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Are Electric Trucks Worth It? Advantages, Disadvantages, and What Operators Need to Know

/ Written by: SoCal Truck InsuranceSeptember 13, 2021
September 13, 2021

Key Takeaways

  • Electric trucks are generally worth it for urban deliveries and return-to-base operations, but long-haul routes and long-distance towing still present real range and charging infrastructure challenges.
  • Fuel and maintenance expenses run significantly lower for battery-electric trucks compared to diesel trucks — but higher upfront costs and dealer fees can offset short-term savings.
  • Charging times vary widely: Level 2 home charging may take overnight, while Level 3 DC fast charging can replenish a battery pack in under an hour for many models.
  • Battery technology is advancing rapidly — solid-state batteries and platforms like GM's Ultium are set to improve range prediction, battery health, and charging speeds for EV trucks.
  • Electric truck insurance costs can run higher than coverage for internal combustion vehicles, which makes working with a specialist like SoCal Truck Insurance important for fleet managers and owner-operators.

Are electric trucks worth it? That question is being asked by more fleet managers and owner-operators every year as EV trucks move from concept to commercial reality. Electric pickup trucks and commercial trucks from Ford, Chevrolet, GMC, Rivian, Tesla, and others are now available, road-tested, and actively working in fleets across the country. The shift away from internal combustion engines is real — but whether it is the right move for your specific operation depends on how and where you work.

We cover the main advantages and disadvantages of electric trucks, the key models available today, the state of battery technology and charging infrastructure, and what switching to an EV fleet means for your insurance costs. Whether you are evaluating a single Ford F-150 Lightning for urban deliveries or considering a full fleet electrification of Class 8 trucks, this guide gives you the practical information you need.


Are Electric Trucks Worth It for Your Operation?

Are electric trucks worth it depends heavily on how your fleet actually operates. The answer is not the same for a last-mile delivery company running urban deliveries from a central depot as it is for an owner-operator handling long-haul routes across the Southwest.

Battery-electric trucks perform at their strongest in return-to-base operations — routes where trucks leave a home base, complete their runs, and return to charge overnight. Urban deliveries, regional hauling, municipal work, and local construction are the use cases where EV trucks consistently demonstrate cost and efficiency advantages over diesel trucks.

Long-haul routes and long-distance towing present a different picture. The combination of highway speeds, heavy loads, and limited charging infrastructure along many corridors means that full-scale adoption of electric semi-trucks for coast-to-coast freight is still years away for most operators. That said, Class 4, Class 5, and Class 8 truck electrification is advancing quickly, and route-specific analysis is worth doing before dismissing EV trucks for heavier commercial work.

Use CaseEV Truck Suitability
Urban deliveries / local routesStrong
Return-to-base fleet operationsStrong
Regional hauling (under 300 miles/day)Moderate to strong
Municipal workStrong
Long-haul routes (300+ miles)Limited — infrastructure dependent
Long-distance towingLimited — range and payload trade-offs apply

Are Electric Trucks Worth It? Key Advantages Explained

The advantages of EV trucks are well-documented — and they are growing as battery tech and electric powertrains mature.

Lower Fuel and Maintenance Expenses

Electric trucks eliminate fuel costs tied to diesel and gasoline, and electricity is consistently cheaper per mile than both fuels. Operating costs for battery-electric trucks run roughly 40–60% lower per mile than diesel trucks, depending on route type and local electricity rates. Maintenance costs are also lower: the electric drivetrain has far fewer moving parts than an internal combustion engine, which eliminates oil changes, transmission service, exhaust system repairs, and many other recurring costs.

Zero Tailpipe Emissions

Zero-emission trucks produce no tailpipe greenhouse gas emissions during operation, which has direct implications for California fleets operating under the state's Advanced Clean Trucks Act. Fleet electrification is not just a business decision in California — for larger fleets, it is becoming a compliance requirement. Choosing battery-electric trucks now puts operators ahead of regulatory timelines rather than behind them.

Instant Torque and Regenerative Braking

Electric powertrains deliver full torque immediately, which improves performance when pulling away from stops, climbing grades, and navigating urban traffic. Regenerative braking captures energy during deceleration and feeds it back into the battery pack, which improves overall fuel efficiency and extends brake life — a meaningful maintenance benefit for high-stop-count delivery routes.

Power Export and Work-Site Utility

Several EV trucks now include power export capability, allowing the vehicle to act as a mobile generator on job sites. The Ford F-150 Lightning's Pro Power Onboard system, for example, can power tools and equipment directly from the truck. This is a significant utility benefit for contractors, construction operators, and anyone doing remote work where generator access would otherwise be needed.


