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2003 SUZUKI SV 650 COOLING AND LUBRICATION SYSTEM SERVICE MANUAL

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Filed Under (Suzuki) by admin on 26-02-2011

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COOLING CIRCUIT INSPECTION Before removing the radiator and draining the engine coolant, inspect the cooling circuit for tightness. • * Remove the cowling. (SV650S) (C-7–7-6) • * Loosen the radiator cap stop screw 10 . (SV650) • * Remove the radiator cap O2 and connect the radiator tester to the filler. A WARNING Do not remove the radiator cap when the engine is hot. • * Give a pressure of about 120 kPa (1 .2 kgf/cm2,17.0 psi) and see if the system holds this pressure for 10 seconds . • * If the pressure should fall during this 10-second interval, it means that there is a leaking point in the system . In such a case, inspect the entire system and replace the leaking component or part. A WARNING When removing the radiator cap tester, put a rag on the filler to prevent spouting of engine coolant. CAUTION Do not allow the pressure to exceed specified pressure, or the radiator can be damaged. COOLING AND LUBRICATION SYSTEM 6-3 6-4COOLING AND LUBRICATION SYSTEM RADIATOR REMOVAL • * Remove the cowling. (SV650S) ( r- 7-7-6) • * Drain engine coolant. (r– 72-20) • * Disconnect the right and left radiator hoses from the radiator. • * Disconnect the siphon hose from the radiator. • * Disconnect the horn lead wires. rI .rr • * Remove the radiator lower mounting bolt. • * Disconnect the cooling fan motor and its thermo-switch lead wire coupler 10. • * Remove the radiator by upper mounting bolt. • * Remove the cooling fan. • * Disconnect the cooling fan thermo-switch. • * Remove the cooling fan thermo-switch. • * Remove the horn. CAUTION When removing the horn, hold the nut by spanner to prevent the horn bracket distortion. COOLING AND LUBRICATION SYSTEM 6-5 INSTALLATION • * Install the cooling fan and horn. 0 Cooling fan/horn mounting bolt: 8 N .m (0.8 kgf-m, 6 .0 Ib-ft) • * Install the cooling fan thermo-switch. ( l”76-9) • * Install the siphon hose to the radiator. • * Install the radiator in the reverse order of removal. • * Route the radiator hoses properly. (=9-22) 9-22) • * Install the drain plug with a new sealing washer and pour engine coolant. (=2-20) • * Bleed air from the cooling circuit. (r– 72-21) • * Install the cowling. (SV650S)

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Suzuki SV1000 COOLING AND LUBRICATION SYSTEM REPAIR MANUAL

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Filed Under (Suzuki) by admin on 25-02-2011

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At the time of manufacture, the cooling system is filled with a 50 :50 mixture of distilled water and ethylene glycol anti-freeze . This 50:50 mixture will provide the optimum corrosion protection and excellent heat protection, and will protect the cooling system from freezing at temperatures above -31 °C (-24 °F) . If the motorcycle is to be exposed to temperatures below -31 °C (-24 °F), this mixing ratio should be increased up to 55 % or 60 % according to the figure. CAUTION • Use a high quality ethylene glycol base anti-freeze, mixed with distilled water . Do not mix an alcohol base anti-freeze and different brands of anti-freeze. • Do not rut in more than 60%anti-freeze or less than 50 %. (Refer to the right figure.) • * Do not use a radiator anti-leak additive. A WARNING COOLING AND LUBRICATION SYSTEM 5-3 20 40 60 80100 0 10 20 30 40 50 60 Density (%) Fig .2 Engine coolant density-boiling point curve • * You can be injured by scalding fluid or steam if you open the radiator cap when the engine is hot . After the engine cools, wrap a thick cloth around cap and carefully remove the cap by turning it a quarter turn to allow pressure to escape and then turn the cap all the way off . • * The engine must be cool before servicing the cooling system . • * Coolant is farmful; • * If the comes in contact with skin or eyes, flush with water. • * If swallowed accidentally, induce vomiting and call physician immediately . • * Keep it away from children . Anti-freeze density Freezing point 50% -31 °C (-24 °F) 55% -40 °C (-40 °F) 60% -55 °C (-67 °F) 50 % engine coolant including reservoir tank capacity Anti-freeze 1 100 ml (2.3/1 .9 US/Imp-pt) Water 1 100 ml (2.3/1.9 US/Imp.pt) Density (%) Fig.1 Engine coolant density-freezing point curve (°F) (°C) 302 150 (kgf/cm2) 284 140 1.5 c Q 266 130 0.9 0) a) :0 248 120 0.5 0) m Z3 230 110 0 (7 212 100 (F) (C) 32 0 14 -10 -4 -20 C 0 Q -22 -30 O) C N -40 -40 a) a) U- -58 -50 -76 -60 -94 -70 5-4 COOLING AND LUBRICATION SYSTEM COOLING CIRCUIT THERMOSTAT RESERVOIR TANK RADIATOR NO. 1 CYLINDER HEAD NO . 1 CYLINDER NO. 2 CYLINDER NO. 2 CYLINDER HEAD WATER PUMP INSPECTION Before removing the radiator and draining engine coolant, inspect the cooling circuit for tightness. • * Remove the body cowling. (=6-6) • * Remove the radiator cap ® . • * Connect the tester 02 to the filler. A WARNING Do not remove the radiator cap when the engine is hot. • * Give a pressure of about 110 kPa (1.1 kgf/cm 2, 15 .6 psi) and see if the system holds this pressure for 10 seconds. • * If the pressure should fall during this 10-second interval, it means that there is a leaking point in the system. In such a case, inspect the entire system and replace the leaking component or part. A WARNING When removing the radiator cap tester, put a rag on the filler to prevent spouting of engine coolant. CAUTION Do not allow the pressure to exceed the radiator cap release pressure, or the radiator can be damaged

