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1996 Ford Taurus Camshaft Position Sensor removal and installation manual

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Filed Under (Ford Manuals) by admin on 16-06-2012

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REMOVAL CAUTION: Prior to removal of the Camshaft Position (CMP) sensor, set cylinder No.1 to zero degrees Top Dead Center (TDC) of compression stroke. Then note the position of the CMP sensor electrical connector. The installation procedure requires that the connector be located in the same position. 1. Disconnect battery ground cable. NOTE: When the battery has been disconnected and reconnected, some abnormal drive symptoms may occur while the Powertrain Control Module (PCM) relearns its adaptive strategy. The vehicle may need to be driven 16 km (10 miles) or more to relearn the strategy. 2. Disconnect engine control sensor wiring connector from CMP sensor. 3. Remove retaining screws and CMP sensor from sensor housing. 4. If removing CMP sensor housing from the cylinder block, proceed with Removal Step 5. If not removing sensor housing, proceed to installation Step 6. 5. Remove hold-down clamp (bolt and washer assembly) . 6. Remove CMP sensor housing from cylinder block INSTALLATION CAUTION : A special service tool such as Syncro Positioning Tool T95T-12200-A must be obtained prior to installation of the replacement CMP sensor. Failure to follow this procedure will result in improper sensor alignment. This will result in the fuel system being out of time with the engine, possibly causing engine damage. 1. Attach Syncro Positioning Tool T95T-12200-A as follows: a. Engage CMP sensor housing vane into the radial slot of the tool. b. Rotate tool on CMP sensor housing until tool boss engages notch in sensor housing. 2. Pre-lubricate synchronizer gear with engine oil meeting Ford specification ESE-M2C123-A prior to assembly. 3. Install sensor housing so that drive gear engagement occurs when arrow on ocator tool is pointed approximately 75 degrees counterclockwise from the rear face of the cylinder block. This step will locate CMP sensor electrical connector in the pre-removal position. 4. Rotate Syncro Positioning Tool T95T-12200-A clockwise slightly. This will engage oil pump intermediate shaft. Push downward while adjusting Syncro Positioning Tool T95T-12200-A until the Syncro Gear engages the camshaft gear. 5. When synchronizer flange is fully seated against block, the installation tool should be facing counterclockwise of engine centerline approximately 33 to 45 degrees. 6. Install hold-down clamp (washer and bolt) and tighten bolt to 19-30 Nm (14- 22 lb ft)

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TOYOTA AND LEXUS HIGHLANDER HYBRID REMOVAL AND INSTALLATION MANUAL

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Filed Under (Toyota Manuals) by admin on 08-03-2012

