5001110 *CHECK VALVE EVINRUDE
E100FPLSOC, E100FPLSRS, E115FPLSDS, E115FPLSNF, E115FPLSOD, E115FPLSRE, E115FPLSTB, E115FPXSDS, E115FPXSOD, E115FPXSRE, E115FSLSDS, E135FCXSDE, E135FCXSNF, E135FCXSOB, E135FCXSRM, E135FCXSTA, E135FPLSDE, E135FPLSOB, E135FPLSRM, E135FPLSTA, E135FPLSTF
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For Suzuki GS550 Indy 1977 / GS550E GS550L GS750 GS750B GS750C GS750EC GS750N GS750EN GS750L GS850G GS1000 GS1000EC GS1000EN GS1000L GS1000N GS1000S 1977-1979 Motorcycle Ignition coil 12V CDI Coils
XinyeKiKi The yellow (+) on the coil connects to Black / White (ignition / kill switch) on the bike. The black (-) on the coil connects to the Blue (condenser / points wire) on the bike. || Package included: 1 x CDI Ignition Coil. || Waterproof, heat-proof and temperature-proof. || High quality, durable and easy to install. || Its stylish design is perfect to decorate your motorcycle.
XinyeKiKi The yellow (+) on the coil connects to Black / White (ignition / kill switch) on the bike. The black (-) on the coil connects to the Blue (condenser / points wire) on the bike. || Package included: 1 x CDI Ignition Coil. || Waterproof, heat-proof and temperature-proof. || High quality, durable and easy to install. || Its stylish design is perfect to decorate your motorcycle.
Compatible models:
E100FPLSOC
E100FPLSRS
E115FPLSDS
E115FPLSNF
E115FPLSOD
E115FPLSRE
E115FPLSTB
E115FPXSDS
E115FPXSOD
E115FPXSRE
E115FSLSDS
E135FCXSDE
E135FCXSNF
E135FCXSOB
E135FCXSRM
E135FCXSTA
E135FPLSDE
E135FPLSOB
E135FPLSRM
E135FPLSTA
E135FPLSTF
E135FPXSDE
E135FPXSOB
E135FPXSRM
E135FSLSDE
E135FSLSTA
E135FSLSTF
E150FCXSDR
E150FCXSNF
E150FCXSOC
E150FCXSRS
E150FCXSTD
E150FHLSDR
E150FHLSOC
E150FHLSRS
E150FPLSDR
E150FPLSOC
E150FPLSRS
E150FPLSTD
E150FPLSTF
E150FPXSDR
E150FPXSOC
E150FPXSRS
E150FSLSDR
E150FSLSTF
E175FCXSDS
E175FCXSNF
E175FCXSOD
E175FCXSRE
E175FCXSTB
E175FPLSDS
E175FPLSOD
E175FPLSRE
E175FPLSTB
E175FPLSTF
E175FPXSDS
E175FPXSOD
E175FPXSRE
E175FSLSDD
E175FSLSTF
E175MFXSOS
E200DCXSOC
E200DHLSDF
E200DHLSOC
E200DHLSOG
E200DHLSUG
E200DHXSDS
E200DPLSOC
E200FCXSNF
E200FCXSOE
E200FCXSRB
E200FCXSTM
E200FHLSOR
E200FHLSRC
E200FPLSNF
E200FPLSOE
E200FPLSRB
E200FPLSTM
E200HCXSDS
E200HSLSDS
E225DCXSDR
E225DCXSOC
E225DCZSUG
E225DHLSDF
E225DHLSOC
E225DHLSOF
E225DHLSOG
E225DHLSUG
E225DHXSDF
E225DHXSUG
E225DPLSDR
E225DPLSOC
E225DPLSUG
E225DPXSDR
E225DPXSUG
E225DPZSOC
E225FCXSNF
E225FCXSOE
E225FCXSRB
E225FCXSTM
E225FHLSOB
E225FHLSRM
E225FHLSTA
E225FPLSOE
E225FPLSRB
E250DCXSDR
E250DCXSOC
E250DCXSUG
E250DPLSDR
E250DPLSOC
E250DPXSDR
E250DPXSUG
E250FCXSNF
E250FCXSOB
E250FCXSRM
E250FCXSTA
E250FPLSOM
E250FPLSRA
E250FPXSNF
E40DELSDA
E40DELSOR
E40DELSRC
E40DPLSDA
E40DPLSOR
E40DPLSRC
E40DPLSUM
E40DRLSDA
E40DRLSOR
E40DRLSRC
E40DRLSUM
E50DPLSDA
E50DPLSOR
E50DPLSRC
E50DPLSUM
E60DPLSDA
E60DPLSUM
E60WDRLSOS
E75DPLSDA
