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The PCM sends a 5 volt bias to the oxygen sensor
every 1.6 seconds. The PCM keeps it biased for 35
ms each time. As the sensor cools down, the resis-
tance increases and the PCM reads the increase in
voltage. Once voltage has increased to a predeter-
mined amount, higher than when the test started,
the oxygen sensor is cool enough to test heater oper-
ation.
When the oxygen sensor is cool enough, the PCM
energizes the ASD relay. Voltage to the O2 sensor
begins to increase the temperature. As the sensor
temperature
increases,
the
internal
resistance
decreases. The PCM continues biasing the 5 volt sig-
nal to the sensor. Each time the signal is biased, the
PCM reads a voltage decrease. When the PCM
detects a voltage decrease of a predetermined value
for several biased pulses, the test passes.
The heater elements are tested each time the
engine is turned OFF if all the enabling conditions
are met. If the monitor fails, the PCM stores a
maturing fault and a Freeze Frame is entered. If two
consecutive tests fail, a DTC is stored. Because the
ignition is OFF, the MIL is illuminated at the begin-
ning of the next key cycle.
Enabling Conditions—The following conditions
must be met for the PCM to run the oxygen sensor
heater test:
•
Engine run time of at least 3 minutes
•
Engine run time at a predetermind speed and
throttle opening.
•
Key OFF power down
•
Battery voltage of at least 10 volts
•
Sufficient Oxygen Sensor cool down
Pending Conditions—There are not conditions or
situations that prompt conflict or suspension of test-
ing. The oxygen sensor heater test is not run pending
resolution of MIL illumination due to oxygen sensor
failure.
Suspend—There are no conditions which exist for
suspending the Heater Monitor.
CATALYST MONITOR
To comply with clean air regulations, vehicles are
equipped with catalytic converters. These converters
reduce the emission of hydrocarbons, oxides of nitro-
gen and carbon monoxide.
Normal vehicle miles or engine misfire can cause a
catalyst to decay. A meltdown of the ceramic core can
cause a reduction of the exhaust passage. This can
increase vehicle emissions and deteriorate engine
performance, driveability and fuel economy.
The catalyst monitor uses dual oxygen sensors
(O2S’s) to monitor the efficiency of the converter. The
dual O2S strategy is based on the fact that as a cat-
alyst deteriorates, its oxygen storage capacity and its
efficiency are both reduced. By monitoring the oxy-
gen storage capacity of a catalyst, its efficiency can
be indirectly calculated. The upstream O2S is used to
detect the amount of oxygen in the exhaust gas
before the gas enters the catalytic converter. The
PCM calculates the A/F mixture from the output of
the O2S. A low voltage indicates high oxygen content
(lean mixture). A high voltage indicates a low content
of oxygen (rich mixture).
When the upstream O2S detects a lean condition,
there is an abundance of oxygen in the exhaust gas.
A functioning converter would store this oxygen so it
can use it for the oxidation of HC and CO. As the
converter absorbs the oxygen, there will be a lack of
oxygen downstream of the converter. The output of
the downstream O2S will indicate limited activity in
this condition.
As the converter loses the ability to store oxygen,
the condition can be detected from the behavior of
the downstream O2S. When the efficiency drops, no
chemical reaction takes place. This means the con-
centration of oxygen will be the same downstream as
upstream. The output voltage of the downstream
O2S copies the voltage of the upstream sensor. The
only difference is a time lag (seen by the PCM)
between the switching of the O2S’s.
To monitor the system, the number of lean-to-rich
switches of upstream and downstream O2S’s is
counted.
The
ratio
of
downstream
switches
to
upstream switches is used to determine whether the
catalyst is operating properly. An effective catalyst
will have fewer downstream switches than it has
upstream switches i.e., a ratio closer to zero. For a
totally ineffective catalyst, this ratio will be one-to-
one, indicating that no oxidation occurs in the device.
The system must be monitored so that when cata-
lyst efficiency deteriorates and exhaust emissions
increase to over the legal limit, the MIL (check
engine lamp) will be illuminated.
Monitor Operation—To monitor catalyst effi-
ciency, the PCM expands the rich and lean switch
points of the heated oxygen sensor. With extended
switch points, the air/fuel mixture runs richer and
leaner to overburden the catalytic converter. Once
the test is started, the air/fuel mixture runs rich and
lean and the O2 switches are counted. A switch is
counted when an oxygen sensor signal goes from
below the lean threshold to above the rich threshold.
