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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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2005-2006 Toyota Tundra/ Sequoia 4.7L V8 MR Tech Power-flow Intake system Installation Manual

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Filed Under (Toyota Manuals) by admin on 23-03-2012

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The installation of this cold air intake does require mechanical skills. Removal of engine covers, air lines and removing several plastic plugs and screws that may be difficult. It is recommended that this system be installed by a professional mechanic. Be sure to disconnect the negative terminal before proceeding. Congratulations! You have just purchased the worlds first tuned intake system. MR Technology, Leading the way! Patent pending (A) and (G) (B) (D) (A) Power-Box contents: POWER-FLOW: An air intake evolution Tools required: 1- 8mm socket 1- 10mm socket 1- 12mm socket 1- Phillips screw driver 1- 8mm nut driver 1- 55mm allen wrench 1- Disc grinder or Dremel (C) (E) Figure 1 Figure 2 Carefully, remove the mass air flow sensor from the air sensor housing to be reused later in the instruc- tions. Unhook three spring clamps from the top air box cleaner. Once the hooks have been removed, continue to detach the air box top from the lower air box cleaner. See fig. 15 for better illustration. Once the nut and bolt have been removed, continue to remove the entire hose clamp. Unplug the electrical harness clip from the mass air flow sensor as shown above. Disconnect the 4mm vacuum line located to the side of the air box cleaner. Unscrew the nut and bolt the hose clamp that secures the hose over the radiator. Loosen the two flange nuts on the engine cover in order to remove the cover. Disconnec the 6mm vacuum hose that will be reused later in the instructions. Page 2 of Part# PF2019 Unscrew the two screws from the mass air flow sensor, shown above. Loosen the hose clamp on the air duct connected to the throttle body. Unplug the crank case breather hose from the air crank case port as shown above. >>> >>>> Figure 3 Figure 8 Figure 7 Figure 6 Figure 11 Figure 10 Figure 9 Figure 14 Figure 13 Figure 12 >>>> Figure 4 Figure 5 Once the flange nuts have been removed, continue to remove the cover from the engine compartment as shown above. >>> >>> >>> >>> >>> >>> The three spring clamps shown above are unhooked from the top air box cleaner (A). Remove the air filter panel once the top has been removed (B). Once the air filter panel is removed, there are three bolts that will be removed in order to detach the lower air box cleaner. Remove the entire lower air box cleaner from the engine compartment. Place the power bands over each end of the silicone elbow. press the short end of the silicone elbow over the throttle body. Once the silicone elbow has been aligned continue to semi-tighten power band over the throttle body end. The first vibra-mount is aligned to the pre-tapped hole located behind the head lamp. The first vibra-mount is now installed as shown above. Screw the second vibra-mount is aligned over the wheel well bracket. The second vibra-mount is now installed as shown above. The stock 6mm hose is removed from the fuel pressure regulator. Press the new 16″- 4mm vacuum hose over the fuel pressure regulator port. Page 3 of Part# PF2019 Figure 15 Figure 17 Figure 16 Figure 20 Figure 19 Figure 18 Figure 23 Figure 26 Figure 25 Figure 22 Figure 21 Figure 24 (B) (A) (A) (A) >>> >>> >>> >>> Both vibra-mounts are now installed, you are now ready to go on to the next step. Place one .462 and a .412 power band over the silicone step hose. Press the 3 3/4″ side over the velocity stack as shown above. The Power box is now sitting flush over the vibra- mounts and a fender washer is placed over each vibra-mount. The last m6 flange nut is placed over the vibra- mount located behind the Power box. The 65mm bolt is tightened with an allen wrench. The assembled power box is lowered into the engine compartment. Align the mounting points on the bracket arms over the vibra-mounts. One 45mm bolt is removed from the top of the box. The bracket is place under the Power box and the 45mm bolt is aligned and screwed back in place as shown above. Remove the 65mm bolt from the velocity stack base. Align the bracket to the hole and insert the 65mm bolt back in place

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2001 Hyundai Sonata Air Bag Restraint Systems Repair Manual

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Filed Under (Hyundai Manuals) by admin on 21-05-2011

