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Vehicles Equipped with a Webasto Sunroof System

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Filed Under (More Manuals) by admin on 13-02-2011

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Models: 1997-2000 Buick Century 1988-1991 Buick Reatta 1988-1999 Buick Riviera 1989-2000 Buick Park Avenue 1998-2000 Buick Regal 1988-1997 Cadillac Seville 1988-1996 Cadillac Fleetwood 1988-2000 Cadillac Eldorado 1989-2000 Cadillac DeVille 1995-2000 Chevrolet Cavalier 1998-2000 Chevrolet Malibu 2000 Chevrolet Impala, Monte Carlo 1988-1995 Oldsmobile Ciera 1989-1996 Oldsmobile Ninety Eight 1994-1998 Oldsmobile Achieva 1995-1999 Oldsmobile Aurora 1997 Oldsmobile Silhouette 1998-1999 Oldsmobile Cutlass 1998-2000 Oldsmobile Intrigue 1999-2000 Oldsmobile Alero 1987 Pontiac 6000 1989-1998 Pontiac Bonneville 1994-2000 Pontiac Grand Am 1995-2000 Pontiac Sunfire 1997-1998 Pontiac Trans Sport 1997-2000 Pontiac Grand Prix 1997-2000 Chevrolet & GMC S/T Models (Blazer, Jimmy) 1997-2000 Oldsmobile Bravada #99-08-67-003: Info – Vehicles Equipped with a Webasto Sunroof System – (Jul 23, 1999) This bulletin is being revised to update the model information. Please discard Corporate Bulletin Number 43-10-18A (Body Section)

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2005 Nissan Quest Malfunction Indicator Light (MIL) is ON

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Filed Under (Nissan Manuals) by admin on 31-01-2012

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1 Check scan data for fuel trims to see if the system is in proper fuel control – look for 0% plus or minus 10% in generic or 90 – 110 % alpha in manufacture specific. 2. Verify there are no exhaust leaks. 3. Drive the vehicle and check the bank 1 rear O2 sensor activity on the scan tool or with a voltmeter to see if the bank 1 rear O2 sensor is cross counting like a typical front O2 sensor would. Potential Causes: Catalytic Converter Tech Tips: If in manufacture specific with the scan tool, Nissan displays fuel trims in alpha. 100% alpha is the same as 0% fuel trim. This vehicle has front air fuel ratio sensors – not O2 sensors. Bank 1 is the firewall bank. Bank 2 is the radiator bank. Before the catalytic converter lights off, the rear O2 sensor voltage is usually down around 0.2 – 0.4 volts or so but when the catalytic converter lights off, it uses up a lot of the oxygen so the rear O2 sensor voltage will typically reads around 0.6 – 0.7 volts and have some movement but not a lot of movement and should not cross count above and below 0.5 volts. The catalytic converter is covered under the 8 year 80,000 mile federal emissions warranty.

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Low Engine Coolant Level Indicator Always On (Diagnose Low Coolant Level System Operation/Check Sensor for Oil Contamination)

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Filed Under (More Manuals) by admin on 19-05-2012

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2000-2002 Buick Century, Regal 2000-2001 Chevrolet Lumina 2000-2002 Chevrolet Impala, Monte Carlo 2000-2002 Pontiac Grand Prix 2000-2002 Oldsmobile Intrigue 1. Verify that the coolant is at proper level in the radiator and the coolant recovery bottle. If the coolant is low, add proper amount of 50/50 water and DEX-COOL® mixture. If the low coolant light operates properly, diagnose the cooling system for loss of coolant as outlined in SI. DO NOT proceed further with this bulletin. 2. Remove the low coolant level sensor. Refer to Coolant Level Module Replacement in the Engine Cooling sub-section. 3. With the key on, the engine off and the coolant level sensor disconnected from the vehicle wiring harness, observe the low coolant light: Subject: Low Engine Coolant Level Indicator Always On (Diagnose Low Coolant Level System Operation/Check Sensor for Oil Contamination) Models: 2000-2002 Buick Century, Regal 2000-2001 Chevrolet Lumina 2000-2002 Chevrolet Impala, Monte Carlo 2000-2002 Pontiac Grand Prix 2000-2002 Oldsmobile Intrigue • Light is on — Chassis wiring or instrument cluster concern. Follow the appropriate diagnostic information in SI. • 4. With the key off, connect the coolant level sensor into the vehicle’s wiring harness. Connect a ground wire (1) to the battery negative terminal. Using a sharp probe (3) attached to the ground wire, ground the coolant sensor probe (2) as shown in the illustration. Make sure a good contact is made. With the key on and the engine off, observe the low coolant light for at least 15 seconds. 5. Using a small wire brush or emery cloth, polish the low coolant level sensor probe to remove any film or oxidation. The probe should be a bright brass color when finished. Use Brake Parts Cleaner to flush removed deposits from the low coolant sensor probe. Reinstall the low coolant sensor into the vehicle and proceed to Step 6. 6. Flush the cooling system and install new DEX-COOL® mixture as outlined in the SI. Check the vehicle’s warranty history to determine if any engine gasket had recently been changed. If there has not been a recent gasket replacement, locate and repair the source of the engine oil contamination

