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1999 Chrysler LHS V6-3.5L VIN G Battery Replacement Manual

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

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Battery Replacement Notes WARNING: TO PROTECT THE HANDS FROM BATTERY ACID, A SUITABLE PAIR OF HEAVY DUTY RUBBER GLOVES, NOT THE HOUSEHOLD TYPE, SHOULD BE WORN WHEN REMOVING OR SERVICING A BATTERY. SAFETY GLASSES ALSO SHOULD BE WORN . REMOVAL 1. Turn the steering wheel all the way to the right. 2. Verify that the ignition switch and all accessories are OFF. 3. Disconnect and isolate the negative battery cable remote terminal from the remote battery post. 4. Remove air cleaner housing. 5. Remove battery splash shield. 6. Remove two short bolts to battery hold down. 7. Slide battery rearward to disconnect the negative and positive battery terminals from battery. 8. Slide battery toward rear of vehicle and lift out through wheel well opening. 9. Remove battery from vehicle. 1. Tighten clamp nuts to 8.5 N.m (75 in. lbs.) torque.INSTALLATION For installation, reverse the above procedures. Inspect and clean battery and attaching components before installation. WARNING: DO NOT OVER TIGHTEN BATTERY CABLE CLAMPS, DAMAGE TO CLAMPS CAN RESULT .

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2000-2004 Honda Insight IMA System Indicator On With IMA DTC 77 REPAIR PROCEDURE

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Filed Under (Honda Manuals) by admin on 16-01-2012

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PROBLEM The IMA system indicator comes on and IMA DTC 77 (P1447) (battery module deterioration) or DTC 78 (P1449) (battery module deterioration) is set. CORRECTIVE ACTION Replace the battery module. If needed, replace the motor control module (MCM), the battery condition monitor (BCM), or both INSPECTION PROCEDURE 1. Turn the ignition switch to LOCK (0). 2. Remove the cargo floor mat (see page 20-44 of the 2000-04 Insight Service Manual). (In ISIS, use the keyword FLOOR MAT , and select Interior Trim Removal/Installation – Cargo Area from the list.) 3. Remove the battery module switch cover (two bolts), then remove the locking cover from the switch. 4. Flip the battery module switch to OFF . Reinstall the locking cover. 5. Wait at least 5 minutes to let the capacitors in the system discharge. 6. Remove the right trunk shelf support (five clips and two bolts). 7. Remove the six mid-frame cover bolts. Remove the intelligent power unit (IPU) lid (17 bolts). 8. Measure the voltage at the junction board terminals. There should be 30 V or less . If you read more than 30 V , there is a problem in the circuit; do the DTC troubleshooting first. SWITCH COVER LOCKING COVER BOLTS LOCKING COVER BATTERY MODULE SWITCH IPU LID RIGHT TRUNK SHELF SUPPORT BOLTS (17) CLIPS CLIPS BOLTS ON JUNCTION BOARD TERMINALS REPAIR PROCEDURE 1. Remove the battery module from the vehicle (see page 12-113 of the service manual). (In ISIS, use the keyword BAT MOD , and select Battery Module Removal/Installation from the list.) 2. Remove the lifting tool from the battery module. 3. Remove the mounting bolts for the MCM and the BCM (eight total). Unplug the electrical connectors (five for the MCM and three for the BCM), then remove the modules. 4. Install the MCM and the BCM in the new battery module. Use the original MCM and BCM if no replacement was needed; otherwise, use the appropriate replacement parts. Torque the mounting bolts to 9.8 N·m (7.2 lb-ft) . 5. Install the lifting tool on the battery module. 6. With someone to help you, carefully lift the battery module into the vehicle, and set it down into position. Remove the lifting tool. 7. Plug in the connectors, and install the Y condenser harness. Then install the mounting bolts. Torque the bolts to 24 N·m (17 lb-ft) . 8. Install the battery module air duct. Torque the bolt to 9.8 N·m (7.2 lb-ft) . 9. Connect the high voltage cables to the junction board. Torque the bolts to 9.8 N·m (7.2 lb-ft) . 10. Install the front and rear IPU braces and the mid- frame. Torque the bolts to 9.8 N·m (7.2 lb-ft) . Model Year MCM Part Number Replacement Part Number M/T Models 2000-01 1K000-PHM-000 thru 1K000-PHM-050 1K000-PHM-060 (H/C 7071525)

