Contents Section: Charging System All sections

Battery System: Diagnosis Dodge Dakota III рестайлинг

Charging System 14 illustrations ~2721 words

INSPECTION

The following information details the recommended inspection procedures for the battery and related components. In addition to the maintenance schedules. Refer to Vehicle Quick Reference/Maintenance Schedules - Description , it is recommended that these procedures be performed any time the battery or related components are removed for vehicle service.

  1. Inspect the battery cable terminal clamps for damage. Replace any battery cable that has a damaged or deformed terminal clamp.
  2. Inspect the battery tray and battery hold down hardware for damage. Replace any damaged parts.
  3. Slide the thermal guard off of the battery case, if equipped. Inspect the battery case for cracks or other damage that could result in electrolyte leaks. Also, check the battery terminal posts for looseness. Batteries with damaged cases or loose terminal posts must be replaced.
  4. Inspect the battery thermal guard for tears, cracks, deformation or other damage. Replace any battery thermal guard that has been damaged.
  5. Inspect the battery built-in test indicator sight glass (if equipped) for an indication of the battery condition. If the battery is discharged, charge as required. See «Electrical - Engine Systems/Battery System/BATTERY - Standard Procedure»(ref-352633-S41126924062010010600000) .

The battery Group Size number, the Cold Cranking Amperage (CCA) rating, and the Reserve Capacity (RC) rating or Ampere-Hours (AH) rating can be found on the original equipment battery label. Be certain that a replacement battery has the correct Group Size number, as well as CCA, and RC or AH ratings that equal or exceed the original equipment specification for the vehicle being serviced. Battery sizes and ratings are discussed in more detail below.

  1. Group Size - The outside dimensions and terminal placement of the battery conform to standards established by the Battery Council International (BCI). Each battery is assigned a BCI Group Size number to help identify a correctly-sized replacement.
  2. Cold Cranking Amperage - The Cold Cranking Amperage (CCA) rating specifies how much current (in amperes) the battery can deliver for thirty seconds at -18° C (0° F). Terminal voltage must not fall below 7.2 volts during or after the thirty second discharge period. The CCA required is generally higher as engine displacement increases, depending also upon the starter current draw requirements.
  3. Reserve Capacity - The Reserve Capacity (RC) rating specifies the time (in minutes) it takes for battery terminal voltage to fall below 10.5 volts, at a discharge rate of 25 amperes. RC is determined with the battery fully-charged at 26.7° C (80° F). This rating estimates how long the battery might last after a charging system failure, under minimum electrical load.
  4. Ampere-Hours - The Ampere-Hours (AH) rating specifies the current (in amperes) that a battery can deliver steadily for twenty hours, with the voltage in the battery not falling below 10.5 volts. This rating is also sometimes identified as the twenty-hour discharge rating.
BATTERY CLASSIFICATIONS AND RATINGS
BCI Group Size ClassificationCold Cranking AmperageReserve CapacityAmpere - HoursLoad Test Amperage
65600120 Minutes66300
65750150 Minutes75375

IGNITION-OFF DRAW TEST

The term Ignition-Off Draw (IOD) identifies a normal condition where power is being drained from the battery with the ignition switch in the Off position. A normal vehicle electrical system will draw from five to thirty-five milliamperes (0.005 to 0.035 ampere) with the ignition switch in the Off position, and all non-ignition controlled circuits in proper working order. Up to thirty-five milliamperes are needed to enable the memory functions for the Powertrain Control Module (PCM), digital clock, electronically tuned radio, and other modules which may vary with the vehicle equipment.

A vehicle that has not been operated for approximately twenty days, may discharge the battery to an inadequate level. When a vehicle will not be used for twenty days or more (stored), remove the IOD fuse from the Junction Block (JB). This will reduce battery discharging.

Excessive IOD can be caused by

  1. Electrical items left on.
  2. Inoperative or improperly adjusted switches.
  3. Inoperative or shorted electronic modules and components.
  4. An internally shorted generator.
  5. Intermittent shorts in the wiring.

If the IOD is over thirty-five milliamperes, the problem must be found and corrected before replacing a battery. In most cases, the battery can be charged and returned to service after the excessive IOD condition has been corrected.

