48630-96J01 HEAD, TRIM CYLINDER Suzuki
DF140, DF140, DF140, DF140T, DF140T, DF140Z, DF140Z, DF140Z, DF140Z, DF150, DF150, DF150, DF175, DF175, DF175, DF200, DF200, DF225, DF225, DF250, DF250
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2PCS Trim Cylinder End Cap 48630-96J00,Fit for Honda Suzuki Yamaha 2 & 4 Stroke 115-300 HP, Replace For 48630-96J01 48630-96J02 48630-96J03 64E-43821-01-00,Trim Cylinder Cap With Seals & O-ring
XYWZV Replace OE: This trim cylinder cap serves as a direct replacement for OE part numbers 48630-96J01, 48630-96J02, 48630-96J03, 64E-43821-01-00, 64E-43821-02-00, 64E-43821-03-00, 64E-43821-04-00, 64E-43821-05-00., ensuring seamless integration with your existing trim cylinder system. || Compatible With SUZUKI: This trim cylinder end cap for Suzuki 4 Cyl 4 Stroke 115HP (2017 to current), 140HP (2002-2013, 2017 to current), 150HP & 175HP (2006 to current), 200HP (2015 to current); 6 Cyl 4 Stroke 200HP & 250HP (2004-2011), 300HP (2016-2017). || Compatible With YAMAHA:This trim rod cap for Yamaha 4 Cyl 3.544 Bore 115HP 150HP (2008-2010), 4 Stroke 2.8L 150HP 175HP 200HP (2011 to current); 6 Cyl 3.544 Bore 2.6L 150HP 175HP (2008-2014), 6 Cyl 3.660 Bore 3.3L HPDI 200HP 225HP 250HP 300HP (2008-2012), 4 Stroke 3.3L 200HP (2015 to current), 4 Stroke 4.2L SHO 200HP 225HP 250HP (2010 to current). || High Quality: Manufactured with precision and durability in mind, this trim cylinder end cap is crafted from high-quality materials to withstand the rigors of marine environments and prolonged usage. || Function: Enhance the performance and reliability of your trim cylinder system with this end cap, which helps maintain optimal hydraulic pressure for smooth and efficient operation of your outboard motor.
XYWZV Replace OE: This trim cylinder cap serves as a direct replacement for OE part numbers 48630-96J01, 48630-96J02, 48630-96J03, 64E-43821-01-00, 64E-43821-02-00, 64E-43821-03-00, 64E-43821-04-00, 64E-43821-05-00., ensuring seamless integration with your existing trim cylinder system. || Compatible With SUZUKI: This trim cylinder end cap for Suzuki 4 Cyl 4 Stroke 115HP (2017 to current), 140HP (2002-2013, 2017 to current), 150HP & 175HP (2006 to current), 200HP (2015 to current); 6 Cyl 4 Stroke 200HP & 250HP (2004-2011), 300HP (2016-2017). || Compatible With YAMAHA:This trim rod cap for Yamaha 4 Cyl 3.544 Bore 115HP 150HP (2008-2010), 4 Stroke 2.8L 150HP 175HP 200HP (2011 to current); 6 Cyl 3.544 Bore 2.6L 150HP 175HP (2008-2014), 6 Cyl 3.660 Bore 3.3L HPDI 200HP 225HP 250HP 300HP (2008-2012), 4 Stroke 3.3L 200HP (2015 to current), 4 Stroke 4.2L SHO 200HP 225HP 250HP (2010 to current). || High Quality: Manufactured with precision and durability in mind, this trim cylinder end cap is crafted from high-quality materials to withstand the rigors of marine environments and prolonged usage. || Function: Enhance the performance and reliability of your trim cylinder system with this end cap, which helps maintain optimal hydraulic pressure for smooth and efficient operation of your outboard motor.
