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The Pike’s Peak International Hill Climb is in progress, and several EVs which set out to post new records have done so today, with the Rivian R1T and Ioniq 5N both claiming records, and the Ford SuperTruck being the fastest vehicle up the hill on the day.

The Pike’s Peak International Hill Climb is one of the longest-running races in the world, being held 102 times since 1916.

It’s a famously difficult race, starting at an already-high 9,390ft (2,862m) in elevation and finishing at 14,110ft (4,300m), with an average 7.2% vertical grade. Until 2011, the track was largely unpaved on dirt or gravel roads, and it is not uncommon for cars to leave the track and crash into the woods or, worse, end up tumbling down the mountain. The race is also commonly stopped by rain, snow, fog, or other inclement weather of the type you commonly get at the top of mountains.

In particular, the high altitude nature of the race (which earned it the nickname “Race to the Clouds”) has always been difficult, because at high altitudes there is less oxygen, which means less complete combustion of fuel. This means that gas-powered race vehicles need to have incredibly oversized engines to do well.

That difficulty does not apply to electric vehicles since EVs don’t need oxygen for combustion, so for years EVs have overperformed in the race. Currently the all-time record for the 12.42-mile (20km) hillclimb is 7:57.148, set by the Volkswagen ID.R in 2018. And this year, an EV (Acura ZDX) served as the pace car for the first time.

There were 3 notable electric entries this year: the new higher-powered Rivian R1T Ascend Quad Max in unmodified form, the Hyundai Ioniq 5N in both stock and modified specs, and the bonkers heavily-modified Ford F-150 Lightning SuperTruck. (All vehicles do have seats stripped from the interior and roll cages/fire extinguishers added for safety purposes, but this doesn’t change total vehicle performance much due to the weight of the roll cage).

Last year, Rivian set the record for production trucks, gas or electric, with a 11:23.983, also putting it ahead of past runs by the likes of Faraday Future and a Tesla P90D. But it wasn’t an electric production record, as that was held by a Model 3 Performance with an 11:02.802.

However, with the R1T’s 190hp power boost over last year’s model, Rivian was hoping to gain some time – and boy, did it.

Driver Gardner Nichols managed to set a time of 10:53.883, shattering last year’s time by half a minute, setting a new record for any production truck, gas or electric, and even beating the 2018 Model 3 Performance by about ten seconds (though the new Model 3 Performance hasn’t run up the hill yet).

In fact, the R1T’s time would have been an overall record for unmodified electric vehicles – and even was that record, for a few minutes – until the next car up the mountain, the Ioniq 5N, came in 4 seconds faster.

Hyundai ran the 5N in two classes, aiming for both modified and unmodified records (one of its four vehicles had a crash in practice). Immediately after the R1T finished, Ron Zaras set a 10:49.267 in an unmodified Ioniq 5N, setting the record for electric production vehicles.

Unfortunately the 5N just barely missed the record for production SUV – currently held by the 2018 Bentley Bentayga at 10:48.902, only 3 tenths ahead over the course of this 12.42-mile track. If only Zaras hadn’t had that second donut this morning…

And in the modified category, the Ioniq 5N TA (“Time Attack”) spec, which carries over the stock powertrain but has some software tweaks for more power and big wings on the front and back, was piloted by Dani Sordo to set a 9:30.852, which is now the fastest electric modified SUV up the mountain.

While the R1T was the fastest unmodified truck up the hill today, it wasn’t the fastest truck overall. That honor goes to the 1,400hp Ford F-150 Lightning “SuperTruck,” continuing the long tradition of silly Pike’s Peak vehicles with gigantic wings.

The SuperTruck set the fastest time of the day, with an 8:53.553, the only vehicle to go sub-9 and more than ten seconds faster than the next-best finisher. And that was after the vehicle had an unexpected shutdown in the first sector, coming to a complete stop and needing to be repowered, losing almost half a minute in the process.

As a result, it didn’t set a record, as last year’s Ford SuperVan, a similarly-modified Ford Transit Electric, set a time of 8:47.682. That vehicle still holds the “Pike’s Peak Open” class record, and both were piloted by Romain Dumas (who also holds the overall record in the VW I.D. R).

While we’re somewhat jumping the gun on this article since the race is still in progress (you can watch here), it’s unlikely that any other cars will beat any of these times set. The SuperTruck had the fastest qualifying time by a longshot, and there are no remaining electric or production truck-class vehicles still yet to run which have a chance of beating the 5N and R1T’s times.

So, another successful year for EVs at the mountain.

Electrek’s Take

Both of these records set this year are extremely impressive. I asked Rivian if they thought they could get sub-11 minutes, but all they committed to was trying to beat their record from last year.

