0339575 SCREW, Ball joint EVINRUDE
BE10RELEUS, BE15RELEUC, BE200CXECM, BE200CXEDR, BE200CXEUA, BE225CXECS, BE225CXEDE, BE225CXEUD, BE25ARECA, BE35ARECR, BE35AREEA, BE35ARSIB, BE35ARSSM, DE150CXAAA, DE150CXAAC, DE150CXINS, DE150PXAAA, DE150PXAAC, DE150PXINS, DE200CXAAA, DE200CXAAC, DE2
SCREW
Price: query
Rating:
Compatible models:
BE10RELEUS
BE15RELEUC
BE200CXECM
BE200CXEDR
BE200CXEUA
BE225CXECS
BE225CXEDE
BE225CXEUD
BE25ARECA
BE35ARECR
BE35AREEA
BE35ARSIB
BE35ARSSM
DE150CXAAA
DE150CXAAC
DE150CXINS
DE150PXAAA
DE150PXAAC
DE150PXINS
DE200CXAAA
DE200CXAAC
DE200HXAAA
DE200HXAAC
DE200HXAAD
DE200PXAAA
DE200PXAAC
DE200XCAAA
DE200XCAAC
DE200XCAAD
DE225CXAAA
DE225CXAAC
DE225CXAAD
DE225CXINS
DE225PXAAA
DE225PXAAC
DE225PXAAD
DE225PXINS
DE250CXAAA
DE250CXAAC
DE250CXAAD
DE250CXISF
DE250PXAAA
DE250PXAAC
DE250PXAAD
DE250PXISF
DE300CXAAA
DE300CXAAC
DE300CXAAD
DE300CXIIC
DE300CXINR
DE300CXISF
DE300CZIIC
DE300PXAAA
DE300PXAAC
DE300PXAAD
DE300PXIIC
DE300PXINR
DE300PXISF
E100FPLSOC
E100FPLSRS
E100WPLSIF
E105WELSIF
E10EECC
E115DBXAAA
E115DBXABA
E115DBXIIB
E115DBXINE
E115DBXISF
E115DBXSCR
E115DBXSEF
E115DBXSUC
E115DCXAAA
E115DCXABA
E115DCXIIA
E115DCXINM
E115DCXISF
E115DCXSCS
E115DCXSEF
E115DHLAAA
E115DHLABA
E115DHLIIR
E115DHLINA
E115DHLISC
E115DHLSES
E115DHXAAA
E115DHXABA
E115DHXIIR
E115DHXINA
E115DHXISC
E115DHXSES
E115DPLSCR
E115DPLSEF
E115DPLSUC
E115DPXSCR
E115DPXSEF
E115DPXSUC
E115DSLAAA
E115DSLABA
E115DSLIIB
E115DSLINE
E115DSLISF
E115DSLSCR
E115DSLSEF
E115DSLSUC
E115FPLEEC
E115FPLSDS
E115FPLSIF
E115FPLSNF
E115FPLSOD
E115FPLSRE
E115FPLSSH
E115FPLSTB
E115FPXSDS
E115FPXSOD
E115FPXSRE
E115FSLECS
E115FSLSDS
E115HSLSES
E130DCXAAA
E130DCXABA
E130DCXIIR
E130DCXINA
E130DCXISC
E130DCXSES
E130DPLAAA
E130DPLABA
E130DPLIIR
E130DPLINA
E130DPLISC
E130DPLSES
E130DPXAAA
E130DPXABA
E130DPXIIR
E130DPXINA
E130DPXISC
E130DPXSES
E130DSLAAA
E130DSLABA
E130DSLIIR
E130DSLINA
E130DSLISC
E130DSLSES
E135DHLAAB
E135DHXAAC
E135FCXSDE
E135FCXSIF
E135FCXSNF
E135FCXSOB
E135FCXSRM
E135FCXSSS
E135FCXSTA
E135FPLSDE
E135FPLSOB
E135FPLSRM
E135FPLSTA
E135FPLSTF
E135FPXSDE
E135FPXSOB
E135FPXSRM
E135FSLSDE
E135FSLSTA
E135FSLSTF
E135HCXAAC
E135HSLAAB
E150DBXAAA
E150DBXAAC
E150DBXIIB
E150DBXINE
E150DBXISF
E150DBXSCF
E150DBXSCR
E150DBXSEA
E150DBXSUF
E150DCXAAA
E150DCXAAC
E150DCXIIB
E150DCXINE
E150DCXISF
E150DCXSCF
E150DCXSCR
E150DCXSEA
E150DCXSUF
E150DHLAAA
E150DHLIIB
E150DHLINE
E150DHLISF
E150DHLSCF
E150DHLSCR
E150DHLSEA
E150DHLSUF
E150DPLAAA
E150DPLIIB
E150DPLINE
E150DPLISF
E150DPLSCR
E150DPLSEA
E150DPLSUF
E150DPXAAA
E150DPXAAC
E150DPXIIB
E150DPXINE
E150DPXISF
E150DPXSCF
E150DPXSCR
E150DPXSEA
E150DPXSUF
E150DSLAAA
E150DSLIIB
E150DSLINE
E150DSLISF
