30530-P8F-A01 SENSOR ASSY., KNOCK (Honda Code 5878319). Honda
BF200A2 LA, BF200A2 XA, BF200A2 XCA, BF200A2 XXA, BF200A2 XXCA, BF200A3 LA, BF200A3 XA, BF200A3 XCA, BF200A3 XXA, BF200A3 XXCA, BF200A4 LA, BF200A4 XA, BF200A4 XCA, BF200A4 XXA, BF200A4 XXCA, BF200A5 LA, BF200A5 XA, BF200A5 XCA, BF200A5 XXA, BF200A5
SENSOR
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GT7755 + EC1004/2 Knock Detonation Sensor with Electrical Connector Compatible with 30530-P8F-A01 KS102 5S2136 2KNC0053 AS10270 2421046 242-1046 1581244 158-1244 ID0085 S2480
ISUMO Compatible With ACURA CL 2001-2003 ACURA MDX 2001-2006 ACURA RL 2005-2008 ACURA TL 1999-2008 || Compatible With 2003-2004, 2006-2007 Honda Accord 3.0L V6 || Compatible With 2009-2010 Honda Odyssey LX 2009-2010 Honda Odyssey EX 1999-2008 Honda Odyssey 3.5L V6 || Compatible With 2003-2008 Honda Pilot 3.5L V6 2006-2008 Honda Ridgeline 3.5L V6 || Compatible With 2004-2007 Saturn Vue 3.5L V6 || Copatible With Part# 30530-P8F-A01 KS102 5S2136 2KNC0053 AS10270 2421046 242-1046 1581244 158-1244 ID0085
ISUMO Compatible With ACURA CL 2001-2003 ACURA MDX 2001-2006 ACURA RL 2005-2008 ACURA TL 1999-2008 || Compatible With 2003-2004, 2006-2007 Honda Accord 3.0L V6 || Compatible With 2009-2010 Honda Odyssey LX 2009-2010 Honda Odyssey EX 1999-2008 Honda Odyssey 3.5L V6 || Compatible With 2003-2008 Honda Pilot 3.5L V6 2006-2008 Honda Ridgeline 3.5L V6 || Compatible With 2004-2007 Saturn Vue 3.5L V6 || Copatible With Part# 30530-P8F-A01 KS102 5S2136 2KNC0053 AS10270 2421046 242-1046 1581244 158-1244 ID0085
$9.81
02-09-2024
CN: SOYO AUTO PARTS
Generic Knock Detonation Sensor Wire Connector For HONDA Accord Odyssey Pilot For ACURA CL TL MDX For SATURN VUE 30530P8FA01 30531-P8F-A00
Generic Easy Installation || Durable and Practical || Perfect match for the original car || Please Check Manufacturer's Part OE Number Before Ordering || Please be very careful to check our photos, make sure it is same as you wanted.
Generic Easy Installation || Durable and Practical || Perfect match for the original car || Please Check Manufacturer's Part OE Number Before Ordering || Please be very careful to check our photos, make sure it is same as you wanted.
Compatible models:
BF200A2 LA
BF200A2 XA
BF200A2 XCA
BF200A2 XXA
BF200A2 XXCA
BF200A3 LA
BF200A3 XA
BF200A3 XCA
BF200A3 XXA
BF200A3 XXCA
BF200A4 LA
BF200A4 XA
BF200A4 XCA
BF200A4 XXA
BF200A4 XXCA
BF200A5 LA
BF200A5 XA
BF200A5 XCA
BF200A5 XXA
BF200A5 XXCA
BF200A6 LA
BF200A6 XA
BF200A6 XCA
BF200A6 XXA
BF200A6 XXCA
BF200AK0 LA
BF200AK0 XA
BF200AK0 XCA
BF225A2 LA
BF225A2 XA
BF225A2 XCA
BF225A2 XXA
BF225A2 XXCA
BF225A3 LA
BF225A3 XA
BF225A3 XCA
BF225A3 XXA
BF225A3 XXCA
BF225A4 LA
BF225A4 XA
BF225A4 XCA
BF225A4 XXA
BF225A4 XXCA
BF225A5 LA
BF225A5 XA
BF225A5 XCA
BF225A5 XXA
BF225A5 XXCA
BF225A6 LA
BF225A6 XA
BF225A6 XCA
BF225A6 XXA
BF225A6 XXCA
BF225AK0 LA
BF225AK0 XA
BF225AK0 XCA
BF225AK0 XXA
BF225AK0 XXCA
Honda
Honda entire parts catalog list:
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
- CYLINDER BLOCK » 30530-P8F-A01
Information:
Piston, Rings And Connecting Rods
One-piece aluminum pistons are used in most applications. Engines with higher cylinder pressures require one-piece steel pistons. Refer to the Parts Manual in order to obtain information about the type of pistons that are used in a specific engine.Aluminum and Steel One-Piece Pistons
The aluminum and steel pistons have an iron band for the compression ring. The iron band helps to reduce wear on the compression ring groove. The pistons have three rings:
Compression ring
Intermediate ring
