
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, after the 2nd failure.
Enabling Conditions—The following conditions
must be met for the PCM to run the oxygen sensor
heater test:
•
Engine run time of at least 5.1 minutes
•
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 high oxygen
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
is enabled to run another test during that trip. When
the test fails three times, the counter increments to
three, a malfunction is entered, and a Freeze Frame
is stored. When the counter increments to three dur-
ing the next trip, the code is matured and the MIL is
illuminated. If the test passes the first, no further
testing is conducted during that trip.
The MIL is extinguished after three consecutive
good trips. The good trip criteria for the catalyst
monitor is more stringent than the failure criteria. In
order to pass the test and increment one good trip,
the downstream sensor switch rate must be less than
80% of the upstream rate (60% for manual transmis-
sions). The failure percentages are 90% and 70%
respectively.
Enabling Conditions—The following conditions
must typically be met before the PCM runs the cat-
alyst monitor. Specific times for each parameter may
be different from engine to engine.
25 - 4
EMISSIONS CONTROL
PT
EMISSIONS CONTROL (Continued)
Содержание PT Cruiser
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Страница 5: ...Fig 3 FASTENER IDENTIFICATION PT INTRODUCTION 3 FASTENER IDENTIFICATION Continued...
Страница 6: ...Fig 4 FASTENER STRENGTH 4 INTRODUCTION PT FASTENER IDENTIFICATION Continued...
Страница 9: ...Fig 6 METRIC CONVERSION CHART PT INTRODUCTION 7 METRIC SYSTEM Continued...
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Страница 548: ...Fig 3 WIRING DIAGRAM SYMBOLS 8W 01 4 8W 01 WIRING DIAGRAM INFORMATION PT WIRING DIAGRAM INFORMATION Continued...
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Страница 985: ...Fig 20 DIESEL ENGINE PT 8W 91 CONNECTOR GROUND SPLICE LOCATION 8W 91 29 CONNECTOR GROUND SPLICE LOCATION Continued...
Страница 987: ...Fig 22 2 0L 2 4L ENGINE PT 8W 91 CONNECTOR GROUND SPLICE LOCATION 8W 91 31 CONNECTOR GROUND SPLICE LOCATION Continued...
Страница 1000: ...Fig 35 INSTRUMENT PANEL JUMPER 8W 91 44 8W 91 CONNECTOR GROUND SPLICE LOCATION PT CONNECTOR GROUND SPLICE LOCATION Continued...
Страница 1001: ...Fig 36 CENTER CONSOLE PT 8W 91 CONNECTOR GROUND SPLICE LOCATION 8W 91 45 CONNECTOR GROUND SPLICE LOCATION Continued...
Страница 1002: ...Fig 37 SUNROOF 8W 91 46 8W 91 CONNECTOR GROUND SPLICE LOCATION PT CONNECTOR GROUND SPLICE LOCATION Continued...
Страница 1003: ...Fig 38 FRONT DOOR EXCEPT EXPORT PT 8W 91 CONNECTOR GROUND SPLICE LOCATION 8W 91 47 CONNECTOR GROUND SPLICE LOCATION Continued...
Страница 1004: ...Fig 39 FRONT DOOR EXPORT 8W 91 48 8W 91 CONNECTOR GROUND SPLICE LOCATION PT CONNECTOR GROUND SPLICE LOCATION Continued...
Страница 1005: ...Fig 40 REAR DOOR PT 8W 91 CONNECTOR GROUND SPLICE LOCATION 8W 91 49 CONNECTOR GROUND SPLICE LOCATION Continued...
Страница 1006: ...Fig 41 RIGHT FRONT BODY 8W 91 50 8W 91 CONNECTOR GROUND SPLICE LOCATION PT CONNECTOR GROUND SPLICE LOCATION Continued...
Страница 1007: ...Fig 42 RIGHT REAR BODY PT 8W 91 CONNECTOR GROUND SPLICE LOCATION 8W 91 51 CONNECTOR GROUND SPLICE LOCATION Continued...
