Tesla has a horde of Megapacks, a total of 157 units, being prepared for delivery to its energy customers. This is the beginning of the end of fossil fuel dependence. Yes, we have a long ways to go before we are fully recovered from our dependence on fossil fuels, but this is an incredible step toward that journey.
Sawyer Merritt recently shared a photo of the Megapacks being prepped at Tesla’s Gigafactory in Nevada. The article noted that Tesla’s customers are well versed in pics of ready-to-ship cars and large volumes of vehicle deliveries, but this time, it’s Megapacks that have been spotted. In his tweet, Sawyer also shared a look at Tesla Semi Megachargers that were being installed in the southeast corner.
The article also mentioned Tesla’s recent Q3 report. In Q3 2021, Tesla’s energy storage deployments increased a whopping 71% year-over-year. In response to the growing demand for clean energy, Tesla started building its first Megafactory in Lathrop, CA. The company broke ground in September and it was recently announced that Tesla would bring 1,000 to 2,000 new clean energy jobs to the area. San Joaquin County Supervisors Chairman Tom Patti called this an opportunity for workers to have a tech manufacturing job without commuting all the way to the Bay Area.
“Energy storage deployments increased by 71% YoY in Q3, mainly driven by strong Megapack deployments. We recently announced our new Megapack factory with a capacity of 40 GWh, which compares to total Megapack deployments of 3 GWh in the last 12 months. We are very excited about the broader potential of this product.”
In 2020, BBC noted that Tesla’s Megapack battery technology and other big batteries addressed a key challenge for green or clean energy and the article pointed out that it was these batteries that could make fossil fuels obsolete. We’ve been writing that for more than a decade here on CleanTechnica, but BBC had gathered more info worth a gaze. The article compiled a list of sites that were moving from coal or other types of fossil fuels to renewables with battery storage. The article noted that the USA’s utility-scale battery power capacity was set to grow from 1.2 gigawatts in 2020 to nearly 7.5 gigawatts in 2025.
Earlier this year, YaleEnvironment360 published a report and noted that the mass deployment of storage could overcome one of the largest obstacles to renewable energy, which is cycling between oversupply when the sun/wind is in abundance and a shortage of that abundance.
Fast forward almost a year later and here we have the photo that Sawyer shared of Tesla Megapacks being prepared for deliveries. A year ago today, we reported on Tesla Megapacks ordered for the Wallgrove substation west of Sydney in New South Wales, Australia. This particular battery has the ability to reduce the grid’s need for old coal and gas plants. The battery is nearly ready to go online. This Megapack project and others planned around New South Wales are aimed at preparing the state to retire its coal fleet.
Albuquerque Public Schools just announced that it is taking on a big clean energy and energy storage project in a joint initiative with Sandia National Laboratories, the U.S. Department of Energy, the New Mexico Energy, Minerals, and Natural Resources Department, the Clean Energy States Alliance, and OE Solar. This project, with a budget of $3.2 million, will provide solar power and battery storage for Atrisco Heritage Academy High School and will contain a Tesla Megapack 2, which has an electricity storage capacity of 2884 kWh. There will also be 2,208 solar panels on the roof that will have a power capacity of 850 kilowatts. The project is expected to help the school save around $3.5 million on its electricity bill over the next 25 years.
Another key takeaway from the announcement is that this new project will allow the school to act as a regional neighborhood shelter during emergencies or disasters.
Many companies that have purchased Tesla Megapacks are not only taking steps to end their dependence on fossil fuels but are setting a path for others to follow.
One key challenge for Tesla is one that many companies and even governments are about to face, and this is the supply chain issue that is currently happening. Tesla has proven its ability to navigate such challenges time and time again, but it has also been supply limited when it comes to batteries for years — as recently stated again on the company’s last conference call for shareholders.
CASE arrived at bauma 2025 with an innovative new electric wheel loader with a striking, sharp-edged design that ditches the traditional operator cab in favor of remote or autonomous operation for improved accessibility and safety.