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1996-2000 Chevrolet And GMC Suburban/ Pick-Up 2500/ 3500 Series TUBULAR EXHAUST SYSTEM INSTALLATION INSTRUCTION

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Filed Under (Chevrolet Manuals) by admin on 29-12-2011

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Disassembly – Left Side 1. Disconnect negative cable from battery. 2. Use penetrating oil on all nuts and bolts to be removed. This will prevent the possibility of broken or stripped nuts and bolts. 3. Remove air cleaner system (note position of line and hose connections). 4. Disconnect spark plug wires. 5. Disconnect temperature sensor wire. 6. Remove EGR fitting. 7. Remove bolts and exhaust manifold. Disassembly – Right Side 1. Remove air cleaner box. 2. Disconnect spark plug wires. 3. Remove dipstick and dipstick tube. 4. Remove bolts and exhaust manifold. 5. Clean exhaust flange surfaces on both cylinder heads at this time. DISASSEMBLY – CROSSOVER PIPE 1. Raise vehicle and support with jackstands. 2. Disconnect and remove 02 sensors (2), being careful not to rupture or destroy the unit. WARNING: Do not clean this unit in any cleaning solvent and do not damage wire. 3. Between left and right side of the catalytic converter is a 3-bolt flange with gasket. From the front face of flange, measure out 15″ towards front of truck and cut stock exhaust pipes. Remove exhaust pipes from vehicle. NOTE: Before cutting pipes, measure the height of the converter from the bottom of the floor board for when you install new exhaust pipes you can maintain same distance. •ASSEMBLY – LEFT SIDE 1. Install T.E.S. flange gasket and one 3/8″-16 x 1″ bolt, lock washer, and thick flat washer at rearmost bolt hole (leave bolt loose enough to accept T.E.S.). 2. Install left side T.E.S. manifold from bottom side 3. Install all bolts and washers and tighten. Use thick flat washers on slotted holes. 4. Reinstall spark plugs. 5. Replace original equipment spark plug ends on cylinders #3 and #5 with 60° connectors and boots provided in kit. 6. Re-connect spark plug wires on left side. 7. Re-install temperature sensor wire to temperature sensor. ASSEMBLY – RIGHT SIDE 1. Install T.E.S. flange gasket and one 3/8″-16 x 1″ bolt, lock washer and thick flat washers at rearmost bolt hole (leave bolt loose enough to accept T.E.S.). 2. Install right side T.E.S. manifold from top side. Now install dipstick tube. 3. Install remaining bolts and lock washers. 4. Align all parts and tighten all right side bolts at this time. 5. Replace original equipment spark plug ends on cylinders #4, #6 and #8 with 60° connectors and boots provided in kit. 6. Re-connect right side spark plug wires. 7. To prevent contact with the hot T.E.S. tubing, use nylon tie wrap (supplied) to secure the heater hose to the a.c. dryer. 8. Re-install air cleaner box. CROSSOVER PIPE ASSEMBLY 1. With catalytic converters in their natural position, install and bolt exhaust extension pipes to header collectors using 3/8″ – 16″ x 2 1/2″ hex bolts, 3/8″ flat washers, 3/8″ lock washers and 3/8 hex nuts. Use the 3″ donut provided in kit. 2. Check alignment of pipes to the catalytic converter, secure bolts. 3. With everything in place, tack weld exhaust pipes to catalytic assembly. 4. Unbolt whole exhaust assembly from vehicle and let it hang. Complete weld around pipes. 5. Bolt assembly back in vehicle and check for clearance. 6. Re-install 02 sensors. Use anti-seize on threads of sensor. Route wires clear of exhaust system. 7. Lower vehicle to ground

