HomeEnginesCummins/Onan MTA11-G2

Cummins/Onan MTA11-G2 Engine

The Cummins/Onan MTA11-G2 is an engine. It powers generator sets from Cummins/Onan, including the DQAA and DQAB.

Also known as: Cummins MTA11-G2

Engine specifications

Maintenance schedule

ItemSpecCapacityPart #Interval
Fuel filterFuel Filter
Oil filterOil Filter
Battery24V Battery
CoolantCoolant
OilEngine Oil

Pooled from every document that names this exact engine — confirm the interval and part number against your unit's serial number.

Service specifications

60
TypeItemValueUnitCondition
ClearanceFloat switch assembly float lift clearance below C-clip stop1/8inch (3 mm)use a feeler gauge
ClearanceGenerator-to-engine angular alignment (T.I.R.).001 in. per inch of radius (center of shaft to indicator axis), maximumin750 kW gensets and larger
OtherGOV GAIN default value for paralleling applications70%
OtherREG VHZ (underfrequency roll-off) adjustable range1 through 50; normal range 7 through 21
OtherStart delay adjustment range0 to 300seconds
OtherStop delay adjustment range0 to 600seconds
PressureEngine oil pressure - K19 normal50-70psi (345-482 kPa)run mode
PressureEngine oil pressure - K38 normal45-65psi (310-448 kPa)run mode
PressureEngine oil pressure - K50 normal50-70psi (345-482 kPa)run mode
PressureEngine oil pressure - L10/M11 normal30-50psi (207-345 kPa)run mode
PressureEngine oil pressure - NTA 855 normal35-50psi (241-345 kPa)run mode
PressureEngine oil pressure - V28 normal50-90psi (345-620 kPa)run mode
PressureEngine oil pressure shutdown limit - L10/M1120psi (138 kPa)run mode value
PressureEngine oil pressure shutdown limit - L10/M118psi (55 kPa)idle mode value
PressureEngine oil pressure warning limit - L10/M1112psi (83 kPa)idle mode value
PressureEngine oil pressure warning limit - L10/M1125psi (172 kPa)run mode value
PressureK19 engine idle oil pressure20psi (138 kPa)idle
PressureK19 engine normal oil pressure50-70psi (345-482 kPa)normal run
PressureK19 oil pressure shutdown/warning limitsshutdown 35 psi (241 kPa) run; warning 40 psi (276 kPa) run; shutdown 10 psi (69 kPa) idle; warning 15 psi (103 kPa) idlepsi (kPa)
PressureK38 engine idle oil pressure20psi (138 kPa)idle
PressureK38 engine normal oil pressure45-65psi (310-448 kPa)normal run
PressureK38 oil pressure shutdown/warning limitsshutdown 35 psi (241 kPa) run; warning 40 psi (276 kPa) run; shutdown 10 psi (69 kPa) idle; warning 15 psi (103 kPa) idlepsi (kPa)
PressureK50 engine idle oil pressure20psi (138 kPa)idle
PressureK50 engine normal oil pressure50-70psi (345-482 kPa)normal run
