Tuesday, July 21, 2026

Versinetic’s new assessment tool helps EV charging operators strengthen cloud security


Versinetic, a supplier of white-label hardware, software, and load-balancing systems to EV charging providers, has launched a new tool designed to help charge point operators (CPOs), local authorities and manufacturers evaluate cybersecurity risks across cloud-connected charging infrastructure.

“As EV charging networks continue to scale across the UK and Europe, organizations are increasingly required to assess not only charging hardware, but also the security of the cloud platforms, customer data environments and operational systems that support them,” the company says.

Versinetic’s new EV Charger Cloud Security Assessment Tool supports a self-assessment covering 24 checkpoints across four areas:

  • Regulatory & Legal Compliance
  • Architecture
  • Operations
  • Process & Governance

The assessment is designed to uncover common weaknesses within cloud-connected charging environments, including inadequate separation of customer and operational data, poorly controlled remote access pathways, gaps in certificate management processes and shortcomings in incident response preparedness.

The assessment is also designed to help organizations review their readiness for evolving security requirements, including the transition towards TLS 1.3 and future ISO 15118-20 ecosystems, which will place greater emphasis on certificate management and authenticated communications.

Available free of charge, the assessment can be used by operators, manufacturers and local authorities as part of supplier evaluations, procurement exercises and internal security reviews.

“Many procurement teams know how to compare charging hardware, but have less visibility into the cloud platforms that manage customer data, operational systems and remote access,” said Dunstan Power, Managing Director at Versinetic. “Procurement teams have become very good at comparing charging speeds, hardware specifications and commercial models. What is often less clear is how to assess the security of the cloud platforms sitting behind those networks.”

“Questions around data segregation, access controls, certificate management and incident response are becoming increasingly important, yet they don’t always form part of the procurement conversation. We developed this assessment to help organizations ask those questions earlier and more consistently.”

Source: Versinetic



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Why EV charging is still such a hard business


The US charging network 2.0—The evolution of a revolution: Part 3
» Read part 1 here: How the biggest US EV charging networks got their starts
» Read part 2 here: How government helped build America’s EV charging market

The US charging landscape is still evolving quickly. Some operators are downsizing or exiting, others are winning major subsidies or loan guarantees, and a new class of competitors—from travel centers to automaker-backed ventures—is trying to scale into the gap.

The shakeout continues

During the past two years, the charging network landscape continued its evolution as several operators shuttered or retreated due to challenging economics. In 2024, European companies Engie and Enel X both left the US market after trying to leverage their domestic charging experience. In December 2024, Shell announced it would stop supporting the charging software it had licensed to other companies and instead focus on managing chargers at its own retail locations. In August 2025, Shell scaled back further by halting operations of the Volta network of 2,000 chargers that it had acquired in 2023. In November, Shell sold portions of the Volta network to JOLT, an international operator of chargers and digital media.

Conversely, EVgo received a major boost when it landed a $1.25 billion DOE loan guarantee in December 2024 to expand its public fast-charging footprint nationwide. Overall, the number of fast chargers installed across the country continued to swell in 2025, with nearly 1,500 stations added in the second and third quarters according to Paren. Tesla far outpaced every other network in growth, controlling nearly 45% of all charging ports added in Q3.

The largest charging networks are also busily building stations with NEVI support. According to the EVStates Clearinghouse awards dashboard, as of April 2026, Tesla, EVgo, Electrify America, Blink and ChargePoint have collectively been awarded $67.5 million in NEVI funds to build 834 charging ports—an average cost to taxpayers of $67,500 per port. Newer competitors are also pursuing those awards aggressively. Two of the biggest beneficiaries are convenience-store operators Love’s Travel Stops & Country Stores and Pilot Travel Centers, which together plan to install nearly 700 charging ports. Love’s is developing locations in partnership with ChargePoint, while Pilot works with EVgo and other networks.