  1. Verify that all electrical accessories are off. Turn off all lamps, remove the ignition key, and close all doors. If the vehicle is equipped with an illuminated entry system or an electronically tuned radio, allow the electronic timer function of these systems to automatically shut off (time out). This may take up to three minutes. See the ELECTRONIC MODULE IGNITION-OFF DRAW CHART for more information. ELECTRONIC MODULE IGNITION-OFF DRAW (IOD) CHART Module Time Out? (If Yes, Interval And Wake-Up Input) IOD IOD After Time Out Radio No 1 to 3 milliamperes N/A Audio Power Amplifier No up to 1 milliampere N/A Central Timer Module (CTM) No 4.75 milliamperes (max.) N/A Powertrain Control Module (PCM) No 0.95 milliampere N/A ElectroMechanical Instrument Cluster (EMIC) No 0.44 milliampere N/A Combination Flasher No 0.08 milliampere N/A
  2. Determine that the underhood lamp is operating properly, then disconnect the lamp wire harness connector or remove the lamp bulb.
  3. Disconnect the battery negative cable.
  4. Set an electronic digital multi-meter to its highest amperage scale. Connect the multi-meter between the disconnected battery negative cable terminal clamp and the battery negative terminal post. Make sure that the doors remain closed so that the illuminated entry system is not activated. The multi-meter amperage reading may remain high for up to three minutes, or may not give any reading at all while set in the highest amperage scale, depending upon the electrical equipment in the vehicle. The multi-meter leads must be securely clamped to the battery negative cable terminal clamp and the battery negative terminal post. If continuity between the battery negative terminal post and the negative cable terminal clamp is lost during any part of the IOD test, the electronic timer function will be activated and all of the tests will have to be repeated.
  5. After about three minutes, the high-amperage IOD reading on the multi-meter should become very low or nonexistent, depending upon the electrical equipment in the vehicle. If the amperage reading remains high, remove and replace each fuse or circuit breaker in the Integrated Power Module (IPM), one at a time until the amperage reading becomes very low, or nonexistent. Refer to «SYSTEM WIRING DIAGRAMS»(ref-313023) for complete IPM and JB fuse, circuit breaker, and circuit identification. This will isolate each circuit and identify the circuit that is the source of the high-amperage IOD. If the amperage reading remains high after removing and replacing each fuse and circuit breaker, disconnect the wire harness from the generator. If the amperage reading now becomes very low or nonexistent, diagnose and repair the Charging System as necessary. After the high-amperage IOD has been corrected, switch the multi-meter to progressively lower amperage scales and, if necessary, repeat the fuse and circuit breaker remove-and-replace process to identify and correct all sources of excessive IOD. It is now safe to select the lowest milliampere scale of the multi-meter to check the low-amperage IOD. CAUTION: Do not open any doors, or turn on any electrical accessories with the lowest milliampere scale selected, or the multi-meter may be damaged.
  6. Observe the multi-meter reading. The low-amperage IOD should not exceed thirty-five milliamperes (0.035 ampere). If the current draw exceeds thirty-five milliamperes, isolate each circuit using the fuse and circuit breaker remove-and-replace process in 5 . The multi-meter reading will drop to within the acceptable limit when the source of the excessive current draw is disconnected. Repair this circuit as required; whether a wiring short, incorrect switch adjustment, or an inoperative component is the cause.

Scheme 4

Scheme 4: OPEN-CIRCUIT VOLTAGE TEST

A battery open-circuit voltage (no load) test will show the approximate state-of-charge of a battery. This test can be used in place of the hydrometer test when a hydrometer is not available, or for maintenance-free batteries with non-removable cell caps.

Before proceeding with this test, completely charge the battery. See Electrical - Engine Systems/Battery System/BATTERY - Standard Procedure .

  1. Before measuring the open-circuit voltage, the surface charge must be removed from the battery. Turn on the headlamps for fifteen seconds, then allow up to five minutes for the battery voltage to stabilize.
  2. Disconnect and isolate both battery cables, negative cable first.
  3. Using a voltmeter connected to the battery posts (see the instructions provided by the manufacturer of the voltmeter), measure the open-circuit voltage.

See the Open-Circuit Voltage Table. This voltage reading will indicate the battery state-of-charge, but will not reveal its cranking capacity. If a battery has an open-circuit voltage reading of 12.4 volts or greater, it may be load tested to reveal its cranking capacity. See Electrical - Engine Systems/Battery System/BATTERY - Standard Procedure .

OPEN CIRCUIT VOLTAGE TABLE
Open Circuit VoltageCharge Percentage
11.7 volts or less0%
12.0 volts25%
12.3 volts50%
12.6 volts75%
12.8 volts or more100%

Scheme 5

Scheme 5: MICRO 420 BATTERY TESTER

Always use the Micro 420 Instruction Manual that was supplied with the tester as a reference. If the Instruction Manual is not available the following procedure can be used

WARNINGAlways wear appropriate eye protection and use extreme caution when working with batteries.