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Engine and Vehicle Identification Chart………………………………………..4-2 General Engine Specifications………4-2 Engine Tune-Up Specifications……..4-2 Capacities ………………………………….4-3 Valve Specifications …………………….4-3 Crankshaft and Connecting Rod Specifications……………………..4-3 Camshaft and Bearing Specifications ……………………………4-4 Piston and Ring Specifications……..4-4 Torque Specifications………………….4-4 Wheel Alignment ………………………..4-5 Tire, Wheel and Ball Joint Specifications ……………………………4-5 Brake Specifications ……………………4-5 Scheduled Maintenance Intervals……………………………………4-6 STEERING AND SUSPENSION ………………4-28 A Air Bag…………………………………….4-28 Disarming ……………………………4-28 Precautions ………………………….4-28 Alternator …………………………………..4-7 B Brake Caliper ……………………………4-30 Removal And Installation……….4-30 C Camshaft and Valve Lifters…………4-14 Inspection ……………………………4-16 Removal & Installation…………..4-14 CV-Joints………………………………… 4-24 Overhaul ……………………………..4-24 Cylinder Head …………………………..4-10 Removal & Installation…………..4-10 D Disc Brake Pads………………………..4-32 Removal And Installation……….4-32 E Engine Assembly ………………………..4-7 Removal & Installation…………….4-7 Exhaust Manifold ………………………4-12 Removal & Installation…………..4-12 F Front Crankshaft Seal………………..4-14 Removal & Installation…………..4-14 Front Halfshaft………………………….4-23 Removal & Installation…………..4-23 Front Strut ……………………………….4-28 Removal & Installation…………..4-28 Front Wheel Bearing………………….4-29 Fuel Filter ………………………………..4-21 Fuel Injector……………………………..4-22 Removal & Installation…………..4-22 Fuel Pump ……………………………….4-21 Removal & Installation…………..4-21 Fuel System Pressure………………..4-21 Relieving ……………………………..4-21 H Heater Core………………………………..4-7 Removal & Installation…………….4-7 Hybrid Transaxle Assembly…………4-22 Removal & Installation…………..4-22 I Ignition Timing ………………………….. 4-7 Adjustment…………………………….4-7 Intake Manifold …………………………4-11 Removal & Installation…………..4-11 L Lower Ball Joint………………………..4-29 Removal & Installation…………..4-29 Lower Control Arm……………………4-29 Removal & Installation…………..4-29 O Oil Pan…………………………………….4-18 Removal & Installation…………..4-18 Oil Pump …………………………………4-18 Removal & Installation…………..4-18 P Pinion Seal ………………………………4-27 Removal & Installation…………..4-27 Piston and Ring………………………..4-21 Positioning ………………………….4-21 Power Rack And Pinion Steering Gear…………………………..4-28 Removal & Installation…………..4-28 R Rear Halfshaft………………………….. 4-24 Removal And Installation……….4-24 Rear Main Seal…………………………4-19 Removal & Installation…………..4-19 Rear Strut…………………………………4-28 Conventional Strut Overhaul…..4-28 Removal And Installation……….4-28 Rear Traction Motor…………………..4-22 Removal & Installation…………..4-22 Rear Wheel Bearing…………………..4-29 Removal And Installation……….4-29 T Timing Belt ………………………………4-19 Removal & Installation…………..4-19 V Valve Lash ……………………………….4-17 Adjustment…………………………..4-17 W Water Pump ……………………………..4-10 Removal & Installation………..

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Kia Sorento/ Sedona Throttle Position Sensor W/ 3.5L Engine (Fuel System) Service Procedure

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Filed Under (Kia Motors Manuals) by admin on 11-01-2012

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Replacement Procedure: 1. Turn ignition OFF. Remove engine cover and disconnect electrical connector from TP Sensor. 2. Remove two (2) retaining screws from TP Sensor and remove from throttle body. 3. Install new TP Sensor to throttle body. Install retaining screws and hand tighten lightly. Adjustment will be required. Re-install electrical connector to TP Sensor. 4. Install Global Diagnostic System. a. Select “System Option” b. Select “Idle RPM Adjust Mode” c. Apply Parking Brake 5. Select Neutral position and place engine in idle condition with A/C OFF. 6. Remove rubber plug and adjust using instructions provided on screen. Set Base idle between 800~900 rpm Adjust TPS: 7. Using the GDS scan tool, monitor current data using two (2) parameters: • Closed Throttle Position Switch • Throttle Position Voltage Value 8. Open throttle by hand very slowly until idle switch status switches to OFF. Note the TPS voltage value. Voltage:____________________________ 9. Close throttle and record the TPS voltage. oltage:____________________________ Closed throttle voltage should be 30~65mV less than the voltage noted in step eight (8). Adjust TP Sensor and repeat test as required. WARRANTY CLAIM INFORMATION: 10. Tighten TP Sensor screws as required. Torque is 12~18 inch lbs. Verify switching of throttle switch with throttle plate movement. 11. Install engine cover. 12. Clear any stored DTC which may have set during service procedure. Remove GDS tool from vehicle

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1999 Jeep Grand Cherokee Limited AUTOMATIC TRANSMISSIONS Chrysler 45RFE Electronic Controls Repair Manual

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Filed Under (Jeep Manuals) by admin on 11-07-2012

