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Solar and wind accounted for almost 96% of new US electrical generating capacity added in the first third of 2025. In April, solar provided 87% of new capacity, making it the 20th consecutive month solar has taken the lead, according to data belatedly posted on July 1 by the Federal Energy Regulatory Commission (FERC) and reviewed by the SUN DAY Campaign.

Solar’s new generating capacity in April 2025 and YTD

In its latest monthly “Energy Infrastructure Update” report (with data through April 30, 2025), FERC says 50 “units” of solar totaling 2,284 megawatts (MW) were placed into service in April, accounting for 86.7% of all new generating capacity added during the month.

In addition, the 9,451 MW of solar added during the first four months of 2025 was 77.7% of the new generation placed into service.

Solar has now been the largest source of new generating capacity added each month for 20 consecutive months, from September 2023 to April 2025.

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Solar + wind were >95% of new capacity in 1st third of 2025

Between January and April 2025, new wind provided 2,183 MW of capacity additions, accounting for 18.0% of new additions in the first third.

In the same period, the combination of solar and wind was 95.7% of new capacity while natural gas (511 MW) provided just 4.2%; the remaining 0.1% came from oil (11 MW).

Solar + wind are >22% of US utility-scale generating capacity

The installed capacities of solar (11.0%) and wind (11.8%) are now each more than a tenth of the US total. Together, they make up almost one-fourth (22.8%) of the US’s total available installed utility-scale generating capacity.

Moreover, at least 25-30% of US solar capacity is in small-scale (e.g., rooftop) systems that are not reflected in FERC’s data. Including that additional solar capacity would bring the share provided by solar + wind to more than a quarter of the US total.

With the inclusion of hydropower (7.7%), biomass (1.1%), and geothermal (0.3%), renewables currently claim a 31.8% share of total US utility-scale generating capacity. If small-scale solar capacity is included, renewables are now about one-third of total US generating capacity.

Solar is on track to become No. 2 source of US generating capacity

FERC reports that net “high probability” additions of solar between May 2025 and April 2028 total 90,158 MW – an amount almost four times the forecast net “high probability” additions for wind (22,793 MW), the second-fastest growing resource. Notably, both three-year projections are higher than those provided just a month earlier.

FERC also foresees net growth for hydropower (596 MW) and geothermal (92 MW) but a decrease of 123 MW in biomass capacity.

Taken together, the net new “high probability” capacity additions by all renewable energy sources over the next three years – i.e., the bulk of the Trump administration’s remaining time in office – would total 113,516 MW.  

FERC doesn’t include any nuclear capacity in its three-year forecast, while coal and oil are projected to contract by 24,373 MW and 1,915 MW, respectively. Natural gas capacity would expand by 5,730 MW.

Thus, adjusting for the different capacity factors of gas (59.7%), wind (34.3%), and utility-scale solar (23.4%), electricity generated by the projected new solar capacity to be added in the coming three years should be at least six times greater than that produced by the new natural gas capacity, while the electrical output by new wind capacity would be more than double that by gas.

If FERC’s current “high probability” additions materialize, by May 1, 2028, solar will account for one-sixth (16.6%) of US installed utility-scale generating capacity. Wind would provide an additional one-eighth (12.6%) of the total. That would make each greater than coal (12.2%) and substantially more than nuclear power or hydropower (7.3% and 7.2%, respectively).

In fact, assuming current growth rates continue, the installed capacity of utility-scale solar is likely to surpass that of either coal or wind within two years, placing solar in second place for installed generating capacity, behind only natural gas.

Renewables + small-scale solar may overtake natural gas within 3 years

The mix of all utility-scale (ie, >1 MW) renewables is now adding about two percentage points each year to its share of generating capacity. At that pace, by May 1, 2028, renewables would account for 37.7% of total available installed utility-scale generating capacity – rapidly approaching that of natural gas (40.1%). Solar and wind would constitute more than three-quarters of installed renewable energy capacity. If those trend lines continue, utility-scale renewable energy capacity should surpass that of natural gas in 2029 or sooner.

