Downloaded from www.Manualslib.com manuals search engine 1B-14 AIR CONDITIONING (OPTIONAL)
0.05 – 0.15
(0.5 – 1.5)
(4.2 – 21.3)
0.69 – 0.98
(7 – 10)
(100 – 142)Both low and high pres-
sure sides indicate low
readings.
Continuous air bub-
bles are visible through
sight glass.
Output air is slightly
cold.Insufficient refrigerant in
system.
(Refrigerant leaking)Using leak detector,
check for leaks and repair
as necessary.
Recharge refrigerant to a
specified amount.
If the pressure reading is
almost 0 when the mani-
fold gauges are attached,
check for any leaks,
repair them, and evacu-
ate the system.
0.4 – 0.6
(4 – 6)
(56.9 – 85.3)Pressure on low pres-
sure side is high.
Pressure on high pres-
sure side is low.
Both pressure becom-
ing equal right after A/C
is turned OFF.Internal leak in compres-
sor.Inspect compressor and
repair or replace as nec-
essary.
0.35 – 0.45
(3.5 – 4.5)
(50 – 64)
1.96 – 2.45
(20 – 25)
(285 – 355)Pressure on both low
and high pressure
sides is high.
Air bubbles are not visi-
ble even when engine
rpm is lowered.Overcharged A/C sys-
tem.Adjust refrigerant to
specified amount.
Faulty condenser cooling
operation.Clean condenser.
Faulty condenser cooling
fan operation.Inspect and repair con-
denser cooling fan.
Pressure on both low
and high pressure
sides is high.
Low pressure side tub-
ing is not cold when
touched.
Air bubbles are visible
through sight glass.Presence of air in A/C
system.
(Improperly evacuated)Replace receiver / dryer.
Inspect quantity of com-
pressor oil and presence
of contaminants in oil.
Evacuate system and
recharge with fresh
refrigerant.
0.45 – 0.55
(4.5 – 5.5)
(64 – 78)Pressure on both low
and high pressure
sides is high.
Large amount of frost
or dew on the low pres-
sure side tubing.Faulty expansion valve.
Refrigerant flow is not
regulated properly.Replace expansion valve. Condition
Possible Cause Correction MANIFOLD
GAUGEMPa
(kg/cm
2)
(psi)Detail
Lo Hi
Downloaded from www.Manualslib.com manuals search engine WHEELS AND TIRES 3F-9
Tire
Mounting and demounting
Use tire changing machine to mount or demount tires. Follow equipment manufacturer’s instructions. Do not use
hand tools or tire irons alone to change tires as they may damage tire beads or wheel rim.
Rim bead seats should be cleaned with wire brush or coarse steel wool to remove lubricants, old rubber and
light rust. Before mounting or demounting tire, bead area should be well lubricated with approved tire lubricant.
After mounting, inflate to 240 kPa (35 psi) so that beads are completely seated. Then adjust pressure to speci-
fied shown on tire placard.
Install valve core and inflate to proper pressure.
Repair
There are many different materials and techniques on the market to repair tires. As not all of these work on all
types of tires, tire manufacturers have published detailed instructions on how and when to repair tires. These
instructions can be obtained from the tire manufacturer.WARNING:
Do not stand over tire when inflating. Bead may break when bead snaps over rim’s safety hump and
cause serious personal injury.
Do not exceed 240 kPa (35 psi) pressure when inflating. If 240 kPa (35 psi) pressure will not seat
beads, deflate, re-lubricate and reinflate. Over inflation may cause bead to break and cause serious
personal injury.
Downloaded from www.Manualslib.com manuals search engine 5E-6 ANTILOCK BRAKE SYSTEM (ABS)
Diagnosis
To ensure that the trouble diagnosis is done accurately and smoothly, observe “Precautions in Diagnosing Trou-
bles” and follow “ABS Diagnostic Flow Table”.
Precaution in Diagnosing Troubles
If the vehicles was operated in any of the following ways, “ABS” warning lamp may light momentarily but this
does not indicate anything abnormal in ABS.
