Pump Mode: The pump is cycled at a fixed rate to
achieve a rapid pressure build in order to shorten the
overall test length.
Test Mode: The solenoid is energized with a fixed
duration pulse. Subsequent fixed pulses occur when
the diaphragm reaches the Switch closure point.
The spring in the pump is set so that the system
will achieve an equalized pressure of about 7.5”
water. The cycle rate of pump strokes is quite rapid
as the system begins to pump up to this pressure. As
the pressure increases, the cycle rate starts to drop
off. If there is no leak in the system, the pump would
eventually stop pumping at the equalized pressure. If
there is a leak, it will continue to pump at a rate rep-
resentative of the flow characteristic of the size of the
leak. From this information we can determine if the
leak is larger than the required detection limit (cur-
rently set at .020” orifice by CARB). If a leak is
revealed during the leak test portion of the test, the
test is terminated at the end of the test mode and no
further system checks will be performed.
The canister vent valve will unseal the system
after completion of the test sequence as the pump
diaphragm assembly moves to the full travel position.
Evaporative system functionality will be verified by
using the stricter evap purge flow monitor. At an
appropriate warm idle the LDP will be energized to
seal the canister vent. The purge flow will be clocked
up from some small value in an attempt to see a
shift in the 02 control system. If fuel vapor, indicated
by a shift in the 02 control, is present the test is
passed. If not, it is assumed that the purge system is
not functioning in some respect. The LDP is again
turned off and the test is ended.
DESCRIPTION - HIGH AND LOW LIMITS
The PCM compares input signal voltages from each
input device with established high and low limits for
the device. If the input voltage is not within limits
and other criteria are met, the PCM stores a diagnos-
tic trouble code in memory. Other diagnostic trouble
code criteria might include engine RPM limits or
input voltages from other sensors or switches that
must be present before verifying a diagnostic trouble
code condition.
OPERATION
OPERATION - SYSTEM
The Powertrain Control Module (PCM) monitors
many different circuits in the fuel injection, ignition,
emission and engine systems. If the PCM senses a
problem with a monitored circuit often enough to
indicate an actual problem, it stores a Diagnostic
Trouble Code (DTC) in the PCM’s memory. If the
code applies to a non-emissions related component or
system, and the problem is repaired or ceases to
exist, the PCM cancels the code after 40 warmup
cycles. Diagnostic trouble codes that affect vehicle
emissions illuminate the Malfunction Indicator Lamp
(MIL). Refer to Malfunction Indicator Lamp in this
section.
Certain criteria must be met before the PCM
stores a DTC in memory. The criteria may be a spe-
cific range of engine RPM, engine temperature,
and/or input voltage to the PCM.
The PCM might not store a DTC for a monitored
circuit even though a malfunction has occurred. This
may happen because one of the DTC criteria for the
circuit has not been met. For example , assume the
diagnostic trouble code criteria requires the PCM to
monitor the circuit only when the engine operates
between 750 and 2000 RPM. Suppose the sensor’s
output circuit shorts to ground when engine operates
above 2400 RPM (resulting in 0 volt input to the
PCM). Because the condition happens at an engine
speed above the maximum threshold (2000 rpm), the
PCM will not store a DTC.
There are several operating conditions for which
the PCM monitors and sets DTC’s. Refer to Moni-
tored Systems, Components, and Non-Monitored Cir-
cuits in this section.
NOTE: Various diagnostic procedures may actually
cause a diagnostic monitor to set a DTC. For
instance, pulling a spark plug wire to perform a
spark test may set the misfire code. When a repair
is completed and verified, use the DRBIII
T
scan tool
to erase all DTC’s and extinguish the MIL.
25 - 8
EMISSIONS CONTROL
ZB
EMISSIONS CONTROL (Continued)
Summary of Contents for ZB 2005
Page 4: ......
Page 8: ...FASTENER STRENGTH ZB INTRODUCTION 3 FASTENER IDENTIFICATION Continued...
Page 11: ...METRIC CONVERSION CHART 6 INTRODUCTION ZB METRIC SYSTEM Continued...
