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2001 Dodge Durango BLOWER MOTOR RELAYS REPAIR MANUAL

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

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BLOWER MOTOR RESISTOR 1. Disconnect negative battery cable. Disconnect blower motor resistor harness connector. Using DVOM, check for continuity between all blower motor resistor terminals. If continuity exists between all terminals, go to next step. If continuity does not exist between all terminals, replace faulty blower motor resistor. 2. Check for open or short in circuits between blower motor resistor and heater control panel. Also check for open or short in wire between blower motor resistor and blower motor. BLOWER MOTOR SWITCH 2000 Dakota, 2000 Durango & 2000-01 Ram Pickup 1. Remove Power Distribution Center (PDC) cover. Using DVOM, check for battery voltage at PDC fuse No. 5 (40-amp) on Dakota and Durango; PDC fuse No. 12 (40-amp) on Ram Pickup. If battery voltage exists, go to next step. If battery voltage does not exist, check for open in Red wire between battery and underhood PDC. If Red wire is okay, replace underhood PDC. 2. Disconnect negative battery cable. Remove heater control panel. See HEATER CONTROL PANEL under REMOVAL & INSTALLATION. Disconnect heater control panel cable, electrical and vacuum connectors as necessary. Using DVOM, check for continuity between heater control panel harness connector terminal No. 7 (Black wire on Dakota and Durango; Black/Orange on Ram Pickup) and ground. See Fig. 5 . If continuity exists, go to step 4 . 3. If continuity does not exist, repair open in Black wire or Black/Orange wire between heater control panel 2001 Dodge Durango 2000-01 HEATER SYSTEMS’ ‘RWD Trucks & Vans harness connector terminal No. 7 and ground connector located at lower right corner of instrument panel (Dakota and Durango) or behind center of instrument panel (Ram Pickup). 4. Place heater mode control knob to any position except OFF. Using DVOM, check for continuity between heater control panel terminal No. 7 and terminals No. 3, 4, 5 and 6 while rotating blower motor switch. See Fig. 5 . 5. If continuity does not exist at any terminal, replace faulty heater control panel. If continuity exists as specified, check for open in circuits between heater control panel and blower motor resistor. Also check for an open in circuit between heater control panel and blower motor. See WIRING DIAGRAMS . Fig. 5: Identifying Heater Control Panel Blower Switch Connector Terminals (2000 Dakota & Durango Are Shown; Ram Pickup Is Similar) Courtesy of CHRYSLER CORP. Ram Van/Wagon 1. Disconnect negative battery cable. Remove heater control panel. See HEATER CONTROL PANEL under REMOVAL & INSTALLATION. Disconnect heater control panel harness connectors. Using DVOM, check for continuity between heater control panel C3 harness connector terminal “C” (Black wire) and ground. See Fig. 6 . If continuity exists, go to next step. If continuity does not exist, repair open in Black wire between heater control panel and ground connector located at lower right of steering column. 2. Place heater mode control selector to any position, except OFF. Using DVOM, check for continuity between appropriate terminals of heater control panel, for C3 connector terminals “B” (Violet wire) and “C” (Black wire). If continuity exists through heater control panel, go to next step. If continuity does not exist, replace faulty heater control panel assembly. 3. Using DVOM, check for continuity between heater control panel C3 connector terminal “B” (Violet wire) and C1 connector terminal “E” (Violet wire). See Fig. 6 . If continuity exists, go to next step. If continuity does not exist, repair open in Violet wire between heater control panel C3 and C1 connectors.

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2000 Chevrolet Blazer HEATER CORE Removal And Installation Procedure

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Filed Under (Chevrolet Manuals) by admin on 20-05-2011

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HEATER CORE Removal Procedure 1. Remove the heater/vent module. Refer to HEATER/VENT MODULE . 2. Remove the heater core access cover screws. Fig. 14: Identifying Heater Core Access Cover & Screws Courtesy of GENERAL MOTORS CORP. 3. Remove the heater core access cover. 4. Remove the heater core from the heater/vent module. Fig. 15: Identifying Heater Core Courtesy of GENERAL MOTORS CORP. Installation Procedure 1. Install the heater core to the heater/vent module Fig. 16: Identifying Heater Core Courtesy of GENERAL MOTORS CORP. 2. Install the heater core access cover. Tighten Tighten the heater core access cover screws to 1.9 N.m (17 lb in). NOTE: Use the correct fastener in the correct location. Replacement fasteners must be the correct part number for that application. Fasteners requiring replacement or fasteners requiring the use of thread locking compound or sealant are identified in the service procedure. Do not use paints, lubricants, or corrosion inhibitors on fasteners or fastener joint surfaces unless specified. These coatings affect fastener torque and joint clamping force and may damage the fastener. Use the correct tightening sequence and specifications when installing fasteners in order to avoid damage to parts and systems.