E150DSLSCR
E150DSLSEA
E150DSLSUF
E150FCXECR
E150FCXEEA
E150FCXSDR
E150FCXSIF
E150FCXSNF
E150FCXSOC
E150FCXSRS
E150FCXSSM
E150FCXSTD
E150FHLSDR
E150FHLSOC
E150FHLSRS
E150FPLSDR
E150FPLSOC
E150FPLSRS
E150FPLSTD
E150FPLSTF
E150FPXSDR
E150FPXSOC
E150FPXSRS
E150FSLSDR
E150FSLSTF
E150HGLSES
E150HGXSES
E150HSLAAA
E150HSLIIA
E150HSLINM
E150HSLISF
E150HSLSEC
E150ICXEUC
E150WPLSIF
E15DHPLAAA
E15DHPLAAB
E15DHPLIIC
E15DHPLINR
E15DHPLISS
E15DHTLAAA
E15DHTLAAB
E15DHTLIIC
E15DHTLINR
E15DHTLISS
E15EECR
E15WREES
E15WRLSIR
E15WRLSSC
E175DCXAAA
E175DCXAAC
E175DCXIIB
E175DCXINE
E175DCXISF
E175DCXSCF
E175DCXSCR
E175DCXSEA
E175DCXSUF
E175DMXAAA
E175DMXAAC
E175DMXSCF
E175DPLAAA
E175DPLIIB
E175DPLINE
E175DPLISF
E175DPLSCR
E175DPLSEA
E175DPLSUF
E175DPXAAA
E175DPXAAC
E175DPXIIB
E175DPXINE
E175DPXISF
E175DPXSCF
E175DPXSCR
E175DPXSEA
E175DPXSUF
E175DSLAAA
E175DSLIIB
E175DSLINE
E175DSLISF
E175DSLSCR
E175DSLSEA
E175DSLSUF
E175FCXECS
E175FCXEEC
E175FCXSDS
E175FCXSIF
E175FCXSNF
E175FCXSOD
E175FCXSRE
E175FCXSSR
E175FCXSTB
E175FPLSDS
E175FPLSOD
E175FPLSRE
E175FPLSTB
E175FPLSTF
E175FPXSDS
E175FPXSOD
E175FPXSRE
E175FSLSDD
E175FSLSTF
E175MFXSOS
E185ESERK
E185ESXETA
E200CXARC
E200CXATF
E200CXEOC
E200DCXAAA
E200DCXAAC
E200DCXISB
E200DCXSCA
E200DCXSCF
E200DCXSEM
E200DCXSOC
E200DCXSUF
E200DHLAAA
E200DHLAAC
E200DHLAAD
E200DHLSCF
E200DHLSCG
E200DHLSCH
E200DHLSCM
E200DHLSDF
E200DHLSEB
E200DHLSOC
E200DHLSOG
E200DHLSUA
E200DHLSUG
E200DHXAAA
E200DHXAAC
E200DHXAAD
E200DHXSCF
E200DHXSCG
E200DHXSCH
E200DHXSCR
E200DHXSDS
E200DHXSEA
E200DHXSUC
E200DPLAAA
E200DPLISB
E200DPLSCA
E200DPLSEM
E200DPLSOC
E200DPLSUF
E200DPXAAA
E200DPXAAC
E200DPXISB
E200DPXSCA
E200DPXSCF
E200DPXSEM
E200DPXSUF
E200DSLAAA
E200DSLISB
E200DSLSCA
E200DSLSEM
E200DSLSUF
E200FCSSSC
E200FCXEEN
E200FCXSIF
E200FCXSNF
E200FCXSOE
E200FCXSRB
E200FCXSTM
E200FHLSOR
E200FHLSRC
E200FPLSNF
E200FPLSOE
E200FPLSRB
E200FPLSSC
E200FPLSTM
E200FPXSSC
E200HCXAAA
E200HCXAAC
E200HCXAAD
E200HCXSCF
E200HCXSCG
E200HCXSCH
E200HCXSCR
E200HCXSDS
E200HCXSEA
E200HCXSUC
E200HSLSCF
E200HSLSCG
E200HSLSCH
E200HSLSCR
E200HSLSDS
E200HSLSEA
E200HSLSUC
E200HVLSCF
E200HVLSCG
E200HVLSCH
E200HVLSCS
E200WPXEEN
E200WPXSIF
E200WPXSSC
E225CXARC
E225CXATF
E225CXEOB
E225DCXAAA
E225DCXAAC
E225DCXAAD
E225DCXIID
E225DCXINS
E225DCXISE
E225DCXSCF
E225DCXSCG
E225DCXSCH
E225DCXSCM
E225DCXSDR
E225DCXSEB
E225DCXSOC
E225DCXSUA
E225DCZSUG
E225DHLAAA
E225DHLAAC
E225DHLAAD
E225DHLIID
E225DHLINS
E225DHLISE
E225DHLSCF
E225DHLSCG
E225DHLSCH
E225DHLSCM
E225DHLSDF
E225DHLSEB
E225DHLSOC
E225DHLSOF
E225DHLSOG
E225DHLSUA
E225DHLSUG
E225DHXIND
E225DHXSCA
E225DHXSCF
E225DHXSCG
E225DHXSCH
E225DHXSDF
E225DHXSUG
E225DHXSUR
E225DPLISE
E225DPLSCF
E225DPLSCG
