•
Battery voltage
•
Inlet/Intake air temperature
•
Engine coolant temperature
•
Crankshaft position (engine speed)
•
Exhaust gas oxygen content (upstream heated
oxygen sensor)
•
Manifold absolute pressure
•
Throttle position sensor
•
IAC motor (solenoid) control changes in response
to MAP sensor feedback
The PCM may receive a closed throttle input from
the Throttle Position Sensor (TPS) when it senses an
abrupt decrease in manifold pressure. This indicates
a hard deceleration (Open Loop). In response, the
PCM may momentarily turn off the injectors. This
helps improve fuel economy, emissions and engine
braking.
WIDE-OPEN-THROTTLE MODE
This is an OPEN LOOP mode. During wide-open-
throttle operation, the following inputs are used by
the PCM:
•
Inlet/Intake air temperature
•
Engine coolant temperature
•
Engine speed
•
Manifold absolute pressure
•
Throttle position
The PCM senses a wide-open-throttle condition
through the Throttle Position Sensor (TPS).
The PCM adjusts injector pulse width to supply a
predetermined amount of additional fuel, based on
MAP and RPM.
IGNITION SWITCH OFF MODE
When the operator turns the ignition switch to the
OFF position, the following occurs:
•
All outputs are turned off, unless 02 Heater
Monitor test is being run. Refer to the Emission sec-
tion for On-Board Diagnostics.
•
No inputs are monitored except for the heated
oxygen sensors. The PCM monitors the heating ele-
ments in the oxygen sensors and then shuts down.
FUEL CORRECTION or ADAPTIVE MEMORIES
DESCRIPTION
In Open Loop, the PCM changes pulse width with-
out feedback from the O2 Sensors. When the PCM
goes into closed loop Short Term Correction mode, it
utilizes feedback from the O2 Sensors. Closed loop
Long Term Adaptive Memory is maintained above
170° to 190° F unless the PCM senses wide open
throttle. At that time the PCM returns to Open Loop
operation.
OPERATION
Short Term
The first fuel correction program that begins func-
tioning is the short term fuel correction. This system
corrects fuel delivery in direct proportion to the read-
ings from the Upstream O2 Sensor.
The PCM monitors the air/fuel ratio by using the
input voltage from the O2 Sensor. When the voltage
reaches its preset high or low limit, the PCM begins
to add or remove fuel until the sensor reaches its
switch point. The short term corrections then begin.
The PCM makes a series of quick changes in the
injector pulse-width until the O2 Sensor reaches its
opposite preset limit or switch point. The process
then repeats itself in the opposite direction.
Short term fuel correction will keep increasing or
decreasing
injector
pulse-width
based
upon
the
upstream O2 Sensor input. The maximum range of
authority for short term memory is 33% (+/-) of base
pulse-width. Short term is violated and is lost when
ignition is turned OFF.
Long Term
The second fuel correction program is the long
term adaptive memory. In order to maintain correct
emission throughout all operating ranges of the
engine, a cell structure based on engine rpm and load
(MAP) is used.
Ther number of cells varies upon the driving con-
ditions. Two cells are used only during idle, based
upon TPS and Park/Neutral switch inputs. There
may be two other cells used for deceleration, based
on TPS, engine rpm, and vehicle speed. The other
twelve cells represent a manifold pressure and an
rpm range. Six of the cells are high rpm and the
other six are low rpm. Each of these cells is a specific
MAP voltage range Typical Adaptive Memory Fuel
Cells.
As the engine enters one of these cells the PCM
looks at the amount of short term correction being
used. Because the goal is to keep short term at 0 (O2
Sensor switching at 0.5 volt), long term will update
in the same direction as short term correction was
moving to bring the short term back to 0. Once short
term is back at 0, this long term correction factor is
stored in memory.
The values stored in long term adaptive memory
are used for all operating conditions, including open
loop and cold starting. However, the updating of the
long term memory occurs after the engine has
exceeded approximately 170°-190° F, with fuel control
in closed loop and two minutes of engine run time.
This is done to prevent any transitional temperature
or start-up compensations from corrupting long term
fuel correction.
14 - 28
FUEL INJECTION
ZB
FUEL INJECTION (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...