PressureK50 oil pressure shutdown/warning limitsshutdown 35 psi (241 kPa) run; warning 40 psi (276 kPa) run; shutdown 10 psi (69 kPa) idle; warning 15 psi (103 kPa) idlepsi (kPa)
PressureL10/M11 engine idle oil pressure15psi (103 kPa)idle
PressureL10/M11 engine normal oil pressure30-50psi (207-345 kPa)normal run
PressureL10/M11 oil pressure shutdown limit20psi (138 kPa)run mode value
PressureL10/M11 oil pressure shutdown limit8psi (55 kPa)idle mode value
PressureL10/M11 oil pressure warning limit12psi (83 kPa)idle mode value
PressureL10/M11 oil pressure warning limit25psi (172 kPa)run mode value
PressureNTA 855 engine normal oil pressure35-50psi (241-345 kPa)normal run
PressureNTA 855 oil pressure shutdown limit25psi (172 kPa)run mode value
PressureNTA 855 oil pressure shutdown limit8psi (55 kPa)idle mode value
PressureNTA 855 oil pressure warning limit12psi (83 kPa)idle mode value
PressureNTA 855 oil pressure warning limit30psi (207 kPa)run mode value
PressureV28 engine idle oil pressure20psi (138 kPa)idle
PressureV28 engine normal oil pressure50-90psi (345-620 kPa)normal run
PressureV28 oil pressure shutdown/warning limitsshutdown 35 psi (241 kPa) run; warning 40 psi (276 kPa) run; shutdown 10 psi (69 kPa) idle; warning 15 psi (103 kPa) idlepsi (kPa)
ResistanceCoolant temperature sender resistance500 to 2kohms
ResistanceCurrent transformer (PT) primary1K-2.5Kohms
ResistanceCurrent transformer (PT) secondary140-225ohms
ResistanceExciter rotor winding resistance (per pair)approximately 0.136ohms
ResistanceExciter stator winding - frame size 4C/4D/4E/4F0.136ohmsat 68°F (20°C) + 10%
ResistancePMG stator resistance (HC4)4.6ohms
ResistancePMG stator resistance (HC5-HC7 & P7)2.6ohms
ResistancePMG stator resistance - frame size HC42/6ohms
ResistancePMG stator resistance - frame size HC5/HC6/HC74.6ohms
ResistancePT resistance (primary / secondary)primary 1K-2.5K ohms; secondary 140-225 ohmsohms
ResistancePT/CT module 3-ohm resistors3ohmsJ8-15 to 14, J8-22 to 23, J8-7 to 8
ResistanceThermistor relay trip point (thermistor chain resistance)3000 ±500ohms
ResistanceThermistor relay trip resistance3000 ±500ohms
SpeedEngine idle speed adjustment range800 ±100RPMdefault 800 RPM
SpeedIdle speed adjustment800 ±100RPMdefault 800 RPM
SpeedOverspeed shutdown threshold115% ±1%% of nominal
SpeedOverspeed shutdown threshold115% ±1% of nominal%
TemperatureHigh coolant temperature shutdown trip point215°F (102 °C)prime
TemperatureHigh coolant temperature shutdown trip point223°F (106 °C)standby
TemperatureHigh coolant temperature warning limit207°F (97 °C)prime
TemperatureHigh coolant temperature warning limit215°F (102 °C)standby