However, as noted, FERC’s data do not account for the capacity of small-scale solar systems. If that’s factored in, within three years, total US solar capacity could exceed 300 GW. In turn, the mix of all renewables would then be about 40% of total installed capacity while the share of natural gas would drop to about 38%.

Moreover, FERC reports that there may actually be as much as 224,426 MW of net new solar additions in the current three-year pipeline in addition to 69,530 MW of new wind, 9,072 MW of new hydropower, 202 MW of new geothermal, and 39 MW of new biomass. By contrast, net new natural gas capacity potentially in the three-year pipeline totals just 26,818 MW. Consequently, renewables’ share could be even greater by mid-spring 2028.

“The Trump Administration’s ‘Big, Beautiful Bill’ … poses a clear threat to solar and wind in the years to come,” noted the SUN DAY Campaign’s executive director, Ken Bossong. “Nonetheless, FERC’s latest data and forecasts suggest cleaner and lower-cost renewable energy sources may still dominate and surpass nuclear power, coal, and natural gas.” 


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Buzz tries to undercut Lectric with even lower-priced electric trike

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Buzz tries to undercut Lectric with even lower-priced electric trike

Buzz Bicycles has just launched its newest electric tricycle model, pushing prices even lower as older riders continue to gravitate towards electric three-wheelers as accessible e-bikes for both recreation and transportation. Now with the Buzz Cerana T2 hitting the road, the lower end of the market is heating up even faster. And Buzz may now have one of the best-priced mid-drive e-trikes in town.

There’s no shying away from the massive competition in the electric trike space. After Lectric eBikes launched the second generation of the US’ best-selling electric trike model last week, everyone now has a new target to beat. Priced at $1,499, the Lectric XP Trike2 sets a new standard for any retailer that wants to compete on price.

In the weeks since, we’ve seen other e-bike companies roll out their own next-generation models in an attempt to keep up with the driving force in the growing three-wheeler market. But the Buzz Cerana T2 is the first “second-gen” model I’ve seen since the XP Trike2 launch that has actually managed to undercut Lectric’s price. With a $1,399 sticker, the Buzz trike is a solid $100 cheaper.

So what does one Benjamin less get you? Let’s dive in and find out.

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First of all, the Cerana T2 rolls on relatively large wheels, with a 24×3.0″ front tire and 20×3.0″ rear tires. The trike is also powered by a mid-drive motor mounted at the bottom bracket, offering 500W of power.

The product page claims a 20 mph top speed, though that’d be pretty fast for a trike and may be a copy/paste error from another product page, which I’m entertaining as a possibility because right next to it is a graphic touting the rear hub motor – which this trike clearly does not have.

What it does have though is torque, and a lot of it! The mid-drive motor is rated for 130 Nm of torque, which is pretty far up the chart and exceeds the torque output of the vast majority of e-bikes on the market today.

With a throttle on the handlebars, the Cerana T2 qualifies as a Class 2 electric bike, though the five different levels of pedal assist and the cadence sensor mean that riders can also still get a nice workout at varying levels of effort if they choose to ignore the enticing throttle.

Considering the battery is a 48V 10.4Ah unit with only 500 Wh of capacity, pedaling is going to be important if riders want to achieve the claimed 40 miles (64 km) of maximum range on a single charge. If using the throttle frequently, a range of closer to half of that figure is more likely.

And for those who like to keep an eye out for UL certifications, you’ll be happy to hear that Buzz reports full UL2849 certification for the bike.

Other features on the Cerana T2 include the fender set, LCD display, 7-speed shifter, mechanical disc brakes, LED lighting in the front and rear, and an included front rack with matching rear basket.

There’s also an oversized saddle that features a manual drop post. It’s a hand lever found under the saddle that can instantly drop the post down several inches – a great way to quickly lower the seat when coming to a stop to dismount. It’s always a great way to get people to raise an eyebrow the first time you fiddle around for it in a fairly… intimate location.

