Convertible
top
drive
motor,
replacing
5
.
Working
in
convertible
top
storage
compartment
be-
hind
driver's
seat,
remove
convertible
top
linkage
rods
1
.
Open
convertible
top
partially,
stopping
when
convert-
from
top
of
motor
.
Refer
to
Fig
.
11
.
ible
top
lid
is
fully
upen
.
Remove
lid
.
2
.
Release
luggage
compartment
lock-out
by
pressing
on
microswitch
in
right
convertible
top
lid
latch
.
See
Fig
.
14
.
0012745
Fig
.
14
.
Rightside
convertible
top
lid
latch
.
Arrow
points
to
location
of
luggage
compartment
lock-out
microswitch
.
3
.
Open
luggage
compartment
.
Remove
trim
and
inner
lining
from
left
side
of
compartment
.
4
.
Disconnect
electrical
harness
connectors
at
top
motor
.
Release
emergency
release
cable
from
lever
.
Push
le-
ver
up
to
release
motor
.
See
Fig
.
15
.
uu12759
Fig
.
15
.
Convertible
top
motor
(A)
and
release
lever
(B)
in
luggage
compartment
.
CONVERTIBLE
TOP
541-
7
6
.
Remove
four
fastenersholding
motor
to
body
and
re-
move
motor
through
luggage
compartment
.
See
Fig
.
16
.
0012761
Fig
.
16
.
Convertible
top
motor
mountingscrews
(arrows)
.
Gasket
(A)
mustbe
renewed
when
motor
is
replaced
.
7
.
Installation
is
reverse
of
removal
.
Keep
the
following
in
mind
:
"
Replace
sealing
gasket
between
top
of
motor
and
body
.
"
Securemotormountingscrews
with
Locktite
®
270
or
equivalent
.
Tightening
Torque
"
Convertible
top
motor
to
body
mountingscrews
...
...
.
.
.........
10
Nm
(7
.5
ft-Ib)
Convertible
Top
Emergency
Operation
A
malfunction
in
the
electrical
system
or
another
fault
in
the
convertible
top
mechanism
can
cause
the
automatic
or
semi-
automatic
top
to
be
stuck
in
open,
shut,
or
intermediate
posi-
tion
.
The
following
general
procedures
are
suggested
in
order
to
close
the
top
in
an
emergency
situation
.
Resetting
proce-
dures
for
convertible
top
synchronization
after
emergency
clo-
sure
are
beyond
the
scope
of
this
manual
.
Main
Motor
.
To
release
thetop
linkage
from
the
motor,
lift
the
left
comer
of
the
rearseat
to
access
emergency
release
handle
.
See
Fig
.
17
.
POWER
CONVERTIBLE
TOP
541-
8
CONVERTIBLE
TOP
CAUTION-
In
caseof
failure
of
the
automatic
or
semi-auto-
matic
convertible
top
function,
only
use
the
emer-
gency
procedure
to
close
the
top,
never
to
open
it
.
An
authorized
BMW
dealer
should
then
be
con-
sulted
.
0012764
Fig
.
17
.
Convertible
topmotor
emergency
release
handle
under
rear
seat
.
Pull
in
direction
of
arrow
to
release
top
.
It
is
then
possible
to
push
thetop
manually
to
a
near
closed
position
.
In
the
case
of
the
semi-automatic
top,
simply
attach
and
lock
the
front
latches
.
Front
Latches
.
Once
the
fully
automatic
convertible
top
has
been
released
from
the
motor
and
manually
pushed
to
near-closure,
emergency
latchíng
ofthetop
is
possible
by
us-
ing
the
S-shaped
hex
key
provided
in
the
emergency
tool
kit
.
First,
remove
the
plastic
cover
over
the
latch
motor
in
the
front
bow
of
the
convertible
top
.
See
Fig
.
18
.
Next,
use
the
hex
key
from
tool
box
to
crank
the
front
latch-
es
shut
.
See
Fig
.
19
.
Luggage
Compartment
Cover
.
A
microswitch
in
the
right
convertible
top
lid
latch
prevents
the
luggage
compartment
from
being
opened
whilethe
lid
is
up
.
This
lockout
can
be
overridden
by
pressing
on
the
microswitch
.
Refer
toFig
.
14
.
POWER
CONVERTIBLE
TOP
Fig
.
18
.
