Electric Cars

Kia Introduces Versatile PV5 Chassis Cab with Extensive Conversion Options, Including a Camper Van

Kia is expanding its acclaimed PV5 series with the introduction of the new Chassis Cab, an open-platform model engineered for unparalleled customization. This innovative vehicle is set to transform into diverse solutions, such as specialized food trucks, durable tipper trucks, and even adventurous camper vans, meeting a broad spectrum of commercial and leisure requirements.

Kia PV5 Chassis Cab: A New Era of Adaptability and Electric Mobility

In a significant move to broaden its electric vehicle offerings, Kia has officially launched the PV5 Chassis Cab. This highly adaptable vehicle emerges as the latest innovation within the PV5 family, which, merely a year after its initial release, has already captured the European market, dominating the small electric van segment with an impressive 37% market share in the first half of 2026. The PV5’s success has primarily stemmed from its passenger and cargo configurations, but with the introduction of the Chassis Cab, Kia is unlocking new levels of versatility.

Scheduled for rollout in Europe and the UK within the coming months, the Chassis Cab model is specifically designed as an open-bed platform, allowing for extensive modifications. This design philosophy enables businesses and individuals to transform the vehicle into almost any desired configuration. In the UK, collaborations with TGS Automotive Group will facilitate a variety of conversions, including lightweight tippers, dropside trucks, and box vans.

Kia previously showcased the immense potential of the Chassis Cab at SOLUTRANS 2025, revealing innovative prototypes such as a fully equipped food truck and a comfortable camper van, demonstrating the breadth of its conversion capabilities. The new variant will be available with a long-range 71.2 kWh battery in the UK, offering an estimated WLTP range of up to 258 miles (416 km). Other markets will also have access to a standard-range 51.1 kWh option. Charging capabilities include DC fast charging up to 120 kW, allowing for a 10% to 80% recharge in approximately 30 minutes, and an 11 kW AC supply for a full charge in about 6 hours and 30 minutes.

While the exact range and payload figures will vary based on the specific conversion, Kia has confidently stated that the Chassis Cab will boast a best-in-class payload capacity of up to 1,005 kg (2,200 lbs). Additionally, its remarkable 5.5-meter turning radius ensures exceptional maneuverability, making it perfectly suited for navigating congested urban environments and challenging construction sites. The PV5 Chassis Cab is slated for release in the UK and European markets in 2026, with pricing and conversion options to be announced closer to the launch date. This expansion aligns with Kia's earlier announcement at its PBV Production Hub Tech Day, where plans for ten diverse body types for the PV5 lineup were revealed, alongside the introduction of the larger PV7 van, expected in 2027.

The introduction of the Kia PV5 Chassis Cab marks a pivotal moment in the evolution of electric commercial vehicles, underscoring a growing demand for adaptable, sustainable, and efficient transport solutions. This strategic expansion by Kia not only solidifies its position in the electric van market but also empowers a wide array of industries and individuals with the flexibility to customize their vehicles to precise operational needs. The focus on extended range, rapid charging, and superior maneuverability, combined with an industry-leading payload, positions the PV5 Chassis Cab as a game-changer for businesses seeking to reduce their carbon footprint without compromising on utility or performance. It’s a clear indication that electric mobility is not just about personal vehicles but is rapidly becoming a viable and superior option across the entire spectrum of transportation, promising a greener and more versatile future.

GM's Modest Production Plans for the New Chevrolet Bolt Revealed

General Motors is significantly scaling back its production goals for the redesigned Chevrolet Bolt, a move that signals a cautious approach in the electric vehicle (EV) market. Originally described as a "limited run" model, an official from the United Auto Workers revealed that only about 35,000 units are expected to be manufactured before production concludes early next year. This figure represents a considerable reduction from earlier projections of 150,000 units, highlighting the dynamic and often unpredictable nature of the U.S. EV landscape.

The decision to curtail Bolt production comes amidst a challenging environment for electric vehicles in the United States. Following the expiration of certain federal incentives, demand for EVs has seen fluctuations, prompting automakers to reassess their strategies. GM had previously discontinued the older Bolt model in 2023 to retool its Orion factory for larger electric trucks, only to reverse course a few months later with plans for a new Bolt iteration. This led to a two-year hiatus for Chevrolet's most affordable EV, despite its strong sales performance in its final year of production.