BATTERY TESTING

  1. If testing the battery OUT-OF-VEHICLE, clean the battery terminals with a wire brush before testing. See «Electrical - Engine Systems/Battery System - Cleaning»(ref-352633-S20443403852010010600000) . If the battery is equipped with side post terminals, install and tighten the supplied lead terminal stud adapters. Do not use steel bolts. Failure to properly install the stud adapters, or using stud adapters that are dirty or worn-out may result in false test readings.
  2. If testing the battery IN-THE-VEHICLE, make certain all of the vehicle accessory loads are OFF, including the ignition. The preferred test position is at the battery terminal . If the battery is not accessible, you may test using both the positive and negative jumper posts. Select TESTING AT JUMPER POST when connecting to that location.
  3. Connect the tester to the battery or jumper posts, the red clamp to positive (+) and the black clamp to negative (-). NOTE: Multiple batteries connected in parallel must have the ground cable disconnected to perform a battery test. Failure to disconnect may result in false battery test readings.
  4. Using the ARROW key select in or out of vehicle testing and press ENTER to make a selection.
  5. If not selected, choose the Cold Cranking Amp (CCA) battery rating. Or select the appropriate battery rating for your area (see menu). The tester will then run its self programmed test of the battery and display the results. Refer to the BATTERY TEST RESULTS chart below. CAUTION: If REPLACE BATTERY is the result of the test, this may mean a poor connection between the vehicle's cables and battery exists. After disconnecting the vehicle's battery cables from the battery, retest the battery using the OUT-OF-VEHICLE test before replacing.
  6. While viewing the battery test result, press the CODE button and the tester will prompt you for the last 4 digits of the VIN. Use the UP/DOWN arrow buttons to scroll to the correct character; then press ENTER to select and move to the next digit. Then press the ENTER button to view the SERVICE CODE. Pressing the CODE button a second time will return you to the test results.
BATTERY TEST RESULTS
GOOD BATTERYReturn to service
GOOD - RECHARGEFully charge battery and return to service
CHARGE AND RETESTFully charge battery and retest battery
REPLACE BATTERYReplace the battery and retest complete system
BAD-CELL REPLACEReplace the battery and retest complete system

Scheme 6

Scheme 6: REMOVAL

Note. It may be necessary to use a battery terminal puller (2) if the battery cable terminal clamps are seized on to the battery posts.

Scheme 7

Scheme 7
  1. Turn the ignition switch to the Off position. Be certain that all electrical accessories are turned off.
  2. Loosen the battery negative cable terminal (4) clamp pinch-bolt hex nut.
  3. Disconnect the battery negative cable terminal clamp from the battery negative terminal post. If necessary, use a battery terminal puller to remove the terminal clamp from the battery post.
  4. Loosen the battery positive cable terminal (2) clamp pinch-bolt hex nut.
  5. Disconnect the battery positive cable terminal clamp from the battery positive terminal post. If necessary, use a battery terminal puller to remove the terminal clamp from the battery post.
  6. Remove the battery thermal guard (1).
  7. Remove the battery hold down (4) and bolt (3) from the battery (2). WARNING: WEAR A SUITABLE PAIR OF RUBBER GLOVES WHEN REMOVING A BATTERY BY HAND. SAFETY GLASSES SHOULD ALSO BE WORN. IF THE BATTERY IS CRACKED OR LEAKING, THE ELECTROLYTE CAN BURN THE SKIN AND EYES.
  8. Remove the battery (2) from the vehicle.

VOLTAGE DROP TEST

WARNINGIf the battery shows signs of freezing, leaking, loose posts, or low electrolyte level, do not test, assist-boost, or charge. The battery may arc internally and explode. Personal injury and/or vehicle damage may result.
WARNINGExplosive hydrogen gas forms in and around the battery. Do not smoke, use flame, or create sparks near the battery. Personal injury and/or vehicle damage may result.
WARNINGExplosive hydrogen gas forms in and around the battery. Do not smoke, use flame, or create sparks near the battery. Personal injury and/or vehicle damage may result.
WARNINGIf the battery is equipped with removable cell caps, be certain that each of the cell caps is in place and tight before the battery is returned to service. Personal injury and/or vehicle damage may result from loose or missing cell caps.

