engine coolant temperature sensor. The
crankshaft speed/position sensor is activated
by a toothed disc on the rear of the crankshaft,
inside the cylinder block. The disc has 35
equally spaced teeth (one every 10°), with a
gap in the 36th position. The gap is used by
the sensor to determine the crankshaft
position relative to Top Dead Centre (TDC) of
No 1 piston.
The ignition advance is a function of the
ESC II module, and is controlled by vacuum.
The module is connected to the carburettor by
a vacuum pipe, and a transducer in the
module translates the vacuum signal into an
electrical voltage. From the vacuum signal, the
module determines engine load; engine speed
and temperature are determined from the
crankshaft speed/position sensor and the
engine coolant temperature sensor. The
module has a range of spark advance settings
stored in the memory, and a suitable setting is
selected for the relevant engine speed, load
and temperature. The degree of advance can
thus be constantly varied to suit the prevailing
engine speed and load conditions.
On DOHC fuel-injected engines, a
development of the EEC IV (Electronic Engine
Control IV) engine management system is
used to control both the ignition and fuel-
injection systems. The EEC IV module receives
information from a crankshaft speed/position
sensor (the same as that fitted to the
carburettor models), a throttle position sensor,
an engine coolant temperature sensor, a fuel
temperature sensor, an air charge temperature
sensor, a Manifold Absolute Pressure (MAP)
sensor, and a vehicle speed sensor (mounted
on the gearbox). Additionally, on models with
a catalytic converter, an additional input is
supplied to the EEC IV module from an
exhaust gas oxygen (HEGO) sensor. On
models with automatic transmission,
additional sensors are fitted to the
transmission to inform the EEC IV module
when the transmission is in neutral, and when
the downshift is being operated.
The module provides outputs to control the
fuel pump, fuel-injectors, idle speed, ignition
system and automatic transmission .
Additionally, on models with air conditioning,
the EEC IV module disengages the air
conditioning compressor clutch when starting
the engine or when the engine is suddenly
accelerated. On models fitted with a catalytic
converter, the EEC IV module also controls the
carbon canister purge solenoid valve.
Using the inputs from the various sensors,
the EEC IV module computes the optimum
ignition advance, and fuel-injector pulse
duration to suit the prevailing engine
conditions.
On 2.4 & 2.9 litre V6 engines, the system
operates in much the same way as that fitted
to the DOHC fuel-injected engine, noting the
following points.
a)
There is no crankshaft speed/position
sensor.
b)
The vehicle speed sensor is only fitted to
models equipped with a catalytic
converter.
Precautions
ESC II module
Although it will tolerate all normal under-
bonnet conditions, the ESC II module may be
adversely affected by water entry during
steam cleaning or pressure washing of the
engine bay.
If cleaning the engine bay, therefore, take
care not to direct jets of water or steam at the
ESC II module. If this cannot be avoided,
remove the module completely, and protect its
multi-plug with a plastic bag.
Ignition system HT voltage
Take care to avoid receiving electric shocks
from the HT side of the ignition system. Do not
handle HT leads, or touch the distributor or
coil, when the engine is running. When tracing
faults in the HT system, use well insulated
tools to manipulate live leads. Electronic
ignition HT voltage could prove fatal.
Electronic ignition systems
General
Further details of the various systems are
given in the relevant Sections of this Chapter.
While some repair procedures are given, the
usual course of action is to renew the
component concerned. The owner whose
interest extends beyond mere component
renewal should obtain a copy of the
Automobile Electrical & Electronic Systems
Manual, available from the publishers of this
manual.
It is necessary to take extra care when
working on the electrical system, to avoid
damage to semi-conductor devices (diodes
and transistors), and to avoid the risk of
personal injury. In addition to the precautions
given in Safety first! at the beginning of this
manual, observe the following when working
on the system:
Always remove rings, watches, etc before
working on the electrical system. Even with the
battery disconnected, capacitive discharge
could occur if a component’s live terminal is
earthed through a metal object. This could
cause a shock or nasty burn.
Do not reverse the battery connections.
Components such as the alternator, electronic
control units, or any other components having
semi-conductor circuitry, could be irreparably
damaged.
If the engine is being started using jump
leads and a slave battery, connect the
batteries positive-to-positive and negative-to-
negative (see “Jump starting”). This also
applies when connecting a battery charger.
Never disconnect the battery terminals, the
alternator, any electrical wiring, or any test
instruments, when the engine is running.
Do not allow the engine to turn the alternator
when the alternator is not connected.
Never test for alternator output by “flashing”
the output lead to earth.
Never use an ohmmeter of the type
incorporating a hand-cranked generator for
circuit or continuity testing.
Always ensure that the battery negative lead
is disconnected when working on the
electrical system.
Before using electric-arc welding equipment
on the car, disconnect the battery, alternator,
and components such as the fuel-
injection/ignition electronic control unit, to
protect them from the risk of damage.
Refer to Chapter 13
1 In normal use the battery should not require
charging from an external source, unless the
vehicle is laid up for long periods, when it
should be recharged every six weeks or so. If
vehicle use consists entirely of short runs in
darkness it is also possible for the battery to
become discharged. Otherwise, a regular
need for recharging points to a fault in the
battery or elsewhere in the charging system.