Trim Cylinder End Cap with Wrench & Seals O-ring Compatible with Suzuki Yamaha 2 & 4 Stroke 115-300 HP Outboard Engine Trim Tilt Assy, Trim Cap Cylinder Replace 64E-43821-02-00 48630-96J01, 2 PCS
BOQNZN Compatible with Suzuki: Trim cylinder cap fits for Suzuki 4 Cyl 4 Stroke 115HP (2017 to current), 140HP (2002-2013, 2017 to current), 150HP & 175HP (2006 to current), 200HP (2015 to current); 6 Cyl 4 Stroke 200HP & 250HP (2004-2011), 300HP (2016-2017). Replace 48630-96J01, 48630-96J02, 48630-96J03, 48630-96J04 || Compatible with Suzuki: Trim cylinder cap fits for Suzuki 4 Cyl 4 Stroke 115HP (2017 to current), 140HP (2002-2013, 2017 to current), 150HP & 175HP (2006 to current), 200HP (2015 to current); 6 Cyl 4 Stroke 200HP & 250HP (2004-2011), 300HP (2016-2017). Replace 48630-96J01, 48630-96J02, 48630-96J03, 48630-96J04 || Durable and Reliable: The trim cap cylinder is made of aviation-grade aluminum, which has excellent durability and lightweight properties and can withstand harsh conditions in high-temperature and high-pressure conditions. Good seals ensure product reliability and stability for long-term use || Perfect Sealing: The trim cyl end is equipped with a precision O-ring, effectively prevents external impurities from entering the combustion chamber, keeping the interior of the engine clean and stable, improving the driving experience || Convenient Installation: Package includes 1 pcs wrench and 2 pcs trim cap cylinder with seals. In order to easily install and remove the cylinder decorative cover, we have specially included a special wrench to make the installation and removal operation simpler and more convenient
BOQNZN Compatible with Suzuki: Trim cylinder cap fits for Suzuki 4 Cyl 4 Stroke 115HP (2017 to current), 140HP (2002-2013, 2017 to current), 150HP & 175HP (2006 to current), 200HP (2015 to current); 6 Cyl 4 Stroke 200HP & 250HP (2004-2011), 300HP (2016-2017). Replace 48630-96J01, 48630-96J02, 48630-96J03, 48630-96J04 || Compatible with Suzuki: Trim cylinder cap fits for Suzuki 4 Cyl 4 Stroke 115HP (2017 to current), 140HP (2002-2013, 2017 to current), 150HP & 175HP (2006 to current), 200HP (2015 to current); 6 Cyl 4 Stroke 200HP & 250HP (2004-2011), 300HP (2016-2017). Replace 48630-96J01, 48630-96J02, 48630-96J03, 48630-96J04 || Durable and Reliable: The trim cap cylinder is made of aviation-grade aluminum, which has excellent durability and lightweight properties and can withstand harsh conditions in high-temperature and high-pressure conditions. Good seals ensure product reliability and stability for long-term use || Perfect Sealing: The trim cyl end is equipped with a precision O-ring, effectively prevents external impurities from entering the combustion chamber, keeping the interior of the engine clean and stable, improving the driving experience || Convenient Installation: Package includes 1 pcs wrench and 2 pcs trim cap cylinder with seals. In order to easily install and remove the cylinder decorative cover, we have specially included a special wrench to make the installation and removal operation simpler and more convenient
PQY Outboard Trim Cylinder Cap Tilt End Cap 2PCS Compatible with Suzuki Yamaha 4 Cyl 6 Cyl 2 and 4 Stroke 115-300 HP Replace 48630-96J01 64E-43821-01-00
PQY Replacement part number of the Trim Cylinder End Cap:48630-96J00, 48630-96J01, 48630-96J02, 48630-96J03, 48630-96J04,64E-43821-01-00, 64E-43821-02-00, 64E-43821-03-00, 64E-43821-04-00, 64E-43821-05-00. || The trim cylinder cap is made of aluminum ,with seal and o-ring installed. || Package include:2pcs Outboard Trim Cylinder End Cap || Compatible with Suzuki--4 Cyl 4 Stroke DF 115(17-21), 140(02-13, 17-21), 150(06-21), 175(06-21), 200(15-21); 6 Cyl 4 Stroke DF 200(04-11), 250(04-11), 300(16-17). || Compatible with Yamaha--4 Cyl 3.544 Bore 115(08-10); 4 Cyl 4 Stroke 2.8L 150(13-21),175(15-21), 200(11-21); 6 Cyl 3.544 Bore 150(08-10), 6 Cyl 3.544 Bore 2.6L HPDI 150(08-14), 175(09-12), 200(08-12), 225(08-09), 250(08), 300(08-10); 6 Cyl 4 Stroke 3.3L 200(15-21); 6 Cyl 4 Stroke 4.2L SHO 200(10-18), 225(10-21), 250(10-21).