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INTERNAL TCM Circuit Description The TCM is reporting internal errors. Diagnostic Procedure 1. Turn ignition switch to LOCK position. Remove transmission control relay. Measure resistance between ground and relay ground circuit (Black/Yellow wire) in relay connector. If resistance is greater than 5 ohms, repair open circuit. If resistance s not greater than 5 ohms, go to next step. 2. The TCM has an internal problem and must be replaced. P0715: INPUT SPEED SENSOR ERROR Circuit Description DTC P0715 will set if an excessive change in input RPM has been detected in any gear. Possible Causes * Intermittent wiring and connector problems. * Faulty input speed sensor. * Input speed sensor circuits shorted to ground, shorted to voltage, or open. * Faulty TCM. Diagnostic Procedure 1. Place gear selector in “P” position and start engine. Using scan tool, monitor input speed sensor value. If value is less than 400 RPM, go to next step. If value is not less than 400 RPM, go to step 9. 2. Turn ignition switch to LOCK position. Install Transmission Simulator (8333). Turn ignition on. Using transmission simulator, turn rotary knob to middle (1000/3000) position. Turn INPUT/OUTPUT switch on. Using scan tool, monitor input and output speed sensor values. If input speed sensor value is 2950- 3050 RPM and output speed sensor value is 950-1050 RPM, replace input speed sensor. If speed sensor values are not as specified, go to next step. 3. Turn ignition switch to LOCK position. Disconnect TCM harness connector. Remove transmission control relay. Using fused jumper wire, jumper fused B+ circuit (Red/White wire) and transmission relay output circuit (Red wire) together at relay connector. Turn ignition on. Measure voltage between ground and input speed sensor signal circuit (Red/Black wire) at TCM harness connector. If voltage is greater than 3 volts, repair circuit for short to voltage. If voltage is not greater than 3 volts, remove jumper wire, install relay and go to next step. 4. Turn ignition switch to LOCK position. Disconnect input speed sensor harness connector. Measure resistance of input speed sensor signal circuit (Red/Black wire) between TCM and input speed sensor. If resistance is greater than 5 ohms, repair open circuit. If resistance is not greater than 5 ohms, go to next step. 5. Measure resistance of input speed sensor ground circuit (Dark Blue/Black wire) between TCM and input

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1996 Ford Taurus Service and Repair Manual

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Filed Under (Ford Manuals) by admin on 01-02-2012

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REMOVAL CAUTION: Prior to removal of the Camshaft Position (CMP) sensor, set cylinder No.1 to zero degrees Top Dead Center (TDC) of compression stroke. Then note the position of the CMP sensor electrical connector. The installation procedure requires that the connector be located in the same position. 1. Disconnect battery ground cable. NOTE: When the battery has been disconnected and reconnected, some abnormal drive symptoms may occur while the Powertrain Control Module (PCM) relearns its adaptive strategy. The vehicle may need to be driven 16 km (10 miles) or more to relearn the strategy. 2. Disconnect engine control sensor wiring connector from CMP sensor. 3. Remove retaining screws and CMP sensor from sensor housing. 4. If removing CMP sensor housing from the cylinder block, proceed with Removal Step 5. If not removing sensor housing, proceed to installation Step 6. 5. Remove hold-down clamp (bolt and washer assembly) . 6. Remove CMP sensor housing from cylinder block INSTALLATION CAUTION : A special service tool such as Syncro Positioning Tool T95T-12200-A must be obtained prior to installation of the replacement CMP sensor. Failure to follow this procedure will result in improper sensor alignment. This will result in the fuel system being out of time with the engine, possibly causing engine damage. 1. Attach Syncro Positioning Tool T95T-12200-A as follows: a. Engage CMP sensor housing vane into the radial slot of the tool. b. Rotate tool on CMP sensor housing until tool boss engages notch in sensor housing. 2. Pre-lubricate synchronizer gear with engine oil meeting Ford specification ESE-M2C123-A prior to assembly. 3. Install sensor housing so that drive gear engagement occurs when arrow on

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HIGH TECH DUAL QUAD THROTTLE LINKAGE KIT INSTALLATION INSTRUCTIONS

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Filed Under (More Manuals) by admin on 02-01-2012

