0355624 EMM Oil program tag, TC-W3 oils EVINRUDE
DE150CXAAA, DE150CXAAC, DE150CXINS, DE150PXAAA, DE150PXAAC, DE150PXINS, DE200CXAAA, DE200CXAAC, DE200HXAAA, DE200HXAAC, DE200HXAAD, DE200PXAAA, DE200PXAAC, DE200XCAAA, DE200XCAAC, DE200XCAAD, DE225CXAAA, DE225CXAAC, DE225CXAAD, DE225CXINS, DE225PXAAA
EMM
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Compatible models:
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
DE250PXAAA
DE250PXAAC
DE250PXAAD
DE300CXAAA
DE300CXAAC
DE300CXAAD
DE300CXINR
DE300PXAAA
DE300PXAAC
DE300PXAAD
DE300PXINR
E115DBXAAA
E115DBXABA
E115DBXINE
E115DCXAAA
E115DCXABA
E115DCXINM
E115DHLAAA
E115DHLABA
E115DHLINA
E115DHXAAA
E115DHXABA
E115DHXINA
E115DSLAAA
E115DSLABA
E115DSLINE
E130DCXAAA
E130DCXABA
E130DCXINA
E130DPLAAA
E130DPLABA
E130DPLINA
E130DPXAAA
E130DPXABA
E130DPXINA
E130DSLAAA
E130DSLABA
E130DSLINA
E135DHLAAB
E135DHXAAC
E135HCXAAC
E135HSLAAB
E150DBXAAA
E150DBXAAC
E150DBXINE
E150DCXAAA
E150DCXAAC
E150DCXINE
E150DHLAAA
E150DHLINE
E150DPLAAA
E150DPLINE
E150DPXAAA
E150DPXAAC
E150DPXINE
E150DSLAAA
E150DSLINE
E150HSLAAA
E150HSLINM
E15DHPLAAA
E15DHPLAAB
E15DHTLAAA
E15DHTLAAB
E15DHTLINR
E175DCXAAA
E175DCXAAC
E175DCXINE
E175DMXAAA
E175DMXAAC
E175DPLAAA
E175DPLINE
E175DPXAAA
E175DPXAAC
E175DPXINE
E175DSLAAA
E175DSLINE
E200DCXAAA
E200DCXAAC
E200DHLAAA
E200DHLAAC
E200DHLAAD
E200DHXAAA
E200DHXAAC
E200DHXAAD
E200DPLAAA
E200DPXAAA
E200DPXAAC
E200DSLAAA
E200HCXAAA
E200HCXAAC
E200HCXAAD
E225DCXAAA
E225DCXAAC
E225DCXAAD
E225DCXINS
E225DHLAAA
E225DHLAAC
E225DHLAAD
E225DHLINS
E225DHXIND
E225DPXAAA
E225DPXAAC
E225DPXAAD
E250DCXAAA
E250DCXAAC
E250DCXAAD
E250DHLAAA
E250DHLAAC
E250DHLAAD
E250DPXAAA
E250DPXAAC
E250DPXAAD
E250HGLAAB
E250HGLAAC
E250HGLAAD
E250HSLAAA
E250HSLAAC
E250HSLAAD
E25DELAAA
E25DPLAAA
E25DPLAAB
E25DRAAA
E25DRINA
E25DTEAAA
E25DTEINA
E25DTLAAA
E25DTLAAB
E25DTLINA
E300DCXAAA
E300DCXAAC
E300DCXAAD
E300DCXINM
E300DCZINM
E300DPXAAA
E300DPXAAC
E300DPXAAD
E300DPXINM
E30DELAAA
E30DPLAAA
E30DPLAAB
E30DRAAA
E30DRINA
E30DTELAAA
E30DTELINA
E30DTLAAA
E30DTLAAB
E30DTLINA
E40DPLAAA
E40DPLABA
E40DRLAAA
E40DRLABA
E40DTLAAA
E40DTLABA
E50DPLAAA
E50DPLABA
E50DTLAAA
E50DTLABA
E60DPLAAA
E60DPLABA
E60DTLAAA
E60DTLABA
E75DPLAAA
E75DPLINC
E75DSLAAA
E75DSLINM
E90DPLAAA
E90DPLINC
E90DPXAAA
E90DPXINC
E90DSLAAA
E90DSLINS
E90WDELINM
E90WDEXINM
EVINRUDE
BRP EVINRUDE entire parts catalog list:
- OIL TAGS & LABELS » 0355624
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
DE250PXAAA, DE250PXAAB, DE250PZAAA, DE250PZAAB 2012
DE250PXAAC, DE250PZAAC 2012
DE250PXAAD, DE250PZAAD 2012
DE300CXAAA, DE300CXAAB, DE300CZAAA, DE300CZAAB 2012
DE300CXAAC, DE300CZAAC 2012
DE300CXAAD, DE300CZAAD 2012
DE300CXINR, DE300CZINR 2012
DE300PXAAA, DE300PXAAB, DE300PZAAA, DE300PZAAB 2012
DE300PXAAC, DE300PZAAC 2012
DE300PXAAD, DE300PZAAD 2012
DE300PXINR, DE300PZINR 2012
E115DBXAAA 2012
E115DBXABA 2012
E115DBXINE 2012
E115DCXAAA 2012
E115DCXABA 2012
E115DCXINM 2012
E115DHLAAA, E115DHLAAB, E115DPLAAA 2012
E115DHLABA, E115DPLABA 2012
E115DHLINA, E115DPLINE 2012
E115DHXAAA, E115DHXAAB, E115DPXAAA 2012
E115DHXABA, E115DPXABA 2012
E115DHXINA, E115DPXINE 2012
E115DSLAAA, E115HSLAAA 2012
E115DSLABA, E115HSLABA 2012
E115DSLINE, E115HSLINA 2012
E130DCXAAA, E130DCXAAB 2012
E130DCXABA 2012
E130DCXINA 2012
E130DPLAAA, E130DPLAAB 2012
E130DPLABA 2012
E130DPLINA 2012
E130DPXAAA, E130DPXAAB 2012
E130DPXABA 2012
