0318997 LATERAL MOUNT, Lower EVINRUDE
10424G, 10524C, 10624G, 10724A, 10824M, 10924B, 15404G, 15504C, 15604A, BE10EEDD, BE10FAEDC, BE10FAEUR, BE10FDLECM, BE10FDLEDR, BE10FDLEUA, BE10RELEUS, BE15EEDS, BE15FAEDR, BE15FAEUA, BE15FDLECM, BE15RELEUC, BE4RDHEDS, BE5DREDS, BE5DREUC, BE5FRBECC,
LATERAL
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09-07-2023
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0318997 master industrial tool PPC-1575UVB 3/4" Cable Clamps 3 Packs of 6 (18 Clamps) USA
GenuineBranded Like on photo. Premium Quality. Usefull and rare
GenuineBranded Like on photo. Premium Quality. Usefull and rare
Compatible models:
10424G
10524C
10624G
10724A
10824M
10924B
15404G
15504C
15604A
BE10EEDD
BE10FAEDC
BE10FAEUR
BE10FDLECM
BE10FDLEDR
BE10FDLEUA
BE10RELEUS
BE15EEDS
BE15FAEDR
BE15FAEUA
BE15FDLECM
BE15RELEUC
BE4RDHEDS
BE5DREDS
BE5DREUC
BE5FRBECC
BE5FRBEUS
BE6DRECR
BE6DREDS
BE6DREUC
BE8FRBECA
BE8FRBEDC
BE8FRBEUR
BE8RCB
BE8RCH
BE8RCLT
BE8REDS
E10EBL4EEB
E10ECCD
E10ECDB
E10ECES
E10ECOM
E10ECSE
E10ECUE
E10EECC
E10EEIR
E10EENA
E10EEOE
E10EERB
E10EESC
E10EETM
E10EL4SID
E10EL4SSE
E10ELCID
E10ELCNS
E10ELCRA
E10ELCTC
E10FEXEO
E10FOECA
E15DLEOC
E15EBL4EEB
E15ECCS
E15ECDE
E15ECEC
E15ECIS
E15ECNC
E15ECOB
E15ECRM
E15ECSD
E15ECTR
E15ECUD
E15EECR
E15EEIA
E15EENM
E15EEOD
E15EERE
E15EESR
E15EETB
E15EL4SID
E15EL4SSE
E15WREES
E15WRLSIR
E15WRLSSC
E4RDHCCS
E4RDHCDE
E4RDHCEC
E4RDHCUD
E4RDHEIA
E4RDHENM
E4RDHEOD
E4RDHERE
E4RDHESR
E4RDHETB
E5DRECR
E5R4EEM
E5R4SIE
E5R4SSB
E5RCIC
E5RCSS
E5RHCNR
E5RHCTA
E6R4EEM
E6R4SIE
E6R4SSB
E6RCCS
E6RCDE
E6RCEC
E6RCOB
E6RCRM
E6RCUD
E6REIA
E6RENM
E6REOD
E6RERE
E6RESR
E6RETB
E8DREEA
E8DRSSM
E8R4EEM
E8R4SIE
E8R4SSB
E8RCCS
E8RCDE
E8RCEC
E8RCIC
E8RCNR
E8RCOB
E8RCRM
E8RCSS
E8RCTA
E8RCUD
E8RECR
E8REIA
E8RENM
E8REOD
E8RERE
E8RESR
E8RETB
E8REUC
E8WREES
E8WRLSIR
E8WRLSSC
HE15KCF
HE15KCLN
HE15KCLO
HE6FRECA
HE6FREUR
SE10RPB
SE10RPLT
SE10RPLY
SE15BAEEM
SE15BASIR
SE15BASSB
EVINRUDE
BRP EVINRUDE entire parts catalog list:
- EXHAUST HOUSING » 0318997
10624G, 10624H, 10624R, 10625G, 10625H, 10625R, 10654G, 10654H, 10654R, 10655G, 10655H, 10655R 1976
10724A, 10725A, 10754A, 10755A, 15704M, 15705M, 15754M 1977
10824M, 10825M, 10835M, 10854M, 10855M, 15804B, 15805B, 15854B, 15855B 1978
10924B, 10925B, 10935B, 10955B, 15904E, 15905E, 15954E, 15955E 1979