E225DPLSCH
E225DPLSCM
E225DPLSDR
E225DPLSEB
E225DPLSOC
E225DPLSUA
E225DPLSUG
E225DPXAAA
E225DPXAAC
E225DPXAAD
E225DPXIID
E225DPXISE
E225DPXSCF
E225DPXSCG
E225DPXSCH
E225DPXSCM
E225DPXSDR
E225DPXSEB
E225DPXSUA
E225DPXSUG
E225DPZSOC
E225FCXEEN
E225FCXSIF
E225FCXSNF
E225FCXSOE
E225FCXSRB
E225FCXSSC
E225FCXSTM
E225FGLSSC
E225FHLSOB
E225FHLSRM
E225FHLSSS
E225FHLSTA
E225FPLSIF
E225FPLSOE
E225FPLSRB
E225FPXSSC
E225HSLISF
E225HSLSCF
E225HSLSCG
E225HSLSCH
E225HSLSCS
E225HSLSEC
E250CXECD
E250DCXAAA
E250DCXAAC
E250DCXAAD
E250DCXISE
E250DCXSCF
E250DCXSCG
E250DCXSCH
E250DCXSCM
E250DCXSDR
E250DCXSEB
E250DCXSOC
E250DCXSUA
E250DCXSUG
E250DHLAAA
E250DHLAAC
E250DHLAAD
E250DHLSCS
E250DHLSEC
E250DPLISE
E250DPLSCF
E250DPLSCG
E250DPLSCH
E250DPLSCM
E250DPLSDR
E250DPLSEB
E250DPLSOC
E250DPLSUA
E250DPXAAA
E250DPXAAC
E250DPXAAD
E250DPXISE
E250DPXSCF
E250DPXSCG
E250DPXSCH
E250DPXSCM
E250DPXSDR
E250DPXSEB
E250DPXSUA
E250DPXSUG
E250FCXSIF
E250FCXSNF
E250FCXSOB
E250FCXSRM
E250FCXSSS
E250FCXSTA
E250FGLSSS
E250FPLSOM
E250FPLSRA
E250FPXSNF
E250FPXSSS
E250HGLAAB
E250HGLAAC
E250HGLAAD
E250HGLSES
E250HSLAAA
E250HSLAAC
E250HSLAAD
E250HSLSES
E25DELAAA
E25DELIIH
E25DELINA
E25DELISC
E25DELSES
E25DPLAAA
E25DPLAAB
E25DPLIIG
E25DPLIIH
E25DPLINA
E25DPLISC
E25DPLSES
E25DRAAA
E25DRIIH
E25DRINA
E25DRISC
E25DRLSES
E25DTEAAA
E25DTEIIG
E25DTEIIH
E25DTEINA
E25DTEISC
E25DTELSES
E25DTLAAA
E25DTLAAB
E25DTLIIH
E25DTLINA
E25DTLISC
E25DTLSES
E300DCXAAA
E300DCXAAC
E300DCXAAD
E300DCXIIA
E300DCXINM
E300DCXISF
E300DCXSCS
E300DCXSEC
E300DCZINM
E300DPXAAA
E300DPXAAC
E300DPXAAD
E300DPXIIA
E300DPXINM
E300DPXISF
E300DPXSCS
E300DPXSEC
E30DELAAA
E30DELIIH
E30DELINA
E30DELISC
E30DELSES
E30DPLAAA
E30DPLAAB
E30DPLIIH
E30DPLINA
E30DPLISC
E30DPLSES
E30DRAAA
E30DRIIG
E30DRIIH
E30DRINA
E30DRISC
E30DRLSES
E30DTELAAA
E30DTELIIH
E30DTELINA
E30DTELISC
E30DTELSES
E30DTLAAA
E30DTLAAB
E30DTLIIH
E30DTLINA
E30DTLISC
E30DTLSES
E75FPLSIF
E75FPLSNF
E75FPLSSH
E75FPLSTA
E90FPLEEC
E90FPLSIF
E90FPLSNF
E90FPLSSH
E90FPLSTB
E90FSLECS
HE15KCF
HE15KCLO
SE10RPLT
SE10RPLY
SE15BAEEM
SE15BASIR
SE15BASSB
SE200WTPLA
SE200WTPLG
SE200WTPLS
SE35RWECS
EVINRUDE
BRP EVINRUDE entire parts catalog list:
- LOWER ENGINE COVER » 0339575
BE200CXECM, BE200TXECM, E200CXECM, E200STLECE, E200TLECM, E200TXECM 1998
BE200CXEDR, BE200TXEDR, E200CXEDR, E200STLEDM, E200TXEDR, LE200SLEDR 1996
BE200CXEUA, BE200TXEUA, E200CXEUA, E200STLEUB, E200TXEUA 1997
BE225CXECS, BE225SLECS, BE225TXECS, E225CXECS, E225CZECS, E225STLECS, E225TXECS, E225TZECS, SE225GLECC, SE225NXECC, SE225NZECC, SE225QXECC, SE225QZECC 1998
BE225CXEDE, BE225PXEDE, BE225SLEDE, BE225TXEDE, E225CXEDE, E225CZEDE, E225PXEDE, E225STLEDE, E225TXEDE, E225TZEDE 1996