E75DPLSOR
E75DPLSRC
E75DPLSUM
E75FPLSNF
E75FPLSTA
E90DPLSDA
E90DPLSOR
E90DPLSRC
E90DPLSUM
E90DPXSDA
E90DPXSOR
E90DPXSRC
E90DPXSUM
E90DSLSDR
E90DSLSOC
E90DSLSRC
E90DSLSUM
E90FPLSNF
E90FPLSTB
E90WDPLSOS
EVINRUDE
BRP EVINRUDE entire parts catalog list:
- OIL COMPONENTS » 5001110
E115FPLSDS 2006
E115FPLSNF, E115FPXSNF 2002
E115FPLSOD, E115FSLSOD 2004,2005
E115FPLSRE, E115FSLSRE 2004
E115FPLSTB, E115FPXSTB, E115FSLSTB 2003
E115FPXSDS 2006
E115FPXSOD 2004,2005
E115FPXSRE 2004
E115FSLSDS 2006
E135FCXSDE 2006
E135FCXSNF, E135FPLSNF, E135FPXSNF 2002
E135FCXSOB 2004,2005
E135FCXSRM 2004
E135FCXSTA 2003
E135FPLSDE 2006
E135FPLSOB, E135FSLSOB 2004,2005
E135FPLSRM, E135FSLSRM 2004
E135FPLSTA, E135FPXSTA 2003
E135FPLSTF 2003
E135FPXSDE 2006
E135FPXSOB 2004,2005
E135FPXSRM 2004
E135FSLSDE 2006
E135FSLSTA 2003
E135FSLSTF 2003
E150FCXSDR 2006
E150FCXSNF, E150FPLSNF, E150FPXSNF 2002
E150FCXSOC 2004,2005
E150FCXSRS 2004
E150FCXSTD 2003
E150FHLSDR 2006
E150FHLSOC 2004,2005
E150FHLSRS 2004
E150FPLSDR 2006
E150FPLSOC, E150FSLSOC 2004,2005
E150FPLSRS, E150FSLSRS 2004
E150FPLSTD, E150FPXSTD, E150FSLSTD 2003
E150FPLSTF 2003
E150FPXSDR 2006
E150FPXSOC 2004,2005
E150FPXSRS 2004
E150FSLSDR 2006
E150FSLSTF 2003
E175FCXSDS 2006
E175FCXSNF, E175FPLSNF, E175FPXSNF 2002
E175FCXSOD 2004,2005
E175FCXSRE 2004
E175FCXSTB 2003
E175FPLSDS 2006
E175FPLSOD, E175FSLSOE 2004,2005
E175FPLSRE, E175FSLSRB 2004
E175FPLSTB, E175FPXSTB, E175FSLSTM 2003
E175FPLSTF 2003
E175FPXSDS 2006
E175FPXSOD 2004,2005
E175FPXSRE 2004
E175FSLSDD 2006
E175FSLSTF 2003
E175MFXSOS 2005
E175MFXSOS 2004
E200DCXSOC 2004,2005
E200DHLSDF 2006
E200DHLSOC 2004,2005
E200DHLSOG 2004,2005
E200DHLSUG 2007
E200DHXSDS 2006
E200DPLSOC, E200DPXSOC, E200DSLSOC 2004,2005
E200FCXSNF 2002
E200FCXSOE 2004,2005
E200FCXSRB 2004
E200FCXSTM, E200FHLSTS 2003
E200FHLSOR 2004,2005
E200FHLSRC 2004
E200FPLSNF, E200FPXSNF 2002
E200FPLSOE, E200FPXSOE, E200FSLSOE 2004,2005
E200FPLSRB, E200FPXSRB, E200FSLSRB 2004
E200FPLSTM, E200FPXSTM, E200FSLSTM 2003
E200HCXSDS 2006
E200HSLSDS 2006
E225DCXSDR, E225DCZSDR 2006
E225DCXSOC, E225DCZSOC 2004,2005
E225DCZSUG 2007
E225DHLSDF 2006
E225DHLSOC, E225DHXSOC 2004,2005
E225DHLSOF 2004,2005
E225DHLSOG, E225DHXSOG 2004,2005
E225DHLSUG 2007
E225DHXSDF 2006
E225DHXSUG 2007
E225DPLSDR 2006
E225DPLSOC, E225DPXSOC 2004,2005
E225DPLSUG 2007
E225DPXSDR, E225DPZSDR 2006
E225DPXSUG 2007
E225DPZSOC 2004,2005
E225FCXSNF, E225FCZSNF, E225FHLSNF, E225FPLSNF, E225FPXSNF, E225FPZSNF 2002
E225FCXSOE, E225FCZSOE 2004,2005
E225FCXSRB, E225FCZSRB 2004
E225FCXSTM, E225FCZSTM, E225FPLSTM, E225FPXSTM, E225FPZSTM 2003
E225FHLSOB, E225FHXSOC 2004,2005
E225FHLSRM, E225FHXSRS 2004
E225FHLSTA 2003
E225FPLSOE, E225FPXSOE, E225FPZSOE 2004,2005
E225FPLSRB, E225FPXSRB, E225FPZSRB 2004
E250DCXSDR, E250DCZSDR 2006
E250DCXSOC, E250DCZSOC 2004,2005
E250DCXSUG 2007
E250DPLSDR 2006