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2000 Dodge Dakota & Durango Power Windows ADJUSTMENTS

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Filed Under (Dodge Manuals) by admin on 18-06-2012

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ADJUSTMENTS WINDOWS Remove door trim panel. See DOOR TRIM PANEL under REMOVAL & INSTALLATION. Loosen bolts holding window to regulator. Raise window fully, seating window in frame. Tighten bolts. Install door trim panel. TROUBLE SHOOTING POWER WINDOWS On Dakota, inspect circuit breaker No. 20 (20-amp) in junction block. On Durango inspect circuit breaker No. 21 (25-amp) in junction block. On all models, junction block is located on left end of instrument panel. Inspect fuse No. 9 (40-amp on Dakota, 50-amp on Durango) in Power Distribution Center (PDC). PDC is located in left front corner of engine compartment. Inspect power window system ground circuit. See WIRING DIAGRAMS . SYSTEM TESTS ALL WINDOWS INOPERATIVE Dakota 1. Check circuit breaker for power window system. See TROUBLE SHOOTING . Replace circuit breaker as necessary. If circuit breaker is okay, go to next step. 2. Disconnect negative battery cable. Remove driver’s front power window switch. See POWER WINDOW SWITCH under REMOVAL & INSTALLATION. Check for continuity between ground and terminal No. 3 (Black wire) at driver power window switch wiring harness connector. If continuity exists, go to next step. If continuity does not exist, repair open in Black wire between driver power window 2000 Dodge Durango 2000 ACCESSORIES & EQUIPMENT’ ‘Power Windows – Dakota & Durango 2000 Dodge Durango 2000 ACCESSORIES & EQUIPMENT’ ‘Power Windows – Dakota & Durango switch connector and ground. See WIRING DIAGRAMS . 3. Connect negative battery cable. Turn ignition on. Measure voltage between ground and terminal No. 5 (Tan wire) at driver’s power window switch wiring harness connector. If battery voltage is present, check driver power window switch. See POWER WINDOW SWITCH under COMPONENT TESTS. If battery voltage is not present, repair open Tan wire between driver power window switch connector and ignition switch. See WIRING DIAGRAMS . See POWER DISTRIBUTION article in WIRING DIAGRAMS. Durango 1. Check circuit breaker for power window system. See TROUBLE SHOOTING . Replace circuit breaker as necessary. If circuit breaker is okay, go to next step. 2. Disconnect negative battery cable. Remove driver’s front power window switch. See POWER WINDOW SWITCH under REMOVAL & INSTALLATION. 3. Check for continuity between ground and terminal No. 5 (Black wire) at driver’s power window switch wiring harness connector. If continuity exists, go to next step. If continuity does not exist, repair open in Black wire between driver’s power window switch connector and ground. See WIRING DIAGRAMS . 4. Reconnect negative battery cable. Turn ignition on. Measure voltage between ground and terminal No. 4 (Tan wire) at driver’s power window switch wiring harness connector. If battery voltage is present, check driver’s power window switch. See POWER WINDOW SWITCH under COMPONENT TESTS. If battery voltage is not present, repair open Tan wire between driver power window switch connector and ignition switch. See WIRING DIAGRAMS . See POWER DISTRIBUTION article in WIRING DIAGRAMS. ONE WINDOW INOPERATIVE

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1998-2000 ISUZU RODEO/AMIGO HIGH/ERRATIC IDLE CONDITION SERVICE MANUAL

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Filed Under (Isuzu Manuals) by admin on 13-05-2012