15404G, 15404S, 15405G, 15405S, 15454G, 15454S, 15455G, 15455S 1974
15504C, 15505C, 15554C, 15555C 1975
15604A, 15604R, 15605A, 15605R, 15654A, 15654R, 15655A, 15655R 1976
BE10EEDD, BE10ELEDD, BE10REDD, BE10RELEDD, BE10RLEDD, BE10SELEDD, E10EEDD, E10ELEDD, E10REDD, E10RELEDD, E10RLEDD, E10SELEDD 1996
BE10FAEDC, BE10FCLEDC, BE10FWEDC, BE10FWLEDC, HE10FDEDC, HE10FDLEDC, HE10FELEDC, HE10FTEDC, HE10FTLEDC 1996
BE10FAEUR, BE10FCLEUR, BE10FWEUR, BE10FWLEUR, HE10FELEUR, HE10FOEUR, HE10FOLEUR, HE10FTEUR, HE10FTLEUR 1997
BE10FDLECM, E10FEXECM, E10FRECM, E10FRELECM, E10FRLECM, L10FRELECM 1998
BE10FDLEDR, BE10FPXEDC, BE10FRELDR, E10FEXEDR, E10FREDR, E10FRELEDR, E10FRLEDR, L10FRELEDR 1996
BE10FDLEUA, BE10FPXEUR, BE10FRELUA, E10FEXEUA, E10FRELEUA, E10FREUA, E10FRLEUA, L10FRELEUA 1997
BE10RELEUS, E10EEUS, E10ELEUS, E10RELEUS, E10REUS, E10RLEUS, E10SELEUS 1997
BE15EEDS, BE15ELEDS, BE15REDS, BE15RLEDS, E15EEDS, E15ELEDS, E15REDS, E15RELEDS, E15RLEDS, SE15BAEDC 1996
BE15FAEDR, BE15FDLEDR, BE15FKEDR, BE15FREDR, BE15FRELEDR, BE15FWEDC, BE15FWLEDC, E15FKEDR, E15FREDR, E15FRELEDR, E15FRLEDR 1996
BE15FAEUA, BE15FDLEUA, BE15FKEUA, BE15FRELUA, BE15FREUA, BE15FWEUR, BE15FWLEUR, E15FKEUA, E15FRELEUA, E15FREUA, E15FRLEUA 1997
BE15FDLECM, BE15FWECA, BE15FWLECA, E15FRECM, E15FRELECM, E15FRLECM 1998
BE15RELEUC, E15EEUC, E15ELEUC, E15RELEUC, E15REUC, E15RLEUC, SE15BAEUR 1997
BE4RDHEDS, BE4RDHLEDS 1996
BE5DREDS, BE5DRLEDS 1996
BE5DREUC, BE5DRLEUC 1997
BE5FRBECC, BE5FRBLECC, HE5FRECA, HE5FRLECA 1998
BE5FRBEUS, BE5FRBLEUS, HE5FREUR, HE5FRLEUR 1997
BE6DRECR, BE6DRLECR, E6RECR, E6RLECR 1998
BE6DREDS, BE6DRLEDS, BE6REDS, BE6RLEDS, E6REDS, E6RLEDS, E6SLEDS 1996
BE6DREUC, BE6DRLEUC, E6REUC, E6RLEUC 1997
BE8FRBECA, BE8FRBLECA, E8FRECA, E8FRLECA, E8FRXECA 1998
BE8FRBEDC, BE8FRBLEDC, BE8FRBXEDC, E8FREDC, E8FRXEDC, HE8FREDC, HE8FRLEDC 1996
BE8FRBEUR, BE8FRBLEUR, BE8FRBXEUR, E8FREUR, E8FRXEUR, HE8FREUR, HE8FRLEUR 1997
BE8RCB, BE8RCLB 1997
BE8RCH, BE8RCLH 1996
BE8RCLT, BE8RCT 1998
BE8REDS, BE8RLEDS, BE8SRLEDS, E8REDS, E8RLEDS, E8SRLEDS 1996
E10EBL4EEB, E10EL4EEB, E10R4EEB, E10RL4EEB, E10TEX4EEB 1999
E10ECCD, E10ELCCD, E10RCCD, E10RLCCD, E10SELCCD 1988
E10ECDB, E10ELCDB, E10RCDB, E10RLCDB, E10SELCDB 1986
E10ECES, E10ELCES, E10RCES, E10RLCES, E10SELCES, TE10ELCES, TE10RLCES 1989