Page 13: ...TORQUE SPECIFICATIONS 8 INTRODUCTION ZB TORQUE REFERENCES Continued...
Page 29: ......
Page 103: ...Fig 24 Dynamic Toe Pattern Graph 2 74 WHEEL ALIGNMENT ZB WHEEL ALIGNMENT Continued...
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Page 764: ...Fig 15 X Y AND Z PLANES ZB FRAME BUMPERS 13 13 FRAME Continued...
Page 765: ...Fig 16 FRAME SIDE VIEW FRONT SECTION Z DIMENSIONS 13 14 FRAME BUMPERS ZB FRAME Continued...
Page 766: ...Fig 17 FRAME SIDE VIEW REAR SECTION Z DIMENSIONS ZB FRAME BUMPERS 13 15 FRAME Continued...
Page 767: ...Fig 18 FRAME SIDE VIEW FRONT SECTION X DIMENSIONS 13 16 FRAME BUMPERS ZB FRAME Continued...
Page 768: ...Fig 19 FRAME SIDE VIEW REAR SECTION X DIMENSIONS ZB FRAME BUMPERS 13 17 FRAME Continued...
Page 769: ...Fig 20 FRAME TOP VIEW FRONT SECTION X AND Y DIMENSIONS 13 18 FRAME BUMPERS ZB FRAME Continued...
Page 770: ...Fig 21 FRAME TOP VIEW REAR SECTION X AND Y DIMENSIONS ZB FRAME BUMPERS 13 19 FRAME Continued...
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Page 906: ...Vehicle Lead Correction Diagnosis Chart ZB TIRES WHEELS 22 15 TIRES Continued...
Page 911: ......
Page 925: ...Fig 1 EXPLODED VIEW 23 14 CONVERTIBLE TOP ZB CONVERTIBLE TOP Continued...
Page 1009: ...Fig 6 TRUNK OPENING DIMENSIONS 23 98 BODY STRUCTURE ZB OPENING DIMENSIONS Continued...
Page 1011: ...Fig 8 FRONT OF DASH PANEL AND FRAME 23 100 BODY STRUCTURE ZB SEALER LOCATIONS Continued...
Page 1012: ...Fig 9 REAR CLIP FRAME ZB BODY STRUCTURE 23 101 SEALER LOCATIONS Continued...
Page 1016: ...Fig 13 FRONT FRAME STRUCTURE 1 OF 4 23 104 BODY STRUCTURE ZB WELD LOCATIONS Continued...
Page 1017: ...Fig 14 FRONT FRAME STRUCTURE 2 OF 4 ZB BODY STRUCTURE 23 105 WELD LOCATIONS Continued...
Page 1018: ...Fig 15 FRONT FRAME STRUCTURE 3 OF 4 23 106 BODY STRUCTURE ZB WELD LOCATIONS Continued...
Page 1019: ...Fig 16 FRONT FRAME STRUCTURE 4 OF 4 ZB BODY STRUCTURE 23 107 WELD LOCATIONS Continued...
Page 1020: ...Fig 17 FLOOR PAN 1 OF 5 23 108 BODY STRUCTURE ZB WELD LOCATIONS Continued...
Page 1021: ...Fig 18 FLOOR PAN 2 OF 5 ZB BODY STRUCTURE 23 109 WELD LOCATIONS Continued...
Page 1022: ...Fig 19 FLOOR PAN 3 OF 5 23 110 BODY STRUCTURE ZB WELD LOCATIONS Continued...
Page 1023: ...Fig 20 FLOOR PAN 4 OF 5 ZB BODY STRUCTURE 23 111 WELD LOCATIONS Continued...
Page 1024: ...Fig 21 FLOOR PAN 5 OF 5 23 112 BODY STRUCTURE ZB WELD LOCATIONS Continued...
Page 1025: ...Fig 22 REAR FRAME 1 OF 5 ZB BODY STRUCTURE 23 113 WELD LOCATIONS Continued...
