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Honda Navigation System Information and DVD Information and Inspection Manual

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Filed Under (Honda Manuals) by admin on 06-07-2012

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REVISION SUMMARY •Under BACKGROUND, more sources for navigation service and user information are listed. •Under DVD LABEL COLOR IDENTIFICATION BY MODEL, the Latest DVD Version available is updated. •Under REPLACING THE NAVIGATION CONTROL UNIT AND TRANSFERRING THE NAVIGATION DVD, a step was added to Save Users Memory when replacing the navigation control unit. •Under ENTERING THE ANTI-THEFT CODE, the instructions about obtaining the serial number from a navigation unit without removing it were clarified. •Under NAVIGATION SYSTEM PLATFORMS, HFL was added to the list of Distinguishing Features . BACKGROUND Use this information to avoid possible customer dissatisfaction issues caused by incorrect or outdated DVD installation. For more information about the navigation system and its operation, refer to the following resources: •Service Manual – Printed or on ISIS •Quick Start Guide •Online University – Use the keyword NAVI . •Navigation System Manual – Besides the one that comes with the vehicle, the navigation system manual is also available online. Select SEARCH BY PUBLICATION , select Consumer Information , select your applicable vehicle, then select Navigation Manual from the list. •Service Bulletins – Use the keyword NAVI . •ETM (electrical troubleshooting manual) This bulletin provides the following navigation system DVD service information: •DVD label color identification by model •Earliest DVD version application for each model •How to identify navigation DVD versions •Checking a DVD for damage •Ordering a DVD •Navigation DVD stocking concerns •DVD handling and cleaning •Installing a navigation DVD •Precaution on customer “sneak previews” of a newer navigation DVD version •Answering customer questions about navigation coverage and POI (point of interest) •Pitfalls when interchanging navigation DVD/parts during diagnosis •Replacing the navigation control unit and transferring the navigation DVD •Entering the anti-theft code •Navigation system platforms VEHICLES AFFECTED • 2003-09 Accord • 2005-07 Accord Hybrid • 2006-09 Civic • 2006-09 Civic Hybrid • 2007-09 CR-V • 2009 Element • 2009 Fit • 2000-09 Odyssey • 2003-09 Pilot • 2006-09 Ridgeline WARRANTY CLAIM INFORMATION None. This service bulletin is for information only. Refer to the flat rate manual whenever servicing or repairing the navigation system

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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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2001 – 2006 TOYOTA Sequoia BACK DOOR POWER WINDOW INOPERATIVE

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

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BACK DOOR POWER WINDOW INOPERATIVE – EL007-06 June 14, 2006 Page 2 of 6 ITEM NO. SPECIAL SERVICE TOOLS (SSTs) PART NUMBER QTYDRW** 1 Plastic Pry Tool Set* NOTE: All components from this kit/set are required 00002-06000-01 1 21 *Essential SSTs. **Refers to drawer number in SST Storage System. NOTE: Additional SSTs may be ordered by calling SPX/OTC at 1-800-933-8335. 1. Disconnect the negative (-) terminal of the vehicle battery. NOTE: Any time the negative (-) battery terminal has been disconnected, systems requiring initialization will need to be re-initialized after the negative (-) battery terminal has been reconnected. 2. Open the back door and leave open. 3. Using the plastic pry tool, remove the back door garnish center. 4. Using the plastic pry tool, remove the left and right back door side garnish panels. Required SSTs Repair Procedure : 5 Clips : 3 Clips BACK DOOR POWER WINDOW INOPERATIVE – EL007-06 June 14, 2006 Page 3 of 6 5. Remove the strap cover, bolt, and pull strap. NOTE: To remove the strap cover, push it toward the back door window as shown in the illustration. 6. Remove the back door trim board. A. Insert the plastic pry tool between the back door trim board to release the clips retaining the back door trim. NOTE: Be careful NOT to damage the back door and back door trim board. B. Release each clip as shown in the illustration. 7. Disconnect both connectors to the back door ECU and both clips holding the wire harness to the large service cover. 8. Remove both of the back door service hole covers. For 2001 – 2004 model year Sequoia vehicles, go to step 11. For 2005 – 2006 model year Sequoia vehicles, continue to step 9. 9. For 2005 – 2006 model year Sequoia vehicles ONLY: Remove the multiplex network door ECU. Using a drill of less than 3.2 mm (0.126 in.), drill out the two (2) rivet heads. HINT: Gently and vertically put the drill to the rivets and cut the rivet flanges. CAUTION: Take care as the cut rivets may be HOT. 10. For 2005 – 2006 model year Sequoia vehicles ONLY: Install the replacement multiplex network door ECU and rivets

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2006 Ford Five Hundred SE UPPER INTAKE MANIFOLD REMOVAL AND INSTALLATION MANUAL

