Califooooorniaaaaaa here we coooommmmeeeee (autonomously). Mercedes-Benz has just announced that its SAE Level 3 autonomous driver assist system, DRIVE PILOT, has been certified to operate in the entire state of California, beginning with a couple of familiar models.
Mercedes-Benz’s DRIVE PILOT first debuted on the speedy roads in Germany in May of 2022, but we at Electrek have had the chance to experience it (to some level) in the US with adult supervision. The automaker’s “DISTRONIC Active Distance Assist” builds upon the long-established Level 2 autonomy MB has been delivering for years and takes it to another echelon.
The driver assistance feature ensures the EV maintains a preselected distance from the vehicle in front of it while also maintaining other standard operations like lane keeping and active steering.
However, since DISTRONIC still requires the driver to keep their hands on the wheel, it remains classified as SAE Level 2. That is not the case for DRIVE PILOT. This Level 3 technology still uses the existing surround sensors of the Mercedes’ Driving Assistance Package in an EQS, for example, but also utilizes additional sensors, including LiDAR and a camera in the rear window.
DRIVE PILOT even uses microphones to detect approaching emergency vehicles along with a road wetness sensor in the wheel well. Throw in redundant steering, braking actuators, and an onboard electrical system, and Mercedes EVs equipped with DRIVE PILOT are loaded with fail-safes in case one system struggles.
That’s why Mercedes-Benz is one of the few automakers to achieve Level 3 autonomous driving certification from the Society of Automotive Engineers (SAE) and a reason why the most populous territory in the US is allowing it to operate.
Credit: Mercedes-Benz
California joins Nevada in Level 3 autonomous driving
The German automaker shared details of its latest US certification this afternoon, relaying that California state authorities have approved the technology to operate under conditional circumstances.
The Golden State now joins Nevada as the second in the US to allow DRIVE PILOT, while Mercedes-Benz simultaneously earns the crown as the first automaker in both states approved for Level 3 autonomous driving on public roads in a standard-production.
Unlike the Level 2 ADAS systems mentioned above, like Tesla’s Autopilot and Ford’s BlueCruise that’s currently expanding in the US, Mercedes’ DRIVE PILOT enables the driver to take their hands off the wheel and eyes off the road – when engaged, the vehicle is liable for anything that happens. Markus Schäfer, member of the board of management of Mercedes‑Benz Group AG and chief technology officer responsible for development and procurement, elaborated:
Mercedes-Benz DRIVE PILOT is the world’s only SAE Level 3 system with internationally valid type approval. It builds on a very robust foundation, setting new industry standards. DRIVE PILOT uses a highly sophisticated vehicle architecture based on redundancy with a multitude of sensors enabling comfortable and safe conditionally automated driving. The certification by the authorities in California and in Nevada once again confirms that redundancy is the safe and thus the right approach.
While Mercedes-Benz’s final iteration of DRIVE PILOT is striving toward Level 3 autonomous driving at speeds of up to 80 mph, it’s not quite there yet. Like Nevada, California will allow Mercedes EV drivers to engage DRIVE PILOT on certain freeway sections with high traffic density – the driver assistance system can then take over speeds up to 40 mph.
From there, DRIVE PILOT will control the vehicle’s speed, distance, and lane guidance, monitoring any and all traffic signs and other events occurring on the route while reacting to unexpected traffic situations independently through “evasive maneuvers within the lane” or by braking. Remember all that talk about extra safety and fail-safes? Mercedes-Benz explains further:
If the driver fails to take back control even after increasingly urgent prompting and expiration of the takeover time (e.g., due to a severe health problem), the system brakes the vehicle to a standstill in a controlled manner while engaging the hazard warning lights. Once the vehicle has come to a standstill, the Mercedes‑Benz emergency call system is activated and the doors are unlocked to ensure the vehicle is accessible for first responders.
We’re seeing similar technology being implemented in other upcoming EVs, like Volvo’s EX90, which utilizes LiDAR. According to Mercedes, DRIVE PILOT will come equipped on DRIVE PILOT in 2024 model year EQS sedans in the US, with the first deliveries expected in late 2023. As you may have guessed, MB intends to expand the availability of DRIVE PILOT to additional markets in the future.
What do you think? Do you trust Mercedes-Benz’s Level 3 autonomous driving? Is it a selling point for you to buy one of its EVs?
FTC: We use income earning auto affiliate links.More.
Ford is jumping into the battery energy storage business, betting that booming demand from data centers and the electric grid can absorb the EV battery capacity it says it’s not using.
To achieve this, Ford plans to repurpose its existing EV battery manufacturing capacity in Glendale, Kentucky, into a dedicated hub for manufacturing battery energy storage systems.