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1997 Dodge Grand Caravan POWERTRAIN CONTROL MODULE REMOVAL AND INSTALLATION MANUAL

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Filed Under (Dodge Manuals) by admin on 06-02-2012

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POWERTRAIN CONTROL MODULE (PCM) Removal & Installation 1. The PCM is located between driver’s side front fender and power distribution center, near battery. See Fig. 1 . Disconnect negative battery cable and then positive battery cable from battery. 2. Remove bolts on side of power distribution center that secure power distribution center to mounting bracket. Remove heat shield from outside of battery. Remove battery. 3. Rotate power distribution center toward the engine to disengage power distribution center from rear mounting bracket. Pull power distribution center toward rear of vehicle to disengage power distribution center from front mounting bracket. 4. Allow power distribution center to lay aside for access to PCM. Remove electrical connectors from PCM. Electrical connectors may be removed by squeezing tabs on electrical connector together and pulling electrical connector from PCM. Remove bolts and PCM. To install, reverse removal procedure. Vehicles equipped with engine or transmission computers may require a relearn procedure after the vehicle battery is disconnected. Vehicle computers memorize and store vehicle operation patterns for optimum driveability and performance. When the vehicle battery is disconnected, this memory is lost. Default data is used until new data from each key start is stored. As the computer restores its memory from each new key start, driveability is restored. Driveability problems may occur during the relearn stage. Depending on the vehicle and how it is equipped, the following driveability problems may exist: z Rough or unstable idle. z Hesitation or stumble. z Rich or lean running. z Poor fuel mileage. z Harsh or poor transmission shift quality. To accelerate relearn process after battery removal and installation, vehicle should be road tested in the following manner: z Vehicle at normal operating temperature (cooling fan cycles). z Accelerate at normal throttle position (20-50%). z Cruise at light to medium throttle. z Decelerate to a stop, downshifting and using brakes normally. Manufacturers identify specific relearn procedures. See RELEARN PROCEDURES. Always complete the procedure before returning the vehicle to the owner. RELEARN PROCEDURES Theft Alarm Relearn Procedure 1. Theft alarm relearn is necessary whenever battery is disconnected or dead battery is boosted. If battery is connected or boosted without conducting relearn procedure, alarm system will enter power-up mode and vehicle will not start. 2. Before reconnecting battery or connecting booster, insert door key into driver side door lock

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Ford Sierra Service and Repair Manual Download

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Filed Under (Ford Manuals) by admin on 20-05-2012

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Puddles on the garage floor or drive, or obvious wetness under the bonnet or underneath the car, suggest a leak that needs investigating. It can sometimes be difficult to decide where the leak is coming from, especially if the engine bay is very dirty already. Leaking oil or fluid can also be blown rearwards by the passage of air under the car, giving a false impression of where the problem lies. Warning: Most automotive oils and fluids are poisonous. Wash them off skin, and change out of contaminated clothing, without delay. Identifying leaks The smell of a fluid leaking from the car may provide a clue to what’s leaking. Some fluids are distinctively coloured. It may help to clean the car carefully and to park it over some clean paper overnight as an aid to locating the source of the leak. Remember that some leaks may only occur while the engine is running. Sump oil Gearbox oil Brake fluid Power steering fluid Oil from filter Antifreeze Engine oil may leak from the drain plug… …or from the base of the oil filter. Leaking antifreeze often leaves a crystalline deposit like this. Gearbox oil can leak from the seals at the inboard ends of the driveshafts. A leak occurring at a wheel is almost certainly brake fluid. Power steering fluid may leak from the pipe connectors on the steering rack. 0•9 Roadside repairs When jump-starting a car using a booster battery, observe the following precautions: ? Before connecting the booster battery, make sure that the ignition is switched off. ? Ensure that all electrical equipment (lights, heater, wipers, etc) is switched off. ? Make sure that the booster battery is the same voltage as the discharged one in the vehicle. ? If the battery is being jump-started from the battery in another vehicle, the two vehcles MUST NOT TOUCH each other. ? Make sure that the transmission is in neutral (or PARK, in the case of automatic transmission). Jump starting will get you out of trouble, but you must correct whatever made the battery go flat in the first place. There are three possibilities: 1 The battery has been drained by repeated attempts to start, or by leaving the lights on. 2 The charging system is not working properly (alternator drivebelt slack or broken, alternator wiring fault or alternator itself faulty). 3 The battery itself is at fault (electrolyte low, or battery worn out). Connect one end of the red jump lead to the positive (+) terminal of the flat battery Connect the other end of the red lead to the positive (+) terminal of the booster battery. Connect one end of the black jump lead to the negative (-) terminal of the booster battery Connect the other end of the black jump lead to a bolt or bracket on the engine block, well away from the battery, on the vehicle to be started. 1 2 3 4 Make sure that the jump leads will not come into contact with the fan, drive- belts or other moving parts of the engine. 5 Start the engine using the booster battery, then with the engine running at idle speed, disconnect the jump leads in the reverse order of connection