Remove
plastic
cover
from
center
of
convertible
roof
front
bow
to
access
latching
motor
drive
.
0012762
Fig
.
19
.
Using
emergency
hexkey
to
move
front
part
of
convertible
top
.
CAUTION-
The
convertible
top
lid
and
the
luggage
compart-
ment
cover
interfere
with
each
other
and
cannot
beopen
at
the
same
time
.
To
avoid
damage
to
painted
surfaces,
an
assistant
should
keep
the
lid
down
until
the
luggage
compartment
cover
can
beclosed
.
Convertible
Top
Lid
The
components
of
the
convertible
top
lid
are
shown
in
Fig
.
20
.
Fig
.
20
.
Components
of
the
convertible
top
lid
.
ROLLOVER
PROTECTION
SYSTEM
The
lid
latches
are
cable
operated
by
a
drive
motor
located
in
the
left
sideof
the
luggagecompartment,
behind
the
trim
lin-
er
.
The
same
motor
is
used
to
raise
and
lower
the
lid
during
automatic
convertible
topoperation
.
The
latch
cables
must
be
adjusted
so
that
the
lidfits
snugly
against
the
body
when
locked
.
The
lid
drive
motor
can
be
removed
and
replaced
from
the
luggage
compartment
.
Two
spring-locaed
cassettes
are
mounted
behind
the
rear
seat
.
A
single
rollover
sensor,
mounted
on
the
left
cassette,
signals
the
convertible
top
module
(CVM)
of
animminent
roll-
over,
whereupon
the
module
triggers
both
cassettes
within
3j10th
of
a
second
.
See
Fig
.
21
.
Once
the
cars
ignition
has
been
switched
on,
the
rollover
sensor
performs
a
self-test
lasting
6
seconds
.
During
this
time
a
yellow
warning
light
is
lit
on
the
dashboard
.
If
thewarning
lightfails
to
go
out
after
6
seconds,
this
means
that
a
fault
has
been
detected
in
the
system
.
The
fault
is
stored
in
the
CM
Faults
canbe
retrieved
and
diagnosedby
special
diagnostic
equipment
.
NOTE-
Diagnosis
of
the
convertible
top
and
the
Rollover
Pro-
tection
System
are
beyond
the
scope
of
this
book
.
Your
authorized
BMW
dealer
has
the
proper
diagnostic
equipment
and
tools
to
carry
out
these
tasks
.
CONVERTIBLE
TOP
541-
9
Fig
.
21
.
Construction
of
the
rollover
protection
cassette
.
After
deployment,
thedetent
pawl
in
a
rollover
protection
cassette
can
be
retracted
using
the
special
tool
in
the
tool
kit,
fitted
to
the
screwdriver
handle
.
The
rear
seatheadrest
needs
to
be
raised
for
this
procedure
.
WARNING
-
Ensure
that
the
area
above
and
adjacent
to
the
roll-
over
bars
remains
clear
and
unobstructed
at
all
times
.
CAUTION-
"
Itis
not
possible
to
close
the
convertible
top
with
the
rollover
bars
extended
.
"
If
a
hardtop
is
mounted,
be
sure
to
install
the
pro-
tective
rollover
bar
covers
provided
with
the
hard-
top
to
prevent
damaglng
the
rear
window
in
case
of
deployment
.
0012744
ROLLOVER
PROTECTION
SYSTEM
600-
4
ELECTRICAL
SYSTEM-GENERAL
Voltage
and
Voltage
Drops
The
wires,
connectors,
and
switches
that
carry
current
are
designed
with
very
low
resistance
so
that
current
flows
with
a
minimum
loss
of
voltage
.
A
voltage
drop
is
caused
by
higher
than
normal
resistance
in
a
circuit
.
This
additional
resistance
actually
decreases
or
stops
the
flow
of
current
.
A
voltage
drop
can
be
noticed
byproblems
ranging
fromdim
headlights
to
sluggish
wipers
.
Some
common
sources
of
voltage
drops
are
corroded
or
dirty
switches,
dirty
or
corroded
connections
or
contacts,
and
loose
or
corroded
ground
wires
and
ground
con-
nections
.
A
voltage
drop
test
is
a
good
test
to
make
if
current
is
flowing
through
the
circuit,
butthe
circuit
is
not
operating
correctly
.
A
voltage
drop
test
will
help
to
pinpoint
a
corroded
ground
strap
or
a
faulty
switch
.