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1998 – 2000 MODELS 1. Inspect main ground points (refer to SB99*04*S001 for more information). * P6 ground point-body [on the passenger side of engine compartment, between the battery and cruise control actuator (if equipped)]. (Figure Fig. 1 ) * P10 ground point-engine (at the alternator bracket) . (Figure Fig. 2 ) Isuzu: 1998 – 2000 Rodeo AFFECTED VEHICLES:1998 – 2000 Rodeo (UE)/Amigo (UA) models with 3.2L V6 engines NOTE: Please refer to the appropriate workshop manual for the correct diagnosing procedure and/or follow the service procedures outlined in this bulletin for the vehicle being serviced. NOTE: The 1998, 1999 or 2000 Rodeo/Amigo Electrical Troubleshooting Manual can assist in locating the vehicle ground distribution (i.e., ground contact points). * Perform a voltage drop test at the main ground points. * If the voltage drop test fails, then inspect and clean both the bolt and contact point. * Verify and correct idle settings (if needed) as described in the workshop manual. * If the repair procedure on this step solves the high idle condition, then return the vehicle to the customer. If the repair procedure on this step does not solve the high idle condition, then go to step 2 (16 pin Blue Connector). B. Remove P-6/P-10 ground terminal and bolt for ground contact inspection. * Inspect ground contact area for corrosion. * Inspect bolt and thread for damage or corrosion. * Clean the ground area and fastening bolt thoroughly with a wire brush. * Replace bolt if damaged or heavily corroded. C. Install the P-6/P-10 ground terminal and bolt (tighten using hand tools only). * Torque the P-6/P-10 ground terminal bolt to (14 N.m) 10 lb.ft. 1998 – 1999 MODELS ONLY 2. Inspect the 16 pin blue connector, located under the power steering fluid reservoir for corrosion, bent, or damaged pins (specifically for the Throttle Position Sensor). (Figure Fig. 3 )

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1999 Chevrolet Silverado The service engine soon light is on with trouble code P1416 present

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Filed Under (Chevrolet Manuals) by admin on 07-05-2012

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Tests/Procedures: 1. Use a scanner and command the air pump on with the engine running at idle. Check if the O2 sensors go lean. 2. If the O2 sensor does not go lean on one bank, see if the check valve at the exhaust manifold is stuck closed, not allowing air into the manifold. Potential Causes: Defective Check Valve Diagnostic Codes: P1416 Author: Christopher Pittman Average Reported Mileage: 85812 Confirmed Fix Summary Confirmed Fix 18 – Air Injection Reaction (AIR) Check Valve 1 – Air Injection Reaction (AIR) Check Valve, Air Injection Reaction (AIR) Pump Confirmed Fix Details Tech Reported Fix Details Confirmed Fix Lee Stroup Sr. November 15, 2007 2001 Chevrolet Silverado 1500, 5.3L, Vin T, Eng Cfg V8 * A.I.R. Check Valve – removed check valves, found one rusted closed, one restricted, replaced both valves. Moisture from exhaust seems to have rusted both valves. Air Injection Reaction (AIR) Check Valve Paul Puleo August 20, 2009 1999 Chevrolet Camaro, Z28 5.7L * Replaced Both Air Injection Reaction (AIR) Check Valves – bank 2 AIR check valve restrticted, bank 1 slightly restricted replaced both Air Injection Reaction (AIR) Check Valve SouthGate January 05, 2009 2000 Chevrolet Silverado 1500, 4.8L, Vin V, Eng Cfg V8 * Replaced Air Injection Reaction (AIR) Check Valve – replaced boht check valves. fix the code. Air Injection Reaction (AIR) Check Valve Dwight Heckman July 31, 2008 2000 Chevrolet Blazer, 4.3L * Check Valve – replacing the check valve and cleaning out the lines repaired the problem. Air Injection Reaction (AIR) Check Valve Nick Secchitano June 16, 2009 2000 Chevrolet Silverado 1500, 5.3L, Vin T, Eng Cfg V8 * Replaced Both Air Injection Reaction (AIR) Check Valves – Air injection check valves Air Injection Reaction (AIR) Check Valve Mark Bertelsen 1998 Chevrolet Camaro, Z28 5.7L * Replaced Air Injection Reaction (AIR) Check

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2000 Audi A6 OIL PAN (A4 And A6) Removal And Installation Manual

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Filed Under (Audi Manuals) by admin on 01-07-2012