E10ECOM, E10ELCOM, E10RCOM, E10RLCOM, E10SELCOM 1985
E10ECSE, E10ELCSE, E10RCSE, E10RLCSE, E10SELCSE 1980
E10ECUE, E10ELCUE, E10RCUE, E10RLCUE, E10SELCUE 1987
E10EECC, E10ELECC, E10RECC, E10RELECC, E10RLECC, E10SELECC 1998
E10EEIR, E10ELEIR, E10REIR, E10RELEIR, E10RLEIR, E10SELEIR, TE10RELEIR 1991
E10EENA, E10ELENA, E10RELENA, E10RENA, E10RLENA, E10SELENA, TE10RELENA 1992
E10EEOE, E10ELEOE, E10RELEOE, E10REOE, E10RLEOE, E10SELEOE 1995
E10EERB, E10ELERB, E10RELERB, E10RERB, E10RLERB, E10SELERB 1994
E10EESC, E10ELESC, E10RELESC, E10RESC, E10RLESC, E10SELESC, TE10ELESC, TE10RELESC, TE10RLESC 1990
E10EETM, E10ELETM, E10RELETM, E10RETM, E10RLETM, E10SELETM, TE10RELETM 1993
E10EL4SID, E10EVL4SIC, E10R4SID, E10RL4SID, E10RV4SIC, E10RVL4SIC, E10TEX4SID, E10TVX4SIC 2001
E10EL4SSE, E10EVL4SSS, E10R4SSE, E10RL4SSE, E10RV4SSS, E10RVL4SSS, E10TEX4SSE, E10TVX4SSS 2000
E10ELCID, E10RCID, E10RLCID, E10SELCID 1981
E10ELCNS, E10RCNS, E10RLCNS, E10SELCNS 1982
E10ELCRA, E10RCRA, E10RLCRA, E10SELCRA 1984
E10ELCTC, E10RCTC, E10RCTR, E10RLCTC, E10SELCTC 1983
- EXHAUST HOUSING-9.9"C" MODELS,15 ROPE "R" MODELS
- EXHAUST HOUSING 9.9 "R" MODELS,15 ELECT START & "A" MODELS
E10FOECA, E10FOLECA, HE10FELECA 1998
E15DLEOC, E15FREOC, E15FRLEOC, E15KEOC 1995
E15EBL4EEB, E15EL4EEB, E15R4EEB, E15RB4EEB, E15RBL4EEB, E15RL4EEB 1999
E15ECCS, E15ELCCS, E15RCCS, E15RLCCS 1988
E15ECDE, E15ELCDE, E15RCDE, E15RLCDE 1986
E15ECEC, E15ELCEC, E15RCEC, E15RLCEC, TE15RLCEC 1989
E15ECIS, E15RCIS, E15RLCIS 1981
E15ECNC, E15RCNC, E15RLCNC 1982
E15ECOB, E15ELCOB, E15RCOB, E15RLCOB 1985
E15ECRM, E15ELCRM, E15RCRM, E15RLCRM 1984
E15ECSD, E15ELCSD, E15RCSD, E15RLCSD 1980
E15ECTR, E15ELCTR, E15RCTA, E15RCTR, E15RLCTA, E15RLCTR 1983
- EXHAUST HOUSING-9.9"C" MODELS,15 ROPE "R" MODELS
- EXHAUST HOUSING 9.9 "R" MODELS,15 ELECT START & "A" MODELS
E15EECR, E15ELECR, E15RECR, E15RELECR, E15RLECR, SE15BAECA 1998
E15EEIA, E15ELEIA, E15REIA, E15RELEIA, E15RLEIA 1991
E15EENM, E15ELENM, E15RELENM, E15RENM, E15RLENM 1992
E15EEOD, E15ELEOD, E15RELEOD, E15REOD, E15RLEOD 1995
E15EERE, E15ELERE, E15RELERE, E15RERE, E15RLERE 1994
E15EESR, E15ELESR, E15RELESR, E15RESR, E15RLESR 1990
E15EETB, E15ELETB, E15RELETB, E15RETB, E15RLETB 1993
E15EL4SID, E15EVL4SIC, E15R4SID, E15RL4SID, E15RV4SIC, E15RVL4SIC 2001
