Volkswagen e-Transporter Shuttle LWB 210 kW 64 kWh

Available since April 2025

£67,355Price from

63.8 kWhUseable Battery

150 mi *Real Range

425 Wh/mi *Efficiency

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Price from £67,355

Availability Available to order
Available to order since April 2025
Available to order until -

Lease (BCH) from £900 pcm

Annual VED £400
Electric Car Grant applied N/A
Insurance Group N/A
Price shown is On The Road Price: it includes VAT, first year VED, vehicle first registration fee, number plates and delivery. Lease estimate is based on a BCH calculation excluding VAT, 6+35 months payment profile, 10,000 miles per annum, excluding optional maintenance package. For comparison only, actual lease offers can differ significantly from the indication shown.

Real Range Estimation between 105 - 225 mi

City - Cold Weather * 160 mi
Highway - Cold Weather * 105 mi
Combined - Cold Weather * 130 mi
City - Mild Weather * 225 mi
Highway - Mild Weather * 135 mi
Combined - Mild Weather * 170 mi
Indication of real-world range in several situations. Cold weather: 'worst-case' based on -10°C and use of heating. Mild weather: 'best-case' based on 23°C and no use of A/C. For 'Highway' figures a constant speed of 70 mph is assumed. The actual range will depend on speed, style of driving, weather and route conditions.
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Long Distance Suitability
1 / 5

First Leg Distance 107 mi
Charging Stop 0mi
Second Leg Distance 46 mi
Total Distance 153 mi
First Leg Duration 1h 35min
Charging Stop 15 min
Second Leg Duration 40min
Total Duration 2h 30min
The 'long distance suitability' is a 5-star rating that indicates how suitable a vehicle is for long trips. The rating is based on the 1-Stop Range: the total distance a vehicle can cover with one charging stop of 15 minutes.

Battery

Nominal Capacity * 68.0 kWh
Battery Type Lithium-ion
Number of Cells No Data
Architecture 400 V
Warranty Period 8 years
Warranty Mileage 100,000 mi
Useable Capacity 63.8 kWh
Cathode Material NCM
Pack Configuration No Data
Nominal Voltage 303 V
Form Factor No Data
Name / Reference No Data

Charging

Home / Destination

Charge Port Type 2
Port Location Right Side - Front
Charge Power † 11 kW AC
Charge Time (0->150 mi) † 7 hours
Charge Speed † 22 mph

Rapid Charging

Charge Port CCS
Port Location Right Side - Front
Charge Power (max) 125 kW DC
Charge Power (10-80%) 75 kW DC
Charge Time (15->120 mi) 38 min
Charge Speed 160 mph
Autocharge Supported No Data

Plug & Charge

Plug & Charge Supported No Data
Supported Protocol No Data

Battery Preconditioning

Preconditioning Possible No Data
Automatically using Navigation No Data
† This can only be achieved using a 3-phase grid connection. The majority of homes and charge points do not have this connection. In practice charge power will often be 7.4 kW, allowing for a charge time of 10h15m and a charge speed of 15 mph.
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Performance

Acceleration 0 - 62 mph 7.4 sec
Top Speed 93 mph
Electric Range * 150 mi
Total Power 210 kW (282 hp)
Total Torque 306 lb-ft
Drive Rear

Bidirectional Charging (V2X / BPT)

Vehicle-to-Load (V2L)

V2L Supported No Data
Max. Output Power No Data
Exterior Outlet(s) No Data
Interior Outlet(s) No Data

Vehicle-to-Home (V2H)

V2H via AC Supported No Data
Max. Output Power No Data
V2H via DC Supported No Data
Max. Output Power No Data

Vehicle-to-Grid (V2G)

V2G via AC Supported No Data
Max. Output Power No Data
V2G via DC Supported No Data
Max. Output Power No Data

Energy Consumption

EVDB Real Range

Range * 150 mi
Vehicle Consumption * 425 Wh/mi
CO2 Emissions 0 g/km
Vehicle Fuel Equivalent * 95 mpg

WLTP Ratings (TEL)

Range 194 mi
Rated Consumption 383 Wh/mi
Vehicle Consumption 329 Wh/mi
CO2 Emissions 0 g/km
Rated Fuel Equivalent 106 mpg
Vehicle Fuel Equivalent 123 mpg

WLTP Ratings (TEH)

Range 172 mi
Rated Consumption 435 Wh/mi
Vehicle Consumption 371 Wh/mi
CO2 Emissions 0 g/km
Rated Fuel Equivalent 93 mpg
Vehicle Fuel Equivalent 109 mpg
TEL = Test Energy Low | TEH = Test Energy High
Rated = official figures as published by manufacturer. Rated consumption and fuel equivalency figures include charging losses.
Vehicle = calculated battery energy consumption used by the vehicle for propulsion and on-board systems.
NOTE: The fuel equivalency figures are shown in IMPERIAL MPG. Figures in US MPG will differ significantly.