Privately held Francis Energy, founded in 2015, has received more than $105 million in NEVI funds—more than any other company—and operates 143 charging locations across nine states. EVGateway, launched in 2017, ranks as the fifth-largest NEVI recipient at roughly $25 million and says it has a network of 2,500 stations.

A charging network backed by a group of automakers has also emerged as a formidable competitor. OEMs have long been skeptical that the private market would keep up with EV sales while delivering a high-quality charging experience, and in July 2023 BMW, GM, Honda, Hyundai, Kia, Mercedes and Stellantis announced plans to create a fast-charging network in the US and Canada. The venture, later named IONNA, was joined by Toyota a year later and intends to operate 30,000 chargers. IONNA prioritized convenience-store locations and struck deals with Sheetz, Wawa and Casey’s. By March of 2026 Ionna has 100 locations in operation and had won $3.3 million in NEVI funds. It could remain independent, or eventually become an acquirer itself.

In addition to federal incentives that may soon disappear, charging networks can lower upfront costs through state, municipal and utility programs. California’s CALeVIP remains the largest example, with other notable programs in New Jersey and New York.

Why this matters: The market is not simply growing, it is churning. Some players are exiting, some are consolidating, and others are using public support or strategic partnerships to try to gain enough scale to survive.

Reliability is improving, but uptime still rules

Maintaining functioning charging stations—not only to keep the door to revenue ajar, but also to reduce EV owner angst—continues to be challenging. The industry has made progress in reliability, usually measured in uptime, the percentage of time a charger is ready for use, but there is still ample room for improvement. According to a 2025 JD Power survey of public charging, the percentage of visits in which EV drivers could not get any power fell to its lowest level in four years, a sign that reliability and customer experience are steadily improving.

Poor uptime makes the already difficult task of achieving strong utilization and profitability even harder, according to Wayne Killen, former Director of Charging Infrastructure Planning and Business Development at Electrify America. If chargers can deliver power around 20% of the time, then the promised land of profitability could be reached. Any time a charger is offline beyond normal maintenance and upkeep reduces revenue potential, he said.

Pat (Pasquale) Romano, who led ChargePoint for nearly 13 years, likewise said he has seen progress in both charging reliability and the underlying power-delivery technology. “I think charging technology development is going well,” he said. “There is no technology deficit.”

Why this matters: A charging site can only earn money when it is energized, functional and trusted. Reliability is not just a customer-experience metric, it is the first gate to utilization and therefore to profitability.

The economics problem—and the equity paradox

Profitability remains elusive for charging network operators. The three largest publicly traded charging companies—Blink, ChargePoint and EVgo—posted combined net losses of more than $600 million in 2024, based on their income statements. Tesla’s charging profitability is harder to isolate because it sits inside a much broader business. All three pure-play charging companies also saw their stock prices slide in 2025.

Network profitability is constrained by both how much traffic comes to a station and the upper limit of the fees drivers are willing to pay. The industry’s conventional wisdom has long held that a charge cannot cost more per mile than filling a gas tank, but that view is softening. DC fast charging that exceeds the cost of gasoline can be tolerated for occasional long-distance trips as long as it is not excessive and as long as drivers look at their total cost of driving electric. If most charging (estimated at up to 80%) happens cheaply at home—where costs can be less than 12 cents per kWh—then using public infrastructure for the remaining 20% can still make economic sense. Level 2 charging, better suited for overnight or other long dwell times, costs more than residential charging but less than gasoline. According to Stable Auto, the average cost of Level 2 charging in summer 2025 was 25 cents per kWh and fast charging was 47 cents per kWh.

Romano said infrequent fast charging, used to complement less-expensive home and workplace charging, may cost more than gasoline but is acceptable because for drivers it “has little impact on their overall fuel bill.”