The revamped Chevrolet Bolt, which debuted late last year, boasted substantial improvements over its predecessor. Enhancements included a faster charging capability, jumping from a modest 55 kW to a more competitive 150 kW, and an extended range of 262 miles, thanks to a new 65-kWh lithium iron phosphate battery pack. Positioned as one of America's most budget-friendly EVs, with a starting price of $28,995 before destination charges, the new Bolt aimed to capture a wider market segment. However, its launch coincided with a period of dampened EV demand, further complicating its market penetration.

Early sales figures for the new Bolt have been modest, with only 4,224 units sold in the first half of the current year. This stands in sharp contrast to 2023, when the previous generation Bolt, available in two body styles, sold approximately 62,000 units. The significantly lower production target for the new model suggests GM is adjusting its manufacturing strategy to align with current market conditions and consumer demand for electric vehicles.

The reduced production volume of the new Chevrolet Bolt underscores the ongoing shifts and uncertainties within the electric vehicle industry. As automakers navigate evolving market dynamics and consumer preferences, strategic adjustments in production and model offerings become crucial. This cautious approach by General Motors reflects a broader industry trend of carefully balancing supply with demand in a rapidly changing technological landscape.

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GM's Groundbreaking EV Battery Technology Promises Enhanced Performance and Cost Efficiency

General Motors is on the cusp of transforming the electric vehicle landscape with its pioneering lithium manganese rich (LMR) battery technology. This innovation promises to deliver superior performance and extended range for future electric trucks and SUVs, without compromising on affordability.

Revolutionizing Electric Mobility: GM's Advanced Battery Solution

Introducing the Next Generation: Prismatic LMR Battery Cells

GM has announced its ambitious plan to be the first global automaker to mass-produce prismatic LMR battery cells. This cutting-edge technology is designed to offer a remarkable 33% increase in energy density compared to the widely used lithium iron phosphate (LFP) batteries, all while maintaining a competitive cost structure.

Strategic Production Hub: Ultium Cells' Tennessee Facility

Ultium Cells, a collaborative venture between GM and LG Energy Solution, confirmed that its Spring Hill, Tennessee, manufacturing plant will be the dedicated site for the production of these new LMR cells. This announcement follows more than a year after the initial unveiling of the battery technology, solidifying the location for its large-scale deployment.

Unveiling the Advantages: LMR Battery Capabilities

The LMR battery cells are projected to provide a substantial boost in energy density over current affordable battery technologies like LFP, without an increase in manufacturing costs. This breakthrough is particularly significant for forthcoming electric trucks and full-size SUVs from GM, which are expected to achieve ranges exceeding 400 miles on a single charge.

Diverse Battery Portfolio: Catering to Varied Needs

According to Kurt Kelty, GM's Vice President of Battery and Sustainability, while high-nickel batteries will continue to offer the maximum range, the introduction of LMR technology strategically positions GM to surpass existing affordable battery chemistries. This approach will lead to reduced costs and enhanced performance, enabling the company to effectively scale production and serve a broader customer base, aligning with GM's long-term electric vehicle vision by offering high-nickel, LFP, and LMR options in both pouch and prismatic forms.

Facility Expansion and Economic Impact: Spring Hill's Future

The Spring Hill facility is slated for significant upgrades commencing later this year, with an anticipated completion by 2028. This expansion will not only bolster production capabilities but also generate an additional 500 jobs, elevating the total workforce at the plant to 1,700 individuals.

Pioneering Affordable Performance: The Manganese-Rich Advantage

Kelty previously highlighted the pioneering nature of manganese-rich battery technology in unlocking premium range and performance at an accessible price point, especially for electric trucks. This underscores GM's commitment to innovation and affordability in the EV sector.

Upcoming Launches: The Road Ahead for LMR Batteries

GM anticipates introducing its first vehicle equipped with the new LMR batteries in 2028. Currently, the Chevrolet Silverado EV, GM's longest-range electric vehicle, offers an estimated 478 miles per charge utilizing high-nickel batteries, with a starting price of $55,895. The integration of LMR technology is expected to further diversify GM's offerings and enhance the accessibility of high-performance electric vehicle

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