E250DPLSOC, E250DPXSOC, E250DPZSOC 2004,2005
E250DPXSDR, E250DPZSDR 2006
E250DPXSUG, E250DPZSUG 2007
E250FCXSNF, E250FCZSNF, E250FPZSNF 2002
E250FCXSOB, E250FCZSOB 2004,2005
Information:
Engine Design
3408C
Cylinder, Valve And Injection Pump LocationNumber And Arrangement Of Cylinders ... 65 degree V-8Valves Per Cylinder ... 4Displacement ... 18.0 liters (1099 cu in)Bore ... 137.2 mm (5.40 in)Stroke ... 152.4 mm (6.00 in)Compression Ratio ... 14.5:1Type Of Combustion ... Direct InjectionDirection Of Crankshaft Rotation (as viewed from flywheel end) ... CounterclockwiseDirection Of Fuel Pump Camshaft Rotation (as viewed from pump drive end) ... CounterclockwiseFiring Order (Injection Sequence) ... 1-8-4-3-6-5-7-2Valve Lash Setting Inlet ... 0.38 mm (.015 in)Exhaust ... 0.76 mm (.030 in) Front end of engine is opposite the flywheel end. Left side and right side of engine are as viewed from the flywheel end. No. 1 cylinder is the front cylinder on the left side. No. 2 cylinder is the front cylinder on the right side.3412C
Cylinder, Valve And Injection Pump LocationNumber And Arrangement Of Cylinders ... 65 degree V-12Valves Per Cylinder ... 4Displacement ... 27.0 liters (1649 cu in)Bore ... 137.2 mm (5.40 in)Stroke ... 152.4 mm (6.00 in)Compression Ratio ... 14.5:1Type Of Combustion ... Direct InjectionDirection Of Crankshaft Rotation (as viewed from flywheel end) ... CounterclockwiseDirection Of Fuel Pump Camshaft Rotation (as viewed from pump drive end) ... CounterclockwiseFiring Order (Injection Sequence) ... 1-4-9-8-5-2-11-10-3-6-7-12Valve Lash Setting Inlet ... 0.38 mm (.015 in)Exhaust ... 0.76 mm (.030 in) Front end of engine is opposite the flywheel end. Left side and right side of engine are as viewed from the flywheel end. No. 1 cylinder is the front cylinder on the left side. No. 2 cylinder is the front cylinder on the right side.Engine Information
The Caterpillar electronically controlled 3408C & 3412C Industrial Engines have a 137 mm (5.40 in) bore, 152.4 mm (6.00 in) stroke. The engine is a four stroke cycle, 8 or 12 cylinder 65 degrees vee engine.The engine is twin series turbocharged and jacket water aftercooled with direct fuel injection. The engine has a SAE No. "0" (zero) flywheel housing and dual viscous dampers. This engine is designed for either right or left hand service and to fit within a 1220 mm (48 in) width for oil well service-fracturing rig applications.The electronic control system was designed to provided engine speed governing, automatic fuel ratio control, torque rise shaping and system diagnostics with data link.Individual injection pumps and fuel lines, one for each cylinder, meter and pump fuel under high pressure to a fuel injection nozzle for each cylinder. A mechanical timing advance provides fuel injection timing over the full range of