High utilization is needed to pay back the initial cost—often hundreds of thousands of dollars—to equip and energize a charging station, while also offsetting the ongoing cost of electricity. Yet wide utilization differences between seemingly similar sites continue to mystify network operators. Charging networks are constrained by the “glass ceiling of how many EVs are on the road” in an area, according to Romano. Third-party tools that model likely traffic at a charging location can reduce some of the guesswork, but they cannot conjure demand that is not there.

Some stations are necessary even though they may never make money. Rural locations and low-EV-density corridors are essential to enable travel, but they are unlikely to ever be profitable on their own. Ben Prochazka, the Executive Director of the Electrification Coalition,  argues that the cost of these less-frequented locations should be socialized across the broader network, much as utilities provide power in less densely populated areas.

The expansion of the EV market to include a more diverse audience can boost utilization, but it also presents a paradox. Drivers who cannot charge at home and rely on public charging are often more price-sensitive and less able to pay premium fast-charging fees. According to a 2025 Federal Reserve report on housing and household well-being, 85% of families making more than $100,000 own their homes, while well under half of families making under $100,000 do. That homeownership gap matters because it often determines whether a driver has access to low-cost home charging. Developing discounted rates or incentives for lower-income EV drivers, including high-mileage rideshare drivers, could help create the utilization that operators crave without pushing away the customers most dependent on public infrastructure.

Why this matters: The hard part was never just installing chargers. It was building a business that can tolerate high capital costs, uneven traffic, power costs, rural obligations, and customers whose willingness to pay is constrained by the very economics that make public charging necessary.


Next in the series: The economics of public charging are still tough, but the industry is already starting to adapt. In Part 4, we look at how charging networks are evolving to become more reliable, better utilized and more financially durable.

About the authorJohn Gartner has been analyzing and writing about EV infrastructure since 2009. He is the Senior Director at the Center for Sustainable Energy.



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Monday, July 20, 2026

Amazon to use Electrovaya’s Infinity batteries for material handling


Lithium-ion battery maker Electrovaya has signed an agreement with Amazon to support continued deployment of its Infinity Battery Technology across Amazon’s material handling operations. Electrovaya says the relationship could also expand into robotics and energy storage applications.

Under the agreement, Amazon will receive warrants to purchase up to 13,880,345 common shares of Electrovaya.

Electrovayat says its Infinity energy storage systems have a perfect field safety record and offer a reduced environmental footprint and lower total cost of ownership compared to competing lithium-ion technologies. Electrovaya is developing systems that pair the Infinity lithium-ion platform with high-power architectures for data center, industrial and logistics applications, and the company says these improve safety, cycle life and charging speed.

Lithium-ion packs suit material handling because they support opportunity charging and deliver long cycle life, allowing forklifts to run across multiple shifts without the battery swaps that lead-acid systems require.

Electrovaya is expanding its US manufacturing at a 52-acre site in Jamestown, New York, where a 137,000-square-foot facility is planned as its first gigafactory.

“Electrovaya’s Infinity Battery Technology has demonstrated real performance in demanding material handling environments,” said Raj DasGupta, Electrovaya’s Chief Executive Officer. “We look forward to building on that foundation in other industrial applications where safety and longevity are critical.”

Source: Electrovaya



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Char.gy to deploy 3,000 on-street EV chargers in West Northamptonshire, UK


British on-street EV charging pioneer Char.gy will roll out some 3,000 on-street EV chargers in West Northamptonshire, under a programme funded through the UK government’s Local Electric Vehicle Infrastructure (LEVI) Fund.

The programme, which is supported by £2.85 million in government funding, along with “substantial private investment,” focuses on providing EV charging for residents who rely on on-street parking and lack home charging options.

A large proportion of the new chargers will be lamp column units, making use of existing infrastructure to minimize disruption and ensure a cost-effective rollout.

EV charging locations were selected through a process that prioritized sites suggested by residents and local parish councils.