Страница 1008: ...Fig 43 RIGHT REAR QUARTER 8W 91 52 8W 91 CONNECTOR GROUND SPLICE LOCATION PT CONNECTOR GROUND SPLICE LOCATION Continued...
Страница 1011: ...Fig 48 BATTERY DIESEL PT 8W 91 CONNECTOR GROUND SPLICE LOCATION 8W 91 55 CONNECTOR GROUND SPLICE LOCATION Continued...
Страница 1012: ...Fig 49 FUEL TANK 8W 91 56 8W 91 CONNECTOR GROUND SPLICE LOCATION PT CONNECTOR GROUND SPLICE LOCATION Continued...
Страница 1078: ...Fig 92 Oil Lubrication System 9 58 ENGINE 1 6L SOHC PT LUBRICATION Continued...
Страница 1287: ...Fig 7 ENGINE COMPARTMENT SIDE AND BOTTOM VIEW PT FRAMES BUMPERS 13 5 FRAME Continued...
Страница 1288: ...Fig 8 REAR FRAME SECTION SIDE AND BOTTOM VIEW 13 6 FRAMES BUMPERS PT FRAME Continued...
Страница 1289: ...Fig 9 WINDSHIELD OPENING DIMENSIONS Fig 10 FRONT AND REAR DOOR OPENING DIMENSIONS PT FRAMES BUMPERS 13 7 FRAME Continued...
Страница 1296: ......
Страница 1412: ......
Страница 1616: ...Neutral Speed Over 8 MPH 21 204 41TE AUTOMATIC TRANSAXLE PT 41TE AUTOMATIC TRANSAXLE Continued...
Страница 1617: ...Reverse PT 41TE AUTOMATIC TRANSAXLE 21 205 41TE AUTOMATIC TRANSAXLE Continued...
Страница 1618: ...Reverse Block Shift to Reverse W Speed Over 8 mph 21 206 41TE AUTOMATIC TRANSAXLE PT 41TE AUTOMATIC TRANSAXLE Continued...
Страница 1619: ...First Gear PT 41TE AUTOMATIC TRANSAXLE 21 207 41TE AUTOMATIC TRANSAXLE Continued...
Страница 1620: ...Second Gear 21 208 41TE AUTOMATIC TRANSAXLE PT 41TE AUTOMATIC TRANSAXLE Continued...
Страница 1621: ...Second Gear EMCC PT 41TE AUTOMATIC TRANSAXLE 21 209 41TE AUTOMATIC TRANSAXLE Continued...
Страница 1622: ...Direct Gear 21 210 41TE AUTOMATIC TRANSAXLE PT 41TE AUTOMATIC TRANSAXLE Continued...
Страница 1623: ...Direct Gear CC On PT 41TE AUTOMATIC TRANSAXLE 21 211 41TE AUTOMATIC TRANSAXLE Continued...
Страница 1624: ...Overdrive 21 212 41TE AUTOMATIC TRANSAXLE PT 41TE AUTOMATIC TRANSAXLE Continued...
Страница 1625: ...Overdrive EMCC PT 41TE AUTOMATIC TRANSAXLE 21 213 41TE AUTOMATIC TRANSAXLE Continued...
Страница 1626: ...Overdrive CC On 21 214 41TE AUTOMATIC TRANSAXLE PT 41TE AUTOMATIC TRANSAXLE Continued...
Страница 1723: ...PT TIRES WHEELS 22 11 TIRES Continued...
Страница 1779: ...Fig 15 INSTRUMENT PANEL ASSEMBLY PT INSTRUMENT PANEL 23 51 INSTRUMENT PANEL ASSEMBLY Continued...
Страница 1826: ...Fig 3 WINDSHIELD OPENINGS Fig 4 REAR WINDOW AND LIFTGATE OPENINGS 23 98 BODY STRUCTURE PT OPENING DIMENSIONS Continued...