Key Disadvantages of Electric Trucks to Consider

Understanding the limitations of EV trucks is just as important as knowing their advantages.

Limited Range and Long-Haul Constraints

The EPA range rating for most current EV pickups falls between 230 and 320 miles under standard conditions. Towing capacity usage, cold weather, and highway speeds all reduce real-world range below the EPA range rating — sometimes significantly. For long-haul routes and long-distance towing, this means frequent stops, careful range prediction, and a dependence on the availability of DC fast charging along the route.

Charging Infrastructure and Charging Times

Charging infrastructure for commercial trucks remains uneven. Urban areas and major corridors have growing networks of Level 3 DC fast charging stations, but rural routes and smaller markets still have significant gaps. Charging speeds vary by model and by the charger type:

Charging TypeTypical Replenish TimeBest For
Level 2 home charging8–20 hours (full charge)Overnight fleet charging
Level 2 charging (commercial)4–10 hoursDepot charging
DC fast charging / Level 3 DC fast charging30–80 minutes (80%)On-route top-ups

The charging curve also matters: most high-voltage battery systems charge quickly to 80% then slow significantly. Operators planning on DC fast charging as a primary strategy need to account for this in route planning.

Payload Capacity Trade-Offs

Battery packs add significant weight to the vehicle. On a full-size pickup truck like the Ford F-150 Lightning, the high-voltage battery accounts for roughly 1,800 lbs — weight that directly reduces available payload capacity compared to an equivalent internal combustion model. Fleet managers evaluating EV trucks for cargo-heavy applications need to verify rated payload capacity and how battery weight affects usable load.

Temperature Effects on Battery Health

Extreme temperatures affect battery health and charging performance in both directions. Cold weather reduces available range and slows charging speeds. Heat can accelerate long-term battery degradation. Operators in extreme climate zones should factor temperature effects into their range prediction and total cost of ownership calculations.

Resale Values and Used EV Truck Market

The used EV trucks market is still developing, and resale values for current models are less predictable than for diesel trucks with established depreciation curves. Battery health at resale is a significant variable — a truck with a degraded battery pack will be worth considerably less, and replacement costs remain high.


Popular Electric Truck Models Compared

The market for EV trucks has expanded significantly. Here is an overview of key models across pickup and commercial categories.

ModelClassApprox. RangeNotable Feature
Ford F-150 Lightning / XLT Extended RangeFull-size pickup230–320 milesPro Power Onboard, all-wheel drive
Rivian R1TFull-size pickup~314 milesOff-road capability, adventure-focused
Tesla CybertruckFull-size pickup250–340 milesSteer-by-wire, high towing capacity
Chevrolet Silverado EV / GMC Sierra EVFull-size pickupUp to 450 miles (GMC Sierra EV)Ultium platform, hands-free driving assist
GMC Hummer EV PickupFull-size (heavy)~329 milesCrabWalk, 1,000+ hp
Tesla's SemiClass 8~500 milesMega-charger network, aerodynamic cab
Volvo's VNR ElectricClass 8~150–275 milesRegional hauling and urban freight
RIZON electric trucksClass 4–5Up to 200 milesUrban and last-mile commercial focus

The Chevrolet Silverado EV and GMC Sierra EV both run on GM's Ultium platform, which represents a significant step forward in battery capacity and charging speeds for full-size EV pickups. The Ultium architecture supports DC fast charging at higher rates than earlier EV platforms, reducing downtime for fleet operators.


Battery Technology and What Is Coming

Battery technology is the single biggest variable in the EV truck equation. Current lithium-ion battery packs deliver usable performance but carry limitations in energy density, weight, and long-term battery health.

Solid-state batteries represent the most significant near-term development. Unlike liquid-electrolyte lithium-ion cells, solid-state batteries use a solid electrolyte, which improves energy density, reduces fire risk, and may extend battery life. Several manufacturers are targeting commercial availability of solid-state batteries for vehicles within the next three to five years. When that technology reaches commercial trucks at scale, the range, charging curve, and payload trade-off concerns that currently limit EV truck adoption will shift considerably.

In the near term, improvements to charging infrastructure — including more widespread Level 3 DC fast charging and fleet-scale Level 2 home charging depot systems — are making EV trucks more practical for a wider range of commercial operators.


Electric Truck Insurance: What Fleet Operators Need to Know

Insurance costs are a real factor in the EV truck value calculation. Commercial truck insurance for battery-electric trucks is generally higher than for comparable diesel trucks, for several reasons:

  • Higher vehicle replacement cost — EV trucks carry a higher purchase price, which increases physical damage premiums.
  • Battery replacement exposure — a high-voltage battery pack replacement can cost $15,000–$30,000+, which affects coverage valuations.
  • Fewer specialized repair shops — fewer certified EV repair facilities means longer repair times and higher labor costs after a claim, which affects rates.
  • Newer risk profile — insurers are still developing loss history data for electric trucks, which leads some carriers to price more conservatively.