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INSTALLATION 1. This kit contains all the necessary parts to operate Edelbrock carburetors in a progressive or 1: 1 type operation. Figure 1 illustrates typical progressive type installation in which the rear carburetor is the primary carb. This simplifies linkage attachment to the vehicle’s existing throttle linkage. 2. Before attaching anything to the carburetors, loosely assemble the major components of the linkage kit using Figure 1 as a guideline. Note that the longer rod will go to the rear carb with the flat facing down, and the short rod goes to the front carb with the flat facing up. The brass bearing blocks should be positioned so that the set screws will tighten against the flat of the short rod, i.e., both bearing block set screws will be up. Attach the aluminum collar to the long rod between the bearing blocks with the set screw against the flat. 3. Attach the linkage assembly to the carbs with the 10-24 allen head screws and locknuts. Attach to the rear carb using one of the brass 518″ O.D. x 3/16″ I.D. shoulder spacers and the tapered brass anti-rotation shoulder spacer in the top hole of the throttle arm (112″ diameter). Note that the shoulder spacer goes on the inside and the anti-rotation spacer goes on the outside of the throttle arm. Attach to the front carb using the 3/16″ hole just below the large hole in the throttle arm. ADJUSTMENT – NOTE: If carburetors are full of fuel, place rags in the carb throats to absorb the fuel discharged when working the throttle linkage. This will prevent flooding and possible damage to the piston rings upon start-up. Be sure to remove the rags before starting engine. 1. Tighten the set screw and locknut on the rear bearing block, making sure that the bearing block is close to the end of the shaft from the front carburetor. 2. Push the throttle arms of both carbs to WOT (Wide Open Throttle), then adjust the aluminum collar to touch the rear brass bearing block. Securely tighten the set screw and locknut on the aluminum collar. 3. Let both throttle arms return to idle position, then adjust the front brass bearing block to almost touch the aluminum collar. Leave about .020″-.030″ clearance to allow for independent idle speed adjustment of each carburetor. Tighten all set screws, locknuts, and bolts at this time. 4. Check for smooth operation of linkage from idle to WOT and note that the rear carb will open about 20″ before starting to open the front carb. Both carbs should reach WOT at the same time. 5. IMPORTANT: Attach a return spring to both carburetors as shown in Figure 1. Use the return spring brackets supplied, bending as necessary for attachment to your engine. Generally the brackets can be attached to the intake manifold using the existing bolts. Use the longer or shorter spring on either the front or rear carburetor as required for your particular application. Check for smooth operation and positive return to idle. 6. Attach existing throttle linkage to rear carburetor using the 3/16″ hole below the large hole in the throttle arm. It may be necessary to shorten your existing linkage rod or cable, or to use an aftermarket cable mounting plate. BEFORE STARTING ENGINE, DOUBLE-CHECK FOR SMOOTH OPERATION OF LINKAGE FROM IDLE TO WIDE OPEN THROTTLE AND FOR POSITIVE RETURN TO IDLE. OPTIONAL 1:l INSTALLATION If 1:l linkage is desired, assemble and attach linkage kit as above, except that the attachment point to the front carburetor’s throttle arm will be the large 112″ hole using the other two 518″ O.D. x 3/16″ I.D. shoulder spacers (similar to the rear carburetor). Adjust the bearing blocks to eliminate all freeplay, so that all motion to the rear carburetor’s throttle arm is transmitted directly to the front carb’s throttle arm

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HIGH TECH DUAL QUAD THROTTLE LINKAGE KIT INSTALLATION MANUAL

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Filed Under (More Manuals) by admin on 24-02-2012

