1991 toyota supra cooling system diagram

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Toyota ISO Adapter Wiring Diagram

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Filed Under (Toyota Manuals) by admin on 19-05-2011

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4R Runner 1991-2000 Amazon > 2000 Avensis > 1997 Avensis verso > 2003 Camry > 1991 Carina E > 1988 Celica > 1990 Corolla > 1988 Corolla verso > 2002 Hi-Ace > 1990 Hi-Lux > 1989 Land Cruiser 1984-2002 Lite Ace > 1993 MR2 > 1990 Paseo > 1997 Picnic > 1990 Previa > 1994 RAV-4 > 1994 Starlet 1993-1997 Supra 1986-1996 Tacoma 1995-2001 Yaris > 1999 Reference : AC000005AA If you are interested, contact our sales department : Car kit Parrot Battery Pin Number Couleur Description 1 White Mute In 1 2 Yellow Mute In 2 3 Blue Mute In 3 4 Orange + 12V Memory 5 Green 6 Brown 7 Red + 12 V Permanent 8 Black Masse Car kit Parrot, car’s speakers Pin Number Couleur Description 1 Grey Rear right speaker + 2 White Rear right speaker – 3 Blue Front right speaker + 4 Green Front right speaker – 5 Red Front left speaker + 6 Orange Front left speaker – 7 Bronw Rear left speaker + 8 Black Rear left speaker – Toyota Audio Toyota Supply N° Connector Color Description 2 Toyota 2 Green Rear left speaker + 2 Toyota 1 White Front left speaker + 1 Toyota 1 Grey Front Right speaker + 1 Toyota 2 Violet Rear Right speaker + 3 Toyota 2 Green Black Rear Left speaker – 9 Toyota 1 White Black Front Left speaker – 10 Toyota 1 Grey Black Front Right speaker- 6 Toyota 2 Black Violet Rear Right speaker – N° Connector Color Description 3 Toyota 1 Red +12 V Permanent 4 Toyota 1 Orange +12 Ignition 8 Toyota 1 Black Ground Toyota 1 Toyota 2 Toyota Audio Toyota Supply N° Connector Color Description 2 Toyota 4 Green Rear left speaker + 2 Toyota 3 White Front left speaker + 1 Toyota 3 Grey Front Right speaker + 1 Toyota 4 Violet Rear Right speaker + 3 Toyota 4 Green Black Rear Left speaker – 9 Toyota 3 White Black Front Left speaker – 10 Toyota 3 Grey Black Front Right speaker- 6 Toyota 4 Black Violet Rear Right speaker – N° Connector Color Description 3 Toyota 3 Red +12 V Permanent 4 Toyota 3 Orange +12 Ignition 8 Toyota 3 Black Ground

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2001 Ford Taurus/ Sable Cooling System Draining Filling and Bleeding Workshop Manual

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Filed Under (Ford Manuals) by admin on 19-02-2011