The following operation will require a voltmeter accurate to 1/10 (0.10) volt. Before performing this test, be certain that the following procedures are accomplished

  1. The battery is fully-charged and tested. See «Electrical - Engine Systems/Battery System/BATTERY - Standard Procedure»(ref-352633-S41126924062010010600000) .
  2. Fully engage the parking brake.
  3. If the vehicle is equipped with an automatic transmission, place the gearshift selector lever in the Park position. If the vehicle is equipped with a manual transmission, place the gearshift selector lever in the Neutral position and block the clutch pedal in the fully depressed position.
  4. Verify that all lamps and accessories are turned off.
  5. To prevent a gasoline engine from starting, remove the Automatic ShutDown (ASD) relay. The ASD relay is located in the Integrated Power Module (IPM), in the engine compartment. See the fuse and relay layout label on the underside of the IPM cover for ASD relay identification and location.

Scheme 8

Scheme 8

Scheme 9

Scheme 9

Scheme 10

Scheme 10

Scheme 11

Scheme 11
  1. Connect the positive lead of the voltmeter (1) to the battery negative terminal post. Connect the negative lead of the voltmeter (1) to the battery negative cable terminal clamp. Rotate and hold the ignition switch in the Start position. Observe the voltmeter. If voltage is detected, correct the poor connection between the battery negative cable terminal clamp and the battery negative terminal post.
  2. Connect the positive lead of the voltmeter (1) to the battery positive terminal post. Connect the negative lead of the voltmeter to the battery positive cable terminal clamp. Rotate and hold the ignition switch in the Start position. Observe the voltmeter. If voltage is detected, correct the poor connection between the battery positive cable terminal clamp and the battery positive terminal post.
  3. Connect the voltmeter (2) to measure between the battery positive cable terminal clamp (1) and the starter solenoid (3) B(+) terminal stud. Rotate and hold the ignition switch in the Start position. Observe the voltmeter. If the reading is above 0.2 volt, clean and tighten the battery positive cable eyelet terminal connection at the starter solenoid B(+) terminal stud. Repeat the test. If the reading is still above 0.2 volt, replace the faulty battery positive cable.
  4. Connect the voltmeter (1) to measure between the battery (2) negative cable terminal clamp and a good clean ground (3) on the engine block. Rotate and hold the ignition switch in the Start position. Observe the voltmeter. If the reading is above 0.2 volt, clean and tighten the battery negative cable eyelet terminal connection to the engine block. Repeat the test. If the reading is still above 0.2 volt, replace the faulty battery negative cable.

Scheme 12

Scheme 12: NEGATIVE

Scheme 13

Scheme 13
  1. Turn the ignition switch to the Off position. Be certain that all electrical accessories are turned off.
  2. Disconnect and isolate the battery negative cable terminal clamp (4).
  3. Remove the bolt (2) securing the negative cable eyelet (3) to the left front fender.
  4. One at a time, trace the battery cable retaining pushpins (5) , fasteners and routing clips until the cable is free from the vehicle.
  5. Raise the vehicle on a hoist. Refer to «Vehicle Quick Reference/Hoisting - Standard Procedure»(ref-352631-S28956256872010010600000)
  6. Remove the bolt (3) securing the negative cable (1) to the engine (2).
  7. Separate the cable from the engine harness conduit.
  8. Remove the battery negative cable from the vehicle.

Scheme 14

Scheme 14: POSITIVE

Scheme 15

Scheme 15

Scheme 16

Scheme 16

Scheme 17

Scheme 17
  1. Turn the ignition switch to the Off position. Be certain that all electrical accessories are turned off.
  2. Disconnect and isolate the battery negative cable.
  3. Loosen the band clamp (2) on the air inlet tube (1) and remove the bolts (3) from the air intake resonator (4). Remove the resonator from the vehicle.
  4. Disconnect the battery positive cable terminal clamp (8).
  5. Remove the nut (5) securing the cable to the Integrated Power Module (IPM) (7) stud (6).
  6. Lift the terminal cap and remove the nut (3) securing the cable (4) to the alternator.
  7. Disconnect the starter solenoid wire harness connector (1).
  8. Disconnect the battery cable retaining pushpin (5) securing the cable to the left frame rail (4).
  9. Raise the vehicle on a hoist. Refer to «Vehicle Quick Reference/Hoisting - Standard Procedure»(ref-352631-S28956256872010010600000) .
  10. Remove the nut (2) securing the cable (1) to the starter solenoid (3).
  11. Disconnect the battery cable retaining pushpin (6) securing the cable to the engine block.
  12. Lower the vehicle.
  13. Remove the battery positive cable from the vehicle.