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INSTALLATION 1. This kit contains all the necessary parts to operate Edelbrock carburetors in a progressive or 1: 1 type operation. Figure 1 illustrates typical progressive type installation in which the rear carburetor is the primary carb. This simplifies linkage attachment to the vehicle’s existing throttle linkage. 2. Before attaching anything to the carburetors, loosely assemble the major components of the linkage kit using Figure 1 as a guideline. Note that the longer rod will go to the rear carb with the flat facing down, and the short rod goes to the front carb with the flat facing up. The brass bearing blocks should be positioned so that the set screws will tighten against the flat of the short rod, i.e., both bearing block set screws will be up. Attach the aluminum collar to the long rod between the bearing blocks with the set screw against the flat. 3. Attach the linkage assembly to the carbs with the 10-24 allen head screws and locknuts. Attach to the rear carb using one of the brass 518″ O.D. x 3/16″ I.D. shoulder spacers and the tapered brass anti-rotation shoulder spacer in the top hole of the throttle arm (112″ diameter). Note that the shoulder spacer goes on the inside and the anti-rotation spacer goes on the outside of the throttle arm. Attach to the front carb using the 3/16″ hole just below the large hole in the throttle arm. ADJUSTMENT – NOTE: If carburetors are full of fuel, place rags in the carb throats to absorb the fuel discharged when working the throttle linkage. This will prevent flooding and possible damage to the piston rings upon start-up. Be sure to remove the rags before starting engine. 1. Tighten the set screw and locknut on the rear bearing block, making sure that the bearing block is close to the end of the shaft from the front carburetor. 2. Push the throttle arms of both carbs to WOT (Wide Open Throttle), then adjust the aluminum collar to touch the rear brass bearing block. Securely tighten the set screw and locknut on the aluminum collar. 3. Let both throttle arms return to idle position, then adjust the front brass bearing block to almost touch the aluminum collar. Leave about .020″-.030″ clearance to allow for independent idle speed adjustment of each carburetor. Tighten all set screws, locknuts, and bolts at this time. 4. Check for smooth operation of linkage from idle to WOT and note that the rear carb will open about 20″ before starting to open the front carb. Both carbs should reach WOT at the same time. 5. IMPORTANT: Attach a return spring to both carburetors as shown in Figure 1. Use the return spring brackets supplied, bending as necessary for attachment to your engine. Generally the brackets can be attached to the intake manifold using the existing bolts. Use the longer or shorter spring on either the front or rear carburetor as required for your particular application. Check for smooth operation and positive return to idle. 6. Attach existing throttle linkage to rear carburetor using the 3/16″ hole below the large hole in the throttle arm. It may be necessary to shorten your existing linkage rod or cable, or to use an aftermarket cable mounting plate. BEFORE STARTING ENGINE, DOUBLE-CHECK FOR SMOOTH OPERATION OF LINKAGE FROM IDLE TO WIDE OPEN THROTTLE AND FOR POSITIVE RETURN TO IDLE. OPTIONAL 1:l INSTALLATION If 1:l linkage is desired, assemble and attach linkage kit as above, except that the attachment point to the front carburetor’s throttle arm will be the large 112″ hole using the other two 518″ O.D. x 3/16″ I.D. shoulder spacers (similar to the rear carburetor). Adjust the bearing blocks to eliminate all freeplay, so that all motion to the rear carburetor’s throttle arm is transmitted directly to the front carb’s throttle arm

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2001 F-Super Duty 250-550/Excursion/F-53 Motorhome Chassis REMOVAL AND INSTALLATION MANUAL

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Filed Under (Ford Manuals) by admin on 18-02-2012

