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2004 Chevrolet Chevy K Silverado – 4WD Evaporative Emission (EVAP) Canister Vent Solenoid Valve Replacement Pickup

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Filed Under (Chevrolet Manuals) by admin on 02-07-2012

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Evaporative Emission (EVAP) Canister Vent Solenoid Valve Replacement Pickup Removal Procedure Important Clean the evaporative emission (EVAP) connections and surrounding areas prior to disconnecting the fittings in order to avoid possible system contamination. 1. Raise and suitably support the vehicle. Refer to Lifting and Jacking the Vehicle in General Information. 2. Remove the harness clip from the canister vent solenoid (CVS) line. 3. Disconnect the CVS electrical connector. 2004 Chevrolet Chevy K Silverado – 4WD 4. If the vehicle is equipped with a 6 ft box, disconnect the EVAP CVS line from the canister. 5. Remove the CVS clip from the frame crossmember. 6. Push in the retainer and remove the CVS from the fuel tank clip. 7. If the vehicle is equipped with a 8 ft box, disconnect the EVAP CVS line from the canister. 8. Remove the CVS clip from the frame crossmember. 9. Push in the retainer and remove the CVS from the fuel tank clip. Installation Procedure 1. If the vehicle is equipped with a 8 ft box, install the CVS to the fuel tank until the clip engages. Important On vehicles equipped with a 8 ft box, the CVS line is routed below the frame crossmember. 2. Install the CVS clip to the frame crossmember. 3. Connect the EVAP CVS line to the canister. 4. If the vehicle is equipped with a 6 ft box, install the CVS to the fuel tank until the clip engages. Important On vehicles equipped with a 6 ft box, the CVS line is routed above the frame crossmember. 5. Install the CVS clip to the frame crossmember. 6. Connect the EVAP CVS line to the canister. 7. Connect the CVS electrical connector. 8. Install the harness clip to the canister vent solenoid (CVS) line. 9. Lower the vehicle.

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1984-1998 Jeep Wagoneer/ Commando/ Cherokee Emission Controls Crankcase Ventilation System (PCV/CCV)

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Filed Under (Jeep Manuals) by admin on 01-06-2012

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CCV Fitting See Figures 2 and 3 1. With the engine running, remove the CCV fitting. a. If the fitting is not plugged, a hissing noise will be heard as air passes through the valve. A strong vacuum should also be felt when a finger is placed over the fitting. b. Install the CCV fitting. c. Remove the fresh air hose from the air cleaner assembly and loosely hold a piece of paper over the open end of the hose. After allowing about one minute for the crankcase pressure to reduce, the paper should be sucked against the opening with a noticeable amount of force. 2. Turn the engine OFF . Remove the metered orifice fitting, and check for a plugged condition. A clicking noise should be heard to indicate that the valve mechanism is free. 3. If the crankcase ventilation system meets the tests in Steps 1 and 2 above, no further service is required. If not, the CCV fitting must be cleaned and the system checked again. 4. If Step 1c fails when the CCV fitting is cleaned, it will be necessary to replace the molded vacuum hose with a new one, and to clean the metered orifice port. 5. Clean or replace the engine air cleaner filter element with a new one-for more details, refer to the air cleaner procedure located in General Information & Maintenance. Fig. 2: CCV system diagram for 4.0L engine Fig. 3: CCV system diagram for the 2.5L engine Evaporative Emission Control System OPERATION The evaporative emission control system prevents the release of unburned hydrocarbons, from gasoline or gasoline vapor, into the atmosphere. When pressure in the fuel tank is below 3 psi (20 kPa), the pressure relief/rollover valves open allowing fuel vapors to flow to the evaporative canister where they are absorbed by a charcoal mixture. This prevents excessive pressure buildup in the fuel system. Most canisters are equipped with a calibrated orifice at the inlet to the canister.