“We know charging availability is one of the biggest barriers to switching, which is why we’re tackling it head-on with over £600 million to rapidly expand the UK’s charging network,” said the UK’s Aviation, Maritime and Decarbonisation Minister Keir Mather.

“Working with Char.gy allows us to scale up quickly using existing infrastructure and ensure our communities are well-prepared for the increasing demand for electric vehicles,” said Nigel Stansfield, Cabinet Member for Environment, Recycling and Waste at West Northamptonshire Council.

“This investment will make a real difference to people across West Northamptonshire who don’t have driveways or home chargers,” said char.gy CEO John Lewis. “By using lamp columns on residential streets, the council is bringing charging closer to where people live, without major disruption to neighbourhoods.”

Source: Char.gy



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Friday, July 17, 2026

NeoVolta launches U.S. BESS manufacturing platform to scale utility and C&I power storage production in Georgia


NeoVolta has announced the formation of NeoVolta Power, a joint venture to develop a US battery energy storage system (BESS) manufacturing platform in Pendergrass, Georgia. NeoVolta says the site is intended to add domestic manufacturing capacity for utility-scale and commercial and industrial (C&I) energy storage systems, with mass production expected to start in mid-2026.

NeoVolta says the Georgia facility is designed for 2 GWh of initial annual production capacity, scalable to up to 8 GWh. It will initially focus on prismatic-cell battery pack assembly and DC container integration, and NeoVolta reports it expects the operation to support approximately 89 production personnel at steady-state initial capacity. The site is located along the I-85 corridor.

NeoVolta says it will hold a 60 percent controlling interest in NeoVolta Power and oversee product strategy, commercialization, and customer engagement. Governance is structured through a five-member board of managers, with three appointed by NeoVolta. PotisEdge holds a 20 percent ownership interest and, according to NeoVolta, contributes expertise in large-scale BESS manufacturing, including equipment installation, commissioning, and production ramp support. NeoVolta says the remaining 20 percent is held by a group of strategic investors providing additional technical and operational support, and that it expects to consolidate the joint venture’s financial results under US Generally Accepted Accounting Principles (GAAP), with minority interests reflected as non-controlling interests, subject to final agreement terms and applicable accounting standards.

Initial production is expected to be weighted toward utility-scale systems, with C&I systems representing an increasing share as demand grows, according to NeoVolta. NeoVolta says the platform is designed to support multiple system configurations and product formats. It also cites industry analyses, including from the US National Renewable Energy Laboratory (NREL), indicating that utility-scale and C&I BESS in active US markets can generate approximately $200 per kilowatt-hour of installed capacity, depending on configuration and commercial structure; NeoVolta provides an illustrative example that 2 GWh of annual production at $200 per kilowatt-hour would be approximately $400 million of annual revenue potential at full utilization, while noting it is not a forecast or projection.

On financing, NeoVolta says the joint venture is supported by capital commitments and phased funding aligned with manufacturing milestones, with funding expected through a combination of equity and debt anchored by Infinite Grid Capital. NeoVolta also states it announced a $13 million private placement in November 2025 anchored by Infinite Grid Capital to support initial joint venture funding requirements and general corporate purposes, and that as capacity ramps, the joint venture is structured to pursue project-level debt financing, incentive monetization, and other customary funding sources for US manufacturing facilities. NeoVolta lists upcoming milestones as execution of technical and management services agreements, acquisition and installation of manufacturing equipment, an initial production ramp in mid-2026, and planning for expansion beyond 2 GWh of annual capacity.

Source: NeoVolta

Topics: NeoVolta, PotisEdge, LONGi Green Energy, EV Batteries



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WEX integrates three more CPOs with its EV charging network


EV charging provider WEX has expanded its EV charging network through integrations with Greenlane, Synop and QuickCharge by Integra Energy. The new collaborations expand charging access for commercial fleets in both public and depot charging scenarios while enabling payment through WEX EV solutions.