Страница 1828: ...Fig 5 BODY LOCATIONS 23 100 BODY STRUCTURE PT SEALER LOCATIONS Continued...
Страница 1829: ...Fig 6 LOAD BEAM STRUT TOWER COWL and DASH PANEL 1 THUMBGRADE SEALER PT BODY STRUCTURE 23 101 SEALER LOCATIONS Continued...
Страница 1830: ...Fig 7 COWL and DASH PANEL 1 SPRAYABLE NON PAINTABLE SEALER 23 102 BODY STRUCTURE PT SEALER LOCATIONS Continued...
Страница 1831: ...Fig 8 FLOOR PAN and DASH PANEL 1 SPRAYABLE NON PAINTABLE SEALER PT BODY STRUCTURE 23 103 SEALER LOCATIONS Continued...
Страница 1832: ...Fig 9 ROOF 1 THUMBGRADE SEALER 23 104 BODY STRUCTURE PT SEALER LOCATIONS Continued...
Страница 1833: ...Fig 10 INNER WHEELHOUSE 1 SPRAYABLE NON PAINTABLE SEALER PT BODY STRUCTURE 23 105 SEALER LOCATIONS Continued...
Страница 1834: ...Fig 11 COWL PLENUM 1 PUMPABLE SEALER 23 106 BODY STRUCTURE PT SEALER LOCATIONS Continued...
Страница 1836: ...Fig 13 COWL PLENUM and DASH PANEL 1 EXPANDABLE SEALER 23 108 BODY STRUCTURE PT SEALER LOCATIONS Continued...
Страница 1837: ...Fig 14 COWL SIDE 1 PUMPABLE SEALER PT BODY STRUCTURE 23 109 SEALER LOCATIONS Continued...
Страница 1838: ...Fig 15 BODY SIDE APERTURE 1 SEALER TAPE 2 THUMBGRADE SEALER 3 PUMPABLE SEALER 23 110 BODY STRUCTURE PT SEALER LOCATIONS Continued...
Страница 1840: ...Fig 17 REAR FLOOR PAN 1 PUMPABLE SEALER 23 112 BODY STRUCTURE PT SEALER LOCATIONS Continued...
Страница 1841: ...Fig 18 CARGO AREA 1 SEALER TAPE 2 THUMBGRADE SEALER PT BODY STRUCTURE 23 113 SEALER LOCATIONS Continued...
Страница 1844: ...Fig 20 DASH PANEL AND FLOOR PAN 1 STRUCTURAL ADHESIVE TAPE 23 116 BODY STRUCTURE PT STRUCTURAL ADHESIVE LOCATIONS Continued...
Страница 1845: ...Fig 21 REAR FLOOR PAN 1 STRUCTURAL ADHESIVE TAPE PT BODY STRUCTURE 23 117 STRUCTURAL ADHESIVE LOCATIONS Continued...
Страница 1852: ...Fig 26 FRONT SIDE RAIL REAR TO DASH AND COWL SIDE PANELS 1 WELDING OF TWO PARTS 23 124 BODY STRUCTURE PT WELD LOCATIONS Continued...
Страница 1854: ...Fig 28 STRUT TOWER TO DASH PANEL 1 WELDING OF TWO PARTS 23 126 BODY STRUCTURE PT WELD LOCATIONS Continued...
Страница 1856: ...Fig 30 COWL TOP TO COWL PLENUM 1 WELDING OF TWO PARTS 23 128 BODY STRUCTURE PT WELD LOCATIONS Continued...
Страница 1857: ...Fig 31 COWL PLENUM TO DASH PANEL 1 WELDING OF TWO PARTS PT BODY STRUCTURE 23 129 WELD LOCATIONS Continued...
Страница 1858: ...Fig 32 COWL PLENUM TO COWL SIDE PANEL 1 WELDING OF TWO PARTS 23 130 BODY STRUCTURE PT WELD LOCATIONS Continued...