E15EL4SSE, E15EVL4SSS, E15R4SSE, E15RL4SSE, E15RV4SSS, E15RVL4SSS 2000
E15WREES, E15WRLEES 1999
E15WRLSIR, E15WRSIR 2001
E15WRLSSC, E15WRSSC 2000
E4RDHCCS, E4RDHLCCS 1988
E4RDHCDE 1986
E4RDHCEC, E4RDHLCEC 1989
E4RDHCUD, E4RDHLCUD 1987
E4RDHEIA, E4RDHLEIA 1991
E4RDHENM, E4RDHLENM 1992
E4RDHEOD, E4RDHLEOD 1995
E4RDHERE, E4RDHLERE 1994
E4RDHESR, E4RDHLESR 1990
E4RDHETB, E4RDHLETB 1993
E5DRECR, E5DRLECR 1998
E5R4EEM, E5RB4EER, E5RBL4EER, E5RL4EEM, E6R4EEM, E6RL4EEM 1999
E5R4EEM, E5RB4EER, E5RBL4EER, E5RL4EEM 1999
E5R4SIE, E5RL4SIE, E6R4SIE, E6RL4SIE 2001
E5R4SIE, E5RL4SIE 2001
E5R4SSB, E5RL4SSB, E6R4SSB, E6RL4SSB 2000
E5R4SSB, E5RL4SSB 2000
E5RCIC, E5RHCIC, E5RHLCIC, E5RLCIC 1981
Information:
Pressure Sensor (Engine Oil)
Note: This description is for MUI engines.
Illustration 1 g00593652
Pressure Sensor (Engine Oil)The engine oil pressure sensor is an input of the GSC. The sensor tells the GSC the current engine oil pressure. The GSC shows the engine oil pressure on the lower display and the GSC also uses the sensor information to determine when a low engine oil pressure fault exists. The engine oil pressure sensor is mounted on the outside of one of the engine oil galleries. The engine model determines the exact location of the engine oil pressure sensor.The engine oil pressure sensor is a pulse width modulated sensor. This sensor continuously generates a PWM signal. The duty cycle of the PWM signal varies from 10 to 90%. The duty cycle varies proportionally to the oil pressure of the engine. The GSC receives the PWM signal. The GSC measures the duty cycle in order to determine the oil pressure of the engine. The base frequency of the signal is constant at 500 150 Hz. The signal wire of the oil pressure sensor connects to connector contact 8 of the GSC. The signal wire of the oil pressure sensor is found on connector contact "C". The sensor is supplied operating power (8 DCV) at connector contact "A" from the GSC (connector contact 9).There are five setpoints that are related to engine oil pressure. The setpoints that are programmed into the GSC are P03, P04, P12, P13 and P14. See Systems Operation, "Engine/Generator Programming OP5".Temperature Sensor (Engine Coolant)
Note: This description is for MUI engines.