2 There is no need to disconnect the battery
from the vehicle wiring when using a battery
charger, but switch off the ignition and leave
the bonnet open.
3 Domestic battery chargers (up to about 6
amps output) may safely be used overnight
without special precautions. Make sure that
the charger is set to deliver 12 volts before
connecting it. Connect the leads (red or
positive to the positive terminal, black or
negative to the negative terminal) before
switching the charger on at the mains.
4 When charging is complete, switch off at
the mains before disconnecting the charger
from the battery. Remember that the battery
will be giving off hydrogen gas, which is
potentially explosive.
5 Charging at a higher rate should only be
carried out under carefully controlled
conditions. Very rapid or “boost” charging
should be avoided if possible, as it is liable to
cause permanent damage to the battery
through overheating.
6 During any sort of charging, battery
electrolyte temperature should never exceed
38°C (100°F). If the battery becomes hot, or
the electrolyte is effervescing vigorously,
charging should be stopped.
3 Battery - charging
2 Electrical fault-finding - general
information
Engine electrical systems 5•3
5
Warning. The voltages produced
by the electronic ignition system
are considerably higher than those
produced by conventional
systems. Extreme care must be taken when
working on the system with the ignition
switched on. Persons with surgically-
implanted cardiac pacemaker devices
should keep well clear of the ignition
circuits, components and test equipment.
Содержание Granada 1985-1994
Страница 42: ...1 22 Notes...
Страница 102: ...2C 22 Notes...
Страница 136: ...4 24 Notes...
Страница 176: ...11 14 Notes...
Страница 196: ...12 20 Notes...
Страница 221: ...Wiring diagrams WD 1 WD Diagram 16 Power operated sliding roof...
Страница 222: ...WD 2 Wiring diagrams Diagram 2 Power distribution...
Страница 223: ...Wiring diagrams WD 3 WD Diagram 2 Power distribution continued...
Страница 224: ...WD 4 Wiring diagrams Diagram 3 Charge start and run Part 1...
Страница 225: ...Wiring diagrams WD 5 WD Diagram 3 Charge start and run Part 1 continued...
Страница 226: ...WD 6 Wiring diagrams Diagram 3A Charge start and run Part 2...
Страница 227: ...Wiring diagrams WD 7 WD Diagram 3A Charge start and run Part 2 continued...
Страница 228: ...WD 8 Wiring diagrams Diagram 4 Engine management 1 8 litre...
Страница 229: ...Wiring diagrams WD 9 WD Diagram 4 Engine management 1 8 litre continued...
Страница 230: ...WD 10 Wiring diagrams Diagram 4A Engine management 2 0 litre carburettor...
Страница 231: ...Wiring diagrams WD 11 WD Diagram 4A Engine management 2 0 litre carburettor continued...
Страница 232: ...WD 12 Wiring diagrams Diagram 5 Engine management 2 0 litre fuel injection...
Страница 233: ...Wiring diagrams WD 13 WD Diagram 5 Engine management 2 0 litre fuel injection continued...
Страница 234: ...WD 14 Wiring diagrams Diagram 5C Engine management 2 8 litre...
Страница 235: ...Wiring diagrams WD 15 WD Diagram 5C Engine management 2 8 litre continued...
Страница 236: ...WD 16 Wiring diagrams Diagram 7A Exterior lighting...
Страница 237: ...Wiring diagrams WD 17 WD Diagram 7A Exterior lighting continued...
Страница 238: ...WD 18 Wiring diagrams Diagram 9 Signalling and warning systems...
Страница 239: ...Wiring diagrams WD 19 WD Diagram 9 Signalling and warning systems continued...
Страница 240: ...WD 20 Wiring diagrams Diagram 10 Interior lighting...
Страница 241: ...Wiring diagrams WD 21 WD Diagram 10 Interior lighting continued...
Страница 242: ...WD 22 Wiring diagrams Diagram 12 Wipers and washers...
Страница 243: ...Wiring diagrams WD 23 WD Diagram 12 Wipers and washers continued...
Страница 244: ...WD 24 Wiring diagrams Diagram 14 Central locking system...
Страница 245: ...Wiring diagrams WD 25 WD Diagram 14 Central locking system continued...
Страница 246: ...WD 26 Wiring diagrams Diagram 15 Power operated windows...
Страница 247: ...Wiring diagrams WD 27 WD Diagram 15 Power operated windows continued...
Страница 248: ...WD 28 Wiring diagrams Diagram 21 ABS...
Страница 249: ...Wiring diagrams WD 29 WD Diagram 21 ABS continued...
Страница 250: ...WD 30 Wiring diagrams Diagram 23 Auxiliary warning system...
Страница 251: ...Wiring diagrams WD 31 WD Diagram 23 Auxiliary warning system continued...
Страница 252: ...WD 32 Wiring diagrams Diagram 29 Radio cassette player and associated circuits typical...
Страница 253: ...Wiring diagrams WD 33 WD Diagram 29 Radio cassette player and associated circuits typical continued...
Страница 254: ...WD 34 Wiring diagrams Diagram 11 Heater blower...