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Toyota Landcruiser / Scout Weatherproof Harness Wire Harness Installation Instructions

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Filed Under (Toyota Manuals) by admin on 05-03-2012

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Grounding the Automobile A perfectly and beautifully wired automobile will nevertheless have bugs and problems if everything is not properly grounded. Do not go to the careful effort of installing a quality wire harness only to neglect proper grounding. Note: The Painless Wire Harness Kit includes no ground wire except the black wire from the two headlamp connectors. You must supply ground wire (14-16 gauge) for all circuits. 6.3.1 Connect a Ground Strap or Cable (2-gauge minimum) from the Negative Battery terminal to the automobile chassis (frame). 6.3.2 Connect a Ground Strap from the Engine to the chassis (even a 10-gauge wire is too small) . DO NOT RELY UPON THE MOTOR MOUNTS TO MAKE THIS CONNECTION . 6.3.3 Connect a Ground Strap from the Engine to the Body. 6.3.4 If you have a fiberglass body you should install a terminal block to ground all your Gauges and Accessories. Ground the Terminal Block with at least a 12-gauge wire to the chassis. 6.4 Terminal Installation and Making Connections Note: In the following steps you will be making the circuit connections. Before you start, you should carefully read Sections 7.0 through 10.0 , as appropriate, and continually refer to Section 10.0 , DOUBLE- CHECKING your routing and length calculations before cutting any wires and making connections. Give special attention to Turn Signal and Ignition Switch connections. These can be somewhat confusing. 6.4.1 Have all needed tools and connectors handy. 6.4.2 Select the correct size terminal for the wire and stud application. 6.4.3 Determine the correct wire length and cut the wire. Remember to allow enough slack in the harness and wires at places where movement could possibly occur, such as automobile body to frame, frame to engine, etc. Double-check your calculations. 6.4.4 Strip insulation away from wire. Strip only enough necessary for the type of terminal lug you are using. Note: In the following step, make sure that the terminal is crimped with the proper die in the crimping tool. An improper crimp will NOT make a good connection. 6.4.5 Crimp the terminal onto the wire. CAUTION: DO NOT OVER-CRIMP! 6.4.6 Connecting the harness throughout the groups is a redundant process. Make sure that each wire is FIRST properly routed and THEN attach. DO NOT ATTACH FIRST THEN ROUTE AFTERWARD. 6.4.7 When all wires are attached, tighten the mounts and ties to secure harness permanently. 6.5 Testing The System 6.5.1 Use a small (10 amp or less) battery charger to power up the vehicle for circuit testing. If there is a problem anywhere, the battery charger’s low amperage and internal circuit breaker will provide circuit protection. CAUTION: IF YOU HAVE NOT YET DISCONNECTED THE BATTERY FROM THE AUTOMOBILE, DO SO NOW! DO NOT CONNECT THE BATTERY CHARGER WITH THE BATTERY CONNECTED. Connect the battery charger’s NEGATIVE output to the automobile chassis or engine block and its POSITIVE output to the automobile’s positive battery terminal. 6.5.2 INDIVIDUALLY turn on each light, ignition, wiper circuit, etc. and check for proper operation. Note: The turn signals will not flash properly if you do not have both the front and rear bulbs installed and connected. 6.5.3 When all circuits check out THEN attach the battery cable to the battery for vehicle operation

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1998 Acura 3.5RL FUEL PUMP RELAY (3.5RL) INSTALLATION MANUAL

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Filed Under (Acura Manuals) by admin on 13-06-2011