SUZUKI SV650 COOLING AND LUBRICATION SYSTEM

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Filed Under (Suzuki) by admin on 04-12-2010

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ENGINE COOLANT At the time of manufacture, the cooling system is filled with a 50:50 mixture of distilled water and ethylene glycol anti-freeze. This 50:50 mixture will provide the optimum corrosion protection and excellent heat protection, and will protect the cooling system from freezing at temperatures above -31 °C (-24 °F) . If the motorcycle is to be exposed to temperatures below -31 °C (-24 °F), this mixing ratio should be increased up to 55 % or 60 according to the figure. A WARNING 204060 80100 Density (%) .. • * You can be injured by scalding fluid or steam if you open the radiator cap when the engine is hot. After the engine cools, wrap a thick cloth around cap and carefully remove the cap by turning it a quarter turn to allow pressure to escape and then turn the cap all the way off . * The engine must be cool before servicing the cooling system. • * Coolant is harmful ; • * If it comes in contact with skin or eyes, flush with water. • * If swallowed accidentally, induce vomiting and call physician immediately. • * Keep it away from children.

2001-2003 GL1800/ A ECM Replacement/ Cooling System REPAIR PROCEDURES

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Filed Under (Honda) by admin on 29-01-2011

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Install the new ECM, then reinstall the cruise/ reverse control module in the reverse order of removal. NOTE: When you start the vehicle – after completing ALL procedures – the new ECM will require initialization . To initialize the new ECM, perform the following procedure: • Start the bike and allow it to warm up to normal operating temperature and remain at idle for at least 90 seconds . Do not operate the throttle during this time; if you do, the ECU will not initialize properly and the process will need to be repeated. 5. Proceed to the Cylinder Head Inspection section below. Use the Cylinder Head Inspection Kit for the Cylinder Head Inspection procedure. Use the kit for each GL1800/A you inspect. Do NOT dispose of kit items. 1) 19X20 mm cap (2) (cap B) 2) 8X15 mm cap (cap A) 3) Hose plug 4) Bottle/cap w/feed hose 5) Harness clips (10) 6) Harness tape 7) Inspection mirror A limited number of additional Cylinder Head Inspection Kits are available: call TechLine at 800-421-1900, ext. 1 if you need one. Kit contents are NOT available separately as parts. NOTE: • The following late ’03 models do not have to have their cylinder heads inspected: • Perform the following procedure with the engine at room temperature. • Both Left and Right cylinder heads must be inspected. • Use the Cylinder Head Inspection Kit for the following procedure. 1. Remove the front lower fairing. (See S/M, 2-6) 2. Remove and suspend the rear brake reservoir, being careful not to stress the brake hose. (See S/M, 15-A-8) CONNECTOR B (22-GRY) CONNECTOR C (6-BLK) CONNECTOR A (22-BLK) ECM (ENGINE CONTROL MODULE) 1 2 3 4 5 6 7 Late ’03 (Non-ABS): after VIN 1HFSC470*3A204632 Late ’03 (ABS): after VIN 1HFSC474*3A201020 Cylinder Head Inspection Kit Cylinder Head Inspection