Normally,
there
should
be
less
than
1
volt
drop
across
most
wires
or
closed
switches
.
A
voltage
drop
across
a
connector
or
short
cable
shouldnot
exceed
0
.5
volts
.
Voltage,
measuring
1
.
Connect
digital
multimeternegative
lead
to
a
reliable
ground
point
oncar
.
NOTE-
The
negative
(-)
battery
terminal
is
alwaysa
good
ground
point
.
2
.
Connect
digital
multimeter
positive
lead
to
point
incir-
cuit
you
wish
to
measure
.
See
Fig
.
1
.
If
a
reading
is
ob-
tained,
current
is
flowing
through
circuit
.
NOTE-
The
voltage
reading
shouldnot
deviate
more
than
1
volt
from
the
voltage
at
the
battery
.
If
the
voltage
drop
is
more
than
this,
check
for
acorroded
connector
or
cose
ground
wire
.
ELECTRICAL
TROLIBLESHOOTING
from
Battery
Fig
.
1
.
Digital
multimeterbeing
used
to
test
voltage
.
No
voltage
r_l
-1
Load
LJ
Switch
NOTE-
The
maximum
voltage
drop
in
an
automotive
circuit,
as
recommended
by
the
Society
of
AutomotiveEngineers
(SAE),
is
as
follows
:
0
voltsfor
small
vire
connections
;
0
.1
Volts
for
high
current
connections
;
0
.2
volts
for
high
current
cables
;
and
0
.3volts
for
switch
or
solenoidcon-
tacts
.
On
longer
wires
or
cables,
the
drop
may
be
slight-ly
higher
.
In
any
case,
a
voltage
drop
of
more
than
1.0volt
usually
indicates
a
problem
.
0013238
NOTE-
"
A
voltage
drop
test
is
generally
more
accuratethan
a
Voltage
drop,
testing
simple
resistance
check
because
the
resistances
in-
volvedare
often
too
small
to
measure
with
most
ohm-
Voltage
drop
can
only
be
checked
when
current
is
running
meters
.
For
example,
a
resistance
as
small
as0
.02
through
the
circuit,
suchasby
operating
the
starter
motor
or
ohms
would
results
in
a
3
volt
drop
in
a
typical
150
turning
onthe
headlights
.
A
digital
multimeter
should
beused
amp
starter
circuit
.
(150
amps
x
0
.02
ohms
=3
volts)
.
lo
ensure
accurate
readings
.
"
Keep
in
mind
that
voltage
with
the
key
on
and
voltage
with
the
engine
running
arenotthe
same
.
With
the
ig-
1
.
Connect
digital
multimeter
positive
lead
to
positive
(+)
nition
on
and
the
engine
off
(battery
voltage),
voltage
battery
terminalor
a
positive
power
supply
close
lo
bat
should
be
approximately
12
.6volts
.
With
the
engine
tery
source
.
running
(charging
voltage),
voltage
should
be
approx-
imately
14
.0
volts
.
Measure
voltage
at
the
battery
with
2
.
Connect
digital
multimeter
negativelead
to
other
end
of
the
ignition
on
and
then
with
the
engine
running
to
get
cable
orswitch
being
tested
.
See
Fig
.
2
.
exact
measurements
.
3
.
With
power
on
and
circuit
working,
meter
shows
volt-
age
drop
(difference
between
two
points)
.
This
value
should
not
exceed
1
volt
.
Continuity,
checking
Short
Circuits
from
Battery
CAUTION-
Use
only
a
high
quality
digital
ohmmeter
having
high
input
impedance
when
checking
electronic
componente
.
The
internal
power
source
used
in
most
analog
(swing-need1e)
meterscan
damage
solidstate
components
.
0013239
Fig
.
2
.
Digital
multimeter
being
used
to
check
for
voltage
drop
across
a
switch
.
The
continuity
test
can
beused
to
check
a
circuit
or
switch
.
Because
most
automotive
circuits
are
designed
to
have
little
or
no
resistance,
a
circuit
or
part
of
a
circuit
canbe
easily
checked
for
faults
using
an
ohmmeter
.
An
open
circuit
or
a
cir-
cuit
withhigh
resistance
will
not
allow
current
to
flow
.
A
círcuit
with
little
or
no
resistanceallows
current
to
flow
easily
.