engine speed.A full range electronic governor controls the fuel injection pump output to maintain the engine rpm, called for by the throttle position sensor.The cooling system consists of a gear driven centrifugal pump, with two water temperature regulators which regulate the coolant temperature. A customer supplied fan drive and cooling system (radiator) is required.The engine lubricating oil, which is both cooled and filtered, is supplied by a gear driven pump. Bypass valves provide unrestricted flow of lubrication oil to the engine parts when oil viscosity is high, or if either the engine oil cooler or the engine oil filter elements should become plugged.Engine efficiency and engine performance depend on adherence to proper operation and maintenance recommendations, and the use of recommended fuels, coolants and lubrication oils.Follow the recommended Maintenance Management Schedule with emphasis on air cleaner, oil, engine oil filter, fuel and fuel filter maintenance found in the Operation & Maintenance Manual.Starting The Engine
The electronically controlled engine may need to crank slightly longer than a mechanically governed engine, because some oil pressure is required for the electronic actuator to move the rack. The check engine light should be ON while the engine is cranking, but should GO OUT, after engine oil pressure is achieved. At temperatures below 0°C (32°F), it may be necessary to spray starting fluid into the air cleaner inlet (follow the recommended procedure in the Operation & Maintenance Manual. If the engine fails to start in 30 seconds, allow the starting motor to cool for two minutes before trying it again.Cold Mode Operation
The electronic control system automatically idles the engine at 900 to 1000 rpm for the correct warm up time after a cold engine start [approximately less than 5°C (40°F)]. The electronic control system periodically checks the engine response and will reduce the idle speed down to 600 rpm when the engine is warmed.After the engine is started and the cold mode operation is completed, the engine can be operated at low rpm and low power. The engine will reach normal operating temperature faster when operated at low rpm and low power demand than when idled at no load.Shutoff Solenoid Override
A manual shutoff solenoid override lever is located on the side of the fuel pump. The engine can be shut off by rotating the manual shutoff lever in the counterclockwise (CCW) direction. Rotating the manual shutoff lever in the clockwise (CW) direction disables the shutoff solenoid.If the solenoid has been disabled, the engine can be shut OFF by using the manual shutoff lever on the side of the fuel pump.
DO NOT operate the engine without the rack solenoid (BTM) in place and with the fuel shutoff solenoid disabled. Excessive engine speed may result.