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TOYOTA TACOMA DC XSB RETRACTABLE HARD TRUCK BED COVERS INSTALLATION INSTRUCTIONS

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Filed Under (Toyota Manuals) by admin on 26-09-2011

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STEP 1: POSITIONING CANISTER Remove the top cover from the canister box and set it aside for later installation. Perform a quick inventory to insure all parts are there. Be sure to check inside the small cardboard box for parts. Remove the Canister from the box and set it in the truck bed against the cab. The canister should be resting on the canister end plates and be centered in the truck bed. DO NOT USE A KNIFE TO OPEN THE RAIL BOX. OPEN THE RAIL BOX ALONG THE LENGTH OF THE BOX AND LIFT RAILS OUT TO AVOID SCRATCHING THE SURFACE OF THE RAILS ON THE PACKAGE STAPLES. CAUTION! Canister End Plates INSTALLATION INSTRUCTIONS Slide the four (4) Inner Rail Clamps (2 on each side) through the Tie Down Bars of the truck. (Figure 2B) Place the Outer Angled Rail Clamps on the Inner Rail Clamps (MAKE SURE THE NARROWER EDGE IS DOWN ON THE OUTER ANGLED RAIL CLAMPS) loosely fasten the clamps in place with the 1/4″ Washer, 1/4″ Lock Washer and Rail Clamp Nut on both sides of the truck bed. The fi rst clamp should be placed about 6 inches from the canister (closest to truck cab). The second clamp assembly should be about 4 inches from the end of the Tie Down Bar (closest to the tailgate). Open the rail box along the length of the box, lift rails out to avoid scratching the rail surface on the package staples. The side rails are marked “left” and “right” (left is the driver’s side of the truck). Then Slide Rail Clamp Bracket A on each Rail followed by Rail Clamp Bracket B. Rail Clamp Bracket A should be closest to the Cab of the truck. At this time you will need to install the taligate end of the pull strap to the underside of the drivers side rail using the #8-32 x 3/4 machine screw that is already located at the tailgate end on the underside of the rail. (Figure 2A) Now, with the tailgate closed, place the side rails in position on the truck bed with the Rail Clamp Brackets A & B resting on the Outer Angled Rail Clamps. Loosely assemble the Rail Clamp Brackets to the Outer Angled Rail Clamps with the 1/4″ Washer, 1/4″ Lock Washer and 1/4-20 x 1/2″ Bolt on each side of the truck bed. Center the Rails in the Truck bed. Check spacing in the truck bed between the Left and Right Rails. Spacing should be 51 3/4″. Once correct spacing is achieved tighten the Rail Clamp Brackets A & B only in place Correct spacing to the tailgate should be 1/16″ to prevent the tailgate from striking the side rails when closing. Tighten the Set Screws on both Rail Clamp Bracket A to hold rails in position. ( Adjust spacing from the tailgate by moving rails forward or backward as needed prior to fi nal tightening of set screws .) Apply downward pressure while tightening the Outer Angled Rail Clamp to the Inner Rail Clamp, especially on the tailgate end. This will ensure a tight seal, fi rm seat, and good fi t on the truck bed

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2003 Buick Truck Rendezvous Draining and Filling Cooling System Repair Manual

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Filed Under (Buick Manuals) by admin on 08-06-2012

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Draining and Filling Cooling System Notes Draining and Filling Cooling System Draining Procedure Important: Do NOT add any engine coolant supplement sealant pellets to the cooling system. Drain and refill the engine cooling system every 5 years or 240 000 km, (150,000 ml) , whichever occurs first. 1. Park the vehicle on a level surface. 2. Remove and clean the coolant recovery reservoir. Caution: To avoid being burned, do not remove the radiator cap or surge tank cap while the engine is hot. The cooling system will release scalding fluid and steam under pressure if radiator cap or surge tank cap its removed while the engine and radiator are still hot. 3.1. Slowly rotate the cap counterclockwise to the detention tab. Do not press down while rotating pressure cap. 3.2. Wait until any residual pressure, indicated by a hissing sound, is relieved. 3.3. After all hissing stops, press down on the radiator cap and rotate the cap counterclockwise in order to remove the cap. Important: Recover and store used coolant in a used coolant holding tank and submit the used coolant for recycling on a regular basis. Do NOT pour used coolant down the drain. Ethylene glycol antifreeze is very toxic. Disposing of ethylene glycol into the sewer system or ground water is both illegal and ecologically unsound. 4. Place a drain pan under the radiator drain cock in order to collect all of the used coolant. 5. Open the radiator drain cock. If only partial cooling system draining is required, drain enough coolant to perform the procedure 6. Open the air bleed valve on the thermostat housing 2 full turns. 7. Open the air bleed valve above coolant pump 2 full turns. 8. Place a drain pan under the engine block drains in order to collect the used coolant. Important: Allow the coolant to drain completely