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CAUTION: Vehicle cooling systems are filled with Motorcraft Premium Engine Coolant VC-4-A (in Oregon VC-5, in Canada CXC-10) or an equivalent meeting Ford specification ESE-M97B44-A. NOTE: Less than 80% of the coolant capacity can be recovered with the engine in the vehicle. Dirty, rusty or contaminated coolant requires replacement. 1. Release the pressure in the cooling system by slowly turning the pressure relief cap one half to one turn counterclockwise to the first stop on the filler neck. When the pressure has been released, remove the pressure relief cap. 2. Raise and support the vehicle. For additional information, refer to Section 100-02 . 3. Remove the front splash shield. 4. Place a suitable container below the radiator draincock. Drain the coolant. 5. Close the radiator draincock when finished. Filling and Bleeding With RADKITPLUS 1. Using the special tool, install the RADKITPLUS and follow the RADKITPLUS manufacturer’s instructions to fill and bleed the cooling system. Filling Without RADKITPLUS CAUTION: Engine coolant provides freeze protection, boil protection, cooling efficiency and corrosion protection to the engine and cooling components. In order to obtain these protections, the engine coolant must be maintained at the correct concentration and fluid level. When adding engine coolant, use a 50/50 mixture of engine coolant and clean, drinkable water. To maintain the integrity of the coolant and the cooling system: * Add Motorcraft Premium Engine Coolant VC-4-A (in Oregon VC-5, in Canada CXC-10) or equivalent meeting Ford specification ESE-M97B44-A. * Do not add Motorcraft Specialty Engine Coolant VC-2 or an equivalent meeting Ford specification WSS-M97B44-D. Mixing coolants may degrade the coolant’s corrosion protection. * Do not add alcohol, methanol, brine or any engine coolants mixed with alcohol or methanol antifreeze. These can cause engine damage from overheating or freezing. * Do not mix with recycled coolant unless it meets the requirement of specification ESE-M97B44-A. Not all coolant recycling processes meet this specification. Use of such a coolant may harm the engine and cooling system components. 1. Install the front splash shield. 2. Lower the vehicle. 3. Fill the degas bottle with the correct engine coolant mixture. 4. Install the pressure relief cap. 5. Move the temperature blend selector to the full warm position. 6. WARNING: Do not stand in line with or near the engine cooling fan blade when revving the engine. Run the engine until it reaches operating temperature. 7. Add the correct coolant mixture to the degas bottle until the coolant level is between the COOLANT FILL LEVEL marks. 8. Turn off the engine and allow the cooling system to cool. Recheck the coolant level and fill the cooling system to the FULL mark on the degas bottle. 9. WARNING: Do not stand in line with or near the engine cooling fan blade when revving the engine. Repeat Steps 3 through 8 until the reservoir level is OK. Bleeding Without RADKITPLUS 1. Bleed the cooling system as follows: * Select the maximum heater temperature and blower motor speed settings. Position the control to discharge air from the A/C vents in the instrument panel. * WARNING: Do not stand in line with or near the engine cooling fan blade when revving the engine. Start the engine and allow it to idle. While the engine is idling, feel for hot air from the A/C vents. * CAUTION: If the air discharge remains cool and the engine coolant temperature gauge does not move, the engine coolant level is low in the engine and must be filled. Stop the engine, allow it to cool and fill the cooling system. Start the engine and allow it to idle until the normal operating temperature is reached. Hot air should discharge from the A/C vents. The engine coolant temperature gauge should maintain a stabilized reading in the middle of the NORMAL range and the upper radiator hose should feel hot to the touch. * Shut the engine off and allow it to cool. * Check the engine for coolant leaks. * Check the engine coolant level in the degas bottle and fill it as necessary.

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1991 Infiniti G20 AXLE SHAFTS – FRONT REMOVAL AND INSTALLATION MANUAL

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Filed Under (Infiniti Manuals) by admin on 13-02-2012