Real Energy Consumption Estimation between 284 - 608 Wh/mi

City - Cold Weather * 399 Wh/mi
Highway - Cold Weather * 608 Wh/mi
Combined - Cold Weather * 491 Wh/mi
City - Mild Weather * 284 Wh/mi
Highway - Mild Weather * 473 Wh/mi
Combined - Mild Weather * 375 Wh/mi
Indication of real-world energy use in several situations. Cold weather: 'worst-case' based on -10°C and use of heating. Mild weather: 'best-case' based on 23°C and no use of A/C. For 'Highway' figures a constant speed of 70 mph is assumed. The energy use will depend on speed, style of driving, climate and route conditions.
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Dimensions and Weight

Length 5450 mm
Width 1999 mm
Width with mirrors 2275 mm
Height 1968 mm
Wheelbase 3100 mm
Weight Unladen (EU) 2493 kg
Gross Vehicle Weight (GVWR) 3350 kg
Max. Payload 932 kg
Cargo Volume 1000 L
Cargo Volume Max 5490 L
Cargo Volume Frunk 0 L
Roof Load 170 kg
Tow Hitch Possible Yes
Towing Weight Unbraked 750 kg
Towing Weight Braked 2000 kg
Vertical Load Max 80 kg

Miscellaneous

Seats 9 people
Isofix No Data
Turning Circle 13.8 m
Platform No Data
EV Dedicated Platform No
Car Body Small Passenger Van
Segment N - Passenger Van
Roof Rails No
Heat pump (HP) Yes
HP Standard Equipment Yes

Company Car Tax Indication

Financial Year 2025-26

BIK Tax Rate 3%
P11D Value from £66,900
Benefit in Kind (BIK) £2,007
BIK @ 20% £33 pcm
BIK @ 40% £67 pcm
BIK @ 45% £75 pcm

Financial Year 2026-27

BIK Tax Rate 4%
P11D Value from £66,900
Benefit in Kind (BIK) £2,676
BIK @ 20% £45 pcm
BIK @ 40% £89 pcm
BIK @ 45% £100 pcm

Financial Year 2027-28

BIK Tax Rate 1%
P11D Value from £66,900
Benefit in Kind (BIK) £669
BIK @ 20% £11 pcm
BIK @ 40% £22 pcm
BIK @ 45% £25 pcm
* = estimated value. Average energy consumption and range based on moderate drive style and climate. Real-life values may differ significantly. Pricing information might not be actual for some regions. No rights can be derived from the information on this site.

Similar electric vehicles

Volkswagen e-Transporter Kombi LWB 100 kW 65 kWhVolkswagen e-Transporter Kombi L £12,931 less expensive 5 mi more range 73% slower acceleration 3% more energy efficient Similar rapid-charging speed
Ford e-Tourneo Custom L1 160 kWFord e-Tourneo Custom L1 160 kW £6,469 less expensive 5 mi less range 22% slower acceleration 4% less energy efficient 11% slower rapid-charging
Volkswagen e-Transporter Shuttle LWB 100 kW 65 kWhVolkswagen e-Transporter Shuttle £10,206 less expensive Similar range 73% slower acceleration Similar energy consumption Similar rapid-charging speed
Range comparision based on electric range only. Rapid charging comparison based on rapid charge rate. Comparisons can be based on estimates.

Home and Destination Charging (0 -> 100%)

Charging is possible by using a regular wall plug or a charging station. Public charging is always done through a charging station. How fast the EV can charge depends on the charging station (EVSE) used and the maximum charging capacity of the EV. The table below shows all possible options for charging the Volkswagen e-Transporter Shuttle LWB 210 kW 64 kWh. Each option shows how fast the battery can be charged from empty to full.

Type 2 (Mennekes - IEC 62196)
Charging Point Max. Power Power Time Rate
Wall Plug (2.3 kW) 230V / 1x10A 2.3 kW 32h45m 5 mph
1-phase 16A (3.7 kW) 230V / 1x16A 3.7 kW 20h30m 7 mph
1-phase 32A (7.4 kW) 230V / 1x32A 7.4 kW 10h15m 15 mph
3-phase 16A (11 kW) 400V / 3x16A 11 kW 7 hours 21 mph
3-phase 32A (22 kW) 400V / 3x16A 11 kW † 7 hours 21 mph

† = Limited by on-board charger, vehicle cannot charge faster.

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Rapid Charging (10 -> 80%)

Rapid charging enables longer journeys by adding as much range as possible in the shortest amount of time. Charging power will decrease significantly after 80% state-of-charge has been reached. A typical rapid charge therefore rarely exceeds 80% SoC. The rapid charge rate of an EV depends on the charger used and the maximum charging power the EV can handle. The table below shows all details for rapid charging the Volkswagen e-Transporter Shuttle LWB 210 kW 64 kWh.

  • Max. Power: maximum power provided by charge point
  • Avg. Power: average power provided by charge point over a session from 10% to 80%
  • Time: time needed to charge from 10% to 80%
  • Rate: average charging speed over a session from 10% to 80%
Combined Charging System (CCS Combo 2)
Charging Point Max. Power Avg. Power Time Rate
CCS (50 kW DC) 50 kW 40 kW † 71 min 89 mph
CCS (100 kW DC) 100 kW 65 kW † 43 min 140 mph
CCS (150 kW DC) 125 kW † 75 kW † 38 min 160 mph

† = Limited by charging capabilities of vehicle

Actual charging rates may differ from data shown due to factors like outside temperature, state of the battery and driving style.