When
checking
continuity,
the
ignition
should
be
off
.
On
cir-
cuits
that
are
powered
at
all
times,
the
battery
should
be
dis-
connected
.
Using
the
appropriate
wiring
diagram,
a
circuit
can
be
easily
tested
for
faulty
connections,
wires,
switches,
relays,
and
engine
sensorsby
checking
forcontinuity
.
For
a
continu-
ity
check
on
a
brake
light
switch,
see
Fig
.
3
..
A
short
circuit
is
exactly
what
the
narre
implies
.
The
circuit
takes
a
shorter
paththan
it
was
designed
to
take
.
The
most
common
short
that
causes
problems
is
a
short
to
ground
where
the
insulation
on
a
positive
(+)
wire
wears
away
and
the
metal
wire
is
exposed
.
When
the
wire
rubs
against
a
metal
partof
thecar
or
other
ground
source,
the
circuit
is
shorted
to
ground
.
If
the
exposed
wire
is
live
(positive
battery
voltage),
a
Puse
will
blow
and
the
circuit
may
possibly
be
damaged
.
ELECTRICAL
SYSTEM
-
GENERAL
600-
5
Brake
light
switch
Brake
pedal
in
rest
position
Q
Brake
pedal
depressed
Brake
light
switch
Fig
.
3
.
Brake
light
switchbeing
tested
for
continuity
.
With
brake
ped-
alin
rest
position
(switch
open)
there
is
no
continuity
(infinite
ohms)
.
With
pedal
depressed
(switch
closed)
there
is
continu-
ity
(zero
ohms)
.
Shorts
to
groundcanbe
located
with
a
digital
multimeter
.
Short
circuits
are
often
difficult
to
locate
and
may
vary
in
na-
ture
.
Short
circuits
can
befound
using
a
logical
approach
based
onthe
current
path
.
CAUTION
-
"
On
circuits
protected
with
high
rating
fuses
(25
amp
and
greater),
the
wires
or
circuit
compo-
nents
may
be
damaged
before
the
fuse
blows
.
Always
check
for
damage
before
replacing
fuses
of
this
rating
.
"
When
replacing
blown
fuses,
use
only
fuses
hav-
ingthe
correct
rating
.
Always
confirm
the
correct
fuse
rating
printed
on
the
fuselrelay
panelcover
DC
ELECTRICAL
TROUBLESHOOTING
00-
6
ELECTRICAL
SYSTEM-GENERAL
Short
circuit,
testing
with
ohmmeter
Short
circuit,
testing
with
voltmeter
1
.
Remove
blown
fuse
from
circuit
and
disconnect
cables
1
.
Remove
blown
fusefrom
circuit
.
from
battery
.
2
.
Disconnect
harness
connector
from
circuifs
loador
2
.
Disconnect
harness
connector
from
circuit's
loador
consumer
.
consumer
.
3
.
Using
an
ohmmeter,
connect
one
test
lead
to
loadside
of
f
use
terminal
(terminal
leading
to
circuit)
and
the
oth-
ertest
lead
to
ground
.
See
Fig
.
4
.
Load
disconnected
from
Battery
LO
n
I
~
Shotrouit
vu
.uto
earthth
Switch
Load
0013241
Fig
.
4
.
Digital
multimeter
being
usedasan
ohmmeter
to
find
short
circuit
.
4
.
lf
there
is
continuity
to
ground,
there
is
a
short
to
ground
.
ELECTRICAL
TROUBLESHOOTING
NOTE-
Most
fuses
power
more
than
one
consumer
.
Be
sure
aff
consumers
are
disconnected
when
checking
for
a
short
circuit
.
3
.
Using
a
voltmeter,
connect
test
leads
across
f
use
termi-
nals
.
See
Fig
.
5
.
Make
sure
power
is
present
ín
circuit
.
lf
necessary
turn
keyon
.
~2
.U
from
Battery
Load
disconnected
Short-circuit
to
earth
I
Fuse
box
0013240
5
.
If
there
is
no
continuity,
work
from
wire
harness
hearest
Fig
.
5
.
Digital
multimeter
being
usedas
a
voltmeter
to
find
short
cir
to
fuse/relay
panel
and
move
or
wiggle
wireswhile
ob-
cuit
.
serving
meter
.
Continue
to
movedown
harness
until
meter
displays
a
reading
.