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Fuel pump relay is located in the front of the trunk. Turn ignition switch to START position. If engine starts, go to next step. If engine does not start, go to FUEL PUMP RESISTOR (3.5RL) . 2. Turn engine off and ignition on. Measure voltage between ground and PCM 12-pin connector terminal No. 4 (Green wire). If battery voltage is present, go to next step. If battery voltage is not present, go to step 4). 3. Start engine and run at 3000 RPM with no loads and transmission in Park or Neutral, until radiator fan comes on. Allow engine to idle for at least one minute. Turn engine off. Disconnect vacuum hose No. 21 from vacuum manifold. Apply 8-12 in. Hg (27-40 kPa) vacuum to Manifold Absolute Pressure (MAP) sensor. Start engine and run at 6500 RPM with no loads and transmission in Park or Neutral. Measure voltage between ground and PCM 12-pin connector terminal No. 4 (Green wire). If less than one volt is present, fuel pump relay circuit is okay. If one volt or more is present, substitute a known good PCM, then recheck. If symptom or indication goes away, replace original PCM. 4. Turn ignition off. Disconnect PCM 26-pin and 12-pin connectors. Disconnect fuel pump relay 4-pin connector. Using a fused jumper wire, connect fuel pump relay connector terminals No. 2 (Red/White wire) and No. 4 (Green wire). Turn ignition on. Measure voltage between ground and PCM 12-pin connector terminal No. 4 (Green wire). If battery voltage is not present, go to next step. If battery voltage is present, replace fuel pump relay. 5. Remove jumper wire. Measure voltage between ground and fuel pump relay 4-pin connector terminal No. 2 (Red/White wire). If battery voltage is present, repair open or short in Green wire between PCM and fuel pump relay. If battery voltage is not present, repair open in Red/White wire between fuel pump relay and FUEL PUMP fuse No. 22 (20-amp), located in underdash fuse/relay box. FUEL PUMP RESISTOR (3.5RL) 1. Fuel pump resistor is located in the left corner of the trunk. Disconnect fuel pump resistor 2-pin connector. Turn ignition on and measure voltage between ground and fuel pump resistor connector terminal No. 2 (Yellow wire) within 2 seconds. If battery voltage is present for 2 seconds after ignition is turned on, go to next step. If battery voltage is not present as specified, check PGM-FI relay. See PGM- FI MAIN RELAY . 2. Turn ignition off. Using a jumper wire, connect fuel pump resistor connector terminals No. 1 (Black/Yellow wire) and No. 2 (Yellow wire). Turn ignition switch to START position. If engine does not start, go to next step. If engine starts, replace fuel pump resistor. 3. Turn ignition off. Disconnect fuel unit sub-harness Gray, 10-pin connector located in front of trunk, above fuel pump access panel, next to Gray, 20-pin connector. Turn ignition on and measure voltage between ground and sub-harness connector terminal No. 7 (Black/Yellow wire) within 2 seconds. If battery voltage is present for 2 seconds after ignition is turned on, check fuel pump. If battery voltage is present as specified, repair open in Black/Yellow wire between fuel pump resistor and fuel pump

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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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Battery Electrical Drain/ Parasitic Load Test Repair Manual

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Filed Under (More Manuals) by admin on 29-05-2012