E130DPXINA 2012
E130DSLAAA, E130DSLAAB 2012
E130DSLABA 2012
E130DSLINA 2012
E135DHLAAB 2012
E135DHXAAC 2012
E135HCXAAC 2012
E135HSLAAB 2012
E150DBXAAA, E150DBXAAB 2012
E150DBXAAC 2012
E150DBXINE 2012
E150DCXAAA, E150DCXAAB 2012
E150DCXAAC 2012
E150DCXINE 2012
E150DHLAAA, E150DHLAAB 2012
E150DHLINE 2012
E150DPLAAA, E150DPLAAB 2012
E150DPLINE 2012
E150DPXAAA, E150DPXAAB 2012
E150DPXAAC 2012
E150DPXINE 2012
E150DSLAAA, E150DSLAAB 2012
E150DSLINE 2012
E150HSLAAA, E150HSLAAB 2012
E150HSLINM 2012
E15DHPLAAA, E15HPSLAAA, E15HPSXAAA 2012
E15DHPLAAB, E15HPSLAAB, E15HPSXAAB 2012
E15DHTLAAA, E15HTSLAAA, E15HTSXAAA 2012
E15DHTLAAB, E15HTSLAAB, E15HTSXAAB 2012
E15DHTLINR, E15HTSLINC, E15HTSXINC 2012
E175DCXAAA, E175DCXAAB 2012
E175DCXAAC 2012
E175DCXINE 2012
E175DMXAAA, E175DMXAAB 2012
E175DMXAAC 2012
E175DPLAAA, E175DPLAAB 2012
E175DPLINE 2012
E175DPXAAA, E175DPXAAB 2012
E175DPXAAC 2012
E175DPXINE 2012
E175DSLAAA, E175DSLAAB 2012
E175DSLINE 2012
E200DCXAAA, E200DCXAAB 2012
E200DCXAAC 2012
E200DHLAAA, E200DHLAAB 2012
E200DHLAAC 2012
E200DHLAAD 2012
E200DHXAAA, E200DHXAAB, E200HSLAAA, E200HSLAAB 2012
E200DHXAAC, E200HSLAAC 2012
E200DHXAAD, E200HSLAAD 2012
E200DPLAAA, E200DPLAAB 2012
E200DPXAAA, E200DPXAAB 2012
E200DPXAAC 2012
E200DSLAAA, E200DSLAAB 2012
Information:
Governor Operation Overview
This engine utilizes a separated fuel injection pump in combination with a multifunction mechanical governor. This governor also utilizes a torque limiting mechanism to control the maximum peak torque. This mechanism maintains a constant level under varying loads, and provides stable idling and regulates maximum engine speed This engine uses a mechanical governor that controls the fuel injection rate at all engine speed ranges. A balance between the centrifugal force of the flyweights and spring tension is used in order to control the fuel injection rate at all rpm.The governor shaft that monitors engine speed is independent of the injection pump shaft and rotates at twice the speed of conventional types. This provides better response to load variance and delivering greater engine output.Governor Operation At Engine Start-Up
Illustration 1 g02893498
(1) Start spring
(2) Flyweights The stop solenoid is powered in order to release the stop lever. Low tension of start spring (1) permits the control rack to move to the starting position, which supplies the proper amount of fuel that is required to start the engine.Governor Operation At Idle
Illustration 2 g02893657
(1) Start spring
(2) Flyweights
(3) Second fork lever
(4) Speed control lever
(5) Spring pin
(6) First fork lever
(7) Governor spring When the speed control lever (4) is rotated in the clockwise direction, the increased tension of the governor spring (7) pulls second fork lever (3). Second fork lever (3) is pulled the torque lever pin and first fork lever (6) are moved in direction toward the front of the fuel pump in order to restrain the flyweight. Governor Operation At Rated Speed with Full Load and Overload
Illustration 3 g02878757
(8) No-load maximum rotation
(9) Output limiting bolt