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Wheel Hub Removal All vehicles 1. Remove the wheel and tire assembly. For additional information, refer to Section 204-04 . 2. NOTE: Caliper is removed for clarity. Position aside the front disc brake caliper and anchor plate (2B292). 1. Remove the two front disc brake caliper anchor plate bolts. 2. Remove the front disc brake caliper anchor plate and position aside. 3. NOTE: Carry out this step for F-250 and F-350 4×4 SRW vehicles. Remove the rotor. 4. NOTE: Carry out this step for DRW vehicles. NOTE: If excessive force must be used during brake rotor removal, the brake rotors should be checked for lateral runout prior to installation. For additional information, refer to Section 206-00 . Remove the eight hub extender nuts, the hub plate and the rotor. 1. Remove the eight hub plate nuts. 2. Remove the hub plate. 3. Remove the rotor. 5. Remove the hub lock. 1. Remove the retainer ring. 2. Pull outward and remove the hub lock. 6. Remove the axle shaft thrust washers. 1. Remove the snap ring. 2. Remove the three thrust washers. Vehicles equipped with ABS 7. sensor from the bearing. Disconnect the ABS wheel sensor harness. 1. Disconnect the connector. 2. Disconnect the harness routing clips. All vehicles 8. NOTE: The wheel hub and bearing is a slip fit design and should not require a puller to remove it. Remove the wheel hub and bearing. 1. Remove the four lock nuts. 2. Remove the wheel hub and bearing 9. If necessary, remove the brake disc shield. Vehicles with ABS 10. If necessary, remove the bolt and the ABS sensor. All vehicles 11. NOTE: If necessary, position the hub in a soft-jawed vise. Install two nuts on the studs and use the inner nut to remove the studs. 12. Remove and discard the O-ring. Installation All vehicles 1. NOTE: Any time the wheel hub is removed for any reason, a new O-ring seal must be installed. Failure to do so can cause a vacuum leak and loss of four wheel drive operations. Install a new O-ring. 2. NOTE: Position the hub in a soft-jawed vise. Install two nuts on the studs and use the outer nut to install the studs. Vehicles equipped with ABS 3. Position the ABS sensor and install the bolt. All vehicles 4. Position the brake disc shield. 5. NOTE: Apply a coat of Ford High Temperature 4×4 Front Axle and Wheel Bearing Grease E8TZ-19590-A meeting Ford specification ESA-M1C198-A to the O-ring area of the wheel hub and bearing before installing the hub and bearing. Install the wheel hub and bearing. 1. Position the wheel hub and bearing. 2. Install the four lock nuts. Vehicle equipped with ABS 6. NOTE: The following step applies only to vehicles equipped with ABS. Connect the ABS sensor harness. 1. Position the ABS sensor harness and install the routing clips. 2. Connect the harness connector. All vehicles 7. n-metallic thrust washer must be installed between the two metal thrust washers. Failure to do so will cause severe wear to the non-metallic thrust washer, allowing the axle shaft to travel further in and out during torque thrust causing damage to the wheel hub and bearing, the axle shaft end seal and the axle shaft. Install the snap ring. 1. Position the three thrust washers onto the axle shaft. 2. Install the snap ring. 8. NOTE: Any time the hub lock is removed, a new O-ring seal must be installed. Failure to do so can cause a vacuum leak and loss of four wheel drive functions. Install a new O-ring. 9. Install the hub lock. 1. Position the hub lock. 2. Install the retainer ring. 10. Position the front disc brake rotor (1125) to the wheel hub (1104). Make sure the wheel hub and the front disc brake rotor braking and mounting surfaces are clean. ? Use brake parts cleaner to clean the front disc brake rotor. 11. NOTE: Carry out this step for DRW vehicles only. Install the front wheel hub extender and nuts.

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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 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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3406E Truck Engine Installation OR Removal Of The Speed/ Timing Sensor

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Filed Under (More Manuals) by admin on 22-06-2012

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1. Disconnect the speed/timing connector “P9/J9″ (2) . Inspect the connector for the following conditions. * Corrosion * Bent pins * Missing pins * Damaged sockets * Mismating * Broken wires 2. Remove the Speed/timing sensor (1) from the front gear cover. 3. Examine the plastic end of the sensor for signs of wear or contaminants such as metal filings. The plastic end of the speed/timing sensor should have no contaminants and should show no wear (greater than 0.051 mm (0.0020 inch) from the face) . 4. Use a screwdriver to carefully pry the plastic sensor end to the fully extended position (approximately 4.775 mm (0.1880 inch) beyond the metal housing of the sensor). 5. Gently push in on the plastic end of the sensor. The plastic end should be firm. The plastic end should resist movement in the retract direction. If there is no resistance replace the sensor 6. Remove the two bolts (3) and remove the cover (5) from the flywheel housing. This hole is used for engine turning. 7. Put one bolt (3) in the timing bolt location (4) . The timing bolt location is approximately 127 mm to 152 mm (5 inch to 6 inch) above the hole in the flywheel housing for engine turning. I 8. Use 9S-9082 Engine Turning Tool (6) and a 1/2 inch drive ratchet wrench to turn the engine flywheel in the direction of normal engine rotation. The normal engine rotation is in a counterclockwise direction when viewed from the flywheel end. Turn the engine flywheel until the timing bolt engages with the threaded hole in the flywheel. Note: Visually check the location of the tooth on the wheel on which the speed/timing sensor is to be positioned. The end of the sensor must be in alignment with a tooth on the wheel and not in alignment with the valley of the wheel. Note: The No. 1 piston must be at either top center of the compression stroke or at top center of the exhaust stroke. 9. Inspect the speed/timing sensor before installation. Use steps 3 through step 6 to inspect the sensor. 10. If the sensor end is not fully extended, use a screwdriver to carefully pry the plastic sensor end to the fully EXTENDED position approximately 4.775 mm (0.1880 inch) beyond the metal housing of the sensor.

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