BE225CXEUD, BE225SLEUD, BE225TXEUD, E225CXEUD, E225CZEUD, E225STLEUD, E225TXEUD, E225TZEUD 1997
BE25ARECA, BE25ARLECA, BE25KECA, BE25KLECA, BE25QLECA, E25KLECA, E25QLECA, E25RMECA, E25RMLECA, E25TKECA, E25TKLECA 1998
BE35ARECR, BE35ARLECR, BE35KECA, BE35KLECA, BE35QLECA, E35KLECA, E35QLECA, E35TKLECA 1998
BE35AREEA, BE35KEEM 1999
BE35ARSIB, BE35KSIE 2001
BE35ARSSM, BE35KSSB 2000
DE150CXAAA, DE150CXAAB 2012
DE150CXAAC 2012
DE150CXINS 2012
DE150PXAAA, DE150PXAAB 2012
DE150PXAAC 2012
DE150PXINS 2012
DE200CXAAA, DE200CXAAB 2012
DE200CXAAC 2012
DE200HXAAA, DE200HXAAB 2012
DE200HXAAC 2012
DE200HXAAD 2012
DE200PXAAA, DE200PXAAB 2012
DE200PXAAC 2012
DE200XCAAA, DE200XCAAB 2012
DE200XCAAC 2012
DE200XCAAD 2012
DE225CXAAA, DE225CXAAB 2012
DE225CXAAC 2012
DE225CXAAD 2012
DE225CXINS 2012
DE225PXAAA, DE225PXAAB 2012
DE225PXAAC 2012
DE225PXAAD 2012
DE225PXINS 2012
DE250CXAAA, DE250CXAAB, DE250CZAAA, DE250CZAAB 2012
DE250CXAAC, DE250CZAAC 2012
DE250CXAAD, DE250CZAAD 2012
DE250CXISF, DE250CXISS, DE250CZISF, DE250CZISS 2010
DE250PXAAA, DE250PXAAB, DE250PZAAA, DE250PZAAB 2012
DE250PXAAC, DE250PZAAC 2012
DE250PXAAD, DE250PZAAD 2012
DE250PXISF, DE250PXISS, DE250PZISF, DE250PZISS 2010
DE300CXAAA, DE300CXAAB, DE300CZAAA, DE300CZAAB 2012
DE300CXAAC, DE300CZAAC 2012
DE300CXAAD, DE300CZAAD 2012
DE300CXIIC 2011
DE300CXINR, DE300CZINR 2012
DE300CXISF, DE300CXISG, DE300CXISS, DE300CZISF, DE300CZISG, DE300CZISS 2010
DE300CZIIC 2011
DE300PXAAA, DE300PXAAB, DE300PZAAA, DE300PZAAB 2012
DE300PXAAC, DE300PZAAC 2012
DE300PXAAD, DE300PZAAD 2012
DE300PXIIC, DE300PZIIC 2011
DE300PXINR, DE300PZINR 2012
DE300PXISF, DE300PXISG, DE300PXISS, DE300PZISF, DE300PZISG, DE300PZISS 2010
E100FPLSOC, E100FSLSOC 2004,2005
E100FPLSRS, E100FSLSRS 2004
E100WPLSIF, E100WPXSIF 2001
E105WELSIF, E105WPLSIF, E105WPXSIF 2001
E10EECC, E10ELECC, E10RECC, E10RELECC, E10RLECC, E10SELECC 1998
E115DBXAAA 2012
E115DBXABA 2012
E115DBXIIB 2011
Information:
Electronic Controls
The 3176B Industrial Engine electronic system consists of the Electronic Control Module (ECM) and engine sensors. The ECM is the computer which controls the engine operating parameters. The Personality Module in the ECM contains the software which controls how the ECM behaves (the personality module stores the operating maps that define power, torque curves, rpm, etc). The injection pump, fuel lines and fuel injection nozzles used in mechanical engines have been replaced with an electronic unit injector in each cylinder. A solenoid on each injector controls the amount of fuel delivered by the injector. The Electronic Control Module (ECM) sends a signal to each injector solenoid to provide complete control of the engine. The ECM determines a "desired rpm" based on the throttle signal, PTO switches (only while in PTO mode) and certain diagnostic codes. The ECM then maintains the desired engine rpm by sensing actual engine rpm and deciding how much fuel to inject in order to achieve the desired rpm.Engine Governor
