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Toyota ISO Adapter Wiring Diagram

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Filed Under (Toyota Manuals) by admin on 19-05-2011

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4R Runner 1991-2000 Amazon > 2000 Avensis > 1997 Avensis verso > 2003 Camry > 1991 Carina E > 1988 Celica > 1990 Corolla > 1988 Corolla verso > 2002 Hi-Ace > 1990 Hi-Lux > 1989 Land Cruiser 1984-2002 Lite Ace > 1993 MR2 > 1990 Paseo > 1997 Picnic > 1990 Previa > 1994 RAV-4 > 1994 Starlet 1993-1997 Supra 1986-1996 Tacoma 1995-2001 Yaris > 1999 Reference : AC000005AA If you are interested, contact our sales department : Car kit Parrot Battery Pin Number Couleur Description 1 White Mute In 1 2 Yellow Mute In 2 3 Blue Mute In 3 4 Orange + 12V Memory 5 Green 6 Brown 7 Red + 12 V Permanent 8 Black Masse Car kit Parrot, car’s speakers Pin Number Couleur Description 1 Grey Rear right speaker + 2 White Rear right speaker – 3 Blue Front right speaker + 4 Green Front right speaker – 5 Red Front left speaker + 6 Orange Front left speaker – 7 Bronw Rear left speaker + 8 Black Rear left speaker – Toyota Audio Toyota Supply N° Connector Color Description 2 Toyota 2 Green Rear left speaker + 2 Toyota 1 White Front left speaker + 1 Toyota 1 Grey Front Right speaker + 1 Toyota 2 Violet Rear Right speaker + 3 Toyota 2 Green Black Rear Left speaker – 9 Toyota 1 White Black Front Left speaker – 10 Toyota 1 Grey Black Front Right speaker- 6 Toyota 2 Black Violet Rear Right speaker – N° Connector Color Description 3 Toyota 1 Red +12 V Permanent 4 Toyota 1 Orange +12 Ignition 8 Toyota 1 Black Ground Toyota 1 Toyota 2 Toyota Audio Toyota Supply N° Connector Color Description 2 Toyota 4 Green Rear left speaker + 2 Toyota 3 White Front left speaker + 1 Toyota 3 Grey Front Right speaker + 1 Toyota 4 Violet Rear Right speaker + 3 Toyota 4 Green Black Rear Left speaker – 9 Toyota 3 White Black Front Left speaker – 10 Toyota 3 Grey Black Front Right speaker- 6 Toyota 4 Black Violet Rear Right speaker – N° Connector Color Description 3 Toyota 3 Red +12 V Permanent 4 Toyota 3 Orange +12 Ignition 8 Toyota 3 Black Ground

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1998 Chevrolet Chevy K Pickup DTC P1626 Theft Deterrent Fuel Enable Signal Not Received Repair Manual

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Filed Under (Chevrolet Manuals) by admin on 24-06-2012

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An intermittent may be caused by any of the following conditions: Thoroughly check any circuitry that is suspected of causing the intermittent complaint. Refer to Intermittents and Poor Connections Diagnosis in Wiring Systems. If a repair is necessary, refer to Wiring Repairs or Connector Repairs in Wiring Systems. Test Description The number(s) below refer to the step number(s) on the diagnostic table. 2. This test checks if communication can be established between the scan tool and the VTD. If the scan tool cannot communicate with the VTD, refer to Diagnostic System Check – Theft Deterrent in Theft Deterrent. 3. This test checks for any opens in the serial data circuit between the VCM and the VTD. This also checks for any intermittent malfunctions associated with the serial data circuit. 4. This step is to determine if the condition that set the DTC is still present. The engine must be cranked in order to set this DTC. If the condition is present, the engine will start and then stall, indicating the VCM is disabling fuel. 7. Use a scan tool to clear and check for any DTCs in all the modules connected to the Class 2 Serial Data circuit (VCM, VTD, ATC, and BCM). the module itself. After repairing the cause of DTC P1626, clear all DTCs from the systems capable of storing this DTC and DTC U1192. 1 Important: Before clearing the DTCs, use the scan tool Capture Info to save the Freeze Frame and Failure Records for reference. The control module’s data is deleted once the Clear Info function is used. Did you perform the Powertrain On-Board Diagnostic (OBD) System Check? — Go to Step 2 Go to Powertrain On Board Diagnostic (OBD) System Check 2 1. Install the scan tool. 2. Turn ON the ignition leaving the engine OFF. 3. Attempt to establish communications with the VTD (Passlock) Control Module. Does the scan tool communicate with the VTD (Passlock) Control Module? — Go to Step 3 Go to Diagnostic System Check – Theft Deterrent in Theft Deterrent 3 Check the Class 2 Serial Data circuit for the following intermittent conditions: Did you find a problem? • An open in the Class 2 Serial Data circuit between the VCM and the VTD (Passlock) Control Module. • A short to ground. • A short to voltage. • Loose or damaged terminals at the DLC, VCM or the VTD (Passlock) Control Module. — Go to Step 6 Go to Step 4 4 1. Turn OFF the ignition. 2. Connect or install any connectors or components that were disconnected or removed. 3. Clear all DTCs using a scan tool. 4. Turn OFF the ignition for 15 seconds. 5. Attempt to start the engine. Does DTC P1626 reset? — Go to Diagnostic System Check – Theft Deterrent in Theft Deterrent Go to Step 5 5 This DTC is intermittent. Are any additional DTCs stored? — Go to the applicable DTC table Go to Diagnostic Aids 6 Repair the circuit as necessary. Refer to Wiring Repairs or Connector Repairs in Wiring Systems. Is the action complete?