Volkswagen Claimed Specifications

The table below shows the claimed specifications from the manufacturer for charging the Volkswagen e-Transporter Shuttle LWB 210 kW 64 kWh. The specifications can differ from the table above for a variety of reasons. If real-world charge tests are available, these differences can be signifcant. If no real-world tests are available, the table above will be based on the manufacturer specifications as per the table below.

  • Max. Power: maximum charge power during charging session
  • Charge From: battery percentage (% SoC) where charging session is started
  • Charge To: battery percentage (% SoC) where charging session is ended
  • Time: time needed for charging session
Volkswagen Claimed Specifications
Max. Power Charge From Charge To Time
125 kW 10 % 80 % 39 min

Long Distance Suitability

How suitable an electric car is for long trips depends not only on the range. How quickly the car can charge plays an almost equally important role. Whether an EV is suitable for long trips depends on the battery capacity, efficiency, and fast charging capability.

To easily compare cars among each other, a benchmark has been established that combines these factors into the total distance a vehicle can cover with one 15-minute charging stop: the '1-Stop Range'. Based on the 1-Stop Range, the 5-star rating is determined. The result of the benchmark is shown in the graph below.

1-Stop Range

+

5-Star Rating

+

Revision of Rating

+

Volkswagen e-Transporter Shuttle LWB 210 kW 64 kWh
1 / 5

0
1
2
3
4
5
120 mi
1h 45min
15 min
51 mi
45min
107 mi
1h 35min
15 min
46 mi
40min
153 mi (2h 30min)
98 mi
1h 26min
15 min
42 mi
37min
139 mi (2h 18min)
0 mi
100
200
300
400
Mild Weather
171 mi 1-Stop Range
Average Conditions
153 mi 1-Stop Range
Cold Weather
139 mi 1-Stop Range

All about the Volkswagen e-Transporter Shuttle LWB 210 kW 64 kWh

Pricing

The Volkswagen e-Transporter Shuttle LWB 210 kW 64 kWh has an On The Road Price (OTR) of £67,355. The OTR Price includes VAT, first year of VED, vehicle first registration fee, number plates and delivery.

Drivetrain and Performance

The Volkswagen e-Transporter Shuttle LWB 210 kW 64 kWh is a full electric vehicle (BEV). The maximum power of the Volkswagen e-Transporter Shuttle LWB 210 kW 64 kWh is 210 kW (282 hp). The maximum torque is 306 lb-ft. The Volkswagen e-Transporter Shuttle LWB 210 kW 64 kWh is rear wheel drive and can accelerate from 0 to 62 miles per hour in 7.4 seconds. The top speed is 93 mph.

Battery and Charging

The battery of the Volkswagen e-Transporter Shuttle LWB 210 kW 64 kWh has an estimated total capacity of 68 kWh. The usable capacity is 63.8 kWh. An estimated range of about 150 miles is achievable on a fully charged battery. The actual range will however depend on several factors including climate, terrain, use of climate control systems and driving style.

For example: sustaining high speeds in cold weather could result in a range of around 105 mi. However, driving at low speeds in mild weather will increase the range to around 225 mi.

Charging is done using a Type 2 connector and the on-board charger has a maximum power of 11 kW. This charges a fully depleted battery back to full in around 7 hours. However, a 3-phase grid connection is needed to achieve this. The majority of homes and charge points currently do not have this connection. In most cases the maximum charging power will be 7.4 kW, allowing for a charge time of 10 hours 15 minutes and a charge rate of 15 mph. Charging the car using a regular wall plug will take around 32 hours 45 minutes.

Rapid charging is possible through a CCS connection. The maximum rapid charge power is 125 kW. The battery can't be charged continuously at this power. In an average rapid charge session the average charge power will be around 75 kW. This charges the battery from 10% to 80% in around 40 minutes. A rapid charge like this will add about 105 miles of range.

Energy Consumption

The estimated combined (motorway and city) energy consumption of the Volkswagen e-Transporter Shuttle LWB 210 kW 64 kWh is about 425 Wh per mile. By comparison, this energy consumption is the equivalent of a fuel consumption of 95 mpg in a traditional petrol car.

The actual energy consumption will depend on several factors including climate, terrain, use of climate control systems and driving style. For example: sustaining high speeds in cold weather could result in an energy use of around 608 Wh per mile. However, driving at low speeds in mild weather will increase the efficiency to about 284 Wh per mile.

CO2 Emission

The Volkswagen e-Transporter Shuttle LWB 210 kW 64 kWh emits no CO2 during driving. This only includes direct emissions from the vehicle itself. The energy needed to charge the battery might have been (partly) generated by the use of fossil fuels. Vehicles with an internal combustion engine will always emit CO2 during driving. Additionally, CO2 is emitted during the production and transport of fossil fuels.

More information from Volkswagen

The link below will open the page of the e-Transporter Shuttle on the official Volkswagen site.

Go to the e-Transporter Shuttle on the official Volkswagen website.

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