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OIL PAN(A4 & A6) Removal (Lower Pan- A4 & A6) 1. Disconnect negative battery cable. 2. Remove engine noise insulator (undercover). See Fig. 12 . Drain engine oil. 3. Unbolt left and right swaybar stabilizer bracket bolts (4) from mounting bracket. See Fig. 98 . Lower swaybar stabilizer not more than 10cm (3.94 INCHES) and secure with heavy wire. 4. If vehicle is equipped with automatic transmission, unbolt oil cooler pipe (line) bracket from right side oil pan. 5. Remove lower oil pan. To install oil pan (lower), see INSTALLATION (LOWER OIL PAN- A4 & A6) . Installation (Lower Oil Pan- A4 & A6) 1. Ensure oil pan surfaces are clean and dry. Remove residual sealant from oil pan, if necessary, with hand drill and plastic brush instead of a flat scrapper. See Fig. 99 . Install gasket. 2. Install 2 bolts diagonal to each other (to hold up pan). Install the rest of the bolts and hand tighten. 3. Starting at center and moving outward, tighten lower oil pan to upper oil pan bolts to 10 N.m (89 INCH lbs.). Tighten oil pan drain plug 30 N.m (22 ft. lbs.). Wait 30 minutes before filling with engine oil. Tighten all bolts to specification. See TORQUE SPECIFICATIONS . 4. To complete installation, reverse removal procedure. Fill and bleed cooling system. See COOLING SYSTEM BLEEDING . Removal (Upper Oil Pan- A4 & A6) 1. Disconnect negative battery cable. Remove oil dipstick. Unbolt oil dipstick tube at front of cylinder head. Remove oil dipstick tube. 2. Remove engine noise insulator (undercover). See Fig. 12 . Drain engine oil. 3. Move lock carrier into service position. See LOCK CARRIER . This will allow servicing of front engine components and facilitate removal of oil pan. 4. Open coolant expansion tank cap, drain cooling system at radiator. Open the coolant pump bearing housing drain plug. Located at bottom of block near transmission bell housing, drivers side of vehicle. See Fig. 32 – Fig. 33 . If vehicle is equipped with automatic transmission, unbolt oil cooler pipe (line) CAUTION: Wear eye protection NOTE: Obtain radio code before disconnecting battery. For help in identifying components and component locations, refer to illustrations Fig. 108 -Fig. 109 . NOTE: If engine is out of car, ensure oil pan is aligned with cylinder block on flywheel side. 2000 Audi A6 1998-02 ENGINES’ ’2.8L V6 30-Valve 2000 Audi A6 1998-02 ENGINES’ ’2.8L V6 30-Valve bracket from right side oil pan. 5. Position Engine Support (10-222A) with (10-222A/3) engine support adapter, or equivalent, on bolted flanges of fenders. Connect support bracket to front and rear engine lifting eyes. Lift up engine as far as possible. DO NOT use excessive force to raise engine. 6. Cut tie wraps and open bracket supporting starter wiring. See Fig. 97 . Disconnect electrical connection at starter.

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2000-2004 Toyota Tundra 4.7L V-8 Two and Four Wheel Drive Installation Manual

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Filed Under (Toyota Manuals) by admin on 27-03-2012

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1. Place vehicle in a location where the floor is solid and flat, with adequate lighting. Do not attempt to work on a hot engine. Heat causes metal to expand and makes removal of fasteners difficult at best. Disconnect the battery cables from the battery. Raise the front of the vehicle to obtain adequate access to the bottom exhaust manifold flanges. Use large-base jack stands to support the vehicle. Do not rely on the jack! Block the tires to prevent the vehicle from rolling off the jack stands. 2. Spray WD-40 or some type of penetrating oil on all accessible fasteners and fittings before attempting to remove them. 3. From underneath the vehicle disconnect the exhaust system from the exhaust manifolds by unbolting the (3) bolts at the collectors. Then unbolt the driver side catalytic converter from the exhaust assembly and temporarily remove it from the vehicle. PASSENGER SIDE 4. On the passenger side remove the (4) bolts attaching the heat shields to the factory manifold. 5. Next, carefully unplug the O2 sensor from its harness. 6. Now remove the nuts attaching the factory manifold to the cylinder head. With the manifold out of the way remove the mounting studs from the cylinder head. 7. Using a small wire brush or similar instrument, clean any carbon deposits left on the head surface. Be careful not to gouge the aluminum head. 8. Transfer the O 2 sensor from the factory manifold to the new passenger side header. Apply a small amount of anti seize to the threads for the sensor before installing it in the new header. Use caution not to drop or damage the sensor, they are fragile. 9. Now you are going to install the new JBA Header, but first there is some preparation of the hardware required. Apply anti seize to the threads of the new fasteners. Install the new JBA Header using the supplied gasket and fasteners. Torque to 23 ft./lbs. DRIVER’S SIDE 10. Just like you did in step (4) remove the (4) bolts attaching the heat shields to the driver side factory mani- fold. 11. Next, carefully unplug the O2 sensor from its harness. Unbolt the dipstick bracket from the head and remove the dipstick tube. 12. Remove the nuts attaching the factory manifold to the cylinder head. With the manifold out of the way remove the mounting studs from the cylinder head. 13. Using a small wire brush or similar instrument, clean any carbon deposits left on the head surface. Be careful not to gouge the aluminum head. 14. Transfer the O 2 sensor from the factory manifold to the new driver side header. Apply a small amount of anti seize to the threads for the sensor before installing it in the new header. Use caution not to drop or damage the sensor, they are fragile. 15. As you did on the passenger side, prepare the hardware before installing the driver side header. Apply anti seize to the threads of the new fasteners. Install the new JBA Header using the supplied gasket and fasteners. Torque to 23 ft./lbs. Re-install the dipstick tube. 16. Install the driver side catalytic converter. 17. Connect the exhaust system to the new headers using hardware and gaskets supplied. Reconnect O2 sensors. 18. Check to insure adequate clearance between header and shifter cable (small cable that runs from firewall, to brace on fender well, to transmission) . More clearance can be gained by adjusting (bending) brace on fender well. 19. Recheck everything

