2026 Toyota Hilux BEV - Specifications
Brand, model, trim, price
Information about the brand, series, model name and year, trim and price of the electric vehicle.
| Brand The name of the manufacturer. | Toyota |
| Model The model name of the electric car. | Hilux BEV |
| Model year The year for which the model is announced by the manufacturer. Most often it does not completely coincide with the calendar year in which the model is available on the market. | 2026 (MY26) |
| Market Markets in which this electric vehicle is available. | Global |
Body style, dimensions, volumes, weights.
Information about the EV body style, dimensions, clearance, volumes, curb weight, GVWR.
| Body style The body style of the model as defined by the number of doors and roof treatment. | Pick-up |
| Materials Materials used in the vehicle's body construction. | Steel Aluminum |
| Exterior colors Available exterior colors for the model as specified by the manufacturer. | White Grey |
| Interior colors Available interior colors for the model as specified by the manufacturer. | Black |
| Number of doors Number of doors for passengers. Depending on the body style, the doors can be two, four, etc. | 5 |
| Number of seats Number of seats inclduing the driver and passenger ones. Depending on the model, the seats can be five, six, seven or other. | 5 |
| Length The distance from the frontmost to the rearmost point of the electric vehicle. | 209.4 in (inches) 5320 mm (millimeters) |
| Width with folded mirrors The width of the vehicle with folded mirrors included. | 73.0 in (inches) 1855 mm (millimeters) |
| Height The distance from the ground to the top of the electric car. | 72.6 in (inches) 1845 mm (millimeters) |
| Wheelbase The distance between the centers of the front and rear axle. | 121.5 in (inches) 3085 mm (millimeters) |
| Front track The distance between the centers (centerline) of the two wheels on the front axle. | 60.6 in (inches) 1540 mm (millimeters) |
| Rear track The distance between the centers (centerline) of the two wheels on the rear axle. | 61.0 in (inches) 1550 mm (millimeters) |
| Front overhang The distance from the foremost point of the vehicle to the middle of the front axle. In other words, this is the length that extends to the front of the wheelbase. Combined with the rear overhang and the wheelbase, this gives the total length of the vehicle. | 39.0 in (inches) 990 mm (millimeters) |
| Rear overhang The distance from the middle of the rear axle to the rearmost point of the vehicle. In other words, this is the length that extends to the rear of the wheelbase. Combined with the front overhang and the wheelbase, this gives the total length of the vehicle. | 48.8 in (inches) 1240 mm (millimeters) |
| Approach angle The approach angle designates the widest angle at which the vehicle can approach a ramp without hitting it with its front. This angle is measured from the front tire at ground to whichever element from the front of the vehicle fails to clear first. | 29 ° (degrees) |
| Departure angle The departure angle designates the widest angle at which the vehicle can leave a ramp without hitting it with its rear. This angle is measured from the rear tire at ground to whichever elements from the rear of the vehicle fails to clear first. | 25 ° (degrees) |
| Breakover angle Also known as ramp breakover angle, this measurement designates the maximum supplementary angle that the vehicle can drive over, without the angle apex touching any point of the vehicle. In other words, it shows the height of a road obstacle the vehicle can run over without getting hit underneath, considering the steepness of the angle on either side of the obstacle. | 20 ° (degrees) |
| Wading depth Also known as fording depth, wading depth indicates the maximum depth of a body of water the vehicle can traverse safely without risking water damage. | 27.6 in (inches) 700 mm (millimeters) |
| Clearance The distance from the ground to the lowest point of the vehicle measured without cargo or passengers. The ground clearance is also known as ride height. | 8.3 in (inches) 212 mm (millimeters) |
| Curb weight Curb weight (a.k.a. kerb weight) is the EV mass with standard equipment, liquids (oils and fuel at nominal tank capacity) but without cargo and passengers. In some EU countries, the curb weight also includes the weight of a 75 kg (165 lb) driver. | 5412.35 lb (pounds) 2455 kg (kilograms) |
| Payload In the context of automobiles, the payload is the summary of the weights of passengers, cargo, accessories, equipment. | 1576.31 lb (pounds) 715 kg (kilograms) |
| GVWR GVWR stands for gross vehicle weight rating and is also known as gross vehicle mass (GVM). It describes the maximum operating weight of the electric car including the curb weight and payload (accessories, equipment, driver, passengers and cargo). | 6988.65 lb (pounds) 3170 kg (kilograms) |
| Towing capacity braked The braked towing capacity designates the maximum weight the vehicle can tow when the trailer has its own braking system. This enables a higher towing capacity since the vehicle does not handle the entire stopping force on its own. | 3527.4 lb (pounds) 1600 kg (kilograms) |
| Towing capacity unbraked The unbraked towing capacity designates the maximum weight the vehicle can tow when the trailer lacks a braking system. This results in a lower towing capacity since the vehicle will handle the entire stopping force on its own. | 1653.47 lb (pounds) 750 kg (kilograms) |