Extracted from the manufacturer documentation linked to this model. Values are copied as printed; confirm against your unit's manual and serial number.

Recommended fluids

FluidGradeStandardAmbientCapacityNotes
Coolantsoft water / E.G. / DCA mixtureCooling system to be filled with soft water/E.G./DCA mixture (on-site review checklist).
FuelDieselDay tank fuel transfer pump maintains reservoir of diesel fuel in the day tank.
GreaseLithium based grease, Mobilux No. 2 or Shell Alvania R3-30°C to 120°C2.74 oz (81 ml)End bearing lubricant; grease equally divided between bearing, bearing cap cavity and bearing cartridge cavity.

Extracted from the manufacturer documentation linked to this model. Values are copied as printed; confirm against your unit's manual and serial number.

Fault codes

40
CodeNameMeaningSeverityAction
101IDLE MODEIndicates that the engine is operating in idle mode. Grounding the engine idle input causes generator build-up to be inhibited and the engine to be governed at 800 RPM.WarningRemove ground from engine idle input to return to normal speed and voltage.
102EMERGENCY STOPIndicates local or remote Emergency Stop.ShutdownTurn the switch clockwise and allow it to pop out (local only). Move the Run/Off/Auto switch to Off. Press the Reset switch. Select Run or Auto, as required.
200LOW OIL PRESSUREIndicates engine oil pressure has dropped to an unacceptable level.WarningIf generator is powering critical loads and cannot be shut down, wait until next shutdown period and then follow 201-SHUTDOWN procedure. Access the Oil Pressure menu prior to clearing the fault.
201LOW OIL PRESSUREIndicates engine oil pressure has dropped below the shutdown trip point.ShutdownCheck oil level, lines and filters; replenish if low; reset control and restart.
204OIL PRES SENDERIndicates that the control has sensed that the engine oil pressure sender is out of its working range.WarningCheck that the engine oil pressure sender is properly connected.
210LOW COOLANT TEMPWarning occurs when engine coolant temperature is 70°F (21°C) or lower.WarningIndicates engine coolant heater is not operating or is not circulating coolant. Check coolant heater power supply, low coolant level, and heater element current draw.
211HIGH COOLANT TEMPIndicates the engine coolant temperature is getting close to the recommended maximum temperature limit: 215° F (102° C) − standby or 207° F (97° C) − primary.WarningReduce load if possible; check air inlets and outlets and remove obstructions to airflow.
212HIGH COOLANT TEMPIndicates engine has overheated (coolant temperature above 215° F (102° C) − standby or 207° F (97° C) − primary).ShutdownAllow engine to cool; check airflow, fan belt, coolant mixture, blower fan and circulation pumps.
213COOLANT SENDERResistance of the coolant temperature sender is out of range.WarningCheck the resistance of the sender; should be 500 to 2k ohms.
214LOW COOLANT LVLIndicates engine coolant level has fallen below the trip point.WarningCheck coolant level in radiator and coolant recovery bottle; replenish if low; look for leaks.
215LOW COOLANT LVLIndicates engine coolant level has fallen below the trip point.ShutdownAllow engine to cool; check coolant level and leakage points; reset control and restart.
220MAG PICKUPMag pickup speed indication is not being sensed or does not match generator set output frequency.ShutdownRestart and check RPM; check PCC model setting; inspect and test MPU.
221FAIL TO CRANKPossible fault with control or starting system.ShutdownCheck fuse F3 on the Engine Interface board. Check for poor battery cable connections; clean battery cable terminals and tighten. Recharge or replace a discharged or defective battery.
222OVERCRANKPossible fuel system problem.ShutdownCheck for empty fuel tank, leaks, plugged fuel lines; replace dirty fuel or air filter; reset and restart.
223OVERSPEEDIndicates engine has exceeded normal operating speed. (115% ±1% of nominal).ShutdownCheck mechanical fuel linkage and actuator; check governor output module (A38) and digital board (A32).
224FAIL TO SYNCHRONIZEGenerator set has not synchronized to the system bus within the allowable time frame.WarningCheck governor system stability; adjust governing and synchronizer parameters; check fuel system.
