M11-C380E20 Industrial Application Engine


M11-C380E20 Industrial Application Engine

Engine ModelM11-C380E20
Maxi. Rating380 HP @ 2100 RPM
Compression Ratio16.1 : 1
Type4 Cycle; 6 Cylinder
Fuel SystemPT-STC
AspirationTurbocharged & Aftercooled
Emission StandardEuro II
Displacement10.8 L
Bore * Stroke125 mm × 147 mm
Packing Size (L * W * H)3200 mm * 980 mm * 1760 mm

General Infomation of CCEC M11-C380E20  Industrial Engine

General Information of CCEC M11-C380E20 Industrial Engine
Engine ModelM11-C380E20Standby PowerN/A
Maxi. Rating380 HP @ 2100 RPMEmission StandardNaitonal II
Curve & DatasheetFR-209Peak Torque1650 N.m/1300r/min.
Compression Ratio16.1 : 1Displacement10.8 L
Type4 Cycle , In-line , 6 CylinderBore * Stroke125 mm × 147 mm
Fuel SystemPT-STCDry Weight (Fan Hub to Flywheel Engine)940 kg
AspirationTurbocharged & Air-Air IntercoolerWet Weight (Fan Hub to Flywheel Engine)980 kg
Packing Size (L * W * H)3200 mm * 980 mm * 1760 mmC.G. Distance From Rear Face of Block (Engine Only)450 mm
ConfigurationD353005CX03C.G. Distance Above Crank Centerline (Engine Only)191 mm
CPL Code RevisionCQ206Firing Order1-5-3-6-2-4
Performance Data of CCEC M11-C380E20 Industrial Engine
Idle675-750 RPMCrankshaft Thrust Bearing Load — Maximum Continuous4000 N
Maximum No-Load Governed Speed2450 RPMMaximum Allowable Power From Front of CrankshaftN/A
Crankshaft Thrust Bearing Load — Maximum Intermittent9000 N

Engine Performance Data CCEC M11-C380E20 Industrial Engine

Engine Performance Data CCEC M11-C380E20 Industrial Engine
Rated pointMaximum torque point
Engine Speed2100 r/min1300 r/min
Output Power284 kW227 kW
Torque1280 N.m1650 N.m
Oil Pressure274 kPa250 kPa
Intake Manifold Pressure189 kPa112 kPa
Mechanical Loss44 kW18.6 kW
Supercharger Intake Air Flow450 L/s240 L/s
Exhaust Gas Flow968 L/s650 L/s
Exhaust Gas Temperature420 ℃575 ℃
Heat Loss To The Environment14 kW17 kW
Heat Loss To the Coolant155 kW147 kW
Heat Loss To Fuel2.5 kW2.1 kW
Engine Coolant Flow7.3 L/s3.9 L/s
Steady-State Smoke0.2 Rb1.2 Rb

System Technical Data of CCEC M11-C380E20 Industrial Engine

System Technical Data of CCEC M11-C380E20 Industrial Engine
Exhaust SystemMaximum Exhaust Back Pressure10 kPa
Recommended Exhaust Piping Size (Inner Diameter)102 mm
Maximum Static Bending Moment Of Supercharger Exhaust End Mounting Surface27 N.m
Air Intake SystemMaximum Intake Resistance For Light Duty Dry Air Filters— Clean Element3.7 kPa
Maximum Intake Resistance For Light Duty Dry Air Filters— Dirty Element6.2 kPa
Maximum Allowable Temperature Rise Between Supercharger Inlet And Atmosphere16 ℃
Minimum Ash Storage Capacity Of Lightweight Air Filters53 g / L/s
Lubrication SystemNominal Operating Oil Pressure — Minimum Low Idle69 kPa
Nominal Operating Oil Pressure — Maximum Rated SpeedN/A
Minimum Engine Oil Pressure For Engine Protection Devices — Minimum Low IdleN/A
Cooling SystemWater Capacity Of Engine Internal Coolant12.9 L
Standard Thermostat Temperature Range82–93 ℃
Maximum Resistance Allowed By The External Cooling Cycle Of The Engine34.5 kPa
Minimum Pump Inlet Pressure With Thermostat Fully Open And Without Tank Pressure Cap64 kPa
Maximum Static Head For Cooling Water Above Center Line Of Engine Crankshaft14 m
Maximum Coolant Pressure In Cylinder Block (Thermostat Off And No Pressure Cap)276 kPa
Minimum Pressure Allowed By Pressure Cap50 kPa
Maximum Engine Coolant Outlet Temperature100 ℃
Maximum Alarm Temperature Of Engine Coolant102 ℃
Recommended Minimum Temperature For Engine Coolant70 ℃
Minimum Allowable Rate Of Water Addition19 L/min
Maximum Time Allowed For Initial Filling5 min
Minimum Allowable Cooling Water Expansion Space – Percentage Of Total System Volume5 %
Maximum Allowable Degassing Time25 min
Minimum Allowable Coolant Water Level Reduction Volume7.1 L
Maximum Coolant Flow To Accessories75 L/min
Minimum Water Storage Except Expansion Space9.5 L
Starting SystemMinimum Average Starting Speed Required Without Auxiliary Cold Starting Device150 r/min
Minimum Average Starting Speed Required With Auxiliary (Ether) Cold Starting Device100 r/min

M11-C380E20 Product Advantages

Outstanding Performance

  • Advanced PT fuel system with ultra-high injection pressure ensures optimal fuel atomization and complete combustion.
  • High-efficiency Cummins turbocharger enhances air intake, improving engine efficiency. The pressure pulse exhaust manifold fully utilizes exhaust energy to further optimize combustion, boost low-load efficiency, and reduce specific fuel consumption.
  • High torque, powerful performance, rapid transient response, and superior torque reserve.

Exceptional Durability

  • High-strength integrated design of cylinder block and head minimizes failure rates, ensuring long-lasting performance and proven reliability.

Superior Reliability

  • Cummins’ advanced PT fuel system features unique overspeed protection, low-pressure fuel supply, and simplified piping for reduced failure rates. Engineered with exceptional overall design for unparalleled reliability.

Easy Maintenance

  • Modular design with compact, block-based integration enables detachable and reusable components. Shared platform design ensures high parts commonality across models.

Contact BLSH Now!

=