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TOYOTA LANDCRUISER BRAKE CONVERSIONS SERVICE MANUAL

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Filed Under (Toyota Manuals) by admin on 19-05-2011

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Transport Inspectors: Provides sufficient guidance to ensure familiarity with approved brake system modifications to stated Toyota Landcruiser models. Approved Inspection Stations (AIS): Provides sufficient guidance to ensure familiarity with approved brake system modifications to stated Toyota Landcruiser models for the issue of a Safety Certificate. Approved Persons: Provides sufficient guidance to ensure familiarity with approved brake system modifications to stated Toyota Landcruiser models so as to ensure consistent certification of vehicles. Vehicle owner: Provides guidance on vehicle compliance requirements. Applies to Installation of Safe Effect Integrated Braking System (SIBS) to Series 70, 75, 78, 79, 80 and 100 Series Toyota Landcruiser motor vehicles. Installation of the Corefleet Offroad Braking (Rear) (COBR) system to Series 78 and 79 Series Toyota Landcruiser motor vehicles. Objective To ensure that braking modifications carried out to the above mentioned Toyota Landcruiser vehicles are to the approved and certified standard. Background Modification approval has been issued to two applicants regarding braking modifications to a range of Toyota Landcruiser vehicles. These vehicles are commonly used in the mining and exploration industry. The standard manufacturer supplied braking systems have been considered of very high maintenance characteristics due to the nature of vehicle operations (for example, underground mining activities, harsh operating conditions). An additional model of vehicle has recently been approved and the list of approved models of vehicles amended. These vehicles are also commonly registered for use on public roads. To ensure the braking systems of these vehicles remain in a serviceable condition to prescribed standards and maintain extended service life, modified braking systems have been developed to address the harsh operating conditions that are experienced in the underground mining and exploration industries

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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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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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Burien Toyota 5SFE Turbo Installation Instructions

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Filed Under (Toyota Manuals) by admin on 17-06-2011

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The following parts are not required, but you may want to have on hand: 9 Fresh Toyota engine coolant 9 New engine oil (preferably synthetic) and new Toyota oil filter 9 New parts to perform a tune-up (spark plugs, distributor cap & rotor). If you do replace your plugs, you may want to use a colder plug to reduce the chance of detonation. 9 New Ignition wires, if your current wires are old 9 New Toyota fuel filter (since you’re replacing the expensive injectors) 9 Shorter oil filter union from Toyota (See step #11) 9 Tie-wraps to secure vacuum lines (See step #27) 9 Shielded audio cable (See step #26.b) 9 For automatic transmissions, consider replacing the transmission fluid with a good synthetic brand and installing an ATF cooler. Burien Toyota 5S-FE Turbocharger Installation Manual Page 2 of 20Kit Contents ¾ Toyomoto exhaust manifold ¾ Garrett TB0344 turbo (Exhaust manifold and turbo charger come attached) ¾ Intermediate pipe (‘S’ shaped pipe with blow off valve attached) ¾ Down pipe (‘J’ shaped pipe with 90° bend and exhaust flange, also has mount for oxygen sensor) ¾ Turbo intake pipe (Usually attached to turbo) ¾ 90º elbow with valve cover breather hose attached (Elbow used to mount air filter) ¾ K&N air filter ¾ HKS Racing Blow-off/Pop-off valve ¾ (4) 360cc Toyota Injectors ¾ Toyota Oil pan ¾ Toyota MAP Sensor ¾ All necessary hoses, clamps, nuts, bolts, fittings, studs, gaskets and such required to install the system.

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2004 Chevrolet Monte Carlo SS SCHEMATIC AND ROUTING DIAGRAMS THEFT DETERRENT SYSTEM SCHEMATICS

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Filed Under (Chevrolet Manuals) by admin on 29-05-2011

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DIAGNOSTIC SYSTEM CHECK – THEFT DETERRENT Test Description The number(s) below refer to the step number(s) on the diagnostic table. 2: Lack of communication may be due to a partial malfunction of the class 2 serial data circuit or due to a total malfunction of the class 2 serial data circuit. The specified procedure will determine the particular condition. 5: The presence of DTCs which begin with “U” indicate some other module is not communicating. The specified procedure will compile all the available information before tests are performed. 6: The listed DTCs are internal module malfunctions and should be corrected before attempting any other diagnostics. 7: The listed DTCs are battery voltage related malfunctions and should be corrected before attempting any other diagnostics. Diagnostic System Check – Theft Deterrent Step Action Yes No 1 Install a scan tool. Does the scan tool power up? Go to Step 2 Go to Scan Tool Does Not Power Up in Data Link Communications 2 1. Turn ON the ignition, with the engine OFF. 2. Attempt to establish communication with the body control module (BCM) and the powertrain control module (PCM). Does the scan tool communicate with the specified modules? Go to Step 3 Go to Scan Tool Does Not Communicate with Class 2 Device in Data Link Communications 3 1. Access the Class 2 Power Mode parameter in the Diagnostic Circuit Check menu on the scan tool. IMPORTANT: Important: The engine may start during the following step. Turn OFF the engine as soon as you have observed the Crank power mode. IMPORTANT: Insure that all ignition switch positions are observed

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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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Honda Civic/ CRX Positive Crankcase Ventilation (PCV) System OPERATION MANUAL

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Filed Under (Honda Manuals) by admin on 28-01-2012

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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.

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