Oil ringAll of the rings are located above the piston pin bore. The compression ring is a Keystone ring. Keystone rings have a tapered shape. The action of the ring in the piston groove that is tapered helps prevent seizure of the rings. Seizure of the rings is caused by deposits of carbon. The intermediate ring is rectangular with a sharp lower edge. The oil ring is a standard type of ring or a conventional type of ring. Oil returns to the crankcase through slots in the bottom of the groove.Oil from the piston cooling jets sprays the underside of the pistons. The spray lubricates the pistons and the spray cools the pistons. The spray also improves the piston life and the spray also improves the ring life. The aluminum pistons use a single jet. The steel pistons use two jets. Refer to the Specifications, "Piston Cooling Jet" for more information.The connecting rod has a taper on the pin bore end. This taper gives the connecting rod and the piston more strength. The additional strength is concentrated in the areas with the most load. Two bolts hold the connecting rod cap to the connecting rod. This design keeps the connecting rod width to a minimum, so that the connecting rod can be removed through the cylinder. The rod and the original cap must be kept together.Crankshaft
The crankshaft changes the combustion forces in the cylinder into usable rotating torque which powers the vehicle. A vibration damper is used at the front of the crankshaft to reduce torsional vibrations (twist on the crankshaft). That force can damage the engine.The crankshaft drives a group of gears on the front of the engine. The gear group drives the following devices:
Oil pump
Camshaft
High-pressure fuel pump
Gear-driven air compressorIn addition, belt pulleys on the front of the crankshaft drive the following components:
Radiator fan
Water pump
Alternator
Refrigerant compressorHydrodynamic seals are used at both ends of the crankshaft to control oil leakage. The hydrodynamic grooves in the seal lip move lubrication oil back into the crankcase as the crankshaft turns. The front seal is located in the front housing. The rear seal is installed in the flywheel housing.
Illustration 1 g01449227
Schematic of oil passages in crankshaft
(1) Oil gallery
(2) Main bearings
(3) Connecting rod bearings Pressurized oil is supplied to all main bearings from the oil gallery (1) through drilled holes in the webs of the cylinder block. The oil then flows through drilled holes in the crankshaft in order to provide oil to the connecting rod bearings (3). The crankshaft is held in place by seven main bearings (2). A thrust bearing next to the rear main bearing controls the end play of the crankshaft.Vibration Damper
The force from combustion in the cylinders will cause the crankshaft to twist. This force is called torsional vibration. If the vibration is too great, the crankshaft will be damaged. The vibration damper limits the torsional vibrations to an acceptable amount in order to prevent damage to the crankshaft.Viscous Vibration Damper
Illustration 2 g01449268
Cross section of viscous vibration damper
(4) Crankshaft
(9) Weight
(10) Case The viscous vibration damper is installed on the front of crankshaft (4). The viscous vibration damper has a weight (9) in a case (10). The space between the weight and the case is filled with a viscous fluid. The weight moves in the case in order to limit the torsional vibration.Camshaft
The camshaft is located in the upper left side of the cylinder block. The camshaft is driven by gears at the front of the engine. Seven bearings support the camshaft. A thrust plate is mounted between the camshaft drive gear and a shoulder of the camshaft to control the end play of the camshaft.The camshaft is driven by an idler gear which is driven by the crankshaft gear. The camshaft rotates in the same direction as the crankshaft. The crankshaft rotates in the counterclockwise direction when the engine is viewed from the flywheel end of the engine. There are timing marks on the crankshaft gear, idler gear, and camshaft gear to ensure correct camshaft timing to the crankshaft for proper valve operation. As the camshaft turns, each lobe moves a lifter assembly. There are two lifter assemblies for each cylinder. Each lifter assembly moves a pushrod. Each pushrod moves a set of valves (inlet or exhaust). The camshaft must be in time with the crankshaft. The relation of the camshaft lobes to the crankshaft position causes the valves in each cylinder to operate at the correct time.