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2000 – 2006 TOYOTA TUNDRA SPORT DUTY UNDERCARRIAGE MOUNTING INSTRUCTIONS

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Filed Under (Toyota Manuals) by admin on 18-03-2012

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2000 – 2006 TOYOTA TUNDRA SPORT DUTY UNDERCARRIAGE MOUNTING INSTRUCTIONS The mounting procedure outlined below covers the 2000 – 2006 Toyota Tundra trucks. You will need to refer to the illustrations and familiarize yourself with each of the undercarriage components and their relative position to each other. Then proceed as follows: 1. Begin by removing the bolts holding the skid plate to the bottom of the bumper and the rear cross member. Remove the skid plate. Some vehicles are equipped with an additional skid plate that wraps up in front of the bumper. This skid plate must be removed also. 2. Remove the bolts connecting the tow hook, tie down brackets, and skid plate brackets (Refer to Figure 1) to the bottom of the frame. The bolts and tow hook will be used in the undercarriage installation. 3. Assemble Driver Side Push Beam Support Plate (62B) to the bottom of the driver side frame rail. Begin by installing the bolts removed in Step 2 into the two holes in the bottom of Diver Side Push Beam Support Plate (62B) . Tighten these two bolts. Next, drill the inside and outside frame wall for the upper hole in Driver Side Push Beam Support Plate (62B). Install one ½”-13 X 4-1/2″ Hex Head Bolt (D) and one ½”-13 Lock Nut (B) in the drilled hole. Tighten this bolt. 4. Repeat Step 3 on the passenger side frame rail. Include the tow hook over Passenger Side Push Beam Support Plate (62A). The skid plates, tie down brackets, and skid plate brackets (See Figure 1) will no longer be used but should be retained in case the undercarriage is ever removed. 5. Install Push Beam Assembly (62) between Push Beam Support Plates (62A & 62B) using eight ½”-13 X 1-1/2″ Hex Head Bolts (A) and eight ½”-13 Lock Nuts (B). For Light Duty Plow applications, the center of the receiver hole in Push Beam Assembly (62) should be 14-1/2″ from the ground. Leave hardware finger tight. 6. Assemble Angle Bracket (75) to the back of Push Beam Assembly (62) using four ½”-13 X1- 1/2″ Hex Head Bolts (A) and four ½”-13 Lock Nuts (B). Leave hardware finger tight. 3 7. Assemble the rear portion of Angle Bracket (75) to the truck’s cross member using two Nut Plates (101), two ½” Split Lock Washers (C) and two ½”-13 X 1-1/2″ Hex Head Bolts (A) . Nut Plates (101) must be inserted into the cross member through the large hole in the rear of the cross member. 8. Tighten all hardware beginning at the rear of Angle Bracket (75) and working forward. 9. With all undercarriage parts in place, securely fasten all mounting hardware. It is important that all fasteners be properly torqued (see Fig. 3) to assure a safe operating plow. Re-tighten all fasteners after 2 hours of plowing.

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