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REMOVAL & INSTALLATION FWD AXLE SHAFT Removal (Axle Shaft) 1. Raise and support vehicle. Remove front wheel assembly. Remove wheel bearing lock nut. Remove brake caliper, and support aside. Remove brake rotor. 2. Disconnect tie rod end. Remove upper knuckle nut, and separate knuckle assembly from third link assembly. Push axle shaft through hub, and separate axle assembly from knuckle assembly. 3. Insert screwdriver blade between transaxle case and right axle inner CV joint. Pry out on joint until joint pops free. Use care not to damage axle boot or axle seal. 4. On M/T vehicles, remove left axle in same manner. On A/T vehicles, insert screwdriver through differential, and drive axle out of transaxle case using a hammer. See Fig. 2 . PROBLEM Possible Cause/Action GREASE LEAKING Ripped CV Boot Replace Boot CLICKING NOISE WHILE CORNERING Dry/Worn CV Joints Replace Outer CV Joints CLUNK ON ACCELERATION Dry/Worn CV Joints Replace Inner CV Joints Worn Transmission Gears/Bearings Inspect Transmission VIBRATION/SHUDDER ON ACCELERATION Dry/Worn CV Joints Replace CV Joints Alignment Out Check Alignment Incorrect Spring Height Check Spring Height SQUEALING OR HUMMING Dry/Worn CV Joints Lube/Replace CV Joints Faulty Wheel Bearing Replace Wheel Bearing NOTE: DO NOT allow brake caliper to hang from brake hose. CAUTION: Use care not to damage pinion mate shaft or side gear while driving out axle. 1991 Infiniti G20 AXLE SHAFTS – FRONT’ ’1991-92 DRIVE AXLES FWD Axle Shafts None Page 2
Fig. 2: Removing Left Drive Axle (A/T Vehicles) Courtesy of NISSAN MOTOR CO., U.S.A. Removal (Outer CV Joint) 1. Remove and discard boot bands. Slide boot off joint housing. Thread wheel bearing lock nut onto joint. Using a slide hammer and bearing puller, remove joint from axle shaft. See Fig. 3 . NOTE: Outer joint cannot be disassembled. Remove and inspect joint and replace if damaged or worn. 1991 Infiniti G20 AXLE SHAFTS – FRONT’ ’1991-92 DRIVE AXLES FWD Axle Shafts None Page 3 2. Remove circlip from end of axle, and remove boot. If boot is being reused, take care not to cut boot on axle splines during removal. Clean CV joint in suitable solvent. Inspect components, and replace joint if necessary.

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Burien Toyota 5SFE Turbo Installation Instructions

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Filed Under (Toyota Manuals) by admin on 17-06-2011

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The following parts are not required, but you may want to have on hand: 9 Fresh Toyota engine coolant 9 New engine oil (preferably synthetic) and new Toyota oil filter 9 New parts to perform a tune-up (spark plugs, distributor cap & rotor). If you do replace your plugs, you may want to use a colder plug to reduce the chance of detonation. 9 New Ignition wires, if your current wires are old 9 New Toyota fuel filter (since you’re replacing the expensive injectors) 9 Shorter oil filter union from Toyota (See step #11) 9 Tie-wraps to secure vacuum lines (See step #27) 9 Shielded audio cable (See step #26.b) 9 For automatic transmissions, consider replacing the transmission fluid with a good synthetic brand and installing an ATF cooler. Burien Toyota 5S-FE Turbocharger Installation Manual Page 2 of 20Kit Contents ¾ Toyomoto exhaust manifold ¾ Garrett TB0344 turbo (Exhaust manifold and turbo charger come attached) ¾ Intermediate pipe (‘S’ shaped pipe with blow off valve attached) ¾ Down pipe (‘J’ shaped pipe with 90° bend and exhaust flange, also has mount for oxygen sensor) ¾ Turbo intake pipe (Usually attached to turbo) ¾ 90º elbow with valve cover breather hose attached (Elbow used to mount air filter) ¾ K&N air filter ¾ HKS Racing Blow-off/Pop-off valve ¾ (4) 360cc Toyota Injectors ¾ Toyota Oil pan ¾ Toyota MAP Sensor ¾ All necessary hoses, clamps, nuts, bolts, fittings, studs, gaskets and such required to install the system.