(10) Torque limiting bolt As the speed control lever is changed from the middle speed range to the high speed range, the governor spring tension increases in order to compress the torque spring. This moves the first fork lever in the direction toward the front of the fuel pump.The second fork lever moves until the lever reaches the output limiting bolt (9) to keep rated rotation and rated output. When the engine is overloaded, the engine rotating speed decreases and the centrifugal force of the flyweight decreases. This moves the first fork lever in the direction toward the front of the fuel pump.The control rack moves in the direction that increases the fuel supply in order to increase output. The control rack is balanced with the centrifugal force of the flyweights to produce low-speed output.Governor Operation At Engine Stop
Illustration 4 g02894136
(11) Solenoid
(12) Stop lever shaft Stop solenoid (11) is switched to the off position, the spring tension of the solenoid is released. This causes the rod to extrude, and stop lever (12) moves the control rack in direction toward the front of the fuel pump, which stops the engine.Two-Stage Fuel Injector
Illustration 5 g03331936
(13) Edge filter
(14) Nozzle body holder
(15) First stage injection pressure adjusting shim
(16) First spring
(17) Pressure pin
(18) Spring seat
(19) Second stage injection pressure adjusting shim
(20) Second spring
(21) Pre-lift adjusting spring seat
(22) Chip packing
(23) Maximum lift adjusting washer
(24) Retaining nut
(25) Nozzle The two-spring holder limits needle valve lift at initial valve opening in order to throttle the injection quantity. Main injection occurs when the in-line pressure has increased sufficiently to move the needle valve through the full life of the injector cycle. The new two stage fuel injectors include the following improvements:
Improved engine stability at low and intermediate speeds
Decreased engine hunting and surging
Decreased noise at idle
Decreased idling speed due to improved engine stability
Stabilized fuel injection characteristics from the fuel injection pump and nozzleFirst Opening Pressure
The force of the high-pressure fuel that is delivered by the injection pump forces the needle valve in the upward direction. The force overcomes the set force of the first spring. The needle valve of the nozzle forces the pushrod up and the needle valve opens.Second Opening Pressure
After the pushrod is lifted through the pre-lift position the second pushrod is contacted. The set force of the second spring acts on the second pushrod. The combined forces of the first and second spring acts on the needle valve. The needle valve will not lift until the forces are overcome.When the high-pressure fuel overcomes the combined spring force, the needle valve is again lifted, and main injection can begin. Injection Pump with Fine Spill Port (FSP) Mechanism
Illustration 6 g03331938
View of FSP mechanism
(A) FSP stroke
(26) Barrel
(27) Plunger chamber
(28) Plunger
(29) Main port
(30) Fine spill port The fuel injection pump with FSP. The speed timer function delays the injection timing at low idle in order to reduce NOx and operating noise. The injection rate control function decreases the initial inj
