limited by BMW to 120 mph. The automaker also described what the i5 M60 is packing:

Two highly integrated drive units on the front and rear axles, in which the electric motor, power electronics, and transmission are compactly combined in a common housing, form an electric all-wheel drive system that enables the BMW i5 M60 xDrive to deliver captivating dynamic performance. The electric motor acting on the rear wheels generates a maximum power output of 335 hp, while the motor at the front axle produces 257 hp. The total system torque generated by both motors is 549 lb-ft, or 605 lb-ft when M Sport Boost or the M Launch Control function is activated.

The new BMW i5 M60 is significantly quicker than the eDrive40, accelerating 0-60 mph in 3.7 seconds. Its max speed has been electronically limited to 143 mph when equipped with performance tires (130 mph with all-season tires).

Like the motors themselves, BMW’s battery packs also make up its fifth-generation iDrive unit and consist of four modules with 72 battery cells each and three modules with twelve cells each. The modules combine for a usable capacity of 84.3 kWh and deliver the following estimated ranges and charge rates:

  • The i5 eDrive40 is estimated to travel up to 295 miles on a single charge on 19″ wheels (BMW estimated, not EPA)
  • i5 M60 xDrive delivers a (BMW) estimated 256 miles of range
  • Combined Charging Unit enables Level 2 AC charging up to 11 kW
  • The i5 can reach a rate of 205 kW on a DC fast charger, replenishing from 10% to 80% in about 30 minutes

To help conserve range during dire situations, BMW has introduced a new drive system function owners can activate called Max Range. In this mode, drive power and top speed are restricted, while comfort functions are reduced to conserve battery power. Per BMW:

Max Range mode is primarily for critical situations where drivers are unable to recharge mid-journey where they had originally planned and must continue to an alternative charging point. The Max Range mode can be selected using the control display’s touchscreen functionality, the iDrive Controller, or voice commands to the BMW Intelligent Personal Assistant. It can also be deactivated by full-throttle acceleration (kickdown), engaging the M Sport Boost function, or switching the window defrost to maximum.

Still with us? Almost done, promise.

The new all-electric i5 models will be be built at Plant Dingolfing, BMW’s largest European plant – which has been home to Series 5 production since its birth 50 years ago. The global market launch will begin in October 2023 with the all-electric versions and will be followed by plug-in hybrid variants in the US in 2024. Here’s how initial pricing will break down.

  • i5 eDrive40 – $66,800 (+ $995 destination and handling)
  • i5 M60 xDrive – $84,100 (+ $995 destination and handling)

Want to see more? Check out the introductory video of the all-electric i5 posted to BMW’s YouTube page today.

Are you into the first electric 5 Series? Is the eye activated lane change a gimmick or the future of hands-free? Tell us what you think in the comments!

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US Gov’t set to spend $46 million to electrify container ports

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US Gov't set to spend  million to electrify container ports

Multi-million-dollar grants adding up to more than $46 million from the US Federal Highway Administration (FHWA) will help support electrification efforts at several American ports.

The Long Beach Container Terminal (LBCT) in Long Beach, California has received a $34.9 million grant from the FHWA to replace 155 on-site commercial trucks and buses with zero-emission vehicles (ZEV). The grant will fund both the purchase of new electric trucks and the necessary charging infrastructure to support them.

LBCT said the grant dollars will allow it to continue its multi-billion dollar investments in more sustainable logistical operations. “Our vehicle electrification project, coupled with previous investments, enables LBCT to achieve a unique status that is reframing the way the world views sustainable goods movement, enhancing community quality of life and climate change,” said Anthony Otto, CEO of LBCT.

Real progress at Port of Long Beach

Long Beach Container Terminal, photo by LBCT.

Back in 2018, Power Progress reported that the Port of Long Beach had plans to install zero-emissions cranes and cargo handling equipment at its terminals. True to its word, the port has invested more than $2.5 billion to convert its cranes and terminal tractors vehicles to electric equipment. It’s a project that LBCT says has led to an 86 percent (!) reduction in harmful carbon emissions.

“This investment is a huge win for clean air, electrification and the region,” said US House Rep. Robert Garcia. “These federal dollars will make our port cleaner, safer and help us meet our climate goals.”

In a separate announcement, charging infrastructure operator Voltera said that its sites in California and Georgia would receive $11.4 million of the FHWA funding.

Electrek’s Take

No matter what you call it… …yard dog, yard truck, terminal truck, hostler, spotter, shunt truck, yard horse, goat, mule … …Orange EV pure electric trucks deliver.
e-Triever terminal tractor; via Orange EV.

Container ports used to be some of the dirtiest, most heavily polluted areas in the world. That was bad for everyone – but it was especially bad for the people who lived and worked near them. That’s why any positive change is good. Beyond just “positive change,” however, ports today seem to be leading the way when it comes to electric vehicle and hydrogen adoption.

How things change!

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Kramer shows off electric wheel loader and telehandler at Intermat

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Kramer shows off electric wheel loader and telehandler at Intermat

German equipment manufacturer Kramer showed off a pair of zero-emission equipment options at the Paris Intermat show last week – the 5065e electric wheel loader and 1445e electric telehandler.