| Additional information Additional details related to the electric car's body. | Deck length - 1555 mm Deck width - 1540 mm Deck height - 480 mm Deck volume - 1000 l |
Electric motor
Information about the model's electric motor and its performance
| Manufacturer The name of the manufacturer of the electric motor. | Toyota |
| Model The model name of the electric motor. | QL11 |
| Electric motor type The electric motor category according to the type of motor commutation. Most electric motors operate on magnetism and can be powered by direct current (DC) or alternating current (AC) sources. Depending on the type of commutation, electric motors are either self-commutated (AC and DC, mechanical or electronic) and externally commutated (AC only, asynchronous or synchronous). | Permanent Magnet Synchronous Motor (PMSM) |
| Location of the motor Information about the electric notor's location. The two most common locations are the front and rear of the electric car. | Rear |
| Power The power produced by the electric motor depends proportionally on the motor's rotational speed. | 128 kW (kilowatts) 171.7 hp (mechanical horsepower) 174.0 ps (metric horsepower) |
| Torque Torque is the driving force of an electric motor and is the rotational equivalent of a linear force. A typical feature of electric cars is that they get full torque from zero speed. | 268 Nm (newton meters) 27.3 kgm (kilogram meters) 197.7 ft-lb (foot-pounds) |
| Regenerative braking Regenerative braking is a typical feature of electric vehicles, in which the electric motor uses the vehicle's kinetic energy to save power or stores it for later use. | Yes |
| Driving modes Some manufacturers include software designed driving modes to improve power efficiency and/or range. Information about the available driving modes for this model. | Rock Mogul Mud Sand Dirt |
Second electric motor
Information about the model's second motor and its performance.
| Manufacturer The name of the manufacturer of the second electric motor. | Toyota |
| Model The model name of the second electric motor. | QN10 |
| Motor type Information about the type of the second motor depending on the type of current (AC or DC) and the type of motor commutation. Self-commutated AC and DC motors can be mechanical or electronic and externally commutated motors can be only synchronous or asynchronous AC ones. | Permanent Magnet Synchronous Motor (PMSM) |
| Location Information about the location of the second motor. The most common locations are the front and the rear of the electric vehicle. | Front |
| Power Information about the power of the second motor, which is proportionally related to the velocity and ultimately - the motor's voltage. | 80 kW (kilowatts) 107.3 hp (mechanical horsepower) 108.8 ps (metric horsepower) |
| Torque Information about the torque of the second electric motor. | 206 Nm (newton meters) 21.0 kgm (kilogram meters) 151.9 ft-lb (foot-pounds) |
| Regenerative braking Information weather the second electric motor has a regenerative braking capability. | Yes |
| Driving modes Information about the driving modes available for the second motor. | Rock Mogul Mud Sand Dirt |
Total system power and torque
Information about the total system power and torque of the vehicle.
| Total system power Very often manufacturers provide information only about the total system power without detailing the power output of each individual electric motor in the system. In most cases, it is the sum of the power output of all electric motors on the vehicle. | 144 kW (kilowatts) 193.1 hp (mechanical horsepower) 195.8 ps (metric horsepower) |
| Total system torque In a similar fashion to the total system power, the total system torque is frequently listed as the only indicator of the vehicle's torque. In most cases, it is the sum of the torque of all electric motors on the vehicle. | 468 Nm (newton meters) 47.7 kgm (kilogram meters) 345.2 ft-lb (foot-pounds) |
| Additional information More details about the electric motor system of the vehicle. | Silicon Carbide (SiC) inverter |
Performance
Information about the top speed and acceleration of the model.
| Top speed The top speed that the vehicle can achieve as specified by the manufacturer. | 87.0 mph (miles per hour) 140.0 km/h (kilometers per hour) |
| Acceleration from 0 to 100 km/h The time in seconds the electric car needs to accelerate from 0 to 100 km/h. | 9.90 s (seconds) |
Driving range
Information about the official driving range of the model according to EPA, NEDC, WPTL.
| Standard | Driving | Range |
|---|---|---|
| WLTP (Worldwide harmonized Light vehicles Test Procedure) | City | 236.1 mi / 380.0 km |
| WLTP (Worldwide harmonized Light vehicles Test Procedure) | Combined | 159.7 mi / 257.0 km |
Energy efficiency
Information about the energy efficiency of the model in various measurement units according to EPA, NEDC, WPTL.
| Standard | Driving | Rating |
|---|---|---|
| WLTP (Worldwide harmonized Light vehicles Test Procedure) | Combined | 21.8 kWh/100 km |
Steering
Information about the type of the steering mechanism of the model and related features.
| Type of steering mechanism Information about the design type of the steering mechanism of the electric car. | Rack and pinion |
| Type of power steering Information about the type of power steering used in this model. | Electronic |
| Turning circle Often referred to as turning diameter or turning radius (multiplied by two), this is the smallest diameter that the outside wheels of the vehicle describe when it is turning on full lock. | 12.8 m (meters) 41.99 ft (feet) |
Transmission
Information about the transmission of the model.