CASE says the cabin-less design of the Impact electric wheel loader enhances operational flexibility by enabling operations in extreme environments and adverse weather conditions. It also means that job site, disaster recovery, or even rescue operations can continue 24/7, with operators in different time zones logging in for their shifts.
More important – and more practical – is CASE’s claim that the new Impact concept, “marks a significant advancement in accessibility, as operators with motor impairments and other disabilities can now operate the machine without physical limitations, representing an important step toward inclusivity in the industry.”
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Along with integrated AI, a full suite of sensors, and autonomous operation built in, CASE says the Impact is a glimpse into a smarter, safer, and more sustainable working future.
Electrek’s Take
Driven by an aging workforce and not enough new talent entering the field, virtually every industrial field is struggling with an international equipment operator shortage. The concept of automation addresses some of that, but remote operation open up the field significantly, and I could easily older operators forced out of work due to injury getting back into it or younger operators halfway around the world who would give anything for an opportunity – and paycheck – like this could provide.
Smart move from CASE, and it’s great to hear them call that out specifically.
Electricity grid demands are on the rise in part due to energy-hungry technology like AI, and while experts believe renewable energy alone is not enough, it is essential to a broader supply equation. But with funding freezes, subsidy walk backs and tariffs on key components all on the table, solar, wind, and hydrogen companies are working harder than ever to make their business models work, even if they never intended to rely on federal support for the long term.
“One of the hats I used to wear was planning for the City of New York. For the longest time, there was decreasing [energy] demand,” said Aseem Kapur, chief revenue officer of GM Energy, an arm of General Motors that the company introduced in 2022. “Over the course of the last five or so years, that equation has changed. Utilities are facing unprecedented demand.”
Beyond New York City, U.S. energy demand is poised to grow upwards of 16% in the next five years, a big difference from the 0.5%it grew each year on average from 2001 to 2024, according to the Center for Strategic & International Studies.
For the renewable energy companies looking to break into the mainstream, subsidies have helped them get through their early days of growth. But President Trump has targeted these solutions from the first day of his presidency. In an executive order from Jan. 20, the Trump administration promised to “unleash” an era of fossil fuels exploration and production while also eliminating “unfair subsidies and other ill-conceived government-imposed market distortions that favor EVs over other technologies.” Last week, Trump issued an EO pushing for more coal production.
In a six-year study breaking down energy subsidies from the U.S. Energy Information Administration from 2022 (the most recent edition), 46% of federal energy subsidies were associated with renewable energy, making them the largest slice of the energy pie. At the same time, natural gas and petroleum subsidies became a net cost to the government in 2022, reversing what had been a source of revenue inflows.
“Every company I’ve talked to recognizes that subsidies were required to help them through an R&D cycle, but they all believed they had to get to a cost parity point,” said Ross Meyercord, CEO of Propel Software (and former Salesforce CIO), whose manufacturing software solution serves energy clients like Invinity Energy Systems and Eos Energy Storage. “Every company had that baked into their business model. It may happen faster than they were planning on, and obviously that creates challenges.”
Meyercord believes that clean energy companies can handle either a subsidy decrease or a rise in tariffs, but both at the same time will add substantial stress to the market, which could have negative downstream effects on the grid — and the people who rely on it.
‘Not going to get rid of fossil fuels overnight’
Like any energy source, Kapur says success always comes down to economics. In the current environment, with interest rates, and fears that inflation will reignite, he said, “it’s going to come down to, ‘What are the most cost-effective solutions that can be brought to market?'” That may vary by region, he added, but notes that solar and energy storage have already reached parity in many cases and, in some instances, are below the cost of producing energy from natural gas or coal-powered resources.