Kramer says the quiet operation of its new electric wheel loader and telehandler are ideal for noise-sensitive areas such as city centers, cemeteries and golf courses, hotels, and suburban parks and recreation areas, where it can operate without emitting harmful diesel particulate matter and other forms of air pollution.

Kramer-Werke GmbH is serious about promoting its new EVs in the French market. “That’s why Intermat is an important platform for us,” explains Christian Stryffeler, Kramer’s Managing Director. “We are also looking forward to showcasing our new generation of (electric) wheel loaders and telescopic wheel loaders here.”

Kramer 5065e wheel loader

The 5065e loader is powered a 37.5 kWh, 96V lithium-ion battery that’s good for up to four hours of continuous operation – which is a lot more than it sounds, considering idle time in an EV doesn’t drain batteries the way idling a diesel drains fuel. A 23 kW (30 hp) electric motor drives the electric wheel loader around the job site, while a 25 kW (approx. 35 hp) motor powers the machine’s 40 liters hydraulic system.

Kramer says the battery on its electric loader can be fully charged in just 5.1 hours using a “Type 2 Wallbox” (that’s an L2 charger to you and me). Max payload is 1750 kg, with a 2800 kg tipping load. Top speed is 20 km/h (approx. 12.5 mph).

Kramer 1445e telehandler

The 1445e telehandler uses a 96V battery architecture that’s similar to the one in the wheel loader, but in a smaller 18 kWh or 28 kWh pack. This enables a fleet manager to right-size their equipment’s batteries to provide four hours of run time in different types of work environments. And, also like the wheel loader, a 23 kW (30 hp) electric motor provides the drive while a 25 kW (approx. 35 hp) powers the hydraulics.

Level 2 charging comes standard on Kramer’s electric telehandler, enabling a full charge of the larger, 28 kWh battery in about five hours. Max payload is 1450 kg.

Electrek’s Take

Kramer 5056e electric wheel loader; image via Kramer.

It’s always good to see more manufacturers pushing out electric equipment options. It’s still the “wild west” out there, even more so than in automotive, and Kramer’s offerings seem to be a step behind in some ways (no DCFC capability) and ahead in others (96V where others are 48V), so it’s hard to know where they stand.

More than anything, the lesson seems to be that fleet managers need to choose wisely when they choose to electrify – and work closely with the dealers and OEMs to ensure that they’re buying the right tool for the right job.

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Watch this autonomous excavator build a 215 foot retaining wall [video]

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Watch this autonomous excavator build a 215 foot retaining wall [video]

The robotics experts at ETH Zurich have developed an autonomous excavator that uses advanced AI to help it complete high-skill tasks without a human operator.

Dry stone wall construction typically involves huge amounts of operator labor. Doing it right requires not just hours of labor, but hours of skilled, experienced labor. At least, it used to. If the crew at ETH is successful, building stone retaining walls will soon become a “set it and forget it” task for robots to complete. Robots like their HEAP excavator.

HEAP (Hydraulic Excavator for an Autonomous Purpose) is a customized Menzi Muck M545 developed for autonomous operation that uses electrically-driven hydraulics to operate an advanced boom arm equipped with draw wire encoders, LiDAR, Leica iCON site-mapping, and a Rototilt “wrist” on the end that makes it look more like a high-precision robotic arm than a traditional heavy equipment asset.

ETH HEAP tech stack

Image via ETH Zürich.

Which makes sense. After all: the ETH guys are roboticists, not skilled heavy equipment operators. So, how does their robot do against skilled operators?

“We are currently outperformed by human excavator operators in placement speed,” ETH researchers wrote in Science Robotics. “Such operators, however, typically require string and paint references with which to register their construction and often a second or third person outside the machine to provide guidance and to insert small supporting stones, gravel, and soil by hand and shovel. In contrast, our process can build complex nonplanar global surface geometries without physical reference markers, does not require a skilled driver or small supporting stones, and provides a full digital twin of the built structure for better accountability and future reuse.”

Translation: the robot is slower, but it gets the job done.

You can watch the ETH HEAP put all its onboard tech to work building a 215 foot long, 20 foot high retaining wall all on its own in the video, below.

Autonomous excavator constructs dry stone wall

The completed project can be seen at Circularity Park in Oberglatt, Switzerland, and illustrates the potential for autonomous equipment to build with irregularly-shaped materials. And with skilled operators in short supply everywhere, the potential to free up operators so they can go where they’re really needed.

Electrek’s Take

ETH Zürich’s robot excavator has been in development for years, with numerous white papers exploring its potential uses in construction and agriculture published on the company’s site. It’s quite a rabbit hole, as internet deep-dives go, and I highly recommend it.

That said, the electrically driven hydraulics and high-precision Rototilt wrist on the end of the boom arm’s “claw” alone make this futuristic excavator worth some attention. As more and more manufacturers switch to full electric or even “just” electric drive, research into better solutions for existing hydraulic equipment and expertise could lead to big market wins.

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