The Electronic Control on the engine serve as the engine governor. The Electronic Control determines when and how much fuel to deliver to the cylinders based on the actual and desired conditions at any given time. The governor uses the Throttle Position Sensor to determine the desired engine rpm and compares this to the actual engine rpm determined through the Engine Speed/Timing Sensor. If desired engine rpm is greater than the actual engine rpm, the governor injects more fuel to increase engine rpm.Timing Considerations
Once the governor has determined how much fuel is required, it must next determine when to inject the fuel. Injection timing is determined by the ECM after considering input from the Coolant Temperature Sensor, Inlet Manifold Temperature Sensor, Atmospheric Pressure Sensor, And Inlet Manifold (Boost) Pressure Sensor. The ECM determines where top center on cylinder number one is located from the Engine Speed/Timing Sensor signal. The ECM decides when injection should occur relative to top center and provides the signal to the injector at the desired time. The ECM adjusts timing for best engine performance, fuel economy and white smoke control. Actual or Desired Timing cannot be viewed with an Electronic Service Tool.Fuel Injection
The ECM controls the amount of fuel injected by varying signals to the injectors. The injectors will pump fuel ONLY if the injector solenoid is energized. The ECM sends a high voltage signal to energize the solenoid. By controlling the timing and duration of the high voltage signal, the ECM can control injection timing and the amount of fuel injected.The Personality Module inside the ECM sets certain limits on the amount of fuel that can be injected. FRC Fuel Pos is a limit based on boost pressure to control the air/fuel ratio for emissions control. When the ECM senses a higher boost pressure (more air into cylinder), it increases the FRC Fuel Pos limit (allows more fuel into cylinder). Rated Fuel Pos is a limit based on the power rating of the engine and rpm. It is similar to the rack stops and torque spring on a mechanically governed engine. It provides power and torque curves for a specific engine family and rating. All of these limits are determined at the factory in the Personality Module and cannot be changed.