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Scan Tool Display B1111 Battery voltage high B1112 Battery voltage low B1346 Driver-side air bag resistance high B1347 Driver-side air bag resistance low B1348 Driver-side air bag short to ground B1349 Driver-side air bag short to battery B1352 Passenger-side air bag resistance high B1353 Passenger-side air bag resistance low B1354 Passenger-side air bag short to ground B1355 Passenger-side air bag short to battery B1361 Driver-side seat belt pretensioner resistance high B1362 Driver-side seat belt pretensioner resistance low B1363 Driver-side seat belt pretensioner short to ground B1364 Driver-side seat belt pretensioner short to battery B1367 Passenger-side seat belt pretensioner resistance high B1368 Passenger-side seat belt pretensioner resistance low B1369 Passenger-side seat belt pretensioner short to ground B1370 Passenger-side seat belt pretensioner short to battery B1378 Driver side impact air bag resistance high B1379 Driver side impact air bag resistance low B1380 Driver side impact air bag short to ground B1381 Driver side impact air bag short to battery B1382 Passenger side impact air bag resistance high B1383 Passenger side impact air bag resistance low B1384 Passenger side impact air bag short to ground B1385 Passenger side impact air bag short to battery B1400 Satellite left side defective B1401 Satellite left side short to ground B1402 Satellite left side short to battery B1403 Satellite right side defective B1404 Satellite right side short to ground B1405 Satellite right side short to battery B1406 PPD defective B1407 PPD communication error B1408 Satellite left communication error B1409 Satellite right communication error B1620 Internal fault B1650 SRSCM crash recorded (replace SCRSM) B1651 Crash recorded driver-side air bag

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2005 Ford Lincoln LS Climate Control System Manual

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Filed Under (Ford Manuals) by admin on 21-05-2011

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When PANEL is selected: z The Recirc request button is enabled. If the Recirc request button is selected (indicator ON), the air inlet door actuator positions the air inlet door to close off outside air from entering the passenger compartment. If the Recirc request button is not selected (indicator OFF), the air inlet door actuator positions the air inlet door to admit only outside air into the passenger compartment. z The panel door actuator positions the panel door in the OPEN position and the floor door and defrost door actuators position the floor door and defrost door in the CLOSED position, directing airflow to the instrument panel A/C registers. z The dual coolant control valve is automatically controlled by the DATC module based on the temperature setting(s). z The A/C request button is enabled. When the A/C request button is selected (indicator ON), the A/C compressor will operate if the outside air temperature is above approximately 2° C (35°F). When the A/C request button is not selected (indicator OFF), the A/C compressor will not operate and the air cannot be cooled below the outside temperature. z The blower motor is ON. PANEL/FLOOR When PANEL/FLOOR is selected: z The Recirc request button is enabled. If the Recirc request button is selected (indicator ON), the air inlet door actuator positions the air inlet door to close off outside air from entering the passenger compartment. If the Recirc request button is not selected (indicator OFF), the air inlet door actuator positions the air inlet door to admit only outside air into the passenger compartment. z The panel door and floor door actuators position the panel door and floor door in the OPEN position and the defrost door actuator positions the defrost door in the CLOSED position, directing airflow to the instrument panel A/C registers and the floor duct. z The dual coolant control valve is automatically controlled by the DATC module based on the temperature setting(s). z The A/C request button is enabled. When the A/C request button is selected (indicator ON), the A/C compressor will operate if the outside air temperature is above approximately 2° C (35°F). When the A/C request button is not selected (indicator OFF), the A/C compressor will not operate and the air cannot be cooled below the outside temperature. z The blower motor is ON. FLOOR

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1984-1995 Honda Accord/Prelude In­Tank Fuel Pumps TEST/REPAIR MANUAL

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Filed Under (Honda Manuals) by admin on 03-07-2012