This economics equation is true even in Texas, where the state’s Attorney General Ken Paxton has voiced anti-renewables sentiment in favor of the coal market (his lawsuit against major investment firm BlackRock and others in late November claims these firms sought to “weaponize their shares to pressure the coal companies to accommodate ‘green energy’ goals”). Wind accounts for 24% of the state’s energy profile, according to the Texas Comptroller, suggesting a penchant for any energy source that’s viable and cost-effective.
“The reality is, we’re not going to get rid of fossil fuels overnight,” said Whit Irvin Jr., CEO of hydrogen energy company Q Hydrogen. “They are going to have a very significant piece in our energy ecosystem for decades, and as new technologies come out on a larger scale, the use of fossil fuels will be curtailed, but we need to continue research, development and innovation in a way that makes sense.”
Irvin emphasizes the need for innovation from all sides, including creating new technologies that have a massive impact on large scalability and carbon reduction. “We don’t want to turn off that spigot. We just want to make sure that it’s going to the right places,” he said.
Hydrogen energy itself is one such source of innovation. Hydrogen ranges in sustainability depending on the fuel it uses to source its hydrogen. For example, green hydrogen — the only climate-neutral form of hydrogen energy — stems from renewable energy surplus. Grey hydrogen stems from natural gas methane. Q Hydrogen is working to open the world’s first renewable hydrogen power plant that will be economically viable without a subsidy. Irvin Jr. says the company, which produces hydrogen using water, plans to launch its New Hampshire facility this year.
“Hydrogen fuel cells are a really good way to provide backup power or even prime power to a data center that would be considered essentially off grid,” said Irvin, likening hydrogen fuel cell production to a form of battery storage. While hydrogen is not the most economical because of its comparative immaturity, Irvin said heightened energy demand will outcompete cost sensitivity for tech companies requiring more and more data storage.
While hydrogen projects continue to reap federal incentives to propel the industry forward, Irvin said subsidies were never part of his company’s business equation. “If they do exist, we’ll be able to take advantage of them,” he said. “If they don’t exist, that will still be fine for us.”
But that might not be true for every alternative energy company depending on where they’re at in the R&D cycle. Changes in federal incentives have real power to shift the progression of renewable energy in the U.S., especially when combined with tariffs that could stifle companies’ international relationships and supply chains. Meyercord, Kapur and Irvin all foresee private industry partnerships making a huge impact for the future of the grid, but recognize that the strain is increasing as energy tech of all kinds becomes smarter and more grid-dependent.
Based on the excellent Hyundai IONIQ 5 N platform, Vanwall gives its Vandervell H-GT a high-performance aesthetic makeover inspired by the classic Lancia Delta HF Integrale. But what makes this body kit a genuine “high-performance” upgrade isn’t the way it makes the car look: it’s the 500 lb. weight savings!
Developed by Austrian racing team ByKOLLES Racing and invoking the name of a 1950s Formula 1 team, the Vandervell H-GT is essentially a new Hyundai IONIQ 5 N in aggressive, Lancia Delta-inspired carbon-fiber bodywork that the company claims gives the car an, “unprecedented weight optimization in this vehicle category.”
The H-GT’s new “thin wall” carbon fiber body slashes the car’s weight by over 230 kg (507 lbs.), which means ByKOLLES’ new Vandervell can do anything that Hyundai’s “special” IONIQ 5 N hot hatch can do. Only faster.
The car was first announced in 2023 (along with the renderings shown, below), when ByKOLLES was competing in the World Endurance Championship (WEC) with what used to be called an LMP car – but they keep changing the names of these things so it could be a Daytona Prototype, Hypercar, or even a 24 Hour LeMans Wonkavator by now.
The important part, however, is that a few of these cars have now broken cover, with ex-Formula 1 supremo, Bernie Ecclestone, having been seen trying the new-age Lancia on for size.
The Vanwall Vandervell website still shows the same €128,000 ($145,405, as I type this) price tag and specs it did in 2023, which either means they haven’t updated it in a while, were really, really good at pricing the thing in the first place, or both.
That’s presumably on top of the IONIQ N’s already hefty $66,100 price tag.