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1. Disconnect the battery negative cable 2. Install the male end of the J 38758 to the negative battery terminal. 3. Turn OFF the test switch. 4. Install the negative battery cable to the female end of the test switch. 5. Install the Scan Tool (or equivalent) or wait for 20 minutes. 6. Turn ON the test switch. 7. Road test the vehicle while activating all accessories, including the radio and the air conditioning. 8. Lower the door glass, then exit the vehicle. Do not move the door handle after closing the door. 9. Open the hood. Important The power down timer will reset to 20 minutes if any wake up inputs are received by a Class 2 device (after the scan tool has put all Class 2 devices to sleep). 10. Put all of the Class 2 devices into the sleep mode. 11. Turn OFF the ignition switch. Remove the key. Important From this point on, electrical continuity must be maintained in the ground circuit of the battery through the Test Switch J 38758 in the ON position or through the ammeter J 39200 . 12. Components such as PCM, VCM, Automatic Air Conditioning, and the Truck Body Control Module have timers that draw several amps of current while they cycle down. This can give a false parasitic drain reading. Wait 20 minutes for these components to power down before continuing this test (or use the scan tool to put all Class 2 devices to sleep). 13. Connect a jumper wire with a 10 A fuse J 36169-A to the terminals of the test switch. 14. Turn the test switch to the OFF position. 15. Wait ten seconds. If the fuse does not blow, the current is less than 10 A. The ammeter can be used safely. 16. Before the fused jumper wire is removed, turn the test switch to the ON position. Important If an ammeter other than the J 39200 is used, ensure that the vehicle does not have a high current drain that would damage the ammeter when connected to the circuit. 17. Perform the following procedure in order to detect a high current drain: A. Set the ammeter J 39200 to the 10 A scale. B. Connect the ammeter to the test switch terminals. C. Turn OFF the test switch. This allows the current to flow through the ammeter. D. Wait one minute, then inspect the current reading. Ñ When there is a current reading of 2 A or less, turn ON the test switch, this maintains continuity in the electrical system. Ñ Then, switch the meter down to the 2 A scale, for a more accurate reading, when the test switch is reopened. E. Open the test switch. F. Take the reading in milliamps. G. Note the battery reserve capacity. Refer to Battery Usage . Ñ Divide this number by 4. Example: 90/4 = 22.5 Ñ Compare this to the ammeter reading. Ñ The current drain in milliamps should not exceed this number. Ñ Example: if a battery has a reserve capacity of 90 minutes, the current drain should not exceed 22 milliamps. H. When the current draw is too high, remove the electrical system fuses one at a time until the draw returns to a value less than or equal to specifications. Ñ Start with the fuses that are hot all the time. Ñ To remove the fuse, you must first open the door, which causes a high enough current flow to damage the ammeter. Ñ Protect the ammeter, without disturbing the electrical continuity, by turning ON the test tool before opening the door. Ñ Remove the courtesy lamp fuse. Ñ Note the ammeter reading. Ñ If the parasitic load is still excessive, start removing the remaining fuses one at a time. Ñ Keep the courtesy lamp fuse out during diagnosis, so the door can remain open. Ñ Perform Steps 11 through 13 each time a fuse is removed. I. Removing the PCM or VCM fuse should cause a drop of less than 10 milliamps. A drop greater than 10 milliamps indicates a possible short to ground. J. Check the orange wires along with the components connected to the orange wires. No drop in the milliampere reading indicates the PCM or VCM is not drawing current. K. Repeat the parasitic current drain test procedure after any repair has been completed. L. When the cause of the excessive current draw has been located and repaired, remove the ammeter and the parasitic draw test switch.

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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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999 Toyota Echo 2-door hatch conversion to electric drive, Installation Manual

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Filed Under (Toyota Manuals) by admin on 24-03-2012

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Compliance With Design Rules The vehicle remains compliant with all the Australian Design Rules that the vehicle was designed and built to meet in 1999. 2. Battery Installation. 2.1(a) Battery Restraint – Engine compartment batteries; There are 5 x 24kg lead acid batteries in the engine compartment, which are mounted on a galvanised iron frame. Each battery is held to the frame with 2 polypropylene straps rated at 280kg each, which is equivalent to a crash deceleration rating of 23G. The galvanised iron frame is anchored to the chassis with 5 x M10 and 4 x M8 grade 8.8 high tensile bolts. The manufacturer of these bolts specifies a single shear rating (across the threads) of 26kN (M10) and 16kN (M8). This equates to 2,650kg and 1,630kg respectively at 1G. This gives a total anchoring capacity of 19,770kg. The 20G mass of the batteries and frame is ((5 x 24kg) + 15kg) x 20 = 2700kg. Therefore the 20G requirement is surpassed by a multiple of 7. 2.1(b) Battery Restraint – Rear battery rack; Similarly there are another 5 x 24kg lead acid batteries in a galvanised iron frame at the rear of the vehicle. A 12mm MS rod anchored in 4 positions holds down the batteries in this rack. The frame is anchored to the two rear chassis cross members with 8 x M10 grade 8.8 high tensile bolts. Total shear strength = 21,200kg. 20G mass of batteries and frame = 2700kg. Therefore the 20G rating is also surpassed by a multiple of 7. 2.2 Both battery racks are mounted externally to the body shell with no permanent openings between the batteries and the interior of the vehicle. 2.3 Both battery racks are made from 4mm galvanised steel. The rear rack has 1.5mm aluminium sheeting on all sides (to protect the batteries from debris). 2.4 Not applicable. 2.5 Not applicable. 2.6 Not applicable.

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