Electrek’s Take

On the one hand, it feels a bit unfair to compare the Buzz Cerana T2 to the Lectric XP Trike2 instead of discussing this new model in its own right. But on the other hand, it’s one of several second-gen trikes to recently hit the market in the wake of the Trike2’s groundshattering unveiling, so I’d be doing the journalistic version of closing my eyes, putting my hands over my ears and shouting “La la la la!” if I pretended the two unveilings weren’t at least somewhat related.

Of course everyone is looking to save a buck (or a hundred of them) where they can, and the Cerana T2 even offers some cool things the XP Trike2 doesn’t, such as that dropper seat post and the mid-drive motor – though I’m not sure if the cadence sensor is worth it, not to mention that the XP Trike2’s jackshaft motor is essentially a hub motor functioning as a mid-drive. And while the Cerana T2’s lack of suspension is disappointing, the 3″ tires will help earn back some of the cushion lost to a rigid fork and frame.

On the other hand, the Cerana T2 has a few downsides, such as the lower-end mechanical disc brakes and the lack of a folding frame.

But hey, if it can really do 20 mph on the straightaways, then that might be its biggest selling point right there – other than the $1,399 price. Just watch out for those turns…

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Rivian (RIVN) to open a UK office that will focus on AI and autonomous driving technology

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Rivian (RIVN) to open a UK office that will focus on AI and autonomous driving technology

American EV automaker Rivian is expanding across the pond into the UK, hoping to tap into the region’s talent pool in artificial intelligence engineering.

Rivian is a growing American EV brand with expanding office footprints as much as its lineup of unique electric trucks and SUVs. The company is currently headquartered in Palo Alto, California, with its main production facility located in Normal, Illinois alongside plans for a second production footprint about 40 minutes outside of Atlanta, Georgia.

Other US locations currently include offices in Irvine and Carson, CA, Wittmann, AZ, and Plymouth, MI. Outside of the US, Rivian operates out of offices in Vancouver, BC, Canada, Amsterdam, Netherlands, and Belgrade, Serbia.

This morning, Rivian announced its latest international office in London, UK, which will become an AI-centric development hub.

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Rivian UK
Rivian’s production facilities in Normal, IL / Source: Scooter Doll

Rivian to open AI Hub in the UK

According to a release from Rivian early this morning, it sees the UK as rapidly becoming a world leader in artificial intelligence engineering, and is looking to tap into that talent pool with the new international office.

While Rivian’s current Autonomy Platform enables drivers to utilize hands-free, eyes-on highway driving, the American automaker intends to continue to evolve such tech to offer greater levels of autonomous capabilities.

Rivian shared that its second-generation EVs were designed with an “AI-centric approach.” As its Gen2 vehicle fleet continues to develop and grow, the automaker has been collecting more and more data to help accelerate the improvements to ADAS technology. Per the company:

Rivian believes the combined strength of its perception platform and in-vehicle data infrastructure will enable it to build a Large Driving Model, unlocking unparalleled understanding of complex driving scenarios and accelerating the path to safer, more capable autonomous features.

Rivian said the future work done at its new UK AI hub will enable its EVs to improve in the future via over-the-air (OTA) updates. Details remain light, but Rivian shared plans to host an “AI and Autonomy Day” later this year and promised to share more about its product and technology roadmap.

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A golf cart pickup truck? GEM-maker launches diverse new LSV line

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A golf cart pickup truck? GEM-maker launches diverse new LSV line

Waev, the company best known for its iconic GEM electric low-speed vehicles (LSVs), just unveiled a brand new lineup of commercial electric carts and LSVs. And this time, they’re not messing around when it comes to utility. Dubbed the Fusion line, these new lithium-ion-powered vehicles include mashups plucked from the worlds of golf carts, street-legal shuttles, and jobsite pickup trucks.