226FAIL TO CLOSEParalleling breaker has been given a signal to close, but has not closed properly.ShutdownVerify breaker charging mechanism; check close signal; verify auxiliary contact signals.
230LOW DC VOLTAGEIndicates battery voltage is below 10 VDC.WarningRecharge or replace the battery; check the battery charger fuse. Clean and tighten battery cable connections. Check engine DC alternator; replace if normal charging voltage is not obtained. Check float level if applicable.
231HIGH DC VOLTAGEIndicates battery voltage exceeds 32 VDC.WarningLower battery charger float level if applicable; check engine DC alternator.
232WEAK BATTERYIndicates battery voltage drops below 60% of nominal for two seconds, during starting.WarningSee LOW DC VOLTAGE 230.
240LOW FUEL−DAYIndicates day tank fuel supply is running low.WarningCheck fuel supply and replenish as required.
241LOW FUELLow fuel signal received.WarningCheck fuel supply and replenish; check for short to ground in external wiring.
250EEPROM ERRORPCC memory error; data corruption of critical operating parameters.ShutdownPerform initial start setup procedure; replace digital board (A32) if fault repeats.
251EEPROM ERRORPCC memory error; data corruption of noncritical operating parameters.WarningPerform adjustment and calibration procedures; replace digital board (A32) if fault repeats.
252EEPROM ERRORPCC memory error; data corruption of noncritical operating parameters.WarningVerify selected values; repeat save operation; replace digital board (A32) if fault repeats.
260CUSTOMER FAULT 1When a customer defined input is closed to ground, the corresponding fault message is displayed. Default message; editable for customer site requirements.WarningIsolate source of false signal; repair external wiring or replace A34.
261GROUND FAULTWhen a customer defined input is closed to ground, the corresponding fault message is displayed. Default message; editable for customer site requirements.WarningIsolate source of false signal; repair external wiring or replace A34.
262RUPTURE BASINWhen a customer defined input is closed to ground, the corresponding fault message is displayed. Default message; editable for customer site requirements.WarningIsolate source of false signal; repair external wiring or replace A34.
263HIGH GEN TEMPWhen a customer defined input is closed to ground, the corresponding fault message is displayed. Default message; editable for customer site requirements.WarningIsolate source of false signal; repair external wiring or replace A34.
270PHASE ROTATIONThe phase relationship between the generator set and the system bus is not matched.ShutdownVerify genset phase rotation matches bus; verify control wiring to bus PT module.
272FIRST STARTPowerCommand control is not receiving a proper signal from the system master first start sensor.WarningVerify Master First Start Sensor and interconnection wiring.
301HIGH AC VOLTAGEOne or more phase voltages exceeded 130% of nominal, or exceeded 110% of nominal for 10 seconds.ShutdownCheck PCC, alternator, excitation circuit, and PT/CT module wiring.
303LOW AC VOLTAGEOne or more phase voltages dropped below 85% of nominal for 10 seconds.ShutdownCheck PMG/field wiring, rotating rectifier, load and connectors.
313UNDER FREQUENCYIndicates that engine speed has dropped below 90% of nominal for 10 seconds. Five seconds before shutdown, a Load Dump signal is initiated.ShutdownCheck fuel supply, intake air supply and load.
320OVERCURRENTIndicates that generator output current has exceeded 110% of rated for 60 seconds.WarningCheck load and load lead connections.
321OVERCURRENTIndicates that generator output current has exceeded 110% of rated, and that a PCC time/current calculation has initiated an overcurrent shutdown.ShutdownCheck load and load lead connections.
322SHORT CIRCUITIndicates that generator output current has exceeded 175% of rated.ShutdownCheck load and load lead connections.
330OVERLOADThree-phase power output exceeds 105% of standby (or 115% of prime) rating.WarningCheck load and load lead connections.
335REVERSE POWERPower is flowing into the generator set rather than out from the unit.ShutdownVerify CT connections, load sharing lines, and generator set frequency/voltage.
337LOSS OF EXCITATIONAlternator excitation system is improperly adjusted or has failed.ShutdownCheck output voltage calibration, load sharing lines, and leading power factor loads.