Страница 1859: ...Fig 33 OUTER LOAD BEAM TO COWL SIDE PANEL 1 WELDING OF TWO PARTS PT BODY STRUCTURE 23 131 WELD LOCATIONS Continued...
Страница 1861: ...Fig 35 WINDSHIELD WIPER REINFORCEMENT GUSSET 1 WELDING OF TWO PARTS PT BODY STRUCTURE 23 133 WELD LOCATIONS Continued...
Страница 1862: ...Fig 36 INSTRUMENT PANEL REINFORCEMENT TO COWL SIDE PANEL 1 WELDING OF TWO PARTS 23 134 BODY STRUCTURE PT WELD LOCATIONS Continued...
Страница 1863: ...Fig 37 COWL PLENUM WATER DEFLECTOR TO COWL PLENUM PANEL 1 WELDING OF TWO PARTS PT BODY STRUCTURE 23 135 WELD LOCATIONS Continued...
Страница 1865: ...Fig 39 BRAKE PEDAL SUPPORT BRACKET TO COWL PLENUM 1 WELDING OF TWO PARTS PT BODY STRUCTURE 23 137 WELD LOCATIONS Continued...
Страница 1866: ...Fig 40 FRONT FLOOR PAN TO DASH PANEL AND COWL SIDE PANEL 1 WELDING OF TWO PARTS 23 138 BODY STRUCTURE PT WELD LOCATIONS Continued...
Страница 1871: ...Fig 45 FRONT HINGE PILLAR TO BODY SIDE APERTURE PANEL 1 WELDING OF TWO PARTS PT BODY STRUCTURE 23 143 WELD LOCATIONS Continued...
Страница 1875: ...Fig 49 INNER QUARTER PANEL TO BODY SIDE APERTURE PANEL 1 WELDING OF TWO PARTS PT BODY STRUCTURE 23 147 WELD LOCATIONS Continued...
Страница 1878: ...Fig 52 OUTER LOAD BEAM TO FRONT HINGE PILLAR 1 WELDING OF TWO PARTS 23 150 BODY STRUCTURE PT WELD LOCATIONS Continued...
Страница 1880: ...Fig 54 INNER QUARTER PANEL TO LIFTGATE SIDE DRAIN TROUGH 1 WELDING OF TWO PARTS 23 152 BODY STRUCTURE PT WELD LOCATIONS Continued...
Страница 1883: ...Fig 57 INNER B PILLAR TO INNER ROOF SIDE REINFORCEMENT 1 WELDING OF TWO PARTS PT BODY STRUCTURE 23 155 WELD LOCATIONS Continued...
Страница 1885: ...Fig 59 UPPER INNER C PILLAR TO INNER QUARTER PANEL 1 WELDING OF TWO PARTS PT BODY STRUCTURE 23 157 WELD LOCATIONS Continued...
Страница 1895: ...Fig 69 D S I BEAM TO FRONT FLOOR PAN AND INNER SIDE SILL 1 WELDING OF TWO PARTS PT BODY STRUCTURE 23 167 WELD LOCATIONS Continued...
Страница 1896: ...Fig 70 D S I BEAM TO FRONT FLOOR PAN AND INNER SIDE SILL 1 WELDING OF TWO PARTS 23 168 BODY STRUCTURE PT WELD LOCATIONS Continued...
Страница 1935: ...Fig 29 Blower Motor Electrical Diagnosis PT HEATING AIR COND LHD 24 29 BLOWER MOTOR Continued...
Страница 1990: ...Fig 28 BLOWER MOTOR ELECTRICAL DIAGNOSIS 24 84 HEATING AIR COND RHD PT BLOWER MOTOR Continued...
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Страница 2078: ...Dealer Technical Operations 800 Chrysler Drive CIMS 486 02 76 Auburn Hills MI 48326 2757...