One-piece aluminum pistons are used in most applications. Engines with higher cylinder pressures require one-piece steel pistons. Refer to the Parts Manual in order to obtain information about the type of pistons that are used in a specific engine.Aluminum and Steel One-Piece Pistons
The aluminum and steel pistons have an iron band for the compression ring. The iron band helps to reduce wear on the compression ring groove. The pistons have three rings:
Compression ring
Intermediate ring
Oil ringAll of the rings are located above the piston pin bore. The compression ring is a Keystone ring. Keystone rings have a tapered shape. The action of the ring in the piston groove that is tapered helps prevent seizure of the rings. Seizure of the rings is caused by deposits of carbon. The intermediate ring is rectangular with a sharp lower edge. The oil ring is a standard type of ring or a conventional type of ring. Oil returns to the crankcase through slots in the bottom of the groove.Oil from the piston cooling jets sprays the underside of the pistons. The spray lubricates the pistons and the spray cools the pistons. The spray also improves the piston life and the spray also improves the ring life. The aluminum pistons use a single jet. The steel pistons use two jets. Refer to the Specifications, "Piston Cooling Jet" for more information.The connecting rod has a taper on the pin bore end. This taper gives the connecting rod and the piston more strength. The additional strength is concentrated in the areas with the most load. Two bolts hold the connecting rod cap to the connecting rod. This design keeps the connecting rod width to a minimum, so that the connecting rod can be removed through the cylinder. The rod and the original cap must be kept together.Crankshaft
The crankshaft changes the combustion forces in the cylinder into usable rotating torque which powers the vehicle. A vibration damper is used at the front of the crankshaft to reduce torsional vibrations (twist on the crankshaft). That force can damage the engine.The crankshaft drives a group of gears on the front of the engine. The gear group drives the following devices:
Oil pump
Camshaft
High-pressure fuel pump
Gear-driven air compressorIn addition, belt pulleys on the front of the crankshaft drive the following components:
Radiator fan
Water pump
Alternator
Refrigerant compressorHydrodynamic seals are used at both ends of the crankshaft to control oil leakage. The hydrodynamic grooves in the seal lip move lubrication oil back into the crankcase as the crankshaft turns. The front seal is located in the front housing. The rear seal is installed in the flywheel housing.
Illustration 1 g01449227
Schematic of oil passages in crankshaft
(1) Oil gallery
(2) Main bearings
(3) Connecting rod bearings Pressurized oil is supplied to all main bearings from the oil gallery (1) through drilled holes in the webs of the cylinder block. The oil then flows through drilled holes in the crankshaft in order to provide oil to the connecting rod bearings (3). The crankshaft is held in place by seven main bearings (2). A thrust bearing next to the rear main bearing controls the end play of the crankshaft.Vibration Damper
The force from combustion in the cylinders will cause the crankshaft to twist. This force is called torsional vibration. If the vibration is too great, the crankshaft will be damaged. The vibration damper limits the torsional vibrations to an acceptable amount in order to prevent damage to the crankshaft.Viscous Vibration Damper
Illustration 2 g01449268
Cross section of viscous vibration damper
(4) Crankshaft
(9) Weight
(10) Case The viscous vibration damper is installed on the front of crankshaft (4). The viscous vibration damper has a weight (9) in a case (10). The space between the weight and the case is filled with a viscous fluid. The weight moves in the case in order to limit the torsional vibration.Camshaft
The camshaft is located in the upper left side of the cylinder block. The camshaft is driven by gears at the front of the engine. Seven bearings support the camshaft. A thrust plate is mounted between the camshaft drive gear and a shoulder of the camshaft to control the end play of the camshaft.The camshaft is driven by an idler gear which is driven by the crankshaft gear. The camshaft rotates in the same direction as the crankshaft. The crankshaft rotates in the counterclockwise direction when the engine is viewed from the flywheel end of the engine. There are timing marks on the crankshaft gear, idler gear, and camshaft gear to ensure correct camshaft timing to the crankshaft for proper valve operation. As the camshaft turns, each lobe moves a lifter assembly. There are two lifter assemblies for each cylinder. Each lifter assembly moves a pushrod. Each pushrod moves a set of valves (inlet or exhaust). The camshaft must be in time with the crankshaft. The relation of the camshaft lobes to the crankshaft position causes the valves in each cylinder to operate at the correct time.