The federal EV tax credit can offset a portion of the higher upfront cost for qualifying commercial purchases, but it does not affect ongoing insurance costs. Fleet managers should review coverage needs specifically for EV trucks rather than assuming standard truck insurance rates will apply.

At SoCal Truck Insurance, our agents work with multiple carriers to find competitive coverage for both diesel and electric commercial fleets. We have been placing commercial truck insurance in California for over 25 years, and we understand how the shift to EV trucks changes your coverage needs. If you are running semi-truck insurance needs or managing an owner-operator insurance policy for an EV unit, we can help you find the right structure. You can also review types of truck insurance coverage to understand what your EV fleet policy should include.

For operators adding EVs to an existing fleet, this is also a good time to review your full motor carrier insurance program to make sure mixed fleets — diesel and electric — are covered correctly.


Work with a Specialist as Your Fleet Evolves

Are electric trucks worth it? For many operators in California and across the Southwest, the answer is already yes — with the right routes, the right charging setup, and the right insurance structure behind them. For others, the right time to switch is still one or two battery technology generations away. What matters is that you make the decision based on your actual operation, not just on the marketing behind any individual model.

At SoCal Truck Insurance, our dedicated agents have over 25 years of experience placing commercial trucking coverage across Southern California — including Los Angeles, San Diego, the Inland Empire, Orange County, and Long Beach. We work with multiple carriers to find coverage that fits your fleet, whether it runs on diesel, electricity, or both. We are available 24/7 when you need us.


Frequently Asked Questions

Are electric trucks worth it for commercial fleets in California?
For California fleets running urban deliveries, regional hauling, and return-to-base operations, electric trucks are increasingly worth it. Lower fuel and maintenance expenses, zero-emission compliance advantages under state regulations, and the growing availability of charging infrastructure make EV trucks a strong fit for these use cases. Long-haul routes and long-distance towing remain more challenging due to range limitations and uneven charging infrastructure outside major corridors. A route-by-route analysis is the right first step before committing to fleet electrification.

What is the biggest disadvantage of electric trucks compared to diesel trucks?
For commercial operators, the biggest disadvantage is the combination of limited range under load and long charging times relative to diesel refueling. A diesel truck can refuel in minutes, while even the fastest DC fast charging takes 30–80 minutes to reach 80% charge. On long-haul routes with heavy towing capacity demands, this significantly affects daily mileage and scheduling. The lack of charging infrastructure on rural corridors compounds the problem. Battery technology improvements, including solid-state batteries and faster charging curves, are expected to reduce this gap over the next several years.

How do electric truck insurance costs compare to diesel truck insurance?
Electric truck insurance typically costs more than insurance for equivalent diesel trucks. Higher vehicle purchase prices, expensive battery pack replacement costs, limited specialized repair facilities, and developing actuarial data all contribute to higher premiums. Fleet managers adding EV trucks to an existing fleet should work with a commercial trucking specialist rather than a generalist agent, as standard truck policies may not adequately cover EV-specific risks. The federal EV tax credit can reduce upfront acquisition cost but has no effect on insurance premiums. Contact SoCal Truck Insurance for a quote tailored to your EV fleet.

Which electric truck has the longest range for commercial use?
Among full-size EV pickups, the GMC Sierra EV leads with an EPA range rating of up to 440 miles, followed by the Chevrolet Silverado EV at up to 450 miles in certain configurations — both built on GM's Ultium platform. For Class 8 commercial trucks, Tesla's Semi claims up to 500 miles on a single charge under favorable conditions, though real-world range under full towing capacity load will be lower. Operators evaluating range should focus on real-world figures under their specific load and route conditions rather than EPA range ratings alone, and factor in how temperature effects and payload capacity usage will affect daily range prediction.

How is battery technology improving the case for electric trucks?
Battery technology is advancing on several fronts that directly benefit commercial operators. Energy density improvements are increasing range without adding battery pack weight, which reduces the payload capacity trade-off that currently limits EV trucks in heavy-duty applications. Faster charging curves mean that high-voltage battery systems on newer platforms — including the Ultium platform from GM — can accept higher DC fast charging rates, cutting recharge times. Solid-state batteries, expected to reach commercial vehicle applications within the next several years, promise greater energy density, improved battery health longevity, and reduced fire risk compared to current lithium-ion cells. Each of these developments will improve the total cost of ownership and operational feasibility of EV trucks for a wider range of fleet applications.

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