The Fusion lineup includes six different models: three designed for people-moving and three built for utility work. But all six still seem to be aimed squarely at commercial, municipal, and industrial fleets.

Whether that’s running security at a stadium, shuttling guests at a resort, or hauling equipment around a worksite, there looks to be something in the Fusion family that probably fits the bill.

On the people-moving side, Waev is offering 4, 6, and 8-passenger models, all of which feature a flip-up rear seat that converts into a cargo deck, a near ubiquitous feature among modern golf carts and LSVs with rear-facing benches that helps them pull double duty as a light utility vehicle. The feature gives them added flexibility for things like maintenance staff, hospitality transport, or even large campus tours, letting them carry a large number of passengers, yet still be capable of stacking boxes or equipment in the rear.

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The utility versions look a bit different with more muted matte black bodywork, plus come with electrically-actuated hydraulic dump beds, 2-inch ball hitches, and even orange seat belts for jobsite visibility. It’s harder to forget to put on the seatbelt when it’s blindingly orange.

And yes, the Fusion Utility Long Bed basically looks like a pickup truck built on a golf cart chassis, which I find equal parts strange and endearing. But then again, I’m the guy who infamously kicked off the great American mini-truck trend a few years ago when my hilarious little tiny-truck went viral, so maybe I’m a bit biased when it comes to fun little utility vehicles.

All Fusion models are available in both “cart” and “LSV” configurations. The carts are speed-limited to 19 mph (30.5 km/h) and come with serial numbers, making them street-legal only in limited areas that have passed local ordinances permitting golf carts to use public roads.

The LSV versions get full VINs, meet federal low-speed vehicle safety standards (meaning over a dozen regulations on manufacturing standards and safety equipment), and can be driven up to 25 mph (40 km/h) on public roads where LSVs are permitted by state law.

Waev is sticking with lithium-ion power here, specifically a 105Ah Marxon pack that’s both heated and insulated for cold-weather use. That’s a big step up from the old-school lead-acid setups still found in some fleet carts (and, if we’re being honest, still offered on some of Waev’s other vehicles).

The company claims to offer automotive-grade manufacturing processes and reliability on its vehicles, along with Bluetooth diagnostics and a smartphone app for managing the fleet.

Other upgrades include LED lighting, back-up cameras, AVAS pedestrian alert systems, and standard three-point seat belts for all passengers. Optional extras like ladder racks, beacon lights, and upgraded tires make it even easier to tailor each unit to the specific job at hand.

The Fusion line slots into Waev’s already broad family of low-speed EVs and fleet vehicles, including the steel-bodied Taylor-Dunn utility vehicles, Tiger heavy-duty tow tractors for airports and warehouses, and the classic GEM lineup that’s been a staple of street-legal fleet transport since the late ‘90s.

It also looks like Waev isn’t just trying to sell the hardware here – it’s pushing hard on full-service fleet support, too. The company is leaning on an extensive dealer network across the U.S., Mexico, Canada, and Australia, and all Fusion models are available through Sourcewell and Canoe procurement programs for simplified public-sector purchasing.

One big thing we’re not seeing, though, are the prices. It’s more of a “contact us for a quote” situation, which means exactly what you think it means. We’ll try to learn more, but don’t expect to make it out of the lot without a measurably lighter wallet.

Electrek’s Take:

This is the kind of product line that probably won’t turn heads in your local grocery store parking lot, but it’s exactly the kind of quiet EV revolution that’s transforming fleets behind the scenes. Lithium-ion golf carts and LSVs that can tow, haul, and shuttle without the noise or emissions of gas engines? That’s a win for everyone –from municipal fleets to private campuses.

And frankly, I’m here for the golf cart pickup truck vibe. Street legal, work-ready, and just weird enough to be cool. The fact that the tailgate seems to swing all the way down and doesn’t lie flat like a normal pickup truck’s gate was a swing-and-a-miss by the designers – I don’t know how that got through – but everything else looks great! And hey, I guess I could always add a pair of tailgate cables if I wanted.

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