This
is
the
location
of
short
to
4
.
lf
voltage
is
present
at
voltmeter,
there
is
a
short
to
ground
.
ground
.
Visually
inspect
the
wire
harness
at
this
point
for
any
faults
.
5
.
lf
voltage
is
not
present,
work
from
wire
harness
near-
If
no
faults
are
visible,
carefully
slice
open
the
harnesscover
est
to
fuse/relay
panel
and
move
orwiggle
wireswhile
or
the
wire
insulation
for
further
inspection
.
Repair
any
faults
observing
meter
.
Continue
to
move
down
harness
until
found
.
meter
displays
a
reading
.
This
is
the
location
of
short
to
ground
.
6
.
Visually
inspect
wire
harness
atthis
point
for
any
faults
.
lf
no
faults
are
visible,
carefully
slice
open
harness
cov-
erorwire
insulation
for
further
inspection
.
Repair
any
faults
found
.
610
Electrical
Component
Locations
GENERAL
...........
.
.
.
.
.
.
.
.
.
........
610-1
FOSE
POSITION
TABLES
..
.
.
.
.
.
.....
.
610-19
FUSE
AND
RELAY
POSITIONS
.
...
.
.
.
.
.
610-1
Fuse
Positions
.
.
.
................
.
.
.
.
.
610-1
Relay
Positions
.
.
.
.....
.
.
.
........
.
.
.
.
.
610-2
Auxiliary
RelayPanel
.....
.
...
.
........
.
610-2
SplicePanel,
Left
.
.
.
...
.
.
.
...
.
........
.
610-2
SplicePanel,
Right
.
.
.
.
.
.
.
.
...
.
.........
610-3
COMPONENT
LOCATIONS
.
.
.
.
.......
.
.610-3
Component
Location
Table
.
.
.
.
.
.
.........
610-9
GENERAL
FUSE
AND
RELAY
POSITIONS
This
repair
group
covers
f
use,
relay,
and
control
module
lo-
The
front
power
distribution
box,
an
auxiliary
relay
panel,cation
information
.
Electrical
equipment
and
accessories
in-
and
two
auxiliary
splice
panels
contain
most
of
the
fuses
and
stalled
varies
depending
on
model
and
model
year
.
Always
relays
in
E36
vehicles
.
Refer
to
the
component
location
later
confirm
that
the
proper
electrical
component
has
been
identi-
in
this
section,
as
well
as
the
tables
at
the
end
of
this
repair
fied
by
using
the
electrical
wiring
diagrams
.
group
for
electrical
component
location
.
WARNING
-
On
cars
equipped
with
airbags,
special
precautionsapply
to
any
electrical
system
testing
orrepair
.
Air-
bag
units
areexplosive
devices
and
mustbe
han-
dled
with
extremecare
.
Before
starting
any
work
onan
airbag
equipped
car,
refer
to
the
wamings
and
cautions
in
721
Airbag
System
(SRS)
.
CAUTION
-
"
Prior
to
disconnectiog
the
battery,
read
the
bat-
tery
disconnection
cautions
given
at
the
front
of
this
manual
on
page
viii
.
"
Relay
and
fuse
positions
are
subject
to
changeand
may
varyfrom
car
to
car
.
If
questions
arise,
an
authorized
BMW
dealer
is
the
best
source
for
the
most
accurate
and
up-to-date
information
.
"
A
good
way
to
verify
a
relay
position
isto
com-
pare
the
wiring
colors
at
the
relay
socket
to
thecolors
indicated
on
the
wiring
diagrams
located
at
the
rear
of
this
manual
.
"
Always
switchthe
ignition
off
and
disconnect
the
negative
(-)
battery
cable
before
removing
any
electrical
components
.
"
Connect
and
disconnect
ignition
system
wires,
multiple
connectors,
and
ignition
test
equipment
leads
only
while
the
ignition
is
switched
off
.
"
Only
usea
digital
multimeter
for
electrical
tests
.
ELECTRICAL
COMPONENT
LOCATIONS
610-1
TABLES
a
.
E36Component
Locations
...........
.
.
..
...
610-10b
.
1992
E36
Fuse
Positions
..........
..
.
.
.....
610-20c
.
1993
E36
Fuse
Positions
..........
..
..
.
....
610-22d
.
1994
E36
Fuse
Positions
.........
...
.......
610-24e
.