But the fact that a 7,000+ pound truck managed to beat even the 2018 Model 3 Performance is quite exceptional. That’s a lot of weight to push up a mountain and around all those curves. I’m sure that the new Model 3 would be quicker, and there have been faster Teslas up the hill in modified form, but these vehicles aren’t even close to being in the same class – so the R1T has achieved a pretty incredible feat here.

It’s a shame that the Ioniq 5N couldn’t have been just a tiny bit quicker to beat the Bentayga – but it also costs less than 1/3 as much as the Bentayga. The fact that you can go right out and buy an Ioniq 5N, for a pretty reasonable price, and have an SUV that beats every other electric vehicle ever to go up the mountain and almost every other SUV/crossover, with a sub-11 minute time on this famously difficult race, is extremely impressive.

Hyundai has only just started pushing the electric performance envelope, but we’re pretty excited to see where this goes.

(And speaking of Rivian, and of electric crossovers in a rally competition, can you just imagine what the Rivian R3X is going to look like up this hill in a few years?! Stay tuned!)

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Tesla inks $16.5B deal with Samsung for HW6 chips, but still no HW3 solution

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Tesla inks .5B deal with Samsung for HW6 chips, but still no HW3 solution

Tesla will use Samsung for as a supplier for its self-driving computer’s next-gen hardware in a $16.5 billion deal, according to Tesla CEO Elon Musk.

But despite planning two generations ahead, the company still doesn’t have a solution to bring the promised full autonomy to hardware that it’s been promising that capability to since 2016.

Earlier today, Samsung announced a 22.8 trillion won ($16.5 billion) deal that would run through 2033. In that filing, Samsung did not name the customer, only that it is a “large global company”. Later, Bloomberg reported that the customer is Tesla, and Musk confirmed this on twitter. Then in his usual bravado, he stated that the deal is “likely much more than that.”

Musk also stated that the chips will be made in Samsung’s facility in Taylor, Texas. Manufacturing is likely to start in 2026.

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Samsung makes the chips for the self-driving computers in Tesla’s current vehicles, but the next generation will be made by TSMC, first in Taiwan and then later in Arizona. Then the next-next generation will be covered by this new Samsung deal.

The new deal is significant due to TSMC’s global dominance of chipmaking. Samsung has had significant unused capacity, so the Tesla deal is a big boost for the company’s chip foundry business.

Tesla has gone through several generations of chips, previous referred to as “HW,” standing for “hardware,” with a number indicating their generation. More recently, Tesla started referring to its chips with “AI” instead of “HW,” in order to incorporate the tech buzzword du jour.

Currently Tesla is on HW4/AI4, and TSMC will make HW5, then Samsung will make HW6 again.

These generations of hardware each get successively more capable, and can handle more data and thus theoretically become better at self-driving tasks.

Current Tesla HW4 vehicles cannot drive themselves, and are only capable of SAE level 2 operation, which requires an attentive driver behind the steering wheel (though Tesla’s solution does work better than most others). Tesla’s ‘Robotaxi’ system is currently operating in Austin without anyone in the driver’s seat, but has a “safety rider” who can take control of the vehicle, blurring the line somewhat on which SAE level it is operating at.

But what about HW3?

There’s a problem with the differentiation between these generations of hardware: ever since 2016, when Tesla was on version 2 of its hardware, it has promised full self-driving capability on all of its vehicles.

This was announced in a blog post on October 19, 2016, which has since been deleted from Tesla’s website but is still available through archive.org.

Tesla stated, at the time, that every single Tesla vehicle produced after that date had the hardware that would allow for full self-driving.

It eventually became apparent that HW2 would not be capable of full self-driving tasks, and Tesla upgraded to HW3, promising all HW2 customers that they would get a free upgrade to HW3 if they bought Tesla’s Full Self-Driving system, which has varied in price over time but once cost $15,000.

However, Tesla still tried to charge owners $1,500 for that hardware upgrade, even though Tesla sold cars claiming that they had all the hardware needed for full self-driving.

One owner had to take Tesla to court to get them to deliver on this promise, and Tesla is still charging $1,000 for this hardware owners already bought. And that’s not the only one, there are a number of other self-driving false advertising cases that have gone to court, arbitration, or reached a settlement.

Now, with the change from HW3 to HW4, we’re seeing indications of a similar run-around.

We’ve already seen differing FSD software versions based on which hardware level vehicles have, with HW3 vehicles getting updates later than HW4 vehicles do. On last week’s Q2 earnings call, Tesla CFO Vaibhav Taneja said:

What we want to do is get unsupervised done on hardware four first. Once it’s done, then we’ll go back and look at what we need to do with the hardware three cars. Like I said, the focus is first to get unsupervised out and then we’ll go back and see what more work we need to do.