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1984-1995 Honda Civic/ CRX Positive Crankcase Ventilation (PCV) System Repair Manual

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Filed Under (Honda Manuals) by admin on 22-04-2012

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The PCV system is designed to prevent blow-by gas from escaping to the atmosphere by drawing it directly into the intake manifold. The PCV valve contains a spring-loaded plunger which is lifted in proportion to intake manifold vacuum. Under high vacuum, blow-by is returned directly to the manifold through the breather chamber and PCV valve with fresh air. When intake manifold vacuum decreases (wide open throttle) and vacuum in the air cleaner increases, the PCV valve closes and the blow-by is returned through the cylinder head cover breather hose and into the air cleaner. The PCV valve also acts as a check valve when the engine backfires to prevent crankcase explosion. Fig. 1: PCV system components-1984-87 1.5L engines Fig. 2: PCV system components-1988-91 1.6L engines Fig. 3: PCV system components-1992-95 engines Fig. 4: PCV system components-1984-87 carbureted engines SERVICE Positive Crankcase Ventilation (PCV) Valve For PCV valve removal, refer to Routine Maintenance of this information. 1. Locate the PCV valve. With the engine running at idle, use pliers to pinch the PCV hose between the valve and the intake manifold. It should be possible to hear the spring loaded valve click shut. 2. If no click is heard, remove the valve from the engine but leave it connected to the intake manifold. A hissing sound should be heard and vacuum should be felt at the valve inlet. 3. If no vacuum is felt, remove the valve from the intake manifold hose. The engine should stall or almost stall. This will indicate a stuck valve or clogged hose. Check the breather hose for clogging or leaks and replace any defective parts. Exhaust Gas Recirculation (EGR) System FUEL INJECTED ENGINES General Information See Figure 3 The Exhaust Gas Recirculation (EGR) system is used to control emissions measured at the tailpipe. Components included are the EGR valve and controls. The EGR system uses a poppet type valve to regulate the amount of exhaust gas flowing into the intake manifold. The flow path is cast into the cylinder head and does not use any external tubing. A control solenoid valve regulates the amount of vacuum to the EGR valve. A Constant Volume Control (CVC) valve provides a constant amount of vacuum to the control solenoid valve over a wide range of engine vacuum. When servicing or repairing any part of the emissions system, it is absolutely essential to check for any obvious mechanical faults or failures. Remember, a trouble code only indicates which sensor or circuit is affected by the problem. Simple mechanical faults such as a vacuum leak or poor electrical connection can cause a fault code. The EGR valve is not simply open or closed but is modulated by controlling the amount of engine vacuum to the valve diaphragm, up to a maximum of 8 in. Hg of vacuum. The EGR valve has a sensor in the top of the valve that reports valve lift to the ECU (same as ECM, 1992-95). The ECU modulates the position of the control solenoid valve to control the EGR valve lift according to an internal program. Upstream of the control solenoid valve, the CVC provides a constant supply of vacuum so EGR control is precise under all manifold vacuum conditions

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2003-2005 Toyota Corolla HEATER PERFORMANCE IMPROVEMENT Repair Manual

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Filed Under (Toyota Manuals) by admin on 23-01-2012

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HEATER PERFORMANCE IMPROVEMENT – AC002-05 February 14, 2005 Page 3 of 15 Install Air Conditioner Unit Assembly. Air Conditioner Unit Assembly 1. Evacuate Refrigerant HFC-134a (R-134a). Equipment: Robinair R-134a Refrigerant Recovery/Recycling Machine (Robinair P/N: 342000) 2. Disconnect Negative Terminal of Battery. 3. Drain Coolant. CAUTION: Do not remove the radiator cap while the engine and radiator are still hot, as coolant and steam can be blown out under pressure. A. Remove the radiator cap. B. Loosen the radiator and engine drain plugs and drain the coolant. C. Close the drain plugs. Engine Drain Torque: 13 Nm (130 kgfcm, 9 ftlbf) HEATER PERFORMANCE IMPROVEMENT – AC002-05 February 14, 2005 Page 4 of 15 4. Disconnect Cooler Refrigerant Suction Hose No. 1. A. Install the SST to the piping clamp. SST: 09870-00015 HINT: Confirm the direction of the piping clamp claw and the SST using the illustration shown on the caution label. B. Push down the SST and release the clamp lock. NOTE: Be careful not to deform the tube when pushing the SST. C. Pull the SST slightly and push the release lever. Then remove the piping clamp with the SST. D. Remove the piping clamp from the SST. E. Disconnect the cooler refrigerant suction hose No. 1. NOTE: Disconnect the tube by hand only. Do not pry the tube apart. Cap the open fittings immediately to keep moisture or dirt out of the system. Disconnect the same way as cooler refrigerant suction hose No. 1. 6. Disconnect Heater Inlet Water Hose. Using pliers, grip the claws of the clip and slide the clip and disconnect the heater inlet water hose. 7. Disconnect Heater Outlet Water Hose. Using pliers, grip the claws of the clip and slide the clip and disconnect the heater outlet water hose. 8. Place Front Wheels Facing Straight Ahead. 9. Remove Horn Button Assembly. NOTE: If the airbag connector is disconnected with the ignition switch ON, DTCs will be recorded. Before working on SRS, please refer to the Technical Information System (TIS), 2005 model year Corolla Repair Manual: Supplemental Restraint System: Supplemental Restraint System: Precaution. A. Using a torx socket wrench, loosen the 2 torx screws until the groove along the screw circumference catches on the screw case.