SUZUKI SV 1000 RADIATOR (COOLING SYSTEM) SERVICE MANUAL

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Filed Under (Suzuki) by admin on 26-02-2011

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FI SYSTEM MALFUNCTION CODE AND DEFECTIVE CONDITION MALFUNCTION CODE DETECTED ITEM DETECTED FAILURE CONDITION CHECK FOR COO NO FAULT C11 Camshaft position sen- sor The signal does not reach ECM for more than 3 sec . after receiving the starter signal . The camshaft position sensor wiring and mechanical parts (Camshaft position sensor, intake cam pin, wiring/coupler con- nection) C12 Crankshaft position sensor The signal does not reach ECM for more than 2 sec . after receiving the starter signal . The crankshaft position sensor wiring and mechanical parts (Crankshaft position sensor, wiring/coupler connection) C13 Intake air pressure sensor The sensor should produce following voltage . (0.50 V < sensor voltage < 4 .85 V) Without the above range, C13 is indicated. Intake air pressure sensor, wiring/coupler connection C14 Throttle position sen- sor The sensor should produce following voltage . (0.20 V < sensor voltage < 4 .80 V) Without the above range, C14 is indicated. Throttle position sensor, wiring/coupler connection C15 Engine coolant temperature sensor The sensor voltage should be the following. (0.15 V <_ sensor voltage < 4 .5 V) Without the above range, C15 is indicated. Engine coolant temperature sensor, wiring/coupler connection C21 Intake air temperature sensor The sensor voltage should be the following. (0.15 V < sensor voltage < 4 .5 V) Without the above range, C21 is indicated. Intake air temperature sensor, wiring/coupler connection C22 Atmospheric pressure sensor The sensor voltage should be the following. (0.50 V < sensor voltage < 4 .5 V) Without the above range, C22 is indicated. Atm. pressure sensor, wiring/coupler connection C23 Tip over sensor The sensor voltage should be the following for more than 2 sec . after ignition switch turns ON . (0 .20 V < sensor voltage < 4 .80 V) Without the above value, C23 is indicated. Tip over sensor, wiring/coupler connection C24 or C25 Ignition signalCrankshaft position sensor signal is produced and ECM determines the ignition signal but signal from ignition coil is interrupted continuous by 4 times or more. In this case, the code C24 or C25 is indicated. Ignition coil, wiring/coupler connection, power supply from the battery SERVICING INFORMATION 8 .3 C28 Secondary throttle valve actuator No operating voltage is supplied from the ECM, C28 is indicated. STVA can not operate. STVA lead wire/coupler, STVA C29 Secondary throttle valve position sensor The sensor should produce following voltage . (0.10 V < sensor voltage < 4 .90 V) Without the above range, C29 is indicated . Secondary throttle position sensor, wiring/coupler connection C31 Gear position signalGear position signal voltage should be higher than the following for more than 2 seconds. (Gear position switch voltage >_ 0 .6 V) Without the above value, C31 is indicated. Gear position sensor, wiring/coupler connection, gearshift cam, etc. C32 or C33 Fuel injector Crankshaft position sensor signal is produced and ECM determines the injection signal but fuel injection signal is interrupted continuous by 4 times or more. In this case, the code C32 or C33 is indicated. Injector, wiring/coupler connection, power supply to the injector C41 Fuel pump relay No voltage is applied to fuel pump although fuel pump relay is turned ON, or voltage is applied to fuel pump although fuel pump relay is turned OFF . Fuel pump relay, connecting lead, power source to fuel pump relay C42 Ignition switchIgnition switch signal is not input in the ECM . Ignition switch, lead wire/coupler C44 Heated oxygen sensor (HO2S) [For E-02, 19] During 02 feedback control, 02 sensor voltage is higher or lower than the specification . No signal is detected during engine operation or no electrical power is supplied from the battery . HO2S lead wire/coupler connection Battery voltage supply to the HO2S C49 PAIR control solenoid valve (PAIR valve) When no operating voltage is supplied from the ECM, C49 is indicated. PAIR valve can not operate. PAIR valve lead wire/coupler

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2004 KTM 950 ADVENTURE REPAIR MANUAL

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Filed Under (KTM) by admin on 23-11-2010