Extracted from the manufacturer documentation linked to this model. Values are copied as printed; confirm against your unit's manual and serial number.

Procedures

12
Aligning Generator with Engine (Angular Alignment) adjustment

⚠ Accidental starting of the generator set during this procedure presents the hazard of severe personal injury or death.

Tools: Dial indicator, Shims

  1. Disconnect the negative (-) battery cable(s) before beginning.
  2. Fasten a dial indicator to the generator shaft or cooling fan with the sensing point on the capscrew head or flat surface of the drive disc at the bolt circle diameter.
  3. Bar the engine over in a clockwise rotation as viewed from engine flywheel; do not allow it to roll back on compression.
  4. Determine the total indicator reading (T.I.R.) as the sum of the maximum positive and negative dial indicator readings over one revolution.
  5. Measure the distance from the center of the generator shaft to the indicator measuring point.
  6. Measure the distance from the generator side of the flex discs to the center of the generator mounting bolt.
  7. Compare the distances; multiply this ratio times one half the T.I.R. to approximate the amount of shims to remove or add.
Angular Alignment Procedure (Generator to Engine) adjustment

⚠ Accidental starting during this procedure presents the hazard of severe personal injury or death.

⚠ Do not bar engine over by prying on fan blade.

Tools: dial indicator

  1. Disconnect the negative (-) battery cable(s) before beginning.
  2. Fasten a dial indicator to the generator shaft or cooling fan with sensing point resting on the drive disc capscrew head/flat surface at the bolt circle diameter.
  3. Bar the engine over in a clockwise rotation as viewed from the engine flywheel; do not allow it to roll back on compression at the end of travel of each reading.
  4. Record the total indicator reading (T.I.R.) as the sum of the maximum positive and negative dial indicator readings over one engine revolution.
  5. Compare the measured T.I.R. to the maximum allowed (.001 in. per inch of radius from center of shaft to indicator axis); add or remove shims under the generator mounting feet to correct.
Axial Alignment Procedure (Generator to Engine) adjustment

Tools: dial indicator

  1. Fasten a dial indicator holding device to the skid base, engine block, or generator shell with the sensor point resting on the generator shaft hub.
  2. Bar the engine over in a clockwise rotation through a couple of rotations, recording indicator readings at eight equally spaced points around the shaft diameter to obtain axial T.I.R.
  3. Reduce the measured T.I.R. runout by one half if excessive vibration remains after angular alignment.
Generator/PCC Control Isolation Procedure diagnostic

⚠ HIGH VOLTAGE. Touching uninsulated high voltage parts inside the control box can result in severe personal injury or death.

Tools: Voltmeter, Jumpers, 12 volt battery

  1. Throw the line circuit breaker OFF and shut down the set.
  2. Remove accessory box cover; remove plug P10 from A37 J10.
  3. Prepare to measure output voltage across generator terminals.
  4. Connect 12V battery jumpers to X (P10-6 red) and XX (P10-3 brown).
  5. Check polarity; incorrect polarity makes the test inconclusive.
  6. Start set and connect battery negative to the XX lead.
  7. Rated or higher balanced voltage means generator circuitry is OK.
  8. Unbalanced voltage: troubleshoot main stator; low voltage: exciter/field.
Insulation Resistance (Megger) & Polarization Index (PI) Testing diagnostic

⚠ The windings of medium-voltage (601 through 15,000 volts) generator sets must be dry before the generator is operated.

Tools: Megger or insulation resistance meter, Grounding cluster, High voltage gloves

  1. Perform the Generator Set Grounding Procedure.
  2. Disconnect plug J10 from A37 and AC control leads 4,5,6,7,8.
  3. If RTD option installed, ground all six RTD temperature leads (18 leads).
  4. Perform Insulation Resistance Test and PI Test for desired windings.
  5. Megger test: apply voltage for up to one minute.
  6. PI test: apply voltage for ten minutes; record 1-minute and 10-minute readings.
  7. PI ratio of 2 or greater is good for new and in-service sets.
  8. Investigate and correct low readings before returning set to service.
Megger and PI Test diagnostic

⚠ Medium-voltage (601 to 15,000 volts) windings must be dry before the generator is operated.

Tools: Megger or Insulation Resistance Meter, Wheatstone bridge or digital ohmmeter, Grounding Cluster

  1. Perform the Generator Set Grounding Procedure.
  2. Disconnect plug J10 from the voltage regulator output module and the AC control leads (marked 4, 5, 6, 7, 8).
  3. If RTD option installed, ground all six RTD temperature leads (18 leads total).
  4. Perform the Winding Resistance Test for the desired windings.
  5. Perform the Insulation Resistance (Megger) Test and PI Test for the desired windings.
  6. Megger test: apply voltage for up to one minute.
  7. PI test: apply voltage for ten minutes; record resistance at one minute and ten minutes.
  8. PI is the ten-minute reading divided by the one-minute reading; ratio of two or greater is good.
Testing Diodes diagnostic

⚠ Layers of dust can cause diodes to overheat and fail. Brush dust off regularly.

Tools: Ohmmeter

  1. Disconnect the diode pigtails from the terminal posts.
  2. Using an ohmmeter, measure resistance between pigtail and mounting plate.
  3. Reverse meter test probes and repeat the tests.
  4. Resistance should be high in one direction and low in the other.
  5. If high or low in both directions, replace the diode.
Testing the Float Switch Assembly diagnostic

Tools: Ohmmeter, Feeler gauge

  1. Remove the fuel pump control cover, disconnect the wiring jack and unscrew the assembly from the top of the day tank.
  2. With an ohmmeter, test for electrical continuity between each pair of colored leads while holding the assembly vertical; all readings should be zero.
  3. Lift each float, in turn, to 1/8 inch (3 mm) below the C-clip stop above it and test for continuity; all readings should be infinity.
  4. Use pipe thread sealant when replacing the assembly.
Testing the PMG diagnostic

⚠ HAZARDOUS VOLTAGE. Touching uninsulated parts inside the control housing and power output boxes can result in severe personal injury or death.