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Carbureted Fuel System GENERAL INFORMATION On these vehicles, the engine management system is considered part of the emission control system. The major components include the carburetor(s), feedback control system, the air injection system, a throttle control system and the EGR system. The system consists of sensors and switches that feed information to the Electronic Control Unit (ECU), which will then operate several solenoid valves to maintain the ideal air/fuel ratio under all conditions. As useful as the tests found in this section are, the first step in repair or service to engine management systems is still to gain as much information as possible about the problem; when and under what conditions it occurs. At highway speed? At idle only? Only under heavy load or hard acceleration? Wet weather? Defining the problem will eliminate many systems from consideration and possibly point to the affected system. Before diving into an extended electrical diagnosis, take the time to review the basics. Check every vacuum line for cracks or leaks. Check every electrical connector for corrosion or loose pins. Quite often, simply unplugging and reconnecting a connector will break up corrosion on the pins and restore the circuit. Watch out for poor grounds, particularly if the car has experienced major bodywork. COMPONENT TESTING Air Injection System The purpose of this system is to supply oxygen to the exhaust stream at a point in the exhaust manifold that is hot enough to burn off some of the hydrocarbon emissions. The main component is an air suction valve. The valve is spring loaded to stay closed, with engine vacuum supplied to a diaphragm that reduces the spring pressure and allows the reeds to open. The ECU regulates the engine vacuum to the diaphragm by operating a solenoid valve. 1. With the engine at normal operating temperature and at idle, remove the air cleaner and listen for a bubbling sound at the air suction port. There should be no sound at idle, meaning the air suction valve is closed. 2. If the noise is heard at the air suction port, disconnect the vacuum hose at the air suction valve and connect a vacuum gauge to the hose. There should be no vacuum. If there is vacuum and the noise stops, the problem is in the control system. If there is no vacuum and the bubbling sound is still there, the air suction valve is defective and must be replaced. 3. To test the valve, draw a vacuum at the air suction valve diaphragm and listen for a bubbling sound at the air suction port. If no sound is heard, the air suction valve or diaphragm is faulty. Throttle Control System

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2002 BMW 325I 2.5L Air Pump Repair manual

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Filed Under (Bmw Manuals) by admin on 05-02-2012

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Check engine light on and fault codes stored. Vehicle running normally. Tests/Procedures: 1. Based upon stored fault codes for secondary air system, there is little or no flow of secondary air into engine. Typical causes for this issue are failed secondary air pumps and/or secondary air check valves. Secondary air pump should operate under normal circumstances when vehicle is first started to perform system test. Pump will normally be heard running when standing in front right corner of vehicle. 2. The secondary air pump is located in the right front of engine compartment. A secondary air pump relay located in the glove box is controlled by the engine control module and sends power to the secondary air pump. 3. Air pump can be disconnected and supplied with power and ground at pump to verify operation is possible. 4. Check valve on front right of cylinder head can be supplied with vacuum and visually checked for opening of valve. 5. Vacuum line from check valve to operating solenoid should also be inspected for cracks or being disconnected. Vacuum line follows right side of cylinder head to back of cylinder head to the secondary air solenoid located under left rear side of intake manifold. 6. The solenoid should allow vacuum flow to the check valve during vacuum pump operation. The solenoid is controlled directly by the engine control module and receives power during key-on-engine-off. Potential Causes: A.I.R. Check Valve Engine Control Module (ECM) Codes — Engine control module fault. Defective Secondary Air Pump Secondary Air Pump Relay Secondary Air Supply Hose Broken Vacuum Line

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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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2007 TOYOTA TUNDRA COLD AIR INTAKE Preparation

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Filed Under (Toyota Manuals) by admin on 22-10-2011

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1. Check Box Contents (a) Check box for contents and/or damage. 2. Vehicle Preparation (a) Open vehicle hood. (b) Use blankets or covers to protect the front grille and passenger-side front fender area. Note: For 5.7L installation proceed to next step. For 4.7L installation proceed to step #4 3. Removal Procedure: 5.7L V8 OE Air Inlet System (a) Raise the front of the engine cover to detach the 2 pins (Fig. 3-1). (b) Remove the 2 engine cover hooks from the bracket, and remove the cover (Fig. 3-1). (c) Disconnect the vacuum hose and ventilation hose (Fig. 3-2). (d) Loosen the two 10 mm hose clamps and remove the air cleaner hose (Fig. 3-2). 12 mm Wrench Fig. 3-1 Fig TOYOTA TUNDRA 2007 – COLD AIR INTAKE Procedure Page 3 of 15 pages Issue: A 08/24/07 10mm Socket 10 mm Socket 10 mm Socket 4. Removal Procedure: 4.7L V8 OE Air Inlet System (a) Remove the two 10 mm cap nuts and throttle body cover (Fig. 4-1). (b) Remove air cleaner hose assembly. (1) Disconnect the vacuum hose and No. 2 ventilation hose (Fig. 4-2). (2) Loosen the two 10 mm hose clamps and remove the air cleaner hose (Fig. 4-2). 5. Removal Procedure: 5.7L and 4.7L V8 OE Air Inlet System (a) Remove the air cleaner lid. (1) Disconnect the MAF sensor connector (Fig. 5-1). (2) Using a clip remover, detach the wire harness clamp (Fig. 5-1). (3) Unfasten the 4 hook clamps and then remove the air cleaner lid (Fig. 5-1). (b) Remove OE air filter and save. (c) Remove the two 10 mm bolts and air cleaner case (Fig. 5-2)