Figure 1.1 - Fuel InjectionCustomer Parameters Effect on Engine Governing
A unique feature with Electronic Engines is Customer Specified Parameters. These parameters allow the engine owner to fine tune the ECM for engine operation to accommodate the typical or specific usage of the engine.Many of the Customer Parameters provide additional restrictions on the action the ECM will take in response to the operators' input. For example, the Top Engine Limit is an rpm limit the ECM uses as a maximum rpm for fuel delivery to the injectors. The ECM will not fuel the injectors above this rpm.Some parameters are intended to notify the operator of potential engine damage such as Engine Monitoring Parameters. Other parameters are provided to enhance the engine installation or provide engine operating information to the engine owner.Engine Monitoring
Caterpillar provides a factory installed Engine Monitoring System. The Caterpillar Engine Monitoring System monitors engine oil pressure, coolant temperature, inlet air manifold temperature, coolant level and fuel temperature.The Oil Pressure, Inlet Air Manifold Temperature, Fuel Temperature, Fuel Pressure And Coolant Temperature Sensors are standard on all engines.Caterpillar Engine Monitoring can be programmed to different modes (OFF, and DERATE and SHUTDOWN). The Coolant Temperature Sensor, Oil Pressure Sensor and Coolant Level Sensor (if enabled) will operate in the Engine Monitoring Mode selected. For example, if DERATE mode was selected, the engine will derate engine power if the Coolant Temperature Sensor, (if enabled) detect conditions exceeding acceptable limits. The Oil Pressure Sensor can NOT be programmed to , while the Coolant Temperature Sensor operates in a different mode such as DERATE.An excessive Inlet Air Manifold Temperature will not derate or shutdown the engine. if the Engine Monitoring Mode is programmed to SHUTDOWN, and a 105-11 (Very High Inlet Air Manifold Temperature) Diagnostic code is ACTIVE, the engine will WARN but will not DERATE or SHUTDOWN.Caterpillar Engine Monitoring OFF Operation
If Caterpillar Engine Monitoring is programmed to OFF, the ECM will not flag any of the sensor values and disables those diagnostics associated with Engine Monitoring even though the level or conditions are exceeded which could cause the ECM to take Engine Monitoring action. The ECM still uses these sensors for normal engine operation, such as the Coolant Temperature Sensor for Cold Mode operation. The Warning Lamp should not operate and is unnecessary.Caterpillar Engine Monitoring Operation
If the system is programmed to , the ECM commands the Warning Lamp to turn ON and log the event to indicate a problem has been detected by the Engine Monitoring System. No further ECM or engine action occurs if the ECM is programmed to . The Oil Pressure Sensor can not be programmed to , while the Coolant Temperature Sensor operates in a DERATE Mode.Caterpillar Engine Monitoring DERATE Operation
If the system is programmed to DERATE, the ECM
The 3176B Industrial Engine electronic system consists of the Electronic Control Module (ECM) and engine sensors. The ECM is the computer which controls the engine operating parameters. The Personality Module in the ECM contains the software which controls how the ECM behaves (the personality module stores the operating maps that define power, torque curves, rpm, etc). The injection pump, fuel lines and fuel injection nozzles used in mechanical engines have been replaced with an electronic unit injector in each cylinder. A solenoid on each injector controls the amount of fuel delivered by the injector. The Electronic Control Module (ECM) sends a signal to each injector solenoid to provide complete control of the engine. The ECM determines a "desired rpm" based on the throttle signal, PTO switches (only while in PTO mode) and certain diagnostic codes. The ECM then maintains the desired engine rpm by sensing actual engine rpm and deciding how much fuel to inject in order to achieve the desired rpm.Engine Governor