Tools: Digital multimeter, Wheatstone bridge or digital ohmmeter

  1. Disconnect PMG leads PMG 2, PMG 3, PMG 4 from connectors in AC harness.
  2. Start the engine and let speed stabilize.
  3. Measure voltage across lead pairs PMG 2&3, 3&4, 4&2.
  4. Voltage should be at least 150 VAC for 50 Hz sets, 180 VAC for 60 Hz.
  5. Stop set; measure resistance across the lead pairs with a Wheatstone bridge.
Current Transformer (CT) Installation installation

⚠ Improper installation of CTs will cause a “335 Reverse Power” shutdown error.

  1. Orient CT dot toward the generator (conventional current into dot).
  2. Route U/A, V/B, W/C load leads through CT21, CT22, CT23.
  3. 6 lead sets: route generator output leads through the CTs.
  4. 12 lead sets: route load wires through the CTs.
  5. Connect CT secondary wire 1 to CT pin 1; 2/3 to pin 2 (high voltage) or pin 3 (low voltage).
Fuel Transfer Pump Motor Connections installation
  1. Remove the end bell cover for access to the motor wiring terminals.
  2. Disconnect the brown lead from motor terminal P103-3 and connect it to terminal P103-6.
  3. Disconnect the red lead from motor terminal P103-2; reconnect to the piggy-back terminal on the lead at motor terminal P103-3.
  4. Cut the white lead from its ring connector at motor terminal P103-4 and strip 1/2 inch (12 mm) of insulation for splicing to harness lead P103-WHITE.
  5. Connect each lead of the five-lead wiring harness to the motor terminal or lead marked on it.
  6. Connect the red motor lead to the piggy-back terminal at motor terminal P103-3.
  7. Secure the end bell cover.
Magnetic Speed Pickup Unit (MPU) Installation installation

⚠ Do not use fan blade to bar over engine. That can damage blades and cause property damage and personal injury.

  1. Bar the engine until a flywheel gear tooth lines up in center of mounting hole.
  2. Thread the sensor in gently by hand until it just touches the gear tooth.
  3. Back it out one quarter turn.
  4. Set the locknut.

Extracted from the manufacturer documentation linked to this model. Values are copied as printed; confirm against your unit's manual and serial number.

Voltage reconnection

VoltagePhaseConnectionLeadsNotes
12 lead generator setsLoad wires are routed through the CTsReconnectable gensets (12 leads) have dual secondary CTs (3 pins); CT wire 2/3 to pin 2 (high voltage) or pin 3 (low voltage).
6 lead generator setsGenerator output leads are routed through the CTsNon-reconnectable gensets (6 leads) have single secondary CTs (2 pins).
Cummins PowerCommand generic AC Reconnect Wiring Diagram 625-2755 (Rev. D) and 625-3100 (Rev. F)Applies to models DFAA, DFAB, DFAC, DFBF, DFCB, DFCC, DFEB, DFEC, DFFB, DFGA, DFGB, DFJA, DFJB, DFJC, DFJD, DFLB, DFLC, DFLD, DFMB (625-2755) and models DFAA-DFMB plus DFCE, DFED, DQAA, DQAB, DQBA, DQBB (625-3100).
A (U)CT21U load leads (A phase)CT dot must face the generator; CT terminal 1 connects to metering circuit, terminal 2/3 to ground.
B (V)CT22V load leads (B phase)CT dot must face the generator; terminal 1 to metering circuit, terminal 2/3 to ground.
C (W)CT23W load leads (C phase)CT dot must face the generator; terminal 1 to metering circuit, terminal 2/3 to ground.

Extracted from the manufacturer documentation linked to this model. Values are copied as printed; confirm against your unit's manual and serial number.

Common questions

Which generators use the Cummins/Onan MTA11-G2 engine?

The Cummins/Onan MTA11-G2 powers 2 generator set(s), including Cummins/Onan DQAA, Cummins/Onan DQAB.