Electric vehicle battery start-up StoreDot announced that its extreme fast charging (XFC) battery cell technology has exceeded 1,000 charging cycles in a production-ready EV form factor.
StoreDot says its XFC EV battery cells repeatedly charged from 10-80% capacity in just 10 minutes and then discharged for one hour before recharging. The EV cells achieved over 1,000 of these extreme charging cycles consecutively before degrading below 80% of their original capacity threshold. No noticeable degradation occurred within the first 600 cycles in which the cells were consecutively fast-charged between 10-80%. StoreDot says it expects to achieve further improvements by the end of 2022.
When Electrek asked how many cycles StoreDot is hoping to achieve once the batteries are ready for commercial release, CEO Doron Myersdorf replied by email:
We have already hit our target that we agreed with most OEMs. This allows for a 500,000 km warranty already – assuming each cycle is for 500 km range.
StoreDot is shipping the 300Wh/kg, 700 Wh/l high energy density cells in pouch format to its global automotive OEM partners for testing. The “100in5” EV performance cells allow drivers to consecutively charge 100 miles of range for every five minutes of charging.
In March, the Israeli company shipped its production-ready battery cells to its strategic EV OEM partners and potential customers. It also announced that it had achieved 1,200 cycles for its extreme fast charging cells in prototype format.
In early September 2021, StoreDot announced that it produced the first fast charging 4680 cylindrical cell. In November 2021, the company claimed it had become the first to produce XFC cells for electric vehicles on a mass production line. And in December 2021, StoreDot announced new patented technology that uses a background repair mechanism to allow battery cells to regenerate while they are in use.
StoreDot is currently working on mass production readiness of its “100in5” cells with its manufacturing partner, EVE Energy, in China and says it’s on target to begin mass production of the battery cells in 2024.
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The IONIQ 5 N is the fastest Hyundai ever made, electric or gas-powered. The sporty electric car is so good that it’s now drawing the attention of some of the industry’s finest. Hyundai’s EV sports car was recently spotted outside a Lamborghini test facility. Check out the video below.
Hyundai’s EV sports car caught at a Lamborghini test site
As the first EV to wear its “N” badge, Hyundai aimed to set the bar even higher. And that it did. The IONIQ 5 N is not only the most powerful Hyundai, it’s also the most fun to drive with a series of track-ready features.
Based on its advanced E-GMP platform, Hyundai’s electric sports car delivers up to 641 hp. That’s when using its N Grin boost feature, which gives you a 10-second power surge.
When on the track, N Launch control enables you to adjust to different road conditions for the perfect takeoff. Other features, like N e-Shift, simulate an 8-speed N Dual Clutch Transmission, making it feel like you’re in a true race car.
With N Active Sound+, you cannot only feel the performance but also hear it. Eight internal and two external features sync to your vehicle’s performance.
Hyundai’s EV sports car is apparently good enough to attract Lamborghini’s attention. A Hyundai IONIQ 5 N model was recently spotted leaving Lamborghini’s test facility.
The video from YouTuber Varryx shows a Lamborghini test driver leaving the “Porta Sud,” suggesting the sports car maker could be benchmarking Hyundai’s EV.
Lamborghini unveiled the Lanzador in 2023, its first fully electric vehicle. The concept introduces a new high-ground-clearance GT with 2+2 seating. Or, in other words, like a supercar sitting on an SUV. It’s expected to launch in 2029.
Hyundai’s IONIQ 5 N already beat a Lamborghini Urus Performante in a drag race (see the video here), so it’s no wonder the Italian sports car maker is taking notes.
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The board of directors of the troubled hydrogen fuel cell maker has voted to dissolve the company that developed the first HFC garbage truck to North America last spring, pending shareholder approval.
After a promising global start that saw the American startup announce pilot programs that would see its hydrogen fuel cells put to work in transit buses in Brisbane, its tow trucks (above) in Victoria, and five 154-ton severe duty trucks scheduled to service a zinc refinery operation in north Queensland, slow sales and an inability to deliver on its ambitious goals saw the company quit Australia in July.
Now, Hyzon is quitting altogether.
After issuing a WARN letter to employees in December announcing layoff plans, citing an inability to raise funding and the future uncertainty relating to the availability of government subsidies. Now, it appears the Hyzon board of directors has unanimously voted to dissolve the company and liquidate its assets (pending shareholder approval).
Unanimously approved, subject to stockholder approval, the transfer of all or substantially all of the Company’s assets through an assignment for the benefit of creditors, and the liquidation and dissolution of the Company pursuant to a plan of dissolution while continuing to pursue strategic alternatives and potential funding sources intended to maximize the value of its business and assets.
If Hyzon is unable to find a buyer or an patient, bullish customer soon, expect all of Hyzon’s staff at its Bolingbrook, Illinois and Troy, Michigan facilities to be laid off by the end of February 2025.
Data scientists at General Motors (GM) are using AI and machine learning to pinpoint ideal EV charging station locations across the US.
As EV sales hit record highs for GM in 2024, many drivers are still unsure where to charge their vehicles. To tackle this, GM has partnered with EVgo and Pilot Travel Centers to boost public charging options and improve the overall charging experience.
Partnerships with EVgo and Pilot Travel Centers
GM and EVgo are working together to install 2,850 DC fast charging stalls nationwide. This includes 400 flagship fast-charging locations in major metro areas with 350 kW chargers for ultra-fast charging. These stations feature pull-through layouts for easier vehicle maneuvering, bright lighting for safety, and canopies to protect against the elements.
Additionally, GM has teamed up with Pilot Flying J and EVgo to add up to 2,000 DC fast chargers at 500 Pilot and Flying J travel centers. So far, more than 130 locations are operational.
Using AI to site EV charging stations
To ensure new charging stations are sited where they’ll have the most impact, GM’s data scientists are tapping into artificial intelligence. AI tools analyze EV traffic patterns, driver behaviors, and existing infrastructure to identify optimal locations for chargers.
By treating site selection as a mathematical optimization problem, these algorithms evaluate factors like traffic flow and proximity to other chargers. The results are then visualized on detailed maps, helping stakeholders understand the reasoning behind each recommendation. Human experts review and refine these suggestions to finalize charging site plans.
Once the data-driven decisions are made, GM works with its partners to bring these strategic charging stations online.
This approach blends advanced technology with industry collaboration to tackle one of the most significant hurdles for EV adoption, ensuring drivers have the confidence to make the switch.
What do you think about the use of AI to site EV charging stations? Let us know in the comments below.
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