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1991 Honda Civic Si FUSES AND CIRCUIT BREAKERS Identification

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Filed Under (Honda Manuals) by admin on 17-05-2011

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IDENTIFICATION FUSE PANEL LOCATION The fuse box is located under dashboard on driver’s side. Underhood fuse panel is located in engine compartment beside battery. Cars equipped with anti-lock brake system have a third fuse box for ABS in front of the engine compartment on passenger’s side. FUSE PANEL IDENTIFICATION (1988-91) Fig. 1: Fuse Panel Identification (1988-91) Courtesy of AMERICAN HONDA MOTOR CO., INC. Fuse & Circuit Breaker Identification z 1 – 10 Amp Integrated Control Unit, Combination Switch, Gauge Assembly, Back-Up Lights Switch, Shift Position Console Switch, Clock (1990) , Shift Lock Solenoid (1990) , Interlock Control Unit (1990) , 1991 Honda Civic Si FUSES & CIRCUIT BREAKERS’ ‘Fuses & Circuit Breakers 1988-91 Honda 1991 Honda Civic Si FUSES & CIRCUIT BREAKERS’ ‘Fuses & Circuit Breakers 1988-91 Automatic Seat Belts (If Equipped) z 2 – 10 Amp Starter Solenoid, PGM-FI Main Relay, PGM-FI Electronic Control Unit, Integrated Control Unit z 3 – 20 Amp Power Door Locks (If Equipped) z 4 – 10 Amp Right Headlight High Beam, High Beam Indicator Light, Daytime Running Lights Relay (Canada) z 5 – 10 Amp Left Headlight High Beam z 6 – 30 Amp Sun Roof Motor (If Equipped) z 7 – 10 Amp Rear Lights (Canada Only) z 8 – 10 Amp Integrated Control Unit, Interior & Exterior Lighting z 9 – Blank z 10 – 10 Amp Left Headlight Low Beam z 11 – 10 Amp Right Headlight Low Beam z 12 – 15 Amp Integrated Control Unit, Luggage Compartment Light, Dome Light, Ignition Switch, Clock, Radio, Cigarette Lighter z 13 – 15/20 Amp Power Windows, Windshield Wipers & Washer, Sun Roof Relay (1990), Integrated Control Unit (Canada), Combination Switch (1990 CRX) z 14 – 10 Amp Gauge Assembly, Engine Sensors & Controls, PGM-FI Main Relay (Wagon & CRX Only), PGM-FI ECU (Wagon & CRX Only), Fuel Pump (Wagon & CRX Only), ELD Unit (Wagon & CRX Only), EACV (Wagon & CRX Only) z 15 – 15 Amp Cooling Fan Motor (Except 4WD A/T Wagon), Cooling Fan Relay z 16 – 10 Amp Daytime Running Lights (Canada Only) z 17 – 10 Amp Radio, Cigarette Lighter Relay (1990 only) z 18 – 10 Amp Rear Window Defogger, Power Door Mirrors, Air Conditioning z 19 – 30 Amp Blower Motor z 20 – 20 Amp Right Front Power Window z 21 – 20 Amp Left Front Power Window z 22 – 20 Amp Right Rear Power Window z 23 – 20 Amp Left Rear Power Window UNDERHOOD FUSE PANEL IDENTIFICATION (1988-91)

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TOYOTA LANDCRUISER BRAKE CONVERSIONS SERVICE MANUAL

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Filed Under (Toyota Manuals) by admin on 19-05-2011

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Transport Inspectors: Provides sufficient guidance to ensure familiarity with approved brake system modifications to stated Toyota Landcruiser models. Approved Inspection Stations (AIS): Provides sufficient guidance to ensure familiarity with approved brake system modifications to stated Toyota Landcruiser models for the issue of a Safety Certificate. Approved Persons: Provides sufficient guidance to ensure familiarity with approved brake system modifications to stated Toyota Landcruiser models so as to ensure consistent certification of vehicles. Vehicle owner: Provides guidance on vehicle compliance requirements. Applies to Installation of Safe Effect Integrated Braking System (SIBS) to Series 70, 75, 78, 79, 80 and 100 Series Toyota Landcruiser motor vehicles. Installation of the Corefleet Offroad Braking (Rear) (COBR) system to Series 78 and 79 Series Toyota Landcruiser motor vehicles. Objective To ensure that braking modifications carried out to the above mentioned Toyota Landcruiser vehicles are to the approved and certified standard. Background Modification approval has been issued to two applicants regarding braking modifications to a range of Toyota Landcruiser vehicles. These vehicles are commonly used in the mining and exploration industry. The standard manufacturer supplied braking systems have been considered of very high maintenance characteristics due to the nature of vehicle operations (for example, underground mining activities, harsh operating conditions). An additional model of vehicle has recently been approved and the list of approved models of vehicles amended. These vehicles are also commonly registered for use on public roads. To ensure the braking systems of these vehicles remain in a serviceable condition to prescribed standards and maintain extended service life, modified braking systems have been developed to address the harsh operating conditions that are experienced in the underground mining and exploration industries

