BDBB Bentley BDBB

6.0-літровий W12 двигун з двома турбокомпресорами, що забезпечує високу потужність і плавність роботи.

Brand: Bentley Type: Petrol Configuration: W12 Production Years: 2003 - 2010 Production: Crewe, England
22 Brand engines
2 Modifications

Technical Specifications

Engine Displacement 6.0 L (5,998 cc)
Configuration W12
Number of Cylinders 12
Valves per Cylinder 4
Power 560 - 610 л.с.
Torque 650 - 750 Н*м
Cylinder Bore 84.00 mm
Piston Stroke 90.20 mm
Compression Ratio 9.0:1
Firing Order 1-12-5-8-3-10-6-7-2-11-4-9
Fuel System Direct Injection
Aspiration Twin-Turbocharged
Turbocharger Two KKK K04 turbochargers
Intercooler Yes
Maximum RPM 6,100 rpm
Max Torque RPM 1,600 rpm
Valve Train DOHC
Timing Drive Chain
Timing Chain Replacement 250000 or as needed
Block Material Aluminum
Head Material Aluminum
Engine Weight 290 kg
Dimensions (L×W×H) null mm
Lubrication System Dry sump
Cooling System Liquid cooling

Additional Information

Engine Family null
Manufacturing Plant Crewe, England
Predecessor null
Successor null

Maintenance

Engine Oil Capacity 12 L (with filter: 12.5 L)
Recommended Viscosity 5W-40
Oil Standard VW 502 00
Recommended Brands Castrol Edge, Mobil 1, Shell Helix
Oil Change Interval 15 000 km or 12 mo
Oil Filter 07C115561B
Air Filter 3W0129620
Replace every 60 000 km
Fuel filter 3D0201511A
Cabin Filter 3W0819631
Spark Plugs Type: Iridium
Part number: 101905626
Gap: 0.8 mm
Quantity: 12 pcs
Replace every 60 000 km
Coolant Capacity 16 L
Coolant Type G12++ (Bentley Coolant)
Coolant Change Interval 240 000 km
Thermostat Opening Temperature 87°C
Operating Temperature 90°C
Max Operating Temperature 110°C
Critical Temperature 120°C
Annual Maintenance Cost 2000-3000 USD

Reliability

Reliability rating: 7/10

Expected lifespan: 300 000 km

Common problems

Problem Severity Mileage Repair cost
Turbocharger failure High 100000-150000 km $3000-5000
Oil leaks Medium 80000-120000 km $500-1000

Known defects

  • Early models had turbocharger issues
  • PCV valve failures

Warranty extensions

  • Bentley extended warranty for turbocharger issues up to 8 years/100000 miles

Tuning potential

Tuning potential: High | Max. safe power: 800 hp

Stage Power Torque Method Cost
Stage 1 650 hp 850 Nm ECU remap only
Reliability impact: Minimal
$1500
Stage 2 700 hp 900 Nm ECU, Exhaust System
Required: Upgraded intercoolers, Downpipes, ECU remap
Reliability impact: Low
$5000
Stage 3 750 hp 1000 Nm -
Required: Larger turbochargers, Forged internals, Upgraded fuel system
Reliability impact: Medium-High
$15000

Popular modifications

Tuning limitations

  • Stock internals limit at ~750hp
  • Cooling system upgrades needed for sustained high power

Cars with the BDBB engine

This engine was fitted to 1 model

Photo Brand Model Generation Production years
No photo
Bentley Continental Continental 2003 - 2011

All modifications (2)

Vehicle Generation Modification Power Gearbox Drive
Bentley Continental Continental 6.0 W12 552 л.с. 6-МКП 4x4 552 hp 6-МКП 4x4
Bentley Continental Continental 6.0 W12 552 л.с. 8-Автомат 4x4 552 hp 8-Автомат 4x4

Interesting Facts

  • The BDBB engine was one of the first W12 engines used in a production car.
  • It features a unique twin-turbo setup for enhanced performance.

Applications

Total produced: null

Vehicle Generation Years Power Markets
Bentley Continental GT 1st Gen 2003-2010 560hp/610hp Global

Compatible transmissions: 6-speed Automatic ZF

Drive types: AWD

Fuel Economy

Fuel Type Petrol 98
Octane Rating Minimum: 95 | Recommended: 98
Consumption (City) 19 L/100km
Consumption (Highway) 11 L/100km
Consumption (Combined) 14.5 L/100km
Real Consumption 16 L/100km
Fuel Tank Capacity 90 L
Range 620 km
Cost per 100 km 25-30 USD

Emissions Standards

Emission Standard Euro 4
CO₂ Emissions 410 g/km
Particulate Filter (DPF) Absent
AdBlue Not Required

Awards and Recognition

  • null () — null

Comparison with competitors

Engine Brand Displacement Power Torque
M275 Mercedes-Benz 5,980 cc 612 hp 1000 Nm

Pros

  • Unique W12 configuration
  • Smooth power delivery
  • High tuning potential

Cons

  • High maintenance costs
  • Complex engine design
  • Fuel consumption