PQY Replacement part number of the Trim Cylinder End Cap:48630-96J00, 48630-96J01, 48630-96J02, 48630-96J03, 48630-96J04,64E-43821-01-00, 64E-43821-02-00, 64E-43821-03-00, 64E-43821-04-00, 64E-43821-05-00. || The trim cylinder cap is made of aluminum ,with seal and o-ring installed. || Package include:2pcs Outboard Trim Cylinder End Cap || Compatible with Suzuki--4 Cyl 4 Stroke DF 115(17-21), 140(02-13, 17-21), 150(06-21), 175(06-21), 200(15-21); 6 Cyl 4 Stroke DF 200(04-11), 250(04-11), 300(16-17). || Compatible with Yamaha--4 Cyl 3.544 Bore 115(08-10); 4 Cyl 4 Stroke 2.8L 150(13-21),175(15-21), 200(11-21); 6 Cyl 3.544 Bore 150(08-10), 6 Cyl 3.544 Bore 2.6L HPDI 150(08-14), 175(09-12), 200(08-12), 225(08-09), 250(08), 300(08-10); 6 Cyl 4 Stroke 3.3L 200(15-21); 6 Cyl 4 Stroke 4.2L SHO 200(10-18), 225(10-21), 250(10-21).
Suzuki entire parts catalog list:
- TRIM CYLINDER » 48630-96J01
- TRIM CYLINDER » 48630-96J01
- TRIM CYLINDER » 48630-96J01
- TRIM CYLINDER » 48630-96J01
- TRIM CYLINDER » 48630-96J01
- TRIM CYLINDER » 48630-96J01
- TRIM CYLINDER » 48630-96J01
- TRIM CYLINDER » 48630-96J01
- TRIM CYLINDER » 48630-96J01
- TRIM CYLINDER » 48630-96J01
- TRIM CYLINDER » 48630-96J01
- TRIM CYLINDER (210001~) » 48630-96J01
- TRIM CYLINDER » 48630-96J01
- TRIM CYLINDER » 48630-96J01
- TRIM CYLINDER (210001~) » 48630-96J01
- TRIM CYLINDER (DF250S,DF200TL) » 48630-96J01
- TRIM CYLINDER (DF250S,DF200TL) » 48630-96J01
- TRIM CYLINDER (DF250S,DF200TL) » 48630-96J01
- TRIM CYLINDER (DF250S,DF200TL) » 48630-96J01
- TRIM CYLINDER (DF250S,DF200TL) » 48630-96J01
- TRIM CYLINDER (DF250S,DF200TL) » 48630-96J01
Information:
Illustration 1 g01205681
Air inlet and exhaust system
(1) Exhaust manifold
(2) Electronic unit injector
(3) Glow plug
(4) Inlet manifold
(5) Aftercooler core
(6) Exhaust outlet
(7) Turbine side of turbocharger
(8) Compressor side of turbocharger
(9) Air inlet from the air cleaner
(10) Inlet valve
(11) Exhaust valve The components of the air inlet and exhaust system control the quality of air and the amount of air that is available for combustion. The air inlet and exhaust system consists of the following components:
Air cleaner
Turbocharger
Aftercooler
Inlet manifold
Cylinder head, injectors and glow plugs
Valves and valve system components
Piston and cylinder
Exhaust manifoldAir is drawn in through the air cleaner into the air inlet of the turbocharger (9) by the turbocharger compressor wheel (8). The air is compressed and heated to about 150 °C (300 °F) before the air is forced to the aftercooler (5). As the air flows through the aftercooler the temperature of the compressed air lowers to about 50 °C (120 °F). Cooling of the inlet air increases combustion efficiency. Increased combustion efficiency helps achieve the following benefits:
Lower fuel consumption
Increased horsepower output
Reduced particulate emissionFrom the aftercooler, air is forced into the inlet manifold (4). Air flow from the inlet manifold to the cylinders is controlled by inlet valves (10). There are two inlet valves and two exhaust valves for each cylinder. The inlet valves open when the piston moves down on the intake stroke. When the inlet valves open, cooled compressed air from the inlet port is forced into the cylinder. The complete cycle consists of four strokes:
Inlet
Compression
Power
ExhaustOn the compression stroke, the piston moves back up the cylinder and the inlet valves (10) close. The cool compressed air is compressed further. This additional compression generates more heat.Note: If the cold starting system is operating, the glow plugs (3) will also heat the air in the cylinder.Just before the piston reaches the TC position, the ECM operates the electronic unit injector. Fuel is injected into the cylinder. The air/fuel mixture ignites. The ignition of the gases initiates the power stroke. Both the inlet and the exhaust valves are closed and the expanding gases force the piston downward toward the bottom center (BC) position.From the BC position, the piston moves upward. This initiates the exhaust stroke. The exhaust valves open. The exhaust gases are forced through the open exhaust valves into the exhaust manifold.Exhaust gases from exhaust manifold (1) enter the turbine side of the turbocharger in order to turn turbocharger turbine wheel (7). The turbine wheel is connected to the shaft that drives the compressor wheel. Exhaust gases from the turbocharger pass through exhaust outlet (6), a silencer and an exhaust pipe.Turbocharger
Illustration 2 g00302786
Turbocharger
(1) Air intake
(2) Compressor housing
(3) Compressor wheel
(4) Bearing
(5) Oil inlet port
(6) Bearing
(7) Turbine housing
(8) Turbine wheel
(9) Exhaust outlet
(10) Oil outlet port
(11) Exhaust inlet The turbocharger is mounted on the outlet of the exhaust manifold in one of two positions on the right side of the engine, toward the top of the engine or to the side of the engine. The exhaust gas from the exhaust manifold enters the exhaust inlet (11) and passes through the turbine housing (7) of the turbocharger. Energy from the exhaust gas causes the turbine wheel (8) to rotate. The turbine wheel is connected by a shaft to the compressor wheel (3).As the turbine wheel rotates, the compressor wheel is rotated. This causes the intake air to be pressurized through the compressor housing (2) of the turbocharger.