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Intake system Fresh air is drawn into the filter box through the intake snorkel 1 , past the carburetors 2 and through the air filter 3 . The cleaned air is conducted to the combustion chamber through the carburetors and intake ports. 1 2 2 3 2-4 Repair manual KTM LC8 Art.-Nr . 3.206.016-E Secondary air system The secondary air system supplies fresh air to the emissions in the exhaust port, resulting in the afterburning (oxidation) of the emissions. A line leads from the filter box 1 to the control valve 2 which opens as soon as the throttle valves 3 are opened. The line continues to the reed valves 4 in the cylinder heads which are actuated by the pressure pulsation in the exhaust system. As a result, cleansed fresh air arrives in the exhaust port. The oxygen content in the air and the high exhaust gas temperature cause the emissions to oxidize. If the throttle valves are closed and the engine goes into an overrun condition, the underpressure in the intake port will rise and the control valve will close. This prevents exhaust backfire (combustion of the unburned fuel/air mixture). 1 2 3 3 4 4 4 2-5 Closed thermostat The thermostat is closed if the temperature of the cooling liquid drops below 75°C. The water pump 1 pumps the cooling liquid through the cylinder and cylinder heads 2 and the thermostat 2 . Open thermostat The thermostat 3 opens at 75°C. The water pump 1 pumps the cooling liquid through the cylinder and cylinder heads 2 , the aluminum cooler 4 and the thermostat. The pressure in the cooling system (max. 1.4 bar) is regulated by a valve in the radiator cap 5 . The cooling liquid level in the compensating tank 6 must be between the MIN and MAX marks when the engine is cold. The fan 7 switches on at 102°C.

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2001-2003 HONDA GL1800/ A ECM Replacement/ Cooling System

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Filed Under (Honda) by admin on 13-12-2011

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Use the Cylinder Head Inspection Kit for the Cyl- inder Head Inspection procedure. Use the kit for each GL1800/A you inspect. Do NOT dispose of kit items. 1) 19X20 mm cap (2) (cap B) 2) 8X15 mm cap (cap A) 3) Hose plug 4) Bottle/cap w/feed hose 5) Harness clips (10) 6) Harness tape 7) Inspection mirror A limited number of additional Cylinder Head Inspection Kits are available: call TechLine at 800-421-1900, ext. 1 if you need one. Kit con- tents are NOT available separately as parts. NOTE: • The following late ‘03 models do not have nto have their cylinder heads inspected: • Perform the following procedure with the engine at room temperature. • Both Left and Right cylinder heads must be inspected. • Use the Cylinder Head Inspection Kit for the following procedure. 1. Remove the front lower fairing. (See S/M, 2-6) 2. Remove and suspend the rear brake reser- voir, being careful not to stress the brake hose. (See S/M, 15-A-8)

TOYOTA SUPRA 1990 REPAIR MANUAL COOLING SYSTEM LUBRICATION SYSTEM

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Filed Under (Uncategorized) by admin on 22-05-2011

This manual contains maintenance and repair procedures for the 1990 TOYOTA SUPRA.
Applicable model: MA7O series 4 The manual is divided into 24 sections and 4 appendixes with
a thumb index for each section at the edge of the pages. Please note that the publications below have also been prepared as relevant service manuals to the components and systems in this vehicle.
Manual Name I Pub. No. ‘ 1990 Toyota Supra Electrical Wiring EWDO72U
Diagram Manual ‘ Toyota Supra Collision Damaged Body BRMOOSE Repair Manual ° Toyota Supra Collision Damaged Body BRMOOQE Repair Manual Supplement ° 1990 Model New Car Features NCFO59U
All information in this manual is based on the latest product in- formation at the time of publication. However, specifications and procedures are subject to change without notice.

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2001 – 2004 Camry, Highlander, Solara & 2004

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Filed Under (Toyota Manuals) by admin on 12-10-2011

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2004 model year Camry, Highlander, Solara and 2004 model year RAV4 vehicles with the 2AZ-FE engine may exhibit squealing and/or rattling noises coming from the engine compartment during vehicle operation especially after a cold soak. The belt tensioner assembly has been improved to correct this condition. 2001 – 2004 model year Camry, Highlander and Solara vehicles equipped with 2AZ-FE engines produced BEFORE the Production Change Effective VINs shown below. 2004 model year RAV4 vehicles produced BEFORE the Production Change Effective VINs shown below. MODEL ENGINE LINE PRODUCTION CHANGE EFFECTIVE VIN TMMK Line 1 4T1BE3#K#4U358206 Camry TMMK Line 2 4T1BE3#K#4U914052 y 2AZFE Tsutsumi JTDBE3#K#40296732 Highlander 2AZ-FE TMK JTE#D2#A#40100501 Solara TMMK 4T1CE3#P#4U914074 RAV4 Tahara JTE#D2#V#40029797 PREVIOUS PART NUMBERCURRENT PART NUMBER PART NAME QTY 16620-28010 16620-28011 Tensioner Assembly, V-ribbed Belt 1 OP CODE DESCRIPTION TIME OFP T1 T2 EG8001 R & R Accessory Belt Tensioner 0.9 16620-28010 91 55 Applicable Warranty*: This repair is covered under the Toyota Comprehensive Warranty. This warranty is in effect for 36 months or 36,000 miles, whichever occurs first, from the vehicle’s in-service date. *Warranty application is limited to correction of a problem based upon a customer’s specific complaint