“Unsupervised” is Tesla’s new name for actual full self-driving, which would allow a vehicle to drive without the supervision of someone in the driver’s seat. This as opposed to “supervised FSD,” a phrase Tesla started using after about a decade of promising full self-driving without delivering it.

Here, Taneja said that HW3 cars will eventually get FSD, but Tesla hasn’t really figured out the path to that, and it’s focusing on new cars first, then will go back around to see what needs to happen.

Previously, Musk had stated that Tesla “will have to upgrade people’s hardware 3 computer,” but more recently it has become apparent that Tesla really doesn’t have a plan for that upgrade. And Taneja’s comments suggest that Tesla will still try to wedge FSD onto HW3, despite previously admitting that the system is not capable of it.

The existence of future HW5 and even HW6 chips also suggest that current systems are not capable of full self-driving. If HW4 is FSD-capable, then why would Tesla need two more generations of chip in the next two years in order to do the tasks that it promised all of its cars could do a full decade prior?

So, much more than having no solution for HW3 cars (or even HW2 cars, some of which have gotten free upgrades, but others who have been charged $1,000 to upgrade to a computer they already paid for), does this mean that Tesla is going to kick the can further down the road, and eventually have no solution for HW4 and HW5 either?

And, when will we know about these solutions? Tesla has sold millions of vehicles with the promise of self-driving which will seemingly need an upgrade at some point. And many of those vehicles are old enough, at this point, to be retired, despite spending up to $15,000 on a piece of software that has never been delivered to them.

An HW6/AI6 computer will surely have all sorts of new whizbang capabilities, but we were promised those capabilities years ago, and they’re still not delivered yet.


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Mary Kay goes electric with new Pink Cadillac OPTIQ (cue the music)

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Mary Kay goes electric with new Pink Cadillac OPTIQ (cue the music)

Mark Kay’s iconic Pink Cadillac awards are driving into the future for 2025. The company’s first-ever electric Pink Cadillac OPTIQ made its debut during the Mary Kay annual Seminar in Charlotte this weekend, symbolizing a “recharged vision” for the future of the popular brand.

Pioneers in monetizing friendships female empowerment and entrepreneurship, the Pink Cadillac is considered one the most coveted symbols of achievement for Mary Kay sales reps, signifying not just great sales (GM Authority reported that it took ~$102,000 in annual sales to qualify back in 2001), but also leadership, a history of mentoring others, and a sustained reputation of excellence among their peers.

The women you see behind the wheel of the Pink Cadillac are the real deal, in other words, and the big Caddy really does mean something to people in the know.

The iconic pink Cadillac was born in 1968 when Mary Kay Ash purchased a Cadillac Coupe De Ville from a Dallas dealership and promptly had it painted to match the pale pink Mary Kay lip and eye palette. General Motors later named the color Mary Kay Pink Pearl, and the shade is exclusive to Mary Kay.

MARY KAY

Now, the Pink Cadillac is going to stand for environmental sustainability, too, enabling Mary Kay’s top performers to set yet another positive example for anyone aspiring to their success.

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“For decades, the Mary Kay pink Cadillac has symbolized accomplishment, aspiration, and the power of recognition,” said Ryan Rogers, Chief Executive Officer of Mary Kay. “With the introduction of the all-electric OPTIQ, we’re honoring that iconic legacy while driving into a transformative future—one grounded in our commitment to sustainability and dedication to inspiring and celebrating the achievements of our independent sales force for generations to come.”

Mary Kay announced its new Pink Cadillac with this video, below.

Same Legacy, New Energy


“The legacy continues with the new, all-electric (and still very pink) Cadillac Otiq [sic],” reads the official Mary Kay copy on YouTube. “The Optiq remains instantly recognizable with the pink pearl exterior, while modernizing with sleek, cutting-edge features. In addition, this vehicle showcases our commitment and dedication to sustainability by reducing our carbon footprint while continuing to inspire.”

Speaking of inspiration, I can’t hardly hear the words “Pink Cadillac” without thinking of the song. But, since “Bruce Springsteen” has become something of a trigger word for the MAGA snowflakes in the audience, I’ll post a different, but similarly great song about rose-tinted GM flagships from Dope Lemon. You can let me know what you think of it in the comments.

As ever, the Cadillac is not a “gift,” per se – but typically takes the form of a two year lease paid for by Mary Kay. No word yet on what the exact shape and form the OPTIQ deal will take.

Electrek’s Take


Whatever you might think of MLMs or businesses like Amway, Avon, or Mary Kay, they play a big part in the social dramas of hundreds (if not thousands) of neighborhoods and online communities. The people at the top are influential, and the people “below” them genuinely try to emulate them and follow their lead.