1991-1992 Toyota MR2 Turbo 1990-1992 Toyota Celica All Trac ECU Pinout Diagram

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Filed Under (Toyota Manuals) by admin on 18-04-2012

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A13 Power Ground Chassis ground Ground A14 Power Ground Chassis ground Ground A20 Ignition Control Module Engine speed Speed A26 Power Ground Chassis ground Ground Connector B Pin # Name Function Signal Type B3 Intake Air Temperature Sensor Air temperature sensor signal Analog B4 Engine Coolant Temperature Sensor Engine coolant temperature sensor signal Analog B5 Knock Sensor Engine knock sensor Knock, Audio B6 Primary 02 Sensor Primary oxygen sensor signal Analog B11 Throttle Position Sensor Throttle position sensor signal Analog B13 MAP Sensor Manifold absolute pressure sensor signal Map min: 4.89 Map max: 1.09 Analog Connector D Pin # Name Function Signal Type D1 Voltage Back Up Permanent 12V Power D4 Brake Switch Brake switch signal Analog D9 Vehicle Speed Sensor Vehicle speed sensor signal Speed D12 Power Source 12V switched Power D13 Power Source 12V switched

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Installation of the Smitty 5-speed Toyota Kit

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Filed Under (Toyota Manuals) by admin on 25-10-2011

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Toyota pilot bearing: Toyota uses a ball pilot bearing which is a very accurate fit on the end of the pilot shaft. I had to sand my pilot shaft down slightly with wet/dry paper to get the bearing to be other than a force fit. You need a sliding fit for installation of the trans in the car. Pilot Tool adjustment: I believe it is necessary, or desirable at least, to tighten up the accuracy of the supplied plastic pilot tool to make sure the nose of the first-motion shaft will slide into the Toyota pilot bearing during installation of the trans. I wrapped the pilot tool with enough electrical tape so it was a perfect fit on both the pilot bearing and the clutch disc splines. 1 layer of tape around the contour of the splines did the trick. Smitty supplies an aluminum ring which holds the Toyota pilot bearing into the Healey flywheel. I used a vise to press the bearing into the ring, and a large 1-5/16 socket as a tool to hammer this into the recess in the flywheel. This was easy if you’re careful. Your lead hammer makes a dandy driver for this. Toyota Trans install: The shop manuals warn against tilting the engine into the radiator. Mine has the 6- bladed fan about 1/2″ back from the radiator and during this process it never came close to the radiator. If you have the block between the valve cover and the firewall, minor or no jacking of the engine should be necessary in order to get the Toyota trans in place. Position your trans jack or floor jack in the middle of the hole and place the Toyota trans on top of it. Lower enough to get the bell housing through the opening, then raise it back up to where the bolt holes align. Observe parallelism between the bell housing and engine flange. I believe the limiting factor here is the alignment of the Toyota pilot shaft with the pilot bearing–I believe this is at least as accurate as anything to do with the dowel bolts.

