We heard a little more about Rivian’s upcoming plans to open its Rivian Adventure Network chargers at a roundtable discussion with CEO RJ Scaringe this week.
Rivian has been working on its own in-house charging network since 2020, with a focus of placing charging sites on the way to the sort of beautiful natural places that it has tied so much of its brand to.
For a primary example of this, Rivian opened its first “Charging Outpost” just outside Yosemite National Park in July, renovating an old gas station into a very cool ranger cabin-style spot to stop and refuel your car – and also yourself.
Now, it’s ready to open its network to other brands, which it announced last April. The goal was to open by the end of 2024 – which is fast approaching.
While Rivian stopped short of announcing a date for this at our roundtable discussion, it was clear that the announcement is coming “very soon.”
Scaringe told us that he was just reviewing the software that non-Rivian customers will use and that “it’s gonna be awesome.” So it sounds like there’s a plan to offer a separate app experience for non-Rivian owners, likely through the Rivian app (thus ballooning the number of apps that every EV owner needs to have… we need to do something about that).
Scaringe told us that RAN has now expanded to a total of 91 sites and around 700 chargers – which he says is around 4% of the size of Tesla’s Supercharger network, but that RAN has maintained high uptime as it scales. Scaringe said that if you would have asked him 6-7 years ago, he would have expected more successful third-party charging companies by now., but that now, out of all the charging networks out there, there are “only two great networks – and only one great scaled network,” namely Tesla Superchargers.
The others, which aren’t owned by an EV manufacturer, just aren’t as good. RAN and Tesla have ~99% uptime, where Scaringe said that other networks have sub-70% or even sub-50% uptime (this may be an underestimate – or maybe not – but the point stands that every EV driver can tell you Tesla is the gold standard here).
So Rivian sees it as important to electrification to offer another great network that can help give drivers more choices, more availability, and high reliability.
But how will that interface with the NACS transition? Rivian was early to hop aboard and announce that it will shift to using NACS and ship adapters to its owners, though its current vehicles still have native CCS ports even post-refresh (the Koreanbrands will be the first to offer native NACS ports on their vehicles).
We were quite interested in the timeline of who started the discussions to shift to NACS, and Scaringe told us that it was pretty much universal across the industry that as soon as Tesla released its NACS whitepaper calling it an open standard, car companies started talking amongst themselves about the potential of finally harmonizing on a single charging standard.
As of now, Rivian is still installing CCS cables, not NACS ones. It sounded like it intends to keep doing this for the foreseeable future, and that “the charging network will catch up” as cars transition to NACS. Until then, people can use adapters – and “in the long term, everything will go to NACS” as it’s just a better standard, and whatever remaining CCS cars exist will just end up using adapters.
This seems a little strange to make cars that aren’t (natively) supported on your own charging network, but Scaringe said that that’s the benefit of owning the network – cables are not too hard to swap out. So it would be easy to just change out the cable heads on existing chargers without having to build new sites or install new cabinets.
We asked whether they’d try a dual-charging-head strategy, with NACS and CCS heads on each cabinet, but it didn’t sound like that was in the plans. The cables will, at least, be long enough to reach both sides of the vehicle – an important consideration given the lack of standardization of charging port locations on EVs, as networks start opening up to multiple brands.
So – we’re looking forward to hearing more about Rivian’s efforts to open RAN, which ought to bear fruit quite soon, if the “end of the year” schedule holds. Stay tuned, as we’re sure there’s more news to come soon.
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The electric restomod experts at Lunaz have turned their talents towards the classic Rolls-Royce Phantom V limousine – and the result is exactly the kind of smooth, quiet, and luxurious ride RR’s founders would have built.
Rolls-Royce’ founders dedicated their engineering talents to developing cars that were smooth, quiet, and adequately powerful – and they spared no expense. The company Charles Rolls and Henry Royce founded would eventually go on to develop some of the most powerful and celebrated combustion engines of the twentieth century … but the car they wanted to build? It was electric.
“The electric car is perfectly noiseless and clean,” Charles Rolls told The Motor-Car Journal, all the way back in April of 1900. (!) “There is no smell or vibration, and they should become very useful when fixed charging stations can be arranged. But for now, I do not anticipate that they will be very serviceable – at least for many years to come.”
Well, 125 years seems like “many” to – and the talented craftspeople and engineers at Lunaz seem to agree. Meet the Lunaz Rolls-Royce Phantom V limousine.
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It’s glorious
Rolls-Royce Phantom V; via Lunaz.
Lunaz says it’s true to Rolls’ vision “down to the smallest, most indulgent detail.” To that end, the company re-trims the modern heated and ventilated seats in fine leathers, hand-cut and stitched to the buyers’ specifications. In the rear, the center console can be ordered with a built-in cigar humidor, a cocktail bar, or some other custom-spec, lockable storage lined in suede and polished walnut (translation: guns and drugs, probably).
When reimagining the Rolls-Royce Phantom V, (we) started by understanding the essence of its original design. Every component and dynamic was scrutinized to identify where thoughtful innovation could truly elevate the experience. The result is a harmonious blend of modern advancements and original mastery, unlocking new levels of performance, reliability and refinement while honoring Rolls-Royce’ classic soul.