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

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Removal All vehicles 1. Drain the cooling system. For additional information, refer to DRAINING . 2. Disconnect the battery ground cable. For additional information, refer to REMOVAL AND INSTALLATION . 3. Remove the air cleaner outlet pipe. For additional information, refer to REMOVAL AND INSTALLATION . 4. Remove the 4 transaxle roll restrictor cross brace bolts 5. Remove the bolt and the transaxle roll restrictor cross brace. 6. Disconnect the evaporative emissions (EVAP) canister purge valve tube from the upper intake manifold and detach the retainer. 7. Disconnect the positive crankcase ventilation (PCV), brake booster and vacuum harness tubes from the upper intake manifold. 8. Detach the fuel tube retainer from the upper intake manifold. 9. Disconnect the exhaust gas recirculation (EGR) system module electrical connector and vacuum tube. 10. Detach the vacuum tube from the upper intake manifold vacuum tube retainer. 11. Disconnect the EGR system module tube from the EGR system module. Early build 12. Disconnect and plug the throttle body and PCV coolant hoses. Late build 13. Disconnect and plug the 2 PCV coolant hoses. All vehicles 14. Disconnect the throttle body electrical connector. 15. If equipped, remove and discard the 4 upper-to-lower intake manifold screws. 16. Remove the 8 bolts and the upper intake manifold. * Remove and discard the gaskets. Installation All vehicles Fig. 4: Identifying Tightening Sequence Of Bolts Courtesy of FORD MOTOR CO. NOTE: Clean and inspect all sealing surfaces. Install new gaskets 1. Position the upper intake manifold and install the 8 bolts. * Tighten in the sequence shown to 10 N.m (89 lb-in). 2. Connect the throttle body electrical connector. Late build 3. Connect the 2 PCV coolant hoses. Early build 4. Connect the throttle body and PCV coolant hoses. All vehicle 5. Connect the EGR system module tube to the EGR system module. * Tighten to 40 N.m (30 lb-ft). 6. Attach the vacuum tube to the upper intake manifold vacuum tube retainer. 7. Connect the EGR system module electrical connector and vacuum tube. 8. Attach the fuel tube retainer to the upper intake manifold. 9. Connect the PCV, brake booster and vacuum harness tubes to the upper intake manifold. 10. Connect the EVAP canister purge valve tube to the upper intake manifold and attach the retainer. 11. Clean the 4 transaxle roll restrictor cross brace bolts using a wire brush and apply new threadlock to the threads. 12. Position the transaxle roll restrictor cross brace and install the 4 new bolts. * Tighten to 55 N.m (41 lb-ft). 13. Clean the transaxle roll restrictor cross brace-to-roll restrictor bolt using a wire brush and apply new threadlock to the threads. 14. Install a new transaxle roll restrictor cross brace-to-roll restrictor bolt. * Tighten to 48 N.m (35 lb-ft). 15. Install the air cleaner outlet pipe. For additional information, refer to REMOVAL AND INSTALLATION . 16. Connect the battery ground cable. For additional information, refer to REMOVAL AND INSTALLATION . 17. Fill and bleed the cooling system.

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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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2006 Ford Explorer Scheduled Maintenance Guide

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Filed Under (Ford Manuals) by admin on 12-02-2012

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Scheduled Maintenance: 2006 Ford Explorer Driving Condition: Normal Condition Engine Displacement Transmission Fuel Cylinders Drivetrain 4.0 L Automatic Flexible 6 RWD ded Maintenance Mileage: Every 5,000 15 30 45 60 75 90 100 105 120 135 150 Value Package Price: See Dealer See Dealer See Dealer See Dealer See Dealer See Dealer See Dealer See Dealer See Dealer See Dealer See Dealer See Dealer Change engine oil and replace oil filter (Up to 5 quarts of oil. Perform at specified mileage interval or every 6 months, whichever occurs first) – See dealer Perform multi-point inspection – See dealer Rotate and inspect tires; check wheel end play and turning noise – See dealer Inspect automatic transmission fluid level (if equipped with underhood dipstick) – See dealer Inspect brake pads/shoes/rotors/drums, brake lines and hoses, and parking brake system – See dealer Inspect engine cooling system and hoses – See dealer Inspect and lubricate all non-sealed steering linkage,ball joints,suspension joints,half and drive-shafts and u-joints – See dealer Inspect complete exhaust system and heat shields – See dealer Replace engine air filter – See dealer Replace fuel filter – See dealer Inspect 4×2 front wheel bearings; replace grease and grease seals, and adjust bearings – See dealer Change Premium Gold engine coolant – See dealer Inspect accessory drive belt(s) – See dealer Replace PCV valve – See dealer Replace spark plugs – See dealer Replace accessory drive belts (if not replaced within last 100,000 miles) – See dealer Replace rear axle lubricant – See dealer Change automatic transmission/transaxle fluid and filter – See dealer Notes: Prices are shown for illustrative purposes only and may vary based on required fluid quantities and other conditions. Information in this document is current as of January 07, 2010 and could change in the future.

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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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2004 – 2006 Toyota Sienna Vehicles Equipped w/ Power Back Door (Power Rear Liftgate) Repair Manual

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

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Certain 2004 – 2006 Model Year Sienna vehicles equipped w/Power Back Door (Rear Liftgate) Q1: What is the condition? A1: Toyota has determined that the gas struts used to help lift and support the Power Rear Liftgate in certain 2004 through 2006 model year Sienna vehicles could be wearing out sooner than expected. As the gas struts deteriorate, the performance of the Power Rear Liftgate will begin to degrade, and the Power Rear Liftgate will operate more slowly than when the gas struts were new. Only Sienna vehicles equipped with the Power Rear Liftgate are involved. Q2: Are there any warnings that this condition exists? A2: Owners may notice that the Power Rear Liftgate will not remain in the open position. If not repaired, the gas struts may not be able to support the weight of the liftgate when it is open, and eventually, the gas struts could deteriorate to the point that the liftgate will fall about ten inches after it reaches the fully open position, at which point the power motor will engage and power the liftgate to the fully closed position. This condition may cause injury to a person who is struck by the liftgate when it falls or when it is closing. Q3: When were these vehicles produced, and how many vehicles are involved? A3: Only certain 2004 through 2006 model year Sienna vehicles equipped with the Power Rear Liftgate, produced between January 2003 and December, 2006 are involved. Approximately 196,000 vehicles are involved nationwide.

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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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