Parts sensor Honda:
35665-ZW5-003
35665-ZW5-003 SENSOR ASSY., AIR TEMPERATURE (Honda Code 5892328).
BF115A1 LA, BF115A1 LCA, BF115A1 XA, BF115A1 XCA, BF115A2 LA, BF115A2 LCA, BF115A2 XA, BF115A2 XCA, BF115A3 LA, BF115A3 LCA, BF115A3 XA, BF115A3 XCA, BF115A4 LA, BF115A4 LCA, BF115A4 XA, BF115A4 XCA, BF115A5 LA, BF115A5 LCA, BF115A5 XA, BF115A5 XCA,
35673-ZY3-003
35673-ZY3-003 SENSOR ASSY., WATER (Honda Code 6991889). TEMPERATURE
BF115DK1 LA, BF115DK1 XA, BF115DK1 XCA, BF135A4 LA, BF135A4 XA, BF135A4 XCA, BF135A5 LA, BF135A5 XA, BF135A5 XCA, BF135A6 LA, BF135A6 XA, BF135A6 XCA, BF135AK0 LA, BF135AK0 XA, BF135AK0 XCA, BF135AK2 LA, BF135AK2 XA, BF135AK2 XCA, BF150A4 LA, BF150A4
35700-ZY3-003
35700-ZY3-003 SENSOR ASSY., CRANK (Honda Code 6991905).
BF175AK1 LA, BF175AK1 XA, BF175AK1 XCA, BF175AK2 LA, BF175AK2 XA, BF175AK2 XCA, BF200A2 LA, BF200A2 XA, BF200A2 XCA, BF200A2 XXA, BF200A2 XXCA, BF200A3 LA, BF200A3 XA, BF200A3 XCA, BF200A3 XXA, BF200A3 XXCA, BF200A4 LA, BF200A4 XA, BF200A4 XCA, BF200
37830-PGK-A01
37830-PGK-A01 SENSOR ASSY., MAP (Honda Code 6407845).
BF135A4 LA, BF135A4 XA, BF135A4 XCA, BF135A5 LA, BF135A5 XA, BF135A5 XCA, BF135A6 LA, BF135A6 XA, BF135A6 XCA, BF135AK0 LA, BF135AK0 XA, BF135AK0 XCA, BF150A4 LA, BF150A4 XA, BF150A4 XCA, BF150A5 LA, BF150A5 XA, BF150A5 XCA, BF150A6 LA, BF150A6 XA, B
35660-ZY3-003
35660-ZY3-003 SENSOR ASSY., TRIM ANGLE (Honda Code 6991871).
BF175AK1 LA, BF175AK1 XA, BF175AK1 XCA, BF175AK2 LA, BF175AK2 XA, BF175AK2 XCA, BF200A2 LA, BF200A2 XA, BF200A2 XCA, BF200A2 XXA, BF200A2 XXCA, BF200A3 LA, BF200A3 XA, BF200A3 XCA, BF200A3 XXA, BF200A3 XXCA, BF200A4 LA, BF200A4 XA, BF200A4 XCA, BF200
35695-ZY3-003
35695-ZY3-003 SENSOR (TDC1-TDC2)
BF175AK1 LA, BF175AK1 XA, BF175AK1 XCA, BF175AK2 LA, BF175AK2 XA, BF175AK2 XCA, BF200A2 LA, BF200A2 XA, BF200A2 XCA, BF200A2 XXA, BF200A2 XXCA, BF200A3 LA, BF200A3 XA, BF200A3 XCA, BF200A3 XXA, BF200A3 XXCA, BF200A4 LA, BF200A4 XA, BF200A4 XCA, BF200
35655-ZZ5-004
35655-ZZ5-004 SENSOR, OXYGEN
BF175AK1 LA, BF175AK1 XA, BF175AK1 XCA, BF200A6 LA, BF200A6 XA, BF200A6 XCA, BF200A6 XXA, BF200A6 XXCA, BF200AK0 LA, BF200AK0 XA, BF200AK0 XCA, BF200AK1 LA, BF200AK1 XA, BF200AK1 XCA, BF225A6 LA, BF225A6 XA, BF225A6 XCA, BF225A6 XXA, BF225A6 XXCA, BF