45710-92D20 SHALLOW DRIVE ARM Suzuki
DT8CENK, DT8CENL, DT8CLJ, DT8CLK, DT8CLL, DT8CLM, DT8CNK, DT8CNL, DT8CSJ, DT8CSL, DT8CSM, DT8MCLN, DT8MCLP, DT8MCLS, DT8MCLT, DT8MCLV, DT8MCSN, DT8MCSP, DT8MCSR, DT8MCSS, DT8MCST, DT8MCSV, DT8MSLR, DT8SCK, DT9.9 CELK, DT9.9CELJ, DT9.9CELL, DT9.9CELM,
SHALLOW
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Compatible models:
DT8CENK
DT8CENL
DT8CLJ
DT8CLK
DT8CLL
DT8CLM
DT8CNK
DT8CNL
DT8CSJ
DT8CSL
DT8CSM
DT8MCLN
DT8MCLP
DT8MCLS
DT8MCLT
DT8MCLV
DT8MCSN
DT8MCSP
DT8MCSR
DT8MCSS
DT8MCST
DT8MCSV
DT8MSLR
DT8SCK
DT9.9 CELK
DT9.9CELJ
DT9.9CELL
DT9.9CELM
DT9.9CELN
DT9.9CELP
DT9.9CELR
DT9.9CELS
DT9.9CELT
DT9.9CENK
DT9.9CESJ
DT9.9CESK
DT9.9CESL
DT9.9CESM
DT9.9CESN
DT9.9CESP
DT9.9CESR
DT9.9CESS
DT9.9CEST
DT9.9CNELP
DT9.9CNELR
DT9.9CNELS
DT9.9CNELT
DT9.9CNEXP
DT9.9CNEXR
DT9.9CNEXS
DT9.9CNEXT
DT9.9CNEXV
DT9.9CNJ
DT9.9CNK
DT9.9CNL
DT9.9CNLN
DT9.9MCLJ
DT9.9MCLK
DT9.9MCLL
DT9.9MCLM
DT9.9MCLN
DT9.9MCLP
DT9.9MCLR
DT9.9MCLS
DT9.9MCLT
DT9.9MCLV
DT9.9MCNLR
DT9.9MCNLT
DT9.9MCNLV
DT9.9MCSJ
DT9.9MCSK
DT9.9MCSL
DT9.9MCSM
DT9.9MCSN
DT9.9MCSP
DT9.9MCSR
DT9.9MCSS
DT9.9MCST
DT9.9MCSV
Suzuki
Suzuki entire parts catalog list:
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
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- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
- SWIVEL BRACKET » 45710-92D20
Information:
Starting Motor
Illustration 1 g00295928
Starting Motor
(1) Terminal for connection of the battery cable
(2) Terminal for connection of the ignition switch The starting motor turns the engine flywheel. The rpm must be high enough in order to initiate a sustained operation of the fuel ignition in the cylinders.The starting motor has a solenoid. When the ignition switch is activated, voltage from the electrical system will cause the solenoid to move the pinion toward the flywheel ring gear of the engine. The electrical contacts in the solenoid close the circuit between the battery and the starting motor barely before the pinion engages the ring gear. This causes the starting motor to rotate. This type of activation is called a positive shift.When the engine begins to run, the overrunning clutch of the pinion drive prevents damage to the armature. Damage to the armature is caused by excessive speeds. The clutch prevents damage by stopping the mechanical connection. However, the pinion will stay meshed with the ring gear until the ignition switch is released. A spring in the overrunning clutch returns the clutch to the rest position.Alternator
Illustration 2 g00303424
Alternator
(1) Shaft for mounting the pulley The alternator produces the following electrical output:
Three-phase
Full-wave
RectifiedThe alternator has brushes. The alternator is an electro-mechanical component. The alternator is driven by a belt from the fan drive pulley. The alternator charges the storage battery during the engine operation.The alternator is cooled by an external fan which is mounted behind the pulley. The fan forces air through the holes in the front of the alternator. The air exits through the holes in the back of the alternator.The alternator converts the mechanical energy and the magnetic energy into alternating current and voltage. This conversion is done by rotating a direct current electromagnetic field on the inside of a three-phase stator. The electromagnetic field is generated by electrical current flowing through a rotor. The stator generates alternating current and voltage.The alternating current is changed to direct current by a three-phase, full-wave rectifier. Direct current flows to the output terminal of the alternator. The rectifier has three exciter diodes. The direct current is used for the charging process.A solid state regulator is installed on the rear end of the alternator. Two brushes conduct current through two slip rings. The current then flows to the rotor field. A capacitor protects the rectifier from high voltages.The alternator is connected to the battery through the ignition switch. Therefore, alternator excitation occurs when the switch is in the ON position.Circuit Breakers
Illustration 3 g00281837
Circuit Breaker With Reset Button
(1) Reset button
(2) Metal disc in the open position
(3) Contacts
(4) Metal disc in the closed position
(5) Battery circuit terminals Most models have a circuit breaker. The circuit breaker is a switch that opens the circuit if the current in the electrical system is higher than the rating of the circuit breaker. The metal disc (2) is activated by heat. The metal disc has contact points which complete the electrical circuit through the circuit breaker. If the current in the electrical system gets too high, the metal disc will get hot. This heat causes a distortion of the metal disc. This distortion causes the contact points to open the circuit. A circuit breaker that is open can be reset when the metal disc becomes cooler. Push the reset button (1) in order to close the contact points and reset the circuit breaker.