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Toyota Matrix XRS Air Intake Removal And Installation Instructions

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Filed Under (Toyota Manuals) by admin on 10-02-2011

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1. Turn the ignition OFF and disconnect the vehicle’s negative battery cable. 2. Disconnect the mass air sensor electrical connection. 3. Remove the screw that secure the vacuum switching valve to the air cleaner. 4. Remove the stock bracket from the vacuum switching valve. 5. For 2005 and 2006 models, you need to unclip the vacuum switching valve hose from the intake tube, and remove the screw from PWM switching valve. 6. Loosen the clamps at the throttle body and at the air cleaner, then remove the stock intake tube. 7. For 2002 to 2004 models, you need to remove the EVAP OBD canister closed valve vent from the air cleaner. Then unclip the upper air cleaner, then tilt upwards to unclip the PWM vacuum switching valve and the vacuum hose. 8. For 2005 and 2006 models, unclip vacuum switching valve hoses from air box, then unclip the PWM switching valve wire harness from upper airbox. 9. Remove the upper Air cleaner. 10. For 2002 to 2004 models, loosen and remove the bolt that secure the EVAP OBD canister closed valve to the lower air cleaner. 11. Loosen and remove the three bolts that secure the lower air cleaner, then disconnect the vacuum hose from the butterfly valve. 12. Tilt the lower air cleaner upwards to unclip the wire harness. 13. Remove the lower air cleaner. 14. Loosen the battery hold down bracket. 15. Remove the bolt that secures the battery hold down bracket to the radiator core support, then remove the battery hold down bracket. 16. Remove the push clip that secures the air inlet duct to the radiator core support. 17. Loosen and remove the bolt that secures the air inlet duct to the inner fender. 18. Tilt that battery backwards, then remove the air inlet duct. 19. Reinstall the battery hold down bracket. 20. Disconnect two vacuum hoses from the vacuum switching valve. Install of Intake

1997 Ford Thunderbird/Cougar Steering Column with Air Bag

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Filed Under (Ford Manuals) by admin on 21-05-2011

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Steering Column with Air Bag The steering column has a steering wheel (3600) which is bolted to the top of the steering column and is fitted with a supplemental air bag system. * Before performing work on or around any supplemental air bag system component, observe all supplemental air bag system conditions and warnings to avoid accidental air bag deployment and possible injury. * Refer to Section 01-20B for supplemental air bag system conditions and warnings. Steering Column, Tilt — Disassembled View Section 11-04: Steering Column 1997 Thunderbird/Cougar Workshop Manual DESCRIPTION AND OPERATION Procedure revision date: 05/16/2000 Item Part Number Description 1 043B13 Driver Side Air Bag Module 2 N804385-S100 Steering Wheel Bolt 3 3600 Steering Wheel 4 N805572-S36 Air Bag Module Retaining Screws (2 Req’d) 5 3L518 Steering Wheel Spoke Cover (2 Req’d) 6 N804385-S100 Screw 7 14A664 Air Bag Sliding Contact 8 13318 Turn Indicator Cancel Cam 9 3C610 Bearing Retainer 10 3520 Steering Column Upper Bearing Spring 11 3518 Steering Column Bearing Sleeve (Upper) 12 3517 Steering Column Bearing (Upper)(Small) 13 3517 Steering Column Bearing (Large) 14 3524 Steering Gear Input Worm Gear and Rack 15 390345-S36 Screw 16 13K359 Multi-Function Switch

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