The number of Rear O2 sensor switches is divided by
the number of Front O2 sensor switches to determine
the switching ratio.
The test runs for 20 seconds. As catalyst efficiency
deteriorated over the life of the vehicle, the switch
rate at the downstream sensor approaches that of the
upstream sensor. If at any point during the test
period the switch ratio reaches a predetermined
value, a counter is incremented by one. The monitor
25 - 4
EMISSIONS CONTROL
RS
EMISSIONS CONTROL (Continued)
Summary of Contents for Dodge Caravan 2002
Page 4: ...Fig 2 FASTENER IDENTIFICATION RS INTRODUCTION 3 FASTENER IDENTIFICATION Continued...
Page 5: ...Fig 3 FASTENER STRENGTH 4 INTRODUCTION RS FASTENER IDENTIFICATION Continued...
Page 8: ...Fig 5 METRIC CONVERSION CHART RS INTRODUCTION 7 METRIC SYSTEM Continued...
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Page 869: ...2002 RS Service Manual Publication No 81 370 02062 TSB 26 12 01 December 2001...
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Page 873: ...2002 RS Service Manual Publication No 81 370 02062 TSB 26 12 01 December 2001...
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Page 1444: ...Fig 6 CROSSMEMBER DIMENSIONS RS FRAME BUMPERS 13 5 FRAME Continued...
Page 1445: ...Fig 7 ENGINE BOX TOP VIEW 13 6 FRAME BUMPERS RS FRAME Continued...
Page 1446: ...Fig 8 ENGINE COMPARTMENT AND FRAME RAIL SIDE VIEW RS FRAME BUMPERS 13 7 FRAME Continued...
Page 1447: ...Fig 9 FULL VEHICLE BOTTOM VIEW 13 8 FRAME BUMPERS RS FRAME Continued...
Page 1487: ......
Page 1514: ...Fig 2 Steering Column And Components Typical RS COLUMN 19 11 COLUMN Continued...
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Page 1559: ...Power Transfer Unit Components 21 2 POWER TRANSFER UNIT RS POWER TRANSFER UNIT Continued...
Page 1623: ...Drive Third Not Locked Up 21 66 31TH AUTOMATIC TRANSAXLE RS 31TH AUTOMATIC TRANSAXLE Continued...
Page 1624: ...Drive Third Lock Up RS 31TH AUTOMATIC TRANSAXLE 21 67 31TH AUTOMATIC TRANSAXLE Continued...
Page 1628: ...Reverse RS 31TH AUTOMATIC TRANSAXLE 21 71 31TH AUTOMATIC TRANSAXLE Continued...
Page 1774: ...Neutral Speed Over 8 MPH RS 41TE AUTOMATIC TRANSAXLE 21 217 41TE AUTOMATIC TRANSAXLE Continued...
Page 1775: ...Reverse 21 218 41TE AUTOMATIC TRANSAXLE RS 41TE AUTOMATIC TRANSAXLE Continued...
Page 1777: ...First Gear 21 220 41TE AUTOMATIC TRANSAXLE RS 41TE AUTOMATIC TRANSAXLE Continued...
Page 1778: ...Second Gear RS 41TE AUTOMATIC TRANSAXLE 21 221 41TE AUTOMATIC TRANSAXLE Continued...
Page 1779: ...Second Gear EMCC 21 222 41TE AUTOMATIC TRANSAXLE RS 41TE AUTOMATIC TRANSAXLE Continued...
Page 1780: ...Direct Gear RS 41TE AUTOMATIC TRANSAXLE 21 223 41TE AUTOMATIC TRANSAXLE Continued...
Page 1781: ...Direct Gear CC On 21 224 41TE AUTOMATIC TRANSAXLE RS 41TE AUTOMATIC TRANSAXLE Continued...
Page 1782: ...Overdrive RS 41TE AUTOMATIC TRANSAXLE 21 225 41TE AUTOMATIC TRANSAXLE Continued...
Page 1783: ...Overdrive EMCC 21 226 41TE AUTOMATIC TRANSAXLE RS 41TE AUTOMATIC TRANSAXLE Continued...
Page 1784: ...Overdrive CC On RS 41TE AUTOMATIC TRANSAXLE 21 227 41TE AUTOMATIC TRANSAXLE Continued...