Illustration 1 g00295928
Starting Motor
(1) Terminal for connection of the battery cable
(2) Terminal for connection of the ignition switch The starting motor turns the engine flywheel. The rpm must be high enough in order to initiate a sustained operation of the fuel ignition in the cylinders.The starting motor has a solenoid. When the ignition switch is activated, voltage from the electrical system will cause the solenoid to move the pinion toward the flywheel ring gear of the engine. The electrical contacts in the solenoid close the circuit between the battery and the starting motor barely before the pinion engages the ring gear. This causes the starting motor to rotate. This type of activation is called a positive shift.When the engine begins to run, the overrunning clutch of the pinion drive prevents damage to the armature. Damage to the armature is caused by excessive speeds. The clutch prevents damage by stopping the mechanical connection. However, the pinion will stay meshed with the ring gear until the ignition switch is released. A spring in the overrunning clutch returns the clutch to the rest position.Alternator
Illustration 2 g00303424
Alternator
(1) Shaft for mounting the pulley The alternator produces the following electrical output:
Three-phase
Full-wave
RectifiedThe alternator has brushes. The alternator is an electro-mechanical component. The alternator is driven by a belt from the fan drive pulley. The alternator charges the storage battery during the engine operation.The alternator is cooled by an external fan which is mounted behind the pulley. The fan forces air through the holes in the front of the alternator. The air exits through the holes in the back of the alternator.The alternator converts the mechanical energy and the magnetic energy into alternating current and voltage. This conversion is done by rotating a direct current electromagnetic field on the inside of a three-phase stator. The electromagnetic field is generated by electrical current flowing through a rotor. The stator generates alternating current and voltage.The alternating current is changed to direct current by a three-phase, full-wave rectifier. Direct current flows to the output terminal of the alternator. The rectifier has three exciter diodes. The direct current is used for the charging process.A solid state regulator is installed on the rear end of the alternator. Two brushes conduct current through two slip rings. The current then flows to the rotor field. A capacitor protects the rectifier from high voltages.The alternator is connected to the battery through the ignition switch. Therefore, alternator excitation occurs when the switch is in the ON position.Circuit Breakers
Illustration 3 g00281837
Circuit Breaker With Reset Button
(1) Reset button
(2) Metal disc in the open position
(3) Contacts
(4) Metal disc in the closed position
(5) Battery circuit terminals Most models have a circuit breaker. The circuit breaker is a switch that opens the circuit if the current in the electrical system is higher than the rating of the circuit breaker. The metal disc (2) is activated by heat. The metal disc has contact points which complete the electrical circuit through the circuit breaker. If the current in the electrical system gets too high, the metal disc will get hot. This heat causes a distortion of the metal disc. This distortion causes the contact points to open the circuit. A circuit breaker that is open can be reset when the metal disc becomes cooler. Push the reset button (1) in order to close the contact points and reset the circuit breaker.
Parts shallow Suzuki:
45700-92D01
45700-92D01 SHALLOW WATER DRIVE SET
DT8CENK, DT8CENL, DT8CLJ, DT8CLK, DT8CLL, DT8CLM, DT8CNK, DT8CNL, DT8CSJ, DT8CSL, DT8CSM, DT8MCLN, DT8MCLP, DT8MCLS, DT8MCLT, DT8MCLV, DT8MCSN, DT8MCSP, DT8MCSR, DT8MCSS, DT8MCST, DT8MCSV, DT8MSLR, DT8SCK, DT9.9 CELK, DT9.9CELJ, DT9.9CELL, DT9.9CELM,
45710-92D03
45710-92D03 SHALLOW DRIVE ARM
DT8CENK, DT8CENL, DT8CLJ, DT8CLK, DT8CLL, DT8CLM, DT8CNK, DT8CNL, DT8CSJ, DT8CSL, DT8CSM, DT8MCLN, DT8MCLP, DT8MCLS, DT8MCLT, DT8MCLV, DT8MCSN, DT8MCSP, DT8MCSR, DT8MCSS, DT8MCST, DT8MCSV, DT8MSLR, DT8SCK, DT9.9 CELK, DT9.9CELJ, DT9.9CELL, DT9.9CELM,
09200-08065
09200-08065 SHALLOW DRIVE PIN
DT8CENK, DT8CENL, DT8CLJ, DT8CLK, DT8CLL, DT8CLM, DT8CNK, DT8CNL, DT8CSJ, DT8CSL, DT8CSM, DT8MCLN, DT8MCLP, DT8MCLS, DT8MCLT, DT8MCLV, DT8MCSN, DT8MCSP, DT8MCSR, DT8MCSS, DT8MCST, DT8MCSV, DT8MSLR, DT8SCK, DT9.9 CELK, DT9.9CELJ, DT9.9CELL, DT9.9CELM,