Customer Specified Parameters
The electronic control system is capable of being programmed for several customer specified parameters. These parameters and a brief explanation of each are in the Operation & Maintenance Guide.Glossary Of Electronic Control Terms
Actual RackThe ECM's interpretation of the signal from the Rack Position Sensor, read as "Rack Pos" on the Caterpillar electronic service tools.Actual Timing AdvanceDegrees of advance beyond static (basic) timing.Aftermarket DeviceA device or accessory installed by the customer after the engine is delivered.Alternating Current (AC)The direction of current flow changes (alternates) regularly and constantly.American Wire Gauge (AWG)A measure of the diameter (and therefore the current carrying ability) of electrical wire. The smaller the AWG number, the larger the wire.Before Top Center (BTC)The 180 degrees of crankshaft rotation before
3408C
Cylinder, Valve And Injection Pump LocationNumber And Arrangement Of Cylinders ... 65 degree V-8Valves Per Cylinder ... 4Displacement ... 18.0 liters (1099 cu in)Bore ... 137.2 mm (5.40 in)Stroke ... 152.4 mm (6.00 in)Compression Ratio ... 14.5:1Type Of Combustion ... Direct InjectionDirection Of Crankshaft Rotation (as viewed from flywheel end) ... CounterclockwiseDirection Of Fuel Pump Camshaft Rotation (as viewed from pump drive end) ... CounterclockwiseFiring Order (Injection Sequence) ... 1-8-4-3-6-5-7-2Valve Lash Setting Inlet ... 0.38 mm (.015 in)Exhaust ... 0.76 mm (.030 in) Front end of engine is opposite the flywheel end. Left side and right side of engine are as viewed from the flywheel end. No. 1 cylinder is the front cylinder on the left side. No. 2 cylinder is the front cylinder on the right side.3412C
Cylinder, Valve And Injection Pump LocationNumber And Arrangement Of Cylinders ... 65 degree V-12Valves Per Cylinder ... 4Displacement ... 27.0 liters (1649 cu in)Bore ... 137.2 mm (5.40 in)Stroke ... 152.4 mm (6.00 in)Compression Ratio ... 14.5:1Type Of Combustion ... Direct InjectionDirection Of Crankshaft Rotation (as viewed from flywheel end) ... CounterclockwiseDirection Of Fuel Pump Camshaft Rotation (as viewed from pump drive end) ... CounterclockwiseFiring Order (Injection Sequence) ... 1-4-9-8-5-2-11-10-3-6-7-12Valve Lash Setting Inlet ... 0.38 mm (.015 in)Exhaust ... 0.76 mm (.030 in) Front end of engine is opposite the flywheel end. Left side and right side of engine are as viewed from the flywheel end. No. 1 cylinder is the front cylinder on the left side. No. 2 cylinder is the front cylinder on the right side.Engine Information
The Caterpillar electronically controlled 3408C & 3412C Industrial Engines have a 137 mm (5.40 in) bore, 152.4 mm (6.00 in) stroke. The engine is a four stroke cycle, 8 or 12 cylinder 65 degrees vee engine.The engine is twin series turbocharged and jacket water aftercooled with direct fuel injection. The engine has a SAE No. "0" (zero) flywheel housing and dual viscous dampers. This engine is designed for either right or left hand service and to fit within a 1220 mm (48 in) width for oil well service-fracturing rig applications.The electronic control system was designed to provided engine speed governing, automatic fuel ratio control, torque rise shaping and system diagnostics with data link.Individual injection pumps and fuel lines, one for each cylinder, meter and pump fuel under high pressure to a fuel injection nozzle for each cylinder. A mechanical timing advance provides fuel injection timing over the full range of engine speed.A full range electronic governor controls the fuel injection pump output to maintain the engine rpm, called for by the throttle position sensor.The cooling system consists of a gear driven centrifugal pump, with two water temperature regulators which regulate the coolant temperature. A customer supplied fan drive and cooling system (radiator) is required.The engine lubricating oil, which is both cooled and filtered, is supplied by a gear driven pump. Bypass valves provide unrestricted flow of lubrication oil to the engine parts when oil viscosity is high, or if either the engine oil cooler or the engine oil filter elements should become plugged.Engine efficiency and engine performance depend on adherence to proper operation and maintenance recommendations, and the use of recommended fuels, coolants and lubrication oils.Follow the recommended Maintenance Management Schedule with emphasis on air cleaner, oil, engine oil filter, fuel and fuel filter maintenance found in the Operation & Maintenance Manual.Starting The Engine
The electronically controlled engine may need to crank slightly longer than a mechanically governed engine, because some oil pressure is required for the electronic actuator to move the rack. The check engine light should be ON while the engine is cranking, but should GO OUT, after engine oil pressure is achieved. At temperatures below 0°C (32°F), it may be necessary to spray starting fluid into the air cleaner inlet (follow the recommended procedure in the Operation & Maintenance Manual. If the engine fails to start in 30 seconds, allow the starting motor to cool for two minutes before trying it again.Cold Mode Operation
The electronic control system automatically idles the engine at 900 to 1000 rpm for the correct warm up time after a cold engine start [approximately less than 5°C (40°F)]. The electronic control system periodically checks the engine response and will reduce the idle speed down to 600 rpm when the engine is warmed.After the engine is started and the cold mode operation is completed, the engine can be operated at low rpm and low power. The engine will reach normal operating temperature faster when operated at low rpm and low power demand than when idled at no load.Shutoff Solenoid Override
A manual shutoff solenoid override lever is located on the side of the fuel pump. The engine can be shut off by rotating the manual shutoff lever in the counterclockwise (CCW) direction. Rotating the manual shutoff lever in the clockwise (CW) direction disables the shutoff solenoid.If the solenoid has been disabled, the engine can be shut OFF by using the manual shutoff lever on the side of the fuel pump.