Greenlane’s charging locations are now accessible through the WEX EV En Route network. Greenlane currently operates a commercial vehicle charging hub in Colton, California, with more than 40 fast chargers for medium- and heavy-duty EVs, and plans to expand its network across Southern California, Nevada, Arizona and Texas.

“For fleet operators managing dynamic freight networks, charging can quickly become one of the biggest barriers to scale, so they need dependable, publicly accessible charging infrastructure,” said Greenlane CTO Raj Jhaveri. “Through our integration with WEX EV, fleet operators can access Greenlane’s growing network of high-power charging locations using payment solutions they already trust.”

Synop is an EV charging software and energy management platform that supports more than 900 commercial charging depots in North America and Europe. Synop has joined the WEX EV En Route charging network, expanding charging access and simplifying payments for fleet customers while providing operational insights that support WEX’s depot charging strategy. Synop’s platform helps fleet operators manage charging operations, energy costs, grid participation and coordination with distributed energy assets.

“Fleet operators need charging solutions that connect infrastructure, energy and grid management and driver experiences into a single ecosystem,” said Gagan Dhillon, CEO and co-founder of Synop. “By integrating with WEX EV, we’re making it easier for fleets to access charging, manage costs and scale electrification programs.”

QuickCharge by Integra Energy is a cloud-based EV charging software platform that offers real-time charger visibility, diagnostics, payment integrations and enterprise fleet management tools. Through its integration with WEX EV, fleet drivers can charge at participating QuickCharge locations using their existing WEX payment credentials.

“By integrating WEX technology into QuickCharge, fleet drivers can charge at hundreds of QuickCharge locations using the payment tools they already rely on,” said Max Schynoll, Product Development Manager at QuickCharge. “This integration simplifies the charging experience for commercial drivers while giving fleet operators confidence that their teams can access charging without additional apps, accounts or operational complexity.”

“Fleet electrification requires a charging experience that is as seamless and dependable as traditional fueling,” said Sarah Booth, Senior Director, EV and Connected Fleet at WEX. “These additions strengthen our ability to help fleets charge wherever they operate while giving them payment simplicity, operational insights and network access.”

Source: WEX



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Thursday, July 16, 2026

i-charging introduces Eichrecht-certified distributed EV charging solution


Portuguese EV charging infrastructure company i-charging has achieved Eichrecht certification for its e-flow distributed DC fast charging solution.

Eichrecht is Germany’s calibration law governing the accuracy, transparency and traceability of measuring instruments used for billing purposes, including electricity meters at EV charging stations. An Eichrecht-certified charger guarantees that the amount of energy delivered—and therefore the amount billed to the customer—is measured accurately. Eichrecht has become a benchmark for billing-accurate, consumer-transparent charging across Europe.

Distributed charging architectures, which feature power cabinets that serve multiple charging dispensers are increasingly common. i-charging’s distributed solution combines the e-flow user unit with multiple satellites, each capable of delivering up to 800 A.

This approach allows all user-facing functions required for compliant charging—including meter visibility, authentication, charging information and payment interaction—to be located in an accessible position through the e-flow control unit, while the satellites can be installed independently where they best support the charging operation.

The solution is suited to applications where direct access to the charging dispenser is impractical, such as overhead charging systems, gantries and other infrastructure layouts designed for commercial fleets and heavy-duty vehicles.

“As charging infrastructure evolves, flexibility is becoming just as important as power,” said Pedro Moreira da Silva, CEO of i-charging. “This certification demonstrates that operators no longer need to compromise between regulatory compliance and infrastructure design. By separating the user interface from the dispenser while remaining fully Eichrecht-compliant, we are enabling new charging configurations that were previously difficult to implement, particularly for commercial vehicle and fleet applications.”

Source: i-charging



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Versinetic’s new assessment tool helps EV charging operators strengthen cloud security

Versinetic , a supplier of white-label hardware, software, and load-balancing systems to EV charging providers, has launched a new tool des...