| Type of transmission Information about the type of transmission used by the vehicle. Generally, EVs are equipped with one-speed automatic units. | Automatic single-speed reduction gear |
| Drivetrain Information about the type of drivetrain (the system that delivers power to the driving wheels). | Four-wheel drive (4WD/4x4) |
Suspension
Information about the system of components that connects the wheels and axles to the chassis.
| Front suspension Information about the main components of the front suspension of the electric vehicle. | Independent Coil springs (helical springs) Double wishbone Anti-roll bar (stabilizer link / stabilizer bar) |
| Rear suspension Information about the main components of the rear suspension of the electric vehicle. | de Dion tube Leaf springs Dependent |
| Additional information Additional details about the suspension of this model. | 500 mm wheel articulation |
Brakes
Information about the brake system used on this model.
| Front brakes Information about the type of brakes used on the front wheels. | Ventilated discs |
| Rear brakes Information about the type of brakes used on the rear wheels. | Ventilated discs |
| Additional information Additional details about the brakes of this model. | Fixed calliper front (4-cylinder) Floating calliper rear (1-cylinder) |
Rims
Information about the rims available for this electric car.
| Markings | Width | Profile | Diameter | Contour | Offset | Material |
|---|---|---|---|---|---|---|
| 7.5Jx17 | 7.5 | J | 17 | - | 0 | Aluminium |
Tyres
Information about the tyres available for this electric vehicle.
| Markings | Width | Profile | Diameter | Load index | Speed index |
|---|---|---|---|---|---|
| 265/65R17 | 265 | 65 | 17 | - | - |
Battery
Specifications and features of the rechargeable battery that powers this vehicle.
| Usable (net) battery capacity Usable battery capacity (also referred to as net capacity) is the portion of an EV's total kWh that the vehicle can actually draw on while driving. It represents the energy the vehicle's management system makes available for real‑world use, excluding the built‑in safety buffers that protect the battery from overcharging or being drained too deeply. These reserved margins are essential for preserving long‑term performance and durability. | 59.2 kWh (kilowatt hours) |
| Total (gross) battery capacity Total, or gross, battery capacity describes the full amount of energy an EV's battery pack can physically store, measured in kilowatt‑hours (kWh). Automakers intentionally reserve a hidden buffer at both the top and bottom of the battery's charge range. By preventing the pack from ever reaching a true 0% or 100% state of charge, this minimizes stress on the cells, slows long‑term degradation, and helps extend the lifespan of the battery. | 62 kWh (kilowatt hours) |
| Battery capacity in Ah Ah is short for amp‑hour, a measure of how much electric charge a battery can store. It shows how many amps the battery can supply continuously for one hour before emptying. While Ah reflects charge capacity, it doesn't represent total energy. For evaluating an EV's real battery capacity and driving range, kWh is the meaningful metric. | 200 Ah (ampere hours) |
| Manufacturer The name of the company that has manufactured the battery. | Toyota Battery Co. (PEVE) |
| Type The type of rechargeable battery depending on its composition. | Lithium-Ion |
| Number of cells The batteries used by electric cars are usually packs that consist of a certain number of battery cells in different arrangements. Information about the total number of cells in this particular model. | 80 |
| Battery cell format The battery cell format explicitly describes the physical shape, dimensions, and structural design of the individual cell. Cylindrical cells (4680 or 2170 formats) offer high manufacturing scale and robustness. Prismatic cells are rigid, rectangular boxes providing exceptional space and packing efficiency. Pouch cells have a flexible, flat, and lightweight format suitable for optimizing weight and fitting custom space constraints. | Prismatic |
| Number of modules Battery cells are arranged in different modules that comprise battery packs. Information about the number of modules in this battery. | 5 |
| Battery voltage The battery voltage denotes the difference in electric potential between the positive and negative electrodes of the pack. The higher difference in potential results in a higher voltage. | 296 V (volts) |
| Location Information about the position of the battery pack in the electric vehicle. | Under the floor, middle |
| Thermal Management Information about the thermal management technologies used by this specific model. | Liquid-based coolant circulation Heat pump |
| Additional information Additional information about the rechargeable battery of the electric car. | Body-on-frame structure 400 V system 3.6 kW Vehicle-to-Load (V2L) |
Onboard charger/Charging port
Information about the onboard charger(s)/charging port(s) available on this electric vehicle.
| Interface | Location | |
|---|---|---|
![]() | Type 2 (IEC 62196-3 FF, CCS2) | Front-left side |
Charging type
Information about the different types of charging of this specific electric car.
| Interface | Type | Voltage | Current | Power | |
|---|---|---|---|---|---|
![]() | Type 2 (IEC 62196-2, Mennekes, SAE J3068) | AC | - | - | 10 kW |
![]() | Type 2 (IEC 62196-3 FF, CCS2) | DC | - | - | 150 kW |
Charging time
Information about the estimated charging time for this EV depending on the various type of charging it supports.
| Type | Battery % | Estimated time (h:m) |
|---|---|---|
| DC 150 kW | 10% - 80% | 00:30 |
| AC 10 kW | 10% - 100% | 06:30 |