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1986 Ford Truck F 150 2WD Pickup Emission Maintenance Warning Module-Service Manual

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Filed Under (Ford Manuals) by admin on 23-06-2012

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EMISSION MAINTENANCE WARNING MODULE SERVICE INFORMATION ^LAMP – “EMISSIONS/CHECK ENGINE” – EMISSION MAINTENANCE WARNING MODULE – SERVICE INFORMATION LIGHT TRUCK: 1985-89 BRONCO 1985-87 BRONCO II 1985-89 ECONOLINE, F- 150, F-250, F-350 1985-88 RANGER 1986-87 AEROSTAR ISSUE: The Emission Maintenance Warning “EMW” module operates a light that is located on the instrument panel. For 1985-87 model year vehicles, the light will display the word “EMISSIONS”. For 1988-89 model year vehicles, the light will display the words “CHECK ENGINE”. When the light is lit, it is indicating that the 60,000 mile emission maintenance should be performed. After the maintenance is performed the EMW module must be reset to zero time. Another type of module is the “IMS” module. This module is not part of the light circuit and does not require maintenance. At a predetermined time, the IMS module directs the EEC IV processor to make a strategy change. A third type of module is the “COMBO” module. This module combines the functions of the IMS and the EMW modules. ACTION: Refer to the following module application charts for the specific vehicle application and location of the different types of modules. NOTE: FOR APPLICATIONS NOT LOSTED IN THE FOLLOWING MODULE APPLICATION CHARTS, THE “CHECK ENGINE” LIGHT IS CONTROLLED BY THE EEC IV PROCESSOR. THESE VEHICLES DO NOT USE THE “EMW” MODULE

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2004-2006 Chevrolet Malibu, Malibu Maxx Loss of Power Steering Assist, Power Steering Warning Message Displayed in DIC, IPC/Radio Displays Erratic, DTC C0900, B1325 Set (Replace Ignition Coil/Module Assembly and Add Ground Strap)

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Filed Under (Chevrolet Manuals) by admin on 10-01-2012

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Correction Replace the ignition coil/module assembly and add ground strap following the procedure below. 1. Disconnect the ignition coil electrical connector. 2. Disconnect the left side spark plug wires from the ignition coil. 3. Disconnect the right side spark plug wires from the ignition coil. 4. Remove the four bolts attaching the ignition coil to its mounting bracket and remove the ignition coil. 5. Remove the ignition coil from the mounting bracket. 6. Loosen the two lower ignition coil mounting bracket nuts. 7. Remove the two upper ignition coil mounting bracket bolts and discard. Subject: Loss of Power Steering Assist, Power Steering Warning Message Displayed in DIC, IPC/Radio Displays Erratic, DTC C0900, B1325 Set (Replace Ignition Coil/Module Assembly and Add Ground Strap) Models: 2004-2006 Chevrolet Malibu, Malibu Maxx with 3.5L Engine (VINs 8, N — RPOs LX9, LZ4) 8. Install the ground strap (1), P/N 12581176, to the upper left side of the bracket as shown between the coil bracket and intake. Install the new bracket bolt, P/N 11570082, (do not tighten at this time). Prior to installing the ground strap, remove the captured nut and washers. They are not needed (simply pound them out with a hammer on a vise). 9. Install the washer (2), P/N 02436162, to the upper right side of the bracket between the coil bracket and intake. Install the new bracket bolt, P/N 11570082, (do not tighten at this time). Tighten Tighten all the ignition coil bracket bolts and nuts to 25 N·m (15 lb ft). 10. Install the new ignition coil to the mounting bracket. 11. Install the other end of the ground strap to the coil as shown and secure using a new bolt, P/N 11588715. 12. Install the other three ignition coil bolts. Tighten Tighten the bolts to 10 N·m (89 lb in). 13. Connect the right side spark plug wires to the ignition coil. 14. Connect the left side spark plug wires to the ignition coil. 15. Connect the ignition coil electrical connector

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1992 Toyota Cressida Wiring Diagram

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Filed Under (Toyota Manuals) by admin on 30-11-2011