Thanks to Mary Kay, that might soon mean a decision to buy an electric vehicle – and that result would be a win for everyone.

SOURCE | IMAGES: Mary Kay.


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First drive – RBW’s electric Roadster is a sporty modern take on British classics

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First drive - RBW's electric Roadster is a sporty modern take on British classics

RBW, a British handcrafted electric car manufacturer, brought its cute little Roadster out to Santa Monica and invited us up for a drive.

RBW has built cars in the UK for a few years now, but is about to set up US manufacturing in Virginia. Along with that comes a version of its Roadster modified for the US market, and we got a sneak peek with a short drive in Santa Monica.

The RBW Roadster is a small, hand-built, retro-style EV, meant as a modern take on British classics. But it’s not an actual classic itself – it’s a newly-built vehicle, with a new body, modern safety features, and even some electronics, like CarPlay and Android Auto (but not much else – there’s no huge, cockpit-defining screen, just a 9″ one, with retro gauges in front of the driver. But it does have a backup camera!).

Our drive was short, just a quick trip up and down the most trafficky part of Pacific Coast Highway in Santa Monica, without much chance to really stretch the vehicle’s legs. So we can’t verify range or tell you how it handles on the limits, but we can tell you about the basic controls and feel of the vehicle.

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On a mostly smooth road, the car offered a comfortable ride dynamic. We didn’t get a sense of chassis noise because the top was down (which I surmised was an intentional effort by the company – I’ve used the same trick when showing off my car before).

The steering is tight and has a good weight to it, and the retro-style steering wheel felt great in my hands.

Of particular interest to me, as a long-time EV driver, is how the throttle pedal is tuned. Lots of EVs add some intentional delay or smoothing to throttle inputs, which ends up making the pedal feel mushy and indirect, reducing the control you have over the vehicle.

For reference, the cars I drive most often are the Tesla Roadster and Model 3, which both have excellent direct pedal feel.

And I’m happy to report that the RBW Roadster’s throttle pedal feels very similar to the cars I love to drive. The car feels quick, and responds exactly to what I want it to do, when I want it to do it. But it’s not excessively “punchy” like some of the more absurdly-powered EVs can be (like the Tesla Model S Plaid or the Macan Turbo S).

It does not, however, have off-throttle regenerative braking, aka one-pedal driving. Pressing the brake pedal engages regen, but letting off the throttle lets you simply coast. I personally prefer one-pedal driving, but one consideration RBW had is that since the car does not have traction control, regenerative braking on the rear axle (where the motor is) could potentially present a safety issue on slippery roads. So, fair enough I guess, but I still do prefer one pedal.

Speaking of pedals, the brake pedal was placed quite far from the accelerator. This is a plus and a minus – a minus because it’s quite different from most vehicles these days, where the pedals are placed closer, for ease of reaching them with your right foot. A plus because higher separation might reduce the chance of “crossing the pedals” and accidentally pressing both with the same foot in an emergency situation, and because it enables left-foot braking, which is generally better for performance driving… in the hands of a trained driver, anyway.

That said, this isn’t exactly a performance car. It’s fun, it’s responsive, but it’s not powerful. The version we tested had a 0-60 time of only around 9 seconds, so it didn’t give you the “throw your head back” feeling that so many EVs on the road these days do. It’s responsive, but not fast.

RBW says the American version will have more motor power than the UK version, but it’s still trying to figure out exactly how to tune it. This should bring 0-60 times down by about a second. But we can’t help but think that it would be nice with even a little more power than that, which we think should be possible given the car’s 50kWh battery and ~2,900lb weight, specs that are similar to my similarly-sized Tesla Roadster (as you can see below – along with the GT version of the RBW, on the right).

Here’s an issue: all the specs we were given seem extremely fluid. While talking to the company, I got several different numbers for any given specification. It seems to me like the company is still figuring out exactly what changes it will make for its US models.

This is somewhat to be expected of a small, hand-built manufacturer, especially since buyers can ask for certain modifications or personalizations (seat height, for example, which is important in a small car like this). But it does make it tough to write an article about it.

Nevertheless, the car drives well, and RBW seems to have gotten a lot right about the dynamics of the vehicle. It executes well on its goal – a fun, small British-style roadster, a great weekend car for those who have the means.

As for the means, the RBW Roadster will start in the $140-150k range, so it’s not cheap. But if you’re looking for something like this, it’s just about the only game in town, and it’s a good execution of the feel of a nimble roadster for weekend cruising.

RBW is currently taking $1,000 reservations for 2026 builds, and you can have a look at configurations (paint, roof, interior, wheels) over on its website.


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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.

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