The Electronic Control on the engine serve as the engine governor. The Electronic Control determines when and how much fuel to deliver to the cylinders based on the actual and desired conditions at any given time. The governor uses the Throttle Position Sensor to determine the desired engine rpm and compares this to the actual engine rpm determined through the Engine Speed/Timing Sensor. If desired engine rpm is greater than the actual engine rpm, the governor injects more fuel to increase engine rpm.Timing Considerations
Once the governor has determined how much fuel is required, it must next determine when to inject the fuel. Injection timing is determined by the ECM after considering input from the Coolant Temperature Sensor, Inlet Manifold Temperature Sensor, Atmospheric Pressure Sensor, And Inlet Manifold (Boost) Pressure Sensor. The ECM determines where top center on cylinder number one is located from the Engine Speed/Timing Sensor signal. The ECM decides when injection should occur relative to top center and provides the signal to the injector at the desired time. The ECM adjusts timing for best engine performance, fuel economy and white smoke control. Actual or Desired Timing cannot be viewed with an Electronic Service Tool.Fuel Injection
The ECM controls the amount of fuel injected by varying signals to the injectors. The injectors will pump fuel ONLY if the injector solenoid is energized. The ECM sends a high voltage signal to energize the solenoid. By controlling the timing and duration of the high voltage signal, the ECM can control injection timing and the amount of fuel injected.The Personality Module inside the ECM sets certain limits on the amount of fuel that can be injected. FRC Fuel Pos is a limit based on boost pressure to control the air/fuel ratio for emissions control. When the ECM senses a higher boost pressure (more air into cylinder), it increases the FRC Fuel Pos limit (allows more fuel into cylinder). Rated Fuel Pos is a limit based on the power rating of the engine and rpm. It is similar to the rack stops and torque spring on a mechanically governed engine. It provides power and torque curves for a specific engine family and rating. All of these limits are determined at the factory in the Personality Module and cannot be changed.
Figure 1.1 - Fuel InjectionCustomer Parameters Effect on Engine Governing
A unique feature with Electronic Engines is Customer Specified Parameters. These parameters allow the engine owner to fine tune the ECM for engine operation to accommodate the typical or specific usage of the engine.Many of the Customer Parameters provide additional restrictions on the action the ECM will take in response to the operators' input. For example, the Top Engine Limit is an rpm limit the ECM uses as a maximum rpm for fuel delivery to the injectors. The ECM will not fuel the injectors above this rpm.Some parameters are intended to notify the operator of potential engine damage such as Engine Monitoring Parameters. Other parameters are provided to enhance the engine installation or provide engine operating information to the engine owner.Engine Monitoring
Caterpillar provides a factory installed Engine Monitoring System. The Caterpillar Engine Monitoring System monitors engine oil pressure, coolant temperature, inlet air manifold temperature, coolant level and fuel temperature.The Oil Pressure, Inlet Air Manifold Temperature, Fuel Temperature, Fuel Pressure And Coolant Temperature Sensors are standard on all engines.Caterpillar Engine Monitoring can be programmed to different modes (OFF, and DERATE and SHUTDOWN). The Coolant Temperature Sensor, Oil Pressure Sensor and Coolant Level Sensor (if enabled) will operate in the Engine Monitoring