Ford pivots from EVs to battery storage for data centers
Ford says it will invest about $2 billion over the next two years to scale the new business. The Kentucky site will be converted to build advanced battery energy storage systems larger than 5 megawatt-hours, including LFP prismatic cells, BESS modules, and 20-foot DC container systems — the kind of hardware increasingly used by data centers, utilities, and large-scale industrial companies.
The company plans to bring initial production online within 18 months, leaning on its manufacturing experience and licensed battery technology. By late 2027, Ford expects the business to deploy at least 20 gigawatt-hours of energy storage annually.
Advertisement – scroll for more content
The move follows a joint venture disposition agreement reached last week between Ford, SK On, SK Battery America, and BlueOval SK. Under the agreement, a Ford subsidiary will independently own and operate the Kentucky battery plants, while SK On will fully own and operate the Tennessee battery plant.
Ford is also planning a separate energy storage play in Michigan. At BlueOval Battery Park Michigan in Marshall, the company will produce smaller amp-hour LFP prismatic cells for residential energy storage systems. That plant is on track to begin manufacturing in 2026, and it will also supply batteries for Ford’s upcoming midsize electric truck — the first model built on the company’s new Universal EV Platform.
Electrek’s Take
Overall, the shift reflects Ford’s broader push toward what it calls “higher-return opportunities.” Alongside taking a step backward to add more gas-powered trucks and vans to its US manufacturing footprint, Ford says it will no longer produce some larger EVs, such as the Lightning F-150, where softer demand and higher costs are resulting from the lack of support for EVs by the Trump administration. (Batteries produced at the Glendale plant were for the all-electric Ford F-150 Lightning. The best-selling electric truck in the US in Q3, before the federal tax credit expired, was the Ford F-150 Lightning, with 10,005 EVs sold, a 39.7% year-over-year increase.)
With tax credits eliminated and regulatory uncertainty, Ford is pivoting to adjacent markets, including grid-scale and residential energy storage, to keep its battery plants running and justify billions in sunk investment.
If you’re looking to replace your old HVAC equipment, it’s always a good idea to get quotes from a few installers. To make sure you’re finding a trusted, reliable HVAC installer near you that offers competitive pricing on heat pumps, check out EnergySage. EnergySage is a free service that makes it easy for you to get a heat pump. They have pre-vetted heat pump installers competing for your business, ensuring you get high quality solutions. Plus, it’s free to use!
Your personalized heat pump quotes are easy to compare online and you’ll get access to unbiased Energy Advisors to help you every step of the way. Get started here. – *ad
FTC: We use income earning auto affiliate links.More.
Stellantis may have backed away from planned EVs like the all-electric Ram REV and range-topping Dodge Charger Daytona R/T EV, but the company isn’t standing still. A newly awarded patent outlines an innovative, foam-based thermal runaway suppression system that’s built into an EV’s battery pack.
The indisputable fact of the matter is that electric vehicles catch fire far less often — and far less frequently — than their combustion-powered brethren. Still, a number of highly-publicized early Tesla fires and poorly managed recall on the first-gen Chevy Bolt have linked “electric car” and “fire” in the minds of many Americans, and the ones who have been waiting to test the EV waters until a better safety solution came along are going to absolutely love this latest setup from Chrysler parent company Stellantis.
MoparInsiders is reporting on a new Stellantis patent awarded on a proactive battery safety system that’s designed to stop thermal runaway (read: fire) before it can cascade through an entire EV battery pack.
Rather than relying solely on passive barriers or post-event containment, Stellantis’ freshly patented system uses strategically placed foam channels and deployment mechanisms that can flood the affected cells with high insulation foam when abnormal heat is detected in a cell, isolating the problem area and dramatically slowing (if not outright stopping) the chain reaction that leads to catastrophic battery failure.
Advertisement – scroll for more content
The patent describes an electric car battery that, on the outside, will look familiar to EV enthusiasts, but there are some key differences “layered in” around the familiar bits. These include:
A bladder filled with a fire-retardant chemical; located close to the battery cells, typically between the cells and the top of the pack. It’s made from a flexible polymer, so it can be punctured when needed
Two sets of blades; the first aimed at the bladder, ready to pierce it and release the fire-retardant chemical while the second targets specific points on the coolant inlet line, outlet line, or heat sinks to rupture them and release cooling foam directly where it’s needed
Special coolant line sections; designed with small sealed apertures that closed off with a soft plug material that’s easy for the blades to pierce but strong enough to maintain pressure during normal operation
Actuation devices tied to a controller; that push the blades into the bladder and coolant components when a thermal event is detected
Special coolant lines
Fire suppressant cooling lines; via Stellantis.