This engine utilizes a separated fuel injection pump in combination with a multifunction mechanical governor. This governor also utilizes a torque limiting mechanism to control the maximum peak torque. This mechanism maintains a constant level under varying loads, and provides stable idling and regulates maximum engine speed This engine uses a mechanical governor that controls the fuel injection rate at all engine speed ranges. A balance between the centrifugal force of the flyweights and spring tension is used in order to control the fuel injection rate at all rpm.The governor shaft that monitors engine speed is independent of the injection pump shaft and rotates at twice the speed of conventional types. This provides better response to load variance and delivering greater engine output.Governor Operation At Engine Start-Up
Illustration 1 g02893498
(1) Start spring
(2) Flyweights The stop solenoid is powered in order to release the stop lever. Low tension of start spring (1) permits the control rack to move to the starting position, which supplies the proper amount of fuel that is required to start the engine.Governor Operation At Idle
Illustration 2 g02893657
(1) Start spring
(2) Flyweights
(3) Second fork lever
(4) Speed control lever
(5) Spring pin
(6) First fork lever
(7) Governor spring When the speed control lever (4) is rotated in the clockwise direction, the increased tension of the governor spring (7) pulls second fork lever (3). Second fork lever (3) is pulled the torque lever pin and first fork lever (6) are moved in direction toward the front of the fuel pump in order to restrain the flyweight. Governor Operation At Rated Speed with Full Load and Overload
Illustration 3 g02878757
(8) No-load maximum rotation
(9) Output limiting bolt
(10) Torque limiting bolt As the speed control lever is changed from the middle speed range to the high speed range, the governor spring tension increases in order to compress the torque spring. This moves the first fork lever in the direction toward the front of the fuel pump.The second fork lever moves until the lever reaches the output limiting bolt (9) to keep rated rotation and rated output. When the engine is overloaded, the engine rotating speed decreases and the centrifugal force of the flyweight decreases. This moves the first fork lever in the direction toward the front of the fuel pump.The control rack moves in the direction that increases the fuel supply in order to increase output. The control rack is balanced with the centrifugal force of the flyweights to produce low-speed output.Governor Operation At Engine Stop
Illustration 4 g02894136
(11) Solenoid
(12) Stop lever shaft Stop solenoid (11) is switched to the off position, the spring tension of the solenoid is released. This causes the rod to extrude, and stop lever (12) moves the control rack in direction toward the front of the fuel pump, which stops the engine.Two-Stage Fuel Injector
Illustration 5 g03331936
(13) Edge filter
(14) Nozzle body holder
(15) First stage injection pressure adjusting shim
(16) First spring
(17) Pressure pin
(18) Spring seat
(19) Second stage injection pressure adjusting shim
(20) Second spring
(21) Pre-lift adjusting spring seat
(22) Chip packing
(23) Maximum lift adjusting washer
(24) Retaining nut
(25) Nozzle The two-spring holder limits needle valve lift at initial valve opening in order to throttle the injection quantity. Main injection occurs when the in-line pressure has increased sufficiently to move the needle valve through the full life of the injector cycle. The new two stage fuel injectors include the following improvements:
Improved engine stability at low and intermediate speeds