Page 1026: ...Fig 23 REAR FRAME 2 OF 5 23 114 BODY STRUCTURE ZB WELD LOCATIONS Continued...
Page 1027: ...Fig 24 REAR FRAME 3 OF 5 ZB BODY STRUCTURE 23 115 WELD LOCATIONS Continued...
Page 1028: ...Fig 25 REAR FRAME 4 OF 5 23 116 BODY STRUCTURE ZB WELD LOCATIONS Continued...
Page 1029: ...Fig 26 REAR FRAME 5 OF 5 ZB BODY STRUCTURE 23 117 WELD LOCATIONS Continued...
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Page 1121: ...NOTES vi...
Page 1136: ...7 0 DIAGNOSTIC INFORMATION AND PROCEDURES 15...
Page 1341: ...NOTES 220...
Page 1344: ...8 4 FUEL SYSTEM C O M P O N E N T L O C A T I O N S 223 COMPONENT LOCATIONS...
Page 1345: ...C O M P O N E N T L O C A T I O N S 224 COMPONENT LOCATIONS 8 4 FUEL SYSTEM Continued...
Page 1355: ...C O N N E C T O R P I N O U T S 234 CONNECTOR PINOUTS...
Page 1362: ...10 0 SCHEMATIC DIAGRAMS S C H E M A T I C D I A G R A M S 241 SCHEMATIC DIAGRAMS...
Page 1363: ...S C H E M A T I C D I A G R A M S 242 SCHEMATIC DIAGRAMS...
Page 1364: ...S C H E M A T I C D I A G R A M S 243 SCHEMATIC DIAGRAMS...
Page 1365: ...NOTES 244...
Page 1368: ...11 4 EELD C H A R T S A N D G R A P H S 247 CHARTS AND GRAPHS...
Page 1369: ...NOTES 248...
Page 1371: ...Dealer Technical Operations 800 Chrysler Drive CIMS 486 02 76 Auburn Hills MI 48326 2757...
Page 1381: ...NOTES x...
Page 1407: ...NOTES 26...
Page 1408: ...7 0 DIAGNOSTIC INFORMATION AND PROCEDURES 27...
Page 1789: ...NOTES 408...
Page 1795: ...NOTES 414...
Page 1803: ...10 2 AUDIO SYSTEM S C H E M A T I C D I A G R A M S 422 SCHEMATIC DIAGRAMS...
Page 1804: ...10 3 CHIME SYSTEM S C H E M A T I C D I A G R A M S 423 SCHEMATIC DIAGRAMS...
Page 1805: ...10 4 COMMUNICATION S C H E M A T I C D I A G R A M S 424 SCHEMATIC DIAGRAMS...
Page 1808: ...10 7 2 REAR FOG LAMPS EXPORT ONLY S C H E M A T I C D I A G R A M S 427 SCHEMATIC DIAGRAMS...
Page 1809: ...10 8 HEATING A C SYSTEM S C H E M A T I C D I A G R A M S 428 SCHEMATIC DIAGRAMS...
Page 1813: ...10 11 INTERIOR LIGHTING S C H E M A T I C D I A G R A M S 432 SCHEMATIC DIAGRAMS...
Page 1814: ...10 12 POWER DOOR LOCKS RKE S C H E M A T I C D I A G R A M S 433 SCHEMATIC DIAGRAMS...
Page 1815: ...10 13 POWER WINDOW SYSTEM S C H E M A T I C D I A G R A M S 434 SCHEMATIC DIAGRAMS...
Page 1817: ...10 15 VEHICLE THEFT SECURITY SYSTEM S C H E M A T I C D I A G R A M S 436 SCHEMATIC DIAGRAMS...
Page 1819: ...NOTES 438...
Page 1829: ...NOTES 8...
Page 1830: ...7 0 DIAGNOSTIC INFORMATION AND PROCEDURES 9...
Page 1868: ...C O N N E C T O R P I N O U T S 47 CONNECTOR PINOUTS...
Page 1871: ...NOTES 50...
Page 1873: ...NOTES 52...