Illustration 2 g00310269
Temperature Sensor (Engine Coolant)The engine coolant temperature sensor is an input of the GSC. The engine coolant temperature sensor tells the GSC the engine coolant temperature. The GSC shows the engine coolant temperature on the lower display. Also, the GSC uses the information from the sensor in order to determine when a high coolant temperature fault exists or a low coolant temperature fault exists. The engine coolant temperature sensor is mounted in the water jacket. The sensor is usually mounted toward the front of the engine. The exact location depends on the engine model.The engine coolant temperature sensor is a pulse width modulated sensor (PWM). This sensor continuously generates a PWM signal. The duty cycle of the signal varies from 10 to 95% in proportion to the coolant temperature of the engine. The GSC receives the PWM signal and the GSC measures the duty cycle in order to determine the coolant temperature of the engine. The base frequency of the signal is constant at 455 Hz (370 to 550 Hz). The signal wire of the coolant temperature sensor connects to connector contact 7 of the GSC. The signal wire is found at connector contact "C" of the sensor. The sensor is supplied operating power (8 DCV) at connector contact "A" from the GSC connector contact 9.There are four setpoints that are related to the engine coolant temperature. These setpoints are programmed into the GSC. The related setpoints are P03, P04, P15 and P16. See Systems Operation, "Engine/Generator Programming OP5".Fluid Level Sensor (Engine Coolant)
Note: This description includes MUI engines and EUI engines.
Illustration 3 g00474732
Fluid Level Sensor (Engine Coolant)The fluid level sensor is an input of the GSC. The sensor tells the GSC when the engine has lost coolant. The GSC uses the information from the sensor in order to determine when a fault for a low coolant level exists. The sensor is usually mounted near the top of the engine radiator. The exact location depends on the engine model. The fluid level sensor sends a ground signal to the GSC in order to indicate a normal level. The sensor sends a signal of 5 DCV in order to indicate a low level. The signal wire of the sensor connects to connector contact 13 of the GSC. The sensor is supplied with the power at connector contact "A" from the GSC (connector contact 9). There are three setpoints that are related to the loss of engine coolant. The setpoints P04, P05 and P06 are programmed into the GSC. See Systems Operation, "Setpoint Programming OP5". Speed Sensor (Engine)
Note: This description includes MUI engines and EUI engines.
Illustration 4 g00311291
Speed Sensor (Engine)The engine speed sensor is an input of the GSC. The sensor tells the GSC the engine speed. The GSC shows the engine speed on the lower display. Also, the GSC uses the information from the sensor for tasks. The tasks are included in the following list.
activation of an overspeed shutdown
terminating engine cranking
determining the oil step speedThe engine speed sensor is mounted on the flywheel housing of the engine. The sensor creates a sine wave signal from passing ring gear teeth at the rate of one pulse per tooth. The sensor sends a sine wave signal to the GSC. The frequency of the signal is in proportion to the speed of the engine. The GSC receives the sine wave signal and the GSC measures the frequency in order to determine the speed of the engine. The wires of the sensor connect to connector contacts 1 and 2 of the GSC within a shielded cable. One wire is grounded near the GSC. There are four setpoints that are related to engine speed. The setpoints P09, P10, P11, and P12 are programmed into the GSC. See Systems Operation, "Setpoint Programming OP5".
Note: This description is for MUI engines.