–The vehicle was driven with parking brake pulled.
–The vehicle was driven with brake dragging.
–The vehicle was stuck in mud, sand, etc.
–Wheel spin occurred while driving.
–Wheel(s) was rotated while the vehicle was jacked up.
Be sure to read “Precautions for Electronic Circuit Service” in Section 0A before inspection and observe
what is written there.
Be sure to use the trouble diagnosis procedure as described in the flow table. Failure to follow the flow table
may result in incorrect diagnosis. Some other diag. trouble code may be stored by mistake in the memory of
ABS control module during inspection.
ABS Diagnostic Flow Table
Refer to the following for the details of each step.
Step Action Yes No
1 Perform customer complaint analysis, problem symptom confir-
mation and diagnostic trouble code check record and clear-
ance.
Is there any trouble code?Go to Step 2. Go to Step 5.
2 Perform driving test.
Is trouble symptom identified?Go to Step 3. Go to Step 6.
3 Check diagnostic trouble code.
Is it malfunction code?Go to Step 4. Go to Step 5.
4 Inspect and repair referring to applicable diagnostic trouble
code table in this section. Then perform final confirmation test
after clearing diagnostic trouble code.
Is trouble recur?Go to Step 7. End.
5 Inspect and repair referring to “Diagnosis Table” in Section 5.
Then perform final confirmation test after clearing diagnostic
trouble code.
Is trouble recur?Go to Step 7. End.
6 Check for intermittent problems referring to “Intermittent and
Poor Connection” in Section 0A and related circuit of trouble
code recorded in Step 3. Then perform final confirmation test
after clearing diagnostic trouble code.
Is trouble recur?Go to Step 7. End.
7 Perform diagnostic trouble code check record and clearance.
Is there any trouble code?Go to Step 4. Go to Step 5.
Downloaded from www.Manualslib.com manuals search engine 6-14 ENGINE GENERAL INFORMATION AND DIAGNOSIS
Malfunction indicator lamp (MIL) check
1) Turn ON ignition switch (but the engine at stop) and check
that MIL lights.
If MIL does not light up (or MIL dims), go to “Diagnostic Flow
Table A-1” for troubleshooting.
If MIL flushes, go to “Diagnostic Flow Table A-3” for trouble
shooting (vehicle without immobilizer indicator lamp).
2) Start engine and check that MIL turns OFF.
If MIL remains ON and no DTC is stored in ECM, go to
“Diagnostic Flow Table A-2” for troubleshooting.
Diagnostic trouble code (DTC) check
[Using SUZUKI Scan Tool]
1) Prepare SUZUKI scan tool.
2) With ignition switch OFF, connect it to data link connector
(DLC) (1) located on underside of instrument panel at
driver’s seat side.
Special tool
(A) : SUZUKI scan tool
3) Turn ignition switch ON and confirm that MIL lights.
4) Read DTC, pending DTC and freeze frame data according to
instructions displayed on scan tool and print it or write it
down.
Refer to scan tool operator’s manual for further details.
If communication between scan tool and ECM is not possi-
ble, check if scan tool is communicable by connecting it to
ECM in another vehicle. If communication is possible in this
case, scan tool is in good condition. Then check data link
connector and serial data line (circuit) in the vehicle with
which communication was not possible.
5) After completing the check, turn ignition switch off and dis-
connect scan tool from data link connector.
[Without Using SUZUKI Scan Tool] (Vehicle Without
Immobilizer Indicator Lamp)
1) Check malfunction indicator lamp referring to “Malfunction
Indicator Lamp Check” in this section.
2) With the ignition switch OFF position, connect diagnosis
switch terminal (3) and ground terminal (2) in monitor con-
nector (1) with service wire (4).
3) With the ignition switch ON position and leaving engine OFF,
read DTC from flashing pattern of malfunction indicator
lamp. Refer to “Diagnostic Trouble Code Table”.
If lamp does not flash or remains ON or OFF, go to “Diag-
nostic Flow Table A-4”.