Like the classic Bentley S2 Continental the company revealed in 2023, the big electric Roller is equipped with an 80 kWh battery pack sending electrons to a proprietary Lunaz drivetrain featuring 400 hp worth of electric motors delivering a silky-smooth 530 lb-ft of torque, good for a 0-100 km/h (62 mph) swoosh in about seven seconds. Of course, why you’d ever ask your driver to perform such plebian stunts is simply beyond me.
The transformation and restoration took more than 5,500 man-hours to complete, and involve more than 11,000 new or reconditioned components at a cost of more than £1 million (about $1.35 million US). If you place your order today, you should get yours in 18-24 months.
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Fortescue has taken the wraps off a prototype of its proposed “Infinity Train” electric locomotive, making the 1,100 km (about 685 miles) trip from Perth to the Pilbara and marking a major milestone in the decarbonization of the company’s heavy haul operations.
Co-developed with the locomotive experts at Downer Group, Fortescue revealed its concept for a battery electric “Infinity Train” back in March of 2022. At the time, the company promised a “world’s first” iron ore train capable of fully charging its batteries through regenerative braking. The two companies claimed the clever technology would create a self-sustaining, zero-emission rail system powered entirely by the force of gravity during the train’s loaded downhill travels.
This week, the concept went from the drawing board to the real world, completing an 1,100 km trip across Australia and proving itself to be up to the task of handling the grueling demands of Fortescue’s massive mining operations.
“We’re thrilled to see our battery electric locomotive prototype arrive in the Pilbara,” said Ellie Coates, CEO of Fortescue Zero. She added that the achievement, using zero fossil fuels, “represent(s) a major step in Fortescue’s journey to Real Zero.”
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The Fortescue Infinity Train uses the energy produced by slowing the loaded train on downhill sections of the company’s 385 mile private, heavy-haul rail network to recharge its battery systems. That energy is enough to bring the unloaded train back to the mine, eliminating the need for external charging infrastructure or additional renewable energy sources, making the train almost entirely self-sufficient.
Fortescue says the deployment of the Infinity Train concept at its mines will eliminate more than 82 million liters of diesel fuel consumption (about 21 million gallons, which ChatGPT tells me amounts to about 235,200 tons of CO₂ emissions).
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A new study by the Pembina Institute shows that a third of the commercial trucks and vans on Toronto’s roads are ready to electrify today – while nearly half could be electrified by 2030.
A new analysis by the Pembina Institute titled Electrifying Fleet Trucks: A case study estimating potential in the GTHA finds that as many as a third of trucks in the Greater Toronto and Hamilton Area (GTHA) could go electric today, rising to more than half by early 2030s — insulating businesses from rising fuel costs and reducing harmful air pollution that drives up health care costs. What’s more, the report found that battery range and charging access are less of a barrier than expected.
“Real-world travel data from Canadian trucks, collected over summer and winter months, shows that electrification is possible today,” says Chandan Bhardwaj, Senior Analyst at the Pembina Institute. “In fact, with a staggered approach, the GTHA — home to over half the province’s vehicle stock — could reach 50% sales for lighter trucks by 2030, helping offset lower adoption rates for heavier trucks.”
So, what’s holding back electric vehicle adoption? According to the study’s authors, it’s a matter of public policy. But without the right policies in place, the study argues, businesses face unnecessary hurdles in making the switch.
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“Our analysis shows that Ontario has a clear path to accelerating the transition to zero-emission trucks — unlocking economic opportunities, improving public health and positioning itself as a leader in clean transportation,” says Adam Thorn, Transportation Director at the Pembina Institute. “With the right policies in place, businesses can reap the benefits of lower costs while the province strengthens its manufacturing sector and energy security.”
We already knew this
Schneider electric semis charging in El Monte, CA; via NACFE.
CARB staff believe that several heavy-duty ZE vocational trucks are ready to be electrified because of their low daily mileage demands (<100 mi). Long-haul Class 8 trucks continue to be a challenge to fully electrify because of the long operation range (300+ mi) and on-demand charging need.
In fact, the California study came to almost the exact conclusion that the Toronto study did when examining the heavy-duty Class 7 and 8 EV market. Which is to say: it’s not a question of capability, but a question of availability.
“The availability of on-road heavy-duty ZE trucks has increased in recent years,” reads the report. “But their numbers remain significantly lower than their diesel and natural gas counterparts. As of 2022, an estimated 2,300 on-road ZE medium- and heavy-duty vehicles are operating in California, with the vast majority located in South Coast Air Bassin (Figure 1). On-road heavy-duty ZE transit buses account for the majority of all on-road heavy-duty ZEVs in California, but, as of 2023, sales of ZE heavy-duty trucks and medium-duty step vans have outpaced other vocations, indicating that these vehicles will be more prevalent in fleets in the near future.”
Businesses can save up to 40% of fuel and maintenance costs by switching to electric trucks.
Electric trucks eliminate tailpipe emissions, cutting harmful air pollution and improve public health.
Traffic related air pollution in the Greater Toronto and Hamilton Area leads to 700 premature deaths and 2,800 hospitalizations every year, costing health care system $4.6 billion annually.
Ontario’s Driving Prosperity plan highlights the need for increased electrification, while the City of Toronto is targeting 30% of all registered vehicles to be electric by 2030.
Governments worldwide are embracing electrification, setting ambitious sales targets for zero-emission vans and trucks.
By 2030, jurisdictions like Europe, China, California, British Columbia and Quebec aim for about 35% of new truck sales to be zero-emission, ramping up to nearly 100% by 2040.
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