DO NOT operate the engine without the rack solenoid (BTM) in place and with the fuel shutoff solenoid disabled. Excessive engine speed may result.
Customer Specified Parameters
The electronic control system is capable of being programmed for several customer specified parameters. These parameters and a brief explanation of each are in the Operation & Maintenance Guide.Glossary Of Electronic Control Terms
Actual RackThe ECM's interpretation of the signal from the Rack Position Sensor, read as "Rack Pos" on the Caterpillar electronic service tools.Actual Timing AdvanceDegrees of advance beyond static (basic) timing.Aftermarket DeviceA device or accessory installed by the customer after the engine is delivered.Alternating Current (AC)The direction of current flow changes (alternates) regularly and constantly.American Wire Gauge (AWG)A measure of the diameter (and therefore the current carrying ability) of electrical wire. The smaller the AWG number, the larger the wire.Before Top Center (BTC)The 180 degrees of crankshaft rotation before
Parts check EVINRUDE:
0434927
0434927 CHECK VALVE ASSY.
BE130TLECE, BE130TLEUB, BE200CXECM, BE200CXEDR, BE200CXEUA, BE225CXECS, BE225CXEDE, BE225CXEUD, E100FPLSOC, E100FPLSRS, E115FPLEEC, E115FPLSDS, E115FPLSIF, E115FPLSNF, E115FPLSOD, E115FPLSRE, E115FPLSSH, E115FPLSTB, E115FPXSDS, E115FPXSOD, E115FPXSRE
0436048
0436048 CHECK VALVE AY
BE200CXECM, BE200CXEDR, BE200CXEUA, BE225CXECS, BE225CXEDE, BE225CXEUD, E100FPLSOC, E100FPLSRS, E100WPLSIF, E105WELSIF, E115FPLEEC, E115FPLSDS, E115FPLSIF, E115FPLSNF, E115FPLSOD, E115FPLSRE, E115FPLSSH, E115FPLSTB, E115FPXSDS, E115FPXSOD, E115FPXSRE
0437773
0437773 CHECK VALVE
BE115ELEDR, BE115ELEUA, BE115GLECM, BE150ELECD, BE150ELEDB, BE150ELEUC, BE175EXECD, BE175EXEDB, BE175EXEUC, BE25ARECA, BE25AREDC, BE25AREUR, BE35ARECR, BE35AREDS, BE35AREEA, BE35AREUC, BE35ARSIB, BE35ARSSM, BE90ELEDR, BE90ELEUA, BE90SLECM, DE150CXAAA
5000477
5000477 CHECK VALVE, Recirculation, port & starboard
DE200HXAAA, DE200HXAAC, DE200HXAAD, DE200XCAAA, DE200XCAAC, DE200XCAAD, DE225CXAAA, DE225CXAAC, DE225CXAAD, DE225CXINS, DE225PXAAA, DE225PXAAC, DE225PXAAD, DE225PXINS, DE250CXAAA, DE250CXAAC, DE250CXAAD, DE250CXISF, DE250PXAAA, DE250PXAAC, DE250PXAAD
5001769
5001769 CHECK VALVE, Transfer drain - Port
E100FPLSOC, E100FPLSRS, E115FPLSDS, E115FPLSNF, E115FPLSOD, E115FPLSRE, E115FPLSTB, E115FPXSDS, E115FPXSOD, E115FPXSRE, E115FSLSDS, E135FCXSDE, E135FCXSNF, E135FCXSOB, E135FCXSRM, E135FCXSTA, E135FPLSDE, E135FPLSOB, E135FPLSRM, E135FPLSTA, E135FPLSTF