09387-38002 Suzuki SNAP RING


09387-38002 SNAP RING Suzuki DF150, DF150, DF150, DF150TX, DF150ZX, DF175, DF175, DF175, DF175TX, DF175ZX, DF200, DF200, DF200, DF200T, DF200Z, DF225, DF225, DF225, DF225T, DF225Z, DF250, DF250, DF250, DF250A, DF250T, DF250Z, DF300, DF300, DF300A, DF70A, DF70A, DF80A, DF80A, DF9 SNAP
09387-38002 SNAP RING Suzuki
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$7.74
 

19-01-2022

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Suzuki Ring Snap 09387-38002 New Oem
New OEM Suzuki Ring Snap || OEM Part Number: 09387-38002 || Item only fits specific models listed. The picture could be generic. || Message us with VIN/HULL for fast fitment verification.
Number on catalog scheme: 8
 

Suzuki entire parts catalog list:

DF150 2006,2007,2008,2009
DF150 2010
DF150 2011
DF150TX 2006,2007
DF150ZX 2006,2007
DF175 2006,2007,2008,2009
DF175 2010
DF175 2011
DF175TX 2006,2007
DF175ZX 2006,2007
DF200 2004,2005,2006,2007,2008,2009
DF200 2010
DF200 2011
DF200T 2004,2005,2006,2007
DF200Z 2004,2005,2006,2007
DF225 2004,2005,2006,2007,2008,2009
DF225 2010
DF225 2011
DF225T 2004,2005,2006,2007
DF225Z 2004,2005,2006,2007
DF250 2004,2005,2006,2007,2008,2009
DF250 2010
DF250 2011
DF250A 2011
DF250T 2004,2005,2006,2007
DF250Z 2004,2005,2006,2007
DF300 2007,2008,2009
DF300 2010
DF300A 2011
DF70A 2009
DF70A 2010
DF80A 2009
DF80A 2010
DF90A 2009
DF90A 2010
DT150 1998,1999,2000,2001,2002,2003
DT150SSH 1987
DT150SSJ 1988
DT150SSK 1989
DT150SSL 1990
DT150SSM 1991
DT150SSN 1992
DT150STCLP 1993
DT150STCLR 1994
DT150STCLS 1995
DT150STCLT 1996
DT150TCLH 1987
DT150TCLJ 1988
DT150TCLK 1989
DT150TCLL 1990
DT150TCLM 1991
DT150TCLN 1992
DT150TCLP 1993
DT150TCLR 1994
DT150TCXGM 1991
DT150TCXGN 1992
DT150TCXGP 1993
DT150TCXGR 1994
DT150TCXGS 1995
DT150TCXGT 1996

Information:

System Response:The Electronic Control Module (ECM) logs the event. The ECM will derate the engine power by 12.5 percent for each degree celsius above 108 °C (226 °F). The maximum derate is 25 percent of full power. The ECM will restore full engine power when the engine coolant temperature falls to 106 °C (223 °F) for 20 seconds.Possible Performance Effect:
Low powerTroubleshooting:Test Step 1. Check the Engine
Check the cooling system for problems.
Verify that the cooling system is filled with coolant to the proper level. If the coolant level is too low, air may be allowed to enter the cooling system. Air in the cooling system will cause cavitation and a reduction in coolant flow.
Check the quality of the coolant. Refer to the Operation and Maintenance Manual for coolant recommendations.
Check for air in the cooling system. Air can be introduced into the cooling system in different ways. The most common cause of air in the cooling system is the improper filling of the cooling system. Refer to the Operation and Maintenance Manual for the proper filling procedure for your engine.The next likely cause is combustion gas leakage into the cooling system. Combustion gas can be introduced into the cooling system through damaged liner seals, cracks in the liners, a damaged cylinder head, or a damaged cylinder head gasket.
Check the cooling system hoses and clamps for damage. Clamps that are damaged and hoses that are leaking can usually be discovered during a visual inspection.Hoses that have no visual leaks can soften during operation. The soft areas of the hose can kink or the soft areas of the hose may collapse during operation. This can restrict the coolant flow. This can cause the engine to overheat. Check the hoses for soft spots.Internal cracks can also develop in cooling system hoses. This type of deterioration usually produces particles that can build up in the cooling system. This may cause a restriction in the coolant flow through components. Check the hoses for spots that are hard or brittle.
Check the water pump. Remove the water pump and check for damage to the impeller. A water pump with a damaged impeller will not pump an adequate amount of coolant through the system.
Check the operation of the water temperature regulator. A water temperature regulator that does not open, or a water temperature regulator that only opens part of the way can cause overheating.
If the cooling system for this application is equipped with an expansion tank, check the shunt line for the expansion tank. The shunt line must be submerged in the expansion tank. If the shunt line is not submerged, air will be introduced into the cooling system.Check the shunt line for a restriction. A restriction of the shunt line from the expansion tank to the inlet of the water pump will cause a reduction in water pump efficiency. A reduction in water pump efficiency will result in low coolant flow.
High air inlet temperatures can cause high cooling system temperatures. Check for a problem in the engine's air inlet and exhaust systems.
Check for a restriction in the air inlet system. A restriction of the air that is coming into the engine can cause high cylinder temperatures. High cylinder temperatures cause higher than normal temperatures in the cooling system.
Check for a restriction in the exhaust system. A restriction of the air that is coming out of the engine can cause high cylinder temperatures.
If the air inlet system for this application is equipped with an aftercooler, check the aftercooler. A restriction of air flow through the air to air aftercooler can cause overheating. Check for debris or deposits which would prevent the free flow of air through the aftercooler.
The engine's operating conditions can also affect cooling system temperatures. Check the operating conditions of the engine.
Consider high ambient temperatures. When ambient temperatures are too high for the rating of the cooling system, there is not enough of a temperature difference between the ambient air and coolant temperatures.
Consider high altitude operation. The cooling capability of the cooling system is reduced at higher altitudes. A pressurized cooling system that is large enough to keep the coolant from boiling must be used.
The engine may be running in the lug condition. When the load that is applied to the engine is too large, the engine will run in the lug condition. When the engine is running in the lug condition, engine rpm does not increase with an increase of fuel. This lower engine rpm causes a reduction in coolant flow through the system. Expected Result:A thorough inspection of the engine revealed the cause of the high cooling system temperature.Results:
OK - The cause of the high cooling system temperature has been identified.Repair: Repair the problem. Ensure that the repair eliminates the original problem.STOP


Parts snap Suzuki:

67291-92E00
 
67291-92E00 SNAP RING
DF100, DF100, DF100, DF100A, DF115, DF115, DF115, DF115A, DF115TL, DF140, DF140, DF140, DF140A, DF140T, DF140T, DF140Z, DF140Z, DF140Z, DF140Z, DF15, DF15, DF15, DF150, DF150, DF150, DF150TX, DF150ZX, DF15A, DF15S, DF175, DF175, DF175, DF175TX, DF175
67291-92E10
 
67291-92E10 SNAP RING
DF100, DF100, DF100, DF100A, DF115, DF115, DF115, DF115A, DF115TL, DF140, DF140, DF140, DF140A, DF140T, DF140T, DF140Z, DF140Z, DF140Z, DF140Z, DF15, DF15, DF15, DF150, DF150, DF150, DF150TX, DF150ZX, DF15A, DF15S, DF175, DF175, DF175, DF175TX, DF175
48681-87D00
 
48681-87D00 SNAP RING
DT150, DT150SSH, DT150SSJ, DT150SSK, DT150SSL, DT150SSM, DT150SSN, DT150STCLP, DT150STCLR, DT150STCLS, DT150STCLT, DT150TCLH, DT150TCLJ, DT150TCLK, DT150TCLL, DT150TCLM, DT150TCLN, DT150TCLP, DT150TCLR, DT150TCXGM, DT150TCXGN, DT150TCXGP, DT150TCXGR,
09381-70001
 
09381-70001 SNAP RING
DT150, DT150SSH, DT150SSJ, DT150SSK, DT150SSL, DT150SSM, DT150SSN, DT150STCLP, DT150STCLR, DT150STCLS, DT150STCLT, DT150TCLH, DT150TCLJ, DT150TCLK, DT150TCLL, DT150TCLM, DT150TCLN, DT150TCLP, DT150TCLR, DT150TCXGM, DT150TCXGN, DT150TCXGP, DT150TCXGR,
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