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KAWASAKI Jet Ski STX-12F SPECIFICATIONS

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Filed Under (Kawasaki) by admin on 05-11-2010

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FEATURES & BENEFITS Kawasaki 2007 SPECIFICATIONS: JT1200D7F Engine type……………… 4-stroke, water cooled, 4- cylinder Displacement…………… 1,199 cm3 Bore & stroke…………… 83.0 x 55.4 mm Compression ratio…… 11.2:1 Induction system……… DOHC 16 valve (4 valves per cylinder) Maximum power………. 92 kW (125 PS) / 7,200 r/min Maximum torque……… 125 N·m / 6,500 r/min Cooling system……….. inducted water Fuel system…………….. EFI with single 54 mm throttle Starting ……………………. electric Battery…………………….. sealed, 12V 18Ah Propulsion system…… axial flow, single stage jet pump Maximum thrust………. 3,675 N (375 kgf) Seating capacity………. 3 seater Fuel capacity…………… 62 L L x W x H…………………. 3,120 x 1,180 x 1,050 mm Dry weight……………….. 334 kg Colours……………………. Red NOTE: Specifications subject to change without notice ENGINE Ñ Chrome composite plated cylinders are lightweight, durable and quickly carry heat away from the combustion chamber and piston for supreme durability at high power output. Ñ Semi-dry sump uses a single feed oil pump. Ñ Tip over protection shuts the engine off if the craft tilts more than 61o. Ñ 4-valves per cylinder provides maximum valve area for optimum flow. Fuel system Ñ Electronic Fuel Injection (EFI) with a single Mitsubishi throttle body and an injector at each intake port. Ñ Long intake tract enhances low-end power. Ñ Large capacity, low-noise airbox. Ñ Finger-type throttle reduces hand fatigue. Water-jacketed semi-dry exhaust Ñ Double-walled exhaust manifold and dual waterboxes help reduce noise. Ñ Water surrounding the exhaust system lowers engine compartment temperatures for more power. Ñ Semi-dry exhaust system keeps cooling water out of the exhaust before the waterbox to prevent water from entering the engine if the boat should capsize. Ñ Emissions meet US EPA 2006 and CARB 2008 regulations. Lanyard engine stop switch Ñ Engine will not crank with lanyard removed. Ñ Fastened to the rider, lanyard cuts the ignition if the rider dismounts. DRIVE SYSTEM Three-blade oval edge stainless steel impeller Ñ The shape of the blades give maximum efficiency with minimum cavitation. Ñ Fully enclosed impeller for damage protection. Ñ Stainless steel pump insert increases durability and helps ensure reliable performance. Ñ Tough stainless steel is used for incredible durability. HULL Ñ One-piece chopper over foam (COF) hull construction is lighter than a conventional hand-laid hull of similar size. Ñ Cab forward design makes more space for the rider and passengers. Ñ Gel coat for deep, lustrous, scratch resistant finish. Ñ Open rear deck for carrying bulky items, putting on skis, etc. Ñ
An automatically retractable boarding step makes boarding from deep water easy. Kawasaki Smart Steering (KSS) Ñ A steering sensor is linked to the EMM to aid in boat handling when the throttle is quickly released from high speed. Detail features Ñ 62 litre fuel tank for increased range. Ñ LCD instrumentation includes digital speedometer, tachometer, hour meter, clock, trip distance, trip time, fuel level and warning lamps. Ñ Includes high tech. troubleshooting function for the fuel injection system. A computer hook-up allows easy retrieval of entire troubleshooting history. Ñ A remote cooling system flushing point is included. Ñ Front hatch made of ABS for reduced weight, increased durability and enhanced appearance. Ñ Mirrors mounted on the deck reduce weight and enhance appearanced

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