The system relies on a suite of existing temperature sensors throughout the battery pack, and seems like a viable enough solution to a problem that, while rare, certainly exists — and which looms large over America’s Early Majority tech adopters.
As for me, I think Stellantis should focus on bringing more compelling products to market and stop looking for ways to blame the customer, market, and government for its inability to sell Jeep products that, apparently, have enough markup to cover nearly $30,000 in discounts to help dealers move their metal. I look forward to hearing about your take in the comments.
If you’re considering going solar, it’s always a good idea to get quotes from a few installers. To make sure you find a trusted, reliable solar installer near you that offers competitive pricing, check out EnergySage, a free service that makes it easy for you to go solar. It has hundreds of pre-vetted solar installers competing for your business, ensuring you get high-quality solutions and save 20-30% compared to going it alone. Plus, it’s free to use, and you won’t get sales calls until you select an installer and share your phone number with them.
Your personalized solar quotes are easy to compare online and you’ll get access to unbiased Energy Advisors to help you every step of the way. Get started here.
FTC: We use income earning auto affiliate links.More.
It’s official. The all-electric pickup is dead, but Ford is promising the F-150 Lightning EREV will be “every bit as revolutionary” as it shakes up EV plans once again.
Ford reveals next-gen F-150 Lightning EREV
Ford confirmed production of the current F-150 Lightning has ended as part of its updated Ford+ plan, which the company revealed on Monday.
The changes come as part of a broader shift from larger EVs, like the Lightning, to smaller, more affordable models.
While Ford still plans to launch lower-cost EVs based on its Universal EV Platform, the company is expanding its hybrid and extended range electric vehicle (EREV) lineup. By 2030, Ford expects 50% of its global volume to be hybrids, EREVs, and EVs, up from 17% in 2025.
Advertisement – scroll for more content
As part of its new plans, Ford said the next-generation F-150 Lightning will switch to an EREV powertrain. It will be assembled at the Rouge EV Center in Dearborn, Michigan, replacing the current all-electric pickup.
Ford F-150 Lightning production (Source: Ford)
With production of the current-generation Lightning now concluded, Ford is sending workers from the Rouge EV Center to its Dearborn Truck Plant as it doubles down on gas and hybrids.
During its Q3 earnings call last month, Ford said the electric pickup would remain paused following a fire at Novelis’ plant in New York that disrupted aluminum supply.
(Source: Ford)
The F-150 Lightning is a “groundbreaking” vehicle, according to Doug Field, Ford’s chief EV, digital, and design officer, that showed an electric pickup can be a great F-Series.
Field claims the “next-generation Lightning EREV is every bit as revolutionary.” It will still offer 100% electric power delivery, sub-5-second acceleration, an estimated combined range of 700+ miles, and it “tows like a locomotive.”
Ford also plans to replace its electric commercial van for North America with affordable gas- and hybrid-powered versions. It will be assembled at Ford’s Ohio Assembly Plant.
Ford F-150 Lightning production at the Rouge EV Center (Source: Ford)
The move comes as part of Ford’s plans to launch five new affordable vehicles by the end of the decade, four of which will be assembled in the US. Ford also plans to offer gas, hybrid, and EREV options across nearly every vehicle in its lineup by then.
The first vehicle based on Ford’s new Universal EV Platform will be a midsize electric pickup, starting at around $30,000. It’s expected to be about the size of the Ranger or Maverick.
CEO Jim Farley presents the Ford Universal EV Platform in Kentucky (Source: Ford)
The news comes after SK On announced last week that it planned to end its joint venture with Ford to build EV batteries at three US gigafactories.
Ford is now planning to use the wholly owned EV battery plants in Kentucky and Michigan to launch a new battery energy storage business. The company plans to begin shipping BESS systems in 2027, with an annual capacity of 20 GWh.
“The operating reality has changed, and we are redeploying capital into higher-return growth opportunities: Ford Pro, our market-leading trucks and vans, hybrids, and high-margin opportunities like our new battery energy storage business,” CEO Jim Farley said on Monday.
The changes are designed to improve profitability and returns. Ford’s EV business, Model e, is now expected to reach profitability by 2029 with improvements in 2026.
Model e lost another $1.4 billion in Q3, bringing the total to $3.6 billion through September. Around $3 billion was due to its current EVs, while the other $600 million was spent on its next-gen models.
Although sales of the F-150 Lightning dropped 60.8% last month following the expiration of the $7,500 federal EV tax credit, Ford’s electric pickup remained the best-selling pickup in the US through September.
FTC: We use income earning auto affiliate links.More.