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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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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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1988 Mercedes Benz 260E KE-Jetronic (CIS-E) Injection System Description and Operation Manual

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Filed Under (Mercedes-benz Manuals) by admin on 14-02-2012

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A mechanical hydraulic injection system provides the basis for the Bosch KE-Jetronic (CIS-E) fuel system. The mechanical portion of the CIS-E system consists of the mixture control unit (air flow meter and fuel distributor ), primary pressure regulator, fuel accumulator , cold start valve , fuel injectors, pumps, filter, lines, tank and fuel cooler . In addition, electrical controls have been added for increased flexibility to meet todays more stringent performance and exhaust emission requirements. Refer to “COMPUTERIZED ENGINE CONTROLS” for a detailed description of electronic components. Air/Fuel Metering The basic function of the KE-Jetronic system is to meter fuel to the engine dependent upon the quantity of air drawn in by the engine (which is the main actuating variable). The stream of air drawn in by the engine deflects the sensor plate, which in turn actuates the fuel-metering plunger. Depending upon its position, the plunger opens or closes the fuel-metering slits. The metering slits supply fuel through the differential pressure valves to the individual fuel injectors. In contrast to the K-Jetronic system, the KE-Jetronic system also takes a number of additional engine operating data into account by means of sensors. The output signals from these sensors are processed by the KE-Jetronic electronic control unit which controls the electro-hydraulic actuator which adapts the injected fuel quantity to the various operating conditions. In the event of a system malfunction, the KE-Jetronic system operates solely with the basic function (CIS), and the driver then has a system at his disposal which provides a good limp-home capability when the engine is warm

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2001 Ford F-150 Draining-Coalescer/ Pressure Relief-Natural Gas Bi-Fuel System Repair Manual

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Filed Under (Ford Manuals) by admin on 28-05-2012

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1. Relieve the Bi-fuel system fuel pressure. For additional information, refer to Pressure Relief—Natural Gas Bi-Fuel System. 2. Raise the vehicle on the hoist. For additional information, refer to Section 100-02. 3. NOTE: There is an O-ring attached to the drain plug. The O-ring must be replaced each time the drain plug is removed. Remove the drain plug. 4. Install the drain plug. 5. Lower the vehicle. 6. Pressurize the fuel system. WARNING: It is important that your bi-fuel vehicle be correctly maintained by Ford bi-fuel trained personnel. If a concern occurs, it is important that correctly trained personnel diagnose the cause. If a concern relates to the fuel system, correct part replacement is imperative to keep your vehicle operating at normal performance. Bi-fuel components and gasoline specific components are not interchangeable. If your vehicle is not serviced in accordance with bi-fuel service procedures, damage can occur and your warranty may be invalidated. WARNING: Fuel supply lines are always pressurized. When servicing fuel related components, do not smoke or carry lighted tobacco or an open flame of any type. Flammable mixtures may be present and can ignite, resulting in personal injury. WARNING: The natural gas fuel system is always pressurized to 655 kPa (95 psi) downstream of the fuel pressure regulator and up to 24821 kPa (3,600 psi) upstream of the fuel pressure regulator. Use care when servicing the fuel system or personal injury can occur. WARNING: The natural gas fuel supply manifold is pressurized to 655 kPa (95 psi). Fuel pressure must be relieved prior to any fuel system service. WARNING: The fuel system pressure must be relieved before any component can be removed. The fuel tanks must be evacuated prior to tank removal. Removal of components without pressure relief or tank evacuation can cause natural gas to escape into the air and cause injury or death.

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