1995
E36
Fuse
Positions
.........
...
.......
610-26
f
.
1996
E36
Fuse
Positions
.........
...
.......
610-28g
.
1997-1998
E36
Fuse
Positions
..
.
..
...
.......
610-30
Fuse
Positions
CAUTION
-
"
Replace
fuses
with
those
of
the
same
rating
.
In-
stalling
a
fuse
with
higher
rating
can
lead
to
cir-
cuit
failure
and
may
also
start
a
fire
.
"
Relay/fuse
positions
vary
by
model
and
equip-
ment
.
Fuses
number
1
through
46
are
mounted
in
the
front
power
distribution
box
.
See
Fig
.
1.
Fuses
31-46
~
Illlllllllll
°
-
Ilmmlmomlmoi
Fuses
1-20
(a
1
:1
E
El
~
~O!7
L~~n
4~
i
Fuses
21-30
Fig
.1.
Fuse
positions
1-46
in
front
power
distribution
box
.
0013034
FUSE
AND
RELAY
POSITIONS
610-2
ELECTRICAL
COMPONENT
LOCATIONS
Fuses
number47
and
50are
mounted
on
the
left
side
splice
panel
.
Refer
lo
Fig
.
5
.
Fuse48
is
mounted
on
the
auxiliary
relay
panel
.
Refer
to
Fig
.
3
.
Fuse
49
is
mounted
in
the
right
side
of
the
luggage
compart-
ment
behind
the
trim
cover
.
Relay
Positions
Mounted
in
the
left-hand
rear
comer
of
the
engine
compart-
ment,
the
power
distribution
box
contains
46
(uses
and
15
re-
lay
positions
.
See
Fig
.
2
.
Fuses31-46
-
Er
a
&QT
MM
~
Fig
.
2
.
E36
front
power
distribution
box
.
FUSE
AND
RELAY
POSITIONS
Fuses1-20
13
EL1
5
]
mmmmmmmmmm
Fuses
21-30
--
0013034)
1
.
Fuel
pump
relay
9
.
Heater/A/C
Blower
relay
2
.
System
(main)
relay
10
.
Rear
defogger
relay
3
.
Oxygen
sensorheater
re-
11
.
ABS
system
relay
lay
12
.
ABS
pump
relay
4
.
Horn
relay
13
.
High
speed
radiator
fan
re-
5
.
Taillight/foglight
relay
]ay
6
.
Low
beam
relay
14
.
A/C
compressor
relay
7
.
High
beam
relay
15
.
Low
speed
radiator
fan
re-
8
.
Emergency
flasherrelay
¡ay
Auxiliary
Relay
Panel
The
auxiliary
relay
panel
contains
five
relay
positions
.
In
lat-
er
modeis
an
additional
fuse
holder
(Fuse48)
and
the
EWS
II
(anti-theft)
transmitter/receiver
module
are
located
on
this
panel
.
See
Fig
.
3
.
The
panel
is
located
nextto
the
steering
column
under
the
driver's
side
dashboard
.
To
access
this
panel,
remove
the
pwer
dash
panel
on
driver's
side
.
See513
Interior
Trim
.
Then
remove
the
driver's
side
knee
bolster
.
Lower
the
relay
panel
by
gently
releasing
the
plastic
retainers
.
See
Fig
.
4
.
During
installation,
be
sure
the
retainer
tabs
are
engaged
in
the
relay
panel
.
Splice
Panel,
Left
3
¡ni
Fig
.
3
.
Auxiliary
relay
panel
under
left
side
of
dash
.
Fuse
48)
0013035
1
.
Comfort
relay
(where
ap-
4
.
Not
used
plicable)
5
.
Not
used
2
.
Crash
control
module
6
.
EWS
II
transmitter/receiv-
3
.
Park
ventilation
relay
er
module
(from
Jan
.
1995)
0013164
Fig
.
4
.
Auxiliary
relay
panel
under
left
sideof
dashboard
(arrow)
.
The
left
splice
panel
contains
four
relay
positions
and
an
ad-
ditional
fuse
holder
(Fuses
47
and
50)
.
To
access
the
left
side
electrical
splice
panel,
remove
the
left
side
dash
panel
and
knee
bolster,
as
described
earlier
.
The
panel
is
located
above
and
lo
the
left
of
the
clutch
pedal
.
See
Fig
.
5
.