Illustration 1 g00593652
Pressure Sensor (Engine Oil)The engine oil pressure sensor is an input of the GSC. The sensor tells the GSC the current engine oil pressure. The GSC shows the engine oil pressure on the lower display and the GSC also uses the sensor information to determine when a low engine oil pressure fault exists. The engine oil pressure sensor is mounted on the outside of one of the engine oil galleries. The engine model determines the exact location of the engine oil pressure sensor.The engine oil pressure sensor is a pulse width modulated sensor. This sensor continuously generates a PWM signal. The duty cycle of the PWM signal varies from 10 to 90%. The duty cycle varies proportionally to the oil pressure of the engine. The GSC receives the PWM signal. The GSC measures the duty cycle in order to determine the oil pressure of the engine. The base frequency of the signal is constant at 500 150 Hz. The signal wire of the oil pressure sensor connects to connector contact 8 of the GSC. The signal wire of the oil pressure sensor is found on connector contact "C". The sensor is supplied operating power (8 DCV) at connector contact "A" from the GSC (connector contact 9).There are five setpoints that are related to engine oil pressure. The setpoints that are programmed into the GSC are P03, P04, P12, P13 and P14. See Systems Operation, "Engine/Generator Programming OP5".Temperature Sensor (Engine Coolant)
Note: This description is for MUI engines.
Illustration 2 g00310269
Temperature Sensor (Engine Coolant)The engine coolant temperature sensor is an input of the GSC. The engine coolant temperature sensor tells the GSC the engine coolant temperature. The GSC shows the engine coolant temperature on the lower display. Also, the GSC uses the information from the sensor in order to determine when a high coolant temperature fault exists or a low coolant temperature fault exists. The engine coolant temperature sensor is mounted in the water jacket. The sensor is usually mounted toward the front of the engine. The exact location depends on the engine model.The engine coolant temperature sensor is a pulse width modulated sensor (PWM). This sensor continuously generates a PWM signal. The duty cycle of the signal varies from 10 to 95% in proportion to the coolant temperature of the engine. The GSC receives the PWM signal and the GSC measures the duty cycle in order to determine the coolant temperature of the engine. The base frequency of the signal is constant at 455 Hz (370 to 550 Hz). The signal wire of the coolant temperature sensor connects to connector contact 7 of the GSC. The signal wire is found at connector contact "C" of the sensor. The sensor is supplied operating power (8 DCV) at connector contact "A" from the GSC connector contact 9.There are four setpoints that are related to the engine coolant temperature. These setpoints are programmed into the GSC. The related setpoints are P03, P04, P15 and P16. See Systems Operation, "Engine/Generator Programming OP5".Fluid Level Sensor (Engine Coolant)
Note: This description includes MUI engines and EUI engines.
Illustration 3 g00474732
Fluid Level Sensor (Engine Coolant)The fluid level sensor is an input of the GSC. The sensor tells the GSC when the engine has lost coolant. The GSC uses the information from the sensor in order to determine when a fault for a low coolant level exists. The sensor is usually mounted near the top of the engine radiator. The exact location depends on the engine model. The fluid level sensor sends a ground signal to the GSC in order to indicate a normal level. The sensor sends a signal of 5 DCV in order to indicate a low level. The signal wire of the sensor connects to connector contact 13 of the GSC. The sensor is supplied with the power at connector contact "A" from the GSC (connector contact 9). There are three setpoints that are related to the loss of engine coolant. The setpoints P04, P05 and P06 are programmed into the GSC. See Systems Operation, "Setpoint Programming OP5". Speed Sensor (Engine)
Note: This description includes MUI engines and EUI engines.
Illustration 4 g00311291
Speed Sensor (Engine)The engine speed sensor is an input of the GSC. The sensor tells the GSC the engine speed. The GSC shows the engine speed on the lower display. Also, the GSC uses the information from the sensor for tasks. The tasks are included in the following list.
activation of an overspeed shutdown
terminating engine cranking
determining the oil step speedThe engine speed sensor is mounted on the flywheel housing of the engine. The sensor creates a sine wave signal from passing ring gear teeth at the rate of one pulse per tooth. The sensor sends a sine wave signal to the GSC. The frequency of the signal is in proportion to the speed of the engine. The GSC receives the sine wave signal and the GSC measures the frequency in order to determine the speed of the engine. The wires of the sensor connect to connector contacts 1 and 2 of the GSC within a shielded cable. One wire is grounded near the GSC. There are four setpoints that are related to engine speed. The setpoints P09, P10, P11, and P12 are programmed into the GSC. See Systems Operation, "Setpoint Programming OP5".