Mode selected. For example, if DERATE mode was selected, the engine will derate engine power if the Coolant Temperature Sensor, (if enabled) detect conditions exceeding acceptable limits. The Oil Pressure Sensor can NOT be programmed to , while the Coolant Temperature Sensor operates in a different mode such as DERATE.An excessive Inlet Air Manifold Temperature will not derate or shutdown the engine. if the Engine Monitoring Mode is programmed to SHUTDOWN, and a 105-11 (Very High Inlet Air Manifold Temperature) Diagnostic code is ACTIVE, the engine will WARN but will not DERATE or SHUTDOWN.Caterpillar Engine Monitoring OFF Operation
If Caterpillar Engine Monitoring is programmed to OFF, the ECM will not flag any of the sensor values and disables those diagnostics associated with Engine Monitoring even though the level or conditions are exceeded which could cause the ECM to take Engine Monitoring action. The ECM still uses these sensors for normal engine operation, such as the Coolant Temperature Sensor for Cold Mode operation. The Warning Lamp should not operate and is unnecessary.Caterpillar Engine Monitoring Operation
If the system is programmed to , the ECM commands the Warning Lamp to turn ON and log the event to indicate a problem has been detected by the Engine Monitoring System. No further ECM or engine action occurs if the ECM is programmed to . The Oil Pressure Sensor can not be programmed to , while the Coolant Temperature Sensor operates in a DERATE Mode.Caterpillar Engine Monitoring DERATE Operation
If the system is programmed to DERATE, the ECM
Parts screw EVINRUDE:
0308186
0308186 SCREW,Rod cap
100193A, 100293R, 100882B, 100990S, 115083D, 115393M, 115493B, 115593, 115693D, 115790S, 115793S, 115890C, 115983E, 125183C, 125283R, 135383M, 135443B, 135543E, 135643D, 150840S, 150940C, 175740S, 200640S, 25702H, 25802C, 25904R, 33002M, 33802M, 3390
0552421
0552421 SCREW, Mount bracket, port
10424G, 10524C, 10624G, 10724A, 10824M, 10924B, 15404G, 15504C, 15604A, 18002C, 18102S, 18202R, 18304A, 18802A, 18902B, 25002C, 25102S, 25202R, 25302A, 25402M, 25502B, 25602E, 25702H, 25802C, 25902B, 25904R, 35602G, 50902C, 55872A, 55874S, 55972A, 60
0314951
0314951 SCREW
10424G, 10524C, 10824M, 115393M, 115493B, 115593, 115693D, 115890C, 135383M, 135443B, 135543E, 135643D, 15404G, 15504C, 25702H, 25802C, 25904R, 4006E, 4106D, 4206S, 4306C, 4406R, 4506A, 4606M, 4706B, 4806E, 4902B, 4904D, 50172S, 6604A, 6704M, 6804B,
0318544
0318544 SCREW, Drain and fill
100990S, 115393M, 115493B, 115593, 115693D, 115790S, 115793S, 115890C, 135383M, 135443B, 135543E, 135643D, 150840S, 150940C, 175740S, 200640S, 50302R, 50442M, 65372R, 70442M, 70572B, 70673D, 70773S, 70873C, 70973R, 75542B, 75642D, 85393M, 85493B, 855
0321922
0321922 SCREW,Plate
10724A, 10824M, 10924B, 25702H, 25802C, 25904R, 2702C, 2802R, 2902A, 4706B, 4806E, 4904D, 6704M, 6804B, 6904E, B25JREUR, BE10EEDD, BE10FAEDC, BE10FAEUR, BE10FDLECM, BE10FDLEDR, BE10FDLEUA, BE10RELEUS, BE15EEDS, BE15FAEDR, BE15FAEUA, BE15FDLECM, BE15R
0325135
0325135 SCREW, Stator mounting
100990S, 150940C, BE115TLEDA, BE200CXECM, BE200CXEDR, BE200CXEUA, BE225CXECS, BE225CXEDE, BE225CXEUD, BE250CXECB, BE250CXEDA, BE250CXEUM, CE275TLCDC, CE300TLCDC, E100MLCSC, E100STLCCA, E100STLCEM, E100STLEIE, E100STLEND, E100STLERC, E100STLESB, E100S
0328694
0328694 SCREW, Front to rear cover
B25JREUR, BE115ELEDR, BE115TLEDA, BE150ELECD, BE150ELEDB, BE150ELEUC, BE175EXECD, BE175EXEDB, BE175EXEUC, BE200CXECM, BE200CXEDR, BE200CXEUA, BE20SEECB, BE20SEEDA, BE20SEEUM, BE20SRECB, BE20SREDA, BE20SREUM, BE225CXECS, BE225CXEDE, BE225CXEUD, BE25BA
0328724
0328724 SCREW, Clamp to anchor block
BE10EEDD, BE10RELEUS, BE115ELEDR, BE115ELEUA, BE115GLECM, BE115TLEDA, BE130TLECE, BE130TLEDM, BE130TLEUB, BE150ELECD, BE150ELEDB, BE150ELEUC, BE15EEDS, BE15RELEUC, BE175EXECD, BE175EXEDB, BE175EXEUC, BE200CXECM, BE200CXEDR, BE200CXEUA, BE20SEECB, BE2