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Page 1976: ...VEHICLE LEAD DIAGNOSIS AND CORRECTION CHART RS TIRES WHEELS 22 15 TIRES Continued...
Page 2099: ...Fig 1 GAP FLUSH MEASUREMENTS 23 116 BODY STRUCTURE RS GAP AND FLUSH Continued...
Page 2102: ...Fig 3 LIFTGATE OPENING RS BODY STRUCTURE 23 119 OPENING DIMENSIONS Continued...
Page 2103: ...Fig 4 BODY SIDE OPENINGS 23 120 BODY STRUCTURE RS OPENING DIMENSIONS Continued...
Page 2143: ...Fig 64 STRUT TOWER AND REINFORCEMENTS RIGHT 23 160 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2145: ...Fig 66 STRUT TOWER AND REINFORCEMENTS LEFT 23 162 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2147: ...Fig 68 FLOOR PAN REINFORCEMENTS SIDE RAILS 23 164 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2148: ...Fig 69 REAR SUSPENSION BRACKETS RS BODY STRUCTURE 23 165 WELD LOCATIONS Continued...
Page 2149: ...Fig 70 FLOOR PAN CROSS MEMBERS 23 166 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2154: ...Fig 75 FRONT SEAT CROSS MEMBER RS BODY STRUCTURE 23 171 WELD LOCATIONS Continued...
Page 2155: ...Fig 76 FLOOR PAN SIDE RAIL REINFORCEMENT 23 172 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2156: ...Fig 77 SILL BULKHEAD REINFORCEMENTS RS BODY STRUCTURE 23 173 WELD LOCATIONS Continued...
Page 2157: ...Fig 78 FLOOR PAN CROSS MEMBER REINFORCEMENTS 23 174 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2158: ...Fig 79 FRONT SEAT CROSS MEMBER RS BODY STRUCTURE 23 175 WELD LOCATIONS Continued...
Page 2163: ...Fig 84 ENGINE MOUNTING PLATE AND TOW BRACKET 23 180 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2164: ...Fig 85 HEADLAMP MOUNTING PLATE RS BODY STRUCTURE 23 181 WELD LOCATIONS Continued...
Page 2165: ...Fig 86 LOWER RADIATOR CROSS MEMBER BRACKETS 23 182 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2166: ...Fig 87 CROSS MEMBER EXTENSIONS RS BODY STRUCTURE 23 183 WELD LOCATIONS Continued...
Page 2181: ...Fig 106 DASH PANEL REINFORCEMENT 23 198 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2182: ...Fig 107 LOWER COWL PLENUM RS BODY STRUCTURE 23 199 WELD LOCATIONS Continued...
Page 2183: ...Fig 108 UPPER COWL PLENUM SUPPORT 23 200 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2184: ...Fig 109 UPPER DASH PANEL RS BODY STRUCTURE 23 201 WELD LOCATIONS Continued...
Page 2187: ...Fig 114 FRONT SIDE RAILS TO LOWER DASH PANEL 23 204 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2189: ...Fig 116 FRONT HINGE TAPPING PLATE 23 206 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2190: ...Fig 117 FRONT HINGE PILLAR RS BODY STRUCTURE 23 207 WELD LOCATIONS Continued...
Page 2191: ...Fig 118 INNER WINDSHIELD FRAME 23 208 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2192: ...Fig 119 WINDSHIELD FRAME RS BODY STRUCTURE 23 209 WELD LOCATIONS Continued...
Page 2193: ...Fig 120 FENDER BRACKET 23 210 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2194: ...Fig 121 INNER B PILLAR RS BODY STRUCTURE 23 211 WELD LOCATIONS Continued...
Page 2217: ...Fig 148 LOWER SLIDING DOOR TRACK 23 234 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2219: ...Fig 151 FRONT FENDER SHIELD BEAM 23 236 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2221: ...Fig 153 HINGE PILLAR REINFORCEMENT 23 238 BODY STRUCTURE RS WELD LOCATIONS Continued...
Page 2222: ...Fig 154 INNER SIDE SILL LONG WHEEL BASE ONLY RS BODY STRUCTURE 23 239 WELD LOCATIONS Continued...
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Page 2297: ...Fig 4 Blower Motor Noise Vibration Diagnosis 24 54 DISTRIBUTION REAR RS BLOWER MOTOR Continued...
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