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tem Wire ColorPolarity Wire Location 12V white – white/red Positive (+) steering column Starter black/white Positive (+) steering column Starter 2 none Ignition black/yellow Positive (+) steering column 2nd Ignition black/red Positive (+) steering column 3rd Ignition none Accessory blue/red Positive (+) steering column Accessory 2 none Tachometer black/yellow check conn(ig-) Power Door (Lock) Wiring Diagram for [ Negative (-) ] Door Lock green/red Negative (-) pass kick or theft ecu Power Door (Unlock) Wiring Diagram for [ Negative (-) ] Door Unlock green/whiteNegative (-) pass kick or theft ecu Door Trigger red/white Negative (-) theft ecu[1] Dome Supervision Wiring Diagram for [ none ] Dome none none none Headlights red/yellow Negative (-) steering column Parklight Positive green Positive (+) dimmer controll or dkp Parklight Negative green/whiteNegative (-) steering column Wipers blue/black Positive (+) steering column Left Front Window (Up/Down) grn/wht – red/blu in drivers door Right Front Window (Up/Down) pnk/blk – pnk in drivers door or dkp Left Rear Window (Up/Down) red – red-yel A in drivers door or dkp Right Rear Window (Up/Down) grn/blk – red/blk A in drivers door or dkp Trunk/Hatch Pin red/white Negative (-) at light, or theft ecu Hood Pin tied with doors Trunk/Hatch Release Wiring Diagram for [] Trunk/Hatch none Factory Alarm (Arm) arms with lock Factory Alarm (Disarm) disarms with unlock Horn white/red Negative (-) st.column or theft ecu Brake green/black Positive (+) brake switch Door Motor (Lock) none none none Door Motor (Unlock) none none none

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Steering, Brake And Suspension Specialists Proportioning Valve Diagram

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Filed Under (More Manuals) by admin on 01-10-2011

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This diagram is the most common way to plumb a proportioning valve. In some cases, the right front line will be plugged off at the proportioning valve and the left front line will go to a “T” fitting. From the “T” fitting, the front lines then split off and go to the left and right wheels. Our proportioning valve has a warning light switch built in (this is not a stop light switch.) The warning light will detect any loss of pressure, for example, a leaky wheel cylinder. We recommend you wire this light into your system. Any two wire light socket will work. One wire goes to the accessory power and the other goes to the warning light. Our proportioning valves provide four functions: 1. Proportion pressure front and rear 2. 10 psi. residual check valve 3. Metering valve to apply pressure to the rear brakes before the front brakes 4. A brake warning light to detect a loss in pressure Proportioning Valve Plumbing Diagram: There are two proportioning valve lines that connect to the master cylinder provided in our kits. The first is a 90 degree bend with one leg longer than the other. This line must be oriented with the long leg connected into the front top hole of the proportioning valve and the short end in the front hole on the master cylinder. The second line has two 90 degree bends and has color coded fittings. The larger blue fitting goes into the back hole on the master cylinder and the smaller gold fitting goes into the back top hole on the proportion valve as shown in the diagram

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Chevrolet Captiva Body Control Module Manual

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Filed Under (Chevrolet Manuals) by admin on 11-07-2014

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The Body Control Module (BCM) is of great importance for the Captiva. It contains many functions which are crucial for correct operation of the vehicle. The BCM can be found in every Captiva and is located behind the instrument panel centre console. By removing the Heating, Ventilation and Air Conditioning control panel the BCM is accessible. Body Control Module functions The BCM related systems include, but are not limited to the following list: ? Chimes ? Content Theft Deterrent System ? Vehicle Theft Deterrent System (Immobilizer) ? Exterior Lighting System ? Interior Lighting System ? Remote Keyless Entry ? Wiper/Washer Control ? Power Door Locks ? Power Windows

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2003 Honda ODYSSEY Intake Manifold Removal and Installation Manual

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Filed Under (Honda Manuals) by admin on 27-06-2012

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Removal 1. Remove the intake manifold cover (A) and ignition coil cover(s) (B). 1999-2001 models: 2002-2004 models: 2. Remove the evaporative emission (EVAP) canister hose (A) (1999-2001 models) or vacuum hose (A) (2002-2004 models). 3. Remove the vacuum hose(s) (B) and breather pipe (C), then remove the intake air duct (D). 1999-2001 models: 2002-2004 models: 4. Remove the throttle cable (A) and cruise control cable (B) by loosening the locknuts (C), then slip the cable ends out of the accelerator linkage. Take care not to bend the cables when removing them. Always replace any kinked cable with a new one. 5. Remove the engine wire harness connectors and wire harness clamps from the intake manifold. *Intake air temperature (IAT) sensor connector *Idle air control (IAC) valve connector *Throttle position (TP) sensor connector *Manifold absolute pressure (MAP) sensor connector *Evaporative emission (EVAP) canister purge valve connector (2002-2004 models) 6. Remove the brake booster vacuum hose (A) and positive crankcase ventilation (PCV) hose (B). 7. Remove the vacuum hoses (C) (1999-2001 models). 1999-2001 models: 2002-2004 models: 8. Remove the breather hose (A) and water bypass hoses (B), then plug the water bypass hoses. 9. Remove the EVAP canister hose (C) (2002-2004 models). 1999-2001 models:

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1999 – Current Toyota Tundra Installation Manual

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

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Step 1: Bedliner Modification Note: If the truck is equipped with a plastic drop-in bedliner, some alteration will be necessary. Ifno bedliner is present, proceed to Step 2. A. The dotted lines in Diagram 1 depict the more common under-the-rail liner modifications. A. 1. Using a jig saw with a medium tooth blade, remove the bulkhead portion of the liner as indicated. A. 2. Be sure to trim the bedliner’s plastic tailgate panel as shown. B. The dotted lines in Diagram 2 depict the less common over-the-rail liner modifications. A. 1. Using a jig saw with a medium tooth blade, remove the top cap and bulkhead portions of the liner as indicated. A. 2. If a rear notch is necessary, placethe tracks on their respective bedrails and mark the positions of the most rearward clamps prior to removing the liner. (The correct position of the track is with the black plastic track end-cap touching the inside surface of the tailgate.) A. 3. When the modification is complete, push the wall of the liner under the bedrail. A. 4. Be sure to trim the bedliner’s plastic tailgate panel as shown Step 2: Shim the OE Bedrail Caps (units 546 & 565) A. Remove the plastic bedrail caps, starting at the tailgate and lifting slowly (Photo 3) . Allow each snap to release as you proceed, being careful not to overstress the rail cap. B. Place the correct stick-on shim pads at the locations shown in Diagram 4. Note: The measurements shown in the graph below are taken beginning from the bulkhead end of the bedrail cap down-flange. Be sure to center the shims at each location and place them agains the down flange as shown in Diagram 5 . Product Code ABCD 546 (all 1/4″ shims) 16″ 37″ 49″ 61″ 1 / 8 ” shim @1/ 4 ” shim @3/ 8 ” shim @1/ 2 ” shim @ 565 18 1/ 2 “37 1/ 2 ” 49″ 60″ C. With

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2010 Toyota Highlander Performance And Specifications

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Filed Under (Toyota Manuals) by admin on 13-11-2011

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MECHANICAL Mechanical/Performance Hybrid engine — 3.3-liter double overhead cam (DOHC), 24-valve VVT-i V6; 208 hp (156 kW) @ 5600 rpm, 212 lb.-ft. @ 3600 rpm Gasoline engine — 2.7L double overhead cam (DOHC) 16-valve dual VVT-i; 187 hp @ 5800 rpm, 186 1b.-ft. @ 4100 rpm Gasoline engine — 3.5-liter double overhead cam (DOHC) 24-valve dual VVT-i V6; 270 hp @ 6200 rpm, 248 lb.-ft. @ 4700 rpm Emission Rating SULEV [1] ULEV-II Evaporative emission certification — zero evaporation Electric Motor Function: Drive front wheels, regeneration during braking Electric motor type: Permanent magnet motor Power output: 167 hp (123 kW) @ 4500 rpm Maximum torque: 247 lb.-ft. @ 0-1500 rpm Maximum voltage: AC 650V Rear Electric Motor Function: Drive rear wheels, regeneration during braking Motor type: Permanent magnet motor Power output: 68 hp (50 kW) @ 4610-5120 rpm Maximum torque: 96 lb.-ft. @ 0-610 rpm Maximum voltage: AC 650V Traction Battery Battery Type: Sealed Nickel Metal Hydride (Ni-MH) Maximum power output: 45 kw Voltage: 288V Hybrid System Net Power: 270 hp (201 KW) Hybrid Performance [2] Top track speed [2] (electronically limited) Ignition system Electronic, with Toyota Direct Ignition (TDI) Transmission — Gasoline models 6-speed Electronically Controlled automatic Transmission with intelligence (ECT-i) (4- cyl.) 5-speed Electronically Controlled automatic Transmission with intelligence (ECT-i), sequential shift mode and Snow Mode Transmission — Hybrid models Electronically Controlled Continuously Variable Transmission (ECVT) with ECON mode

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