Decreased engine hunting and surging
Decreased noise at idle
Decreased idling speed due to improved engine stability
Stabilized fuel injection characteristics from the fuel injection pump and nozzleFirst Opening Pressure
The force of the high-pressure fuel that is delivered by the injection pump forces the needle valve in the upward direction. The force overcomes the set force of the first spring. The needle valve of the nozzle forces the pushrod up and the needle valve opens.Second Opening Pressure
After the pushrod is lifted through the pre-lift position the second pushrod is contacted. The set force of the second spring acts on the second pushrod. The combined forces of the first and second spring acts on the needle valve. The needle valve will not lift until the forces are overcome.When the high-pressure fuel overcomes the combined spring force, the needle valve is again lifted, and main injection can begin. Injection Pump with Fine Spill Port (FSP) Mechanism
Illustration 6 g03331938
View of FSP mechanism
(A) FSP stroke
(26) Barrel
(27) Plunger chamber
(28) Plunger
(29) Main port
(30) Fine spill port The fuel injection pump with FSP. The speed timer function delays the injection timing at low idle in order to reduce NOx and operating noise. The injection rate control function decreases the initial inj
Parts emm EVINRUDE:
0351520
0351520 EMM Oil program tag, XD100 oil
DE250CXISF, DE250PXISF, DE300CXIIC, DE300CXISF, DE300CZIIC, DE300PXIIC, DE300PXISF, E115DBXIIB, E115DBXISF, E115DBXSCR, E115DBXSEF, E115DBXSUC, E115DCXIIA, E115DCXISF, E115DCXSCS, E115DCXSEF, E115DHLIIR, E115DHLISC, E115DHLSES, E115DHXIIR, E115DHXISC
0351519
0351519 EMM Oil program tag, TCW3RL oils
DE250CXISF, DE250PXISF, DE300CXIIC, DE300CXISF, DE300CZIIC, DE300PXIIC, DE300PXISF, E115DBXIIB, E115DBXISF, E115DBXSCR, E115DBXSEF, E115DBXSUC, E115DCXIIA, E115DCXISF, E115DCXSCS, E115DCXSEF, E115DHLIIR, E115DHLISC, E115DHLSES, E115DHXIIR, E115DHXISC
0352927
0352927 EMM Oil program tag, XD 100, large
DE150CXAAA, DE150CXAAC, DE150CXINS, DE150PXAAA, DE150PXAAC, DE150PXINS, DE200CXAAA, DE200CXAAC, DE200HXAAA, DE200HXAAC, DE200HXAAD, DE200PXAAA, DE200PXAAC, DE200XCAAA, DE200XCAAC, DE200XCAAD, DE225CXAAA, DE225CXAAC, DE225CXAAD, DE225CXINS, DE225PXAAA
0586707
0586707 EMM
E150DBXSUF, E150DBXSUF, E150DCXSUF, E150DHLSUF, E150DPLSUF, E150DPXSUF, E150DSLSUF, E175DCXSUF, E175DPLSUF, E175DPXSUF, E175DSLSUF, E200DCXSUF, E200DPLSUF, E200DPXSUF, E200DSLSUF
0586867
0587127
0587127 EMM Exhaust emissions related part
E40DPLAAA, E40DPLABA, E40DPLINC, E40DRLAAA, E40DRLABA, E40DRLINC, E40DTLAAA, E40DTLABA, E40DTLINM, E50DPLAAA, E50DPLABA, E50DPLINC, E50DTLAAA, E50DTLABA, E50DTLINM, E55MJRLAAA, E55MRLAAA, E60DPLAAA, E60DPLABA, E60DPLINC, E60DTLAAA, E60DTLABA, E60DTLI
0587128
0587128 EMM Exhaust emissions related part
E40DPLAAA, E40DPLABA, E40DPLINC, E40DRLAAA, E40DRLABA, E40DRLINC, E40DTLAAA, E40DTLABA, E40DTLINM, E50DPLAAA, E50DPLABA, E50DPLINC, E50DTLAAA, E50DTLABA, E50DTLINM, E55MJRLAAA, E55MJRLINB, E55MRLAAA, E55MRLINB, E60DPLAAA, E60DPLABA, E60DPLINC, E60DTL
0587130
0587130 EMM Exhaust emissions related part
DE150CXAAA, DE150CXAAC, DE150CXINS, DE150PXAAA, DE150PXAAC, DE150PXINS, DE200CXAAA, DE200CXAAC, DE200HXAAA, DE200HXAAC, DE200HXAAD, DE200PXAAA, DE200PXAAC, DE200XCAAA, DE200XCAAC, DE200XCAAD, DE225CXAAA, DE225CXAAC, DE225CXAAD, DE225CXINS, DE225PXAAA