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1991-1992 Toyota MR2 Turbo, 1990-1992 Toyota Celica All Trac ECU Pinout Diagram

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Filed Under (Toyota Manuals) by admin on 21-09-2011

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Connector A Pin # Name Function Signal Type A13 Power Ground Chassis ground Ground A14 Power Ground Chassis ground Ground A20 Ignition Control Module Engine speed Speed A26 Power Ground Chassis ground Ground Connector B Pin # Name Function Signal Type B3 Intake Air Temperature Sensor Air temperature sensor signal Analog B4 Engine Coolant Temperature Sensor Engine coolant temperature sensor signal Analog B5 Knock Sensor Engine knock sensor Knock, Audio B6 Primary 02 Sensor Primary oxygen sensor signal Analog B11 Throttle Position Sensor Throttle position sensor signal Analog B13 MAP Sensor Manifold absolute pressure sensor signal Map min: 4.89 Map max: 1.09 Analog Connector D Pin # Name Function Signal Type D1 Voltage Back Up Permanent 12V Power D4 Brake Switch Brake switch signal Analog D9 Vehicle Speed Sensor Vehicle speed sensor signal Speed D12 Power Source 12V switched Power D13 Power Source 12V switched Power

TOYOTA TO CHEVY AND BUICK ENGINE – TURBO CHARGED INSTALLATION INSTRUCTIONS

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Filed Under (Toyota Manuals) by admin on 20-09-2011

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INSTALLATION INSTRUCTIONS: 1. Install the pilot bushing into the engine crank. 2. Bolt the flywheel to the engine crank using special flywheel bolts. 3. Assemble the clutch assembly and special disc to the flywheel using special clutch bolts. 4. Assemble the clutch release arm to the inside ball pivot of the bellhousing. 5. Bolt the slave cylinder to the outside of the bellhousing. 6. Test fit the bellhousing assembly over the clutch assembly and onto the engine block. 7. Place the N1430 release bearing onto the clutch arm fork. 8. Adjust the length of the slave cylinder push rod to a length that provides a minimum of 1/8″ clearance between the release bearing face and clutch fingers. 9. This test fit over the clutch assembly is primarily done for establishing the push rod length. If this procedure is eliminated, you will not have any visual inspection for verifying the push rod adjustment. 10. Remove the bellhousing assembly from the engine. 11. Bolt the bellhousing to the front of your Toyota 5 speed transmission using the original bolts. Make sure that the two dowel pins installed in the face of the 5 speed transmission are properly fitted to the Advance Adapter bellhousing. 12. Slide the new release bearing onto the Toyota bearing retainer. Make sure that there is grease in the internal cavity of the release bearing. Most new bearings are pre-lubricated. 13. With all the components in position, you can now bolt the new bellhousing assembly onto the engine block. We have provided six (6) new socket head bolts, 3/8″-16 x 1-1/2″ long for this purpose. Make sure the engine dowel pins are properly aligned with the new bellhousing dowel pin holes. DO NOT FORCE THE BELLHOUSING ONTO THE ENGINE BLOCK. Some applications may require the tip of the input shaft to be modified slightly. The bellhousing must fit evenly to the engine block. 14. With the bellhousing now in position and the slave cylinder push rod installed, you should be able to verify the clearance between the release bearing & clutch fingers. The lever should have movement of approximately 1/8″ to 1/4″. CAUTION : If you have too much clearance, you will be utilizing too much of the slave cylinder stroke and could possibly prevent you from obtaining a full clutch release. A light duty return spring attached to the clutch release arm will prevent any premature contact of the release bearing with the clutch fingers. 15. The Toyota Land Cruiser slave cylinder will replace the original Toyota slave cylinder. The Toyota truck hydraulic slave cylinder line will have exactly the same fitting size as used on the Land Cruiser slave cylinder. 16. With the new slave cylinder installed, you can now bleed the slave cylinder installation by pumping up the slave cylinder pedal. Most installations are compatible with the original Toyota master cylinder. We have encountered a few installations that require changing of the Toyota master cylinder to a smaller 3/4″ piston. If you have any type of clutch difficulty related to full disengagement of the clutch assembly, contact Advance Adapters for any updated information.

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