Illustration 3 g01206040
Turbocharger with the wastegate
(12) Actuating lever
(13) Wastegate actuator
(14) Line (boost pressure)
Illustration 4 g01334456
Typical example
(14) Line (boost pressure)
(15) Wastegate solenoid When the load on the engine increases, more fuel is injected into the cylinders. The combustion of this additional fuel produces more exhaust gases. The additional exhaust gases cause the turbine and the compressor wheels of the turbocharger to turn faster. As the compressor wheel turns faster, air is compressed to a higher pressure and more air is forced into the cylinders. The increased flow of air into the cylinders allows the fuel to be burnt with greater efficiency. This produces more power.A wastegate is installed on the turbine housing of the turbocharger. The wastegate is a valve that allows exhaust gas to bypass the turbine wheel of the turbocharger. The operation of the wastegate is dependent on the pressurized air (boost pressure) from the turbocharger compressor. The boost pressure acts on a diaphragm that is spring loaded in the wastegate actuator which varies the amount of exhaust gas that flows into the turbine.If a wastegate solenoid (15) is installed, then the wastegate is controlled by the engine Electronic Control Module (ECM). The ECM uses inputs from a number of engine sensors to determine the optimum boost pressure. This will achieve the best exhaust emissions and fuel consumption at any given engine operating condition. The ECM controls the solenoid valve, which regulates the boost pressure to the wastegate actuator.When high boost pressure is needed for the engine performance, a signal is sent from the ECM to the wastegate solenoid. This causes low pressure in the air inlet pipe (14) to act on the diaphragm within the wastegate actuator (13). The actuating rod (12) acts upon the actuating lever to close the valve in the wastegate. When the valve in the wastegate is closed, more exhaust gas is able to pass over the turbine wheel. This results in an increase in the speed of the turbocharger.When low boost pressure is needed for the engine performance, a signal is sent from the ECM to the wastegate solenoid. This causes high pressure in the air inlet pipe (14) to act on the diaphragm within the wastegate actuator (13). The actuating rod (12) acts upon the actuating lever to open the valve in the wastegate. When the valve in the wastegate is opened, more exhaust gas from the engine is able to bypass the turbine wheel, resulting in an decrease in the speed of the turbocharger.The shaft that connects the turbine to the compressor wheel rotates in bearings (4 and 6). The bearings require oil under pressure for lubrication and cooling. The oil that flows to
Parts head Suzuki:
11100-90J04
11100-90J02
11100-90J02 HEAD, CYLINDER
DF100, DF100, DF115, DF115, DF115TL, DF140, DF140, DF140T, DF140T, DF140Z, DF140Z, DF140Z, DF140Z, DF90, DF90TL
11100-90J01
11100-90J01 HEAD, CYLINDER
DF100, DF100, DF115, DF115, DF115TL, DF140, DF140, DF140T, DF140T, DF140Z, DF140Z, DF140Z, DF140Z, DF90, DF90TL
11100-90J05
11100-90J05 HEAD, CYLINDER
DF100, DF100, DF115, DF115, DF140, DF140, DF140T, DF140T, DF140Z, DF140Z, DF140Z, DF90
11100-90J06
11100-90J06 HEAD, CYLINDER
DF100, DF100, DF100, DF100A, DF115, DF115, DF115, DF115A, DF140, DF140, DF140, DF140A, DF140T, DF140T, DF140Z, DF140Z, DF140Z, DF90
11103-98J01
11101-96J00
48630-96J00