• Mustang Forums
  • 1979 - 1995 (Fox, SN95.0, & 2.3L) -General/Talk-
  • Fox 5.0 Mustang Tech

Hot Stalling Issues

  • Thread starter Thread starter Chuckman
  • Start date Start date Jun 9, 2012
  • 1
  • 2
Next
1 of 2 Next Last

Chuckman

GTFO you fat, heavy bastard
15 Year Member
Oct 21, 2005
1,604
1,002
173
st. louis, mo
Jun 9, 2012
#1
  • Jun 9, 2012
  • #1
I just got my car put back together after having to put new head gaskets on it, although this current issue tried to rear its head before i tore into it.

It'll start and idle fine, can drive it around without a problem, but once the temp hits 180 and the e-fan switches on, it goes a bit crazy. when its revved, once you let off the gas it'll just die, and its a bitch to get started again, though it will if you rev it to like 1500 while starting and slowly let off to idle. but then eventually it'll start surging more and more until it dies again.

I'm almost thinking I should be looking at pip/tfi since both are original to the car, but being that it does (with work) start and (kinda) run, I'm wondering if I should be looking somewhere else. I have been chasing an egr code a long time now (codes 31/34, replaced egr valve/sensor/solenoid, no change, valve opens with manifold vac), but in all that time (probably 3-4 years now) I've never really had an actual running issue (well, my wedge combo that lasted 6 months would like to die on deceleration hot or cold, but a new speed sensor, lowering timing, and raising idle fixed that, haven't had this issue with the gt40p combo in the year or so its been running).

with my luck, this is probably something simple like a sensor being unplugged, but i would love to know where to start looking.
 

a91what

SendMeUrDataLog
10 Year Member
Apr 6, 2011
10,739
6,721
214
Hillsborough county
Jun 9, 2012
#2
  • Jun 9, 2012
  • #2
Have you tried to pull any codes recently? I had a similar issue with my iab, it got dirty car wouldnt idle. i would start there..
 

jrichker

StangNet's favorite TOOL
In Remembrance. Thank you for your contributions
Mar 10, 2000
27,512
2,813
234
Dublin GA
Jun 9, 2012
#3
  • Jun 9, 2012
  • #3
1.) Do you have a 3G or other high current alternator in your car. The stock 65 amp alternator does not produce enough current to power an electric fan and the rest of the car's electrical equipment.

2.) 3G or other high current alternator present: do you have a 4 gauge ground wire running from the engine block to the common ground point by the windshield washer tank filler?

The picture shows the common ground point for the battery , computer, & extra 3G alternator ground wire as described above in paragraph 2. A screwdriver points to the bolt that is the common ground point.

The battery common ground is a 10 gauge pigtail with the computer ground attached to it.
Picture courtesy timewarped1972



3.) 3G or other high current alternator and 4 gauge ground present and working correctly. See the "Surging Idle Checklist” for help with all your idle/stall problems. You can guess at the problem and throw parts at it, or you can use the checklist to help you find the problem quickly and inexpensively. The checklist is right here in the Stangnet 5.0 Tech forum and you don’t have navigate to some other unknown web site. It‘s free and doesn’t cost anything: at last count there were more than 103,000 visits and still climbing

The quick and easy way to dump the codes is in there too, and all you need to do it is a paper clip! The first two posts contain all the fixes & updates. At last count there were 24 possible causes and fixes for surging idle/stall problems. I continue to update it as more people post fixes or ask questions.
 

Chuckman

GTFO you fat, heavy bastard
15 Year Member
Oct 21, 2005
1,604
1,002
173
st. louis, mo
Jun 9, 2012
#4
  • Jun 9, 2012
  • #4
1) yes, i have a 3g alt, have for a few years since the stocker died.

2) i do not have a big ground here (the comp/batt ground is there), but i did run a 4ga from the back of the head to the firewall when i did the 3g, thought this was sufficient, but maybe not? either way, its been like that since i did the 3g, and the fan was added a couple years ago, and hasnt had this problem. i think i do have an extra piece of 4ga. though so ill run another, would the ground point on the timing cover be sufficent? isnt that where the battery grounds in the first place?

3)only koeo code i get is 34, which i've been getting forever and cant get to go away, as i mentioned before. iab and tps only have about 2k miles on them, tps voltage was in range when i put it on, will double check today. i also cleaned/spread/greased the 10-pins about 2-3 weeks ago when i had the intake off. idle voltage reads 14+ volts both by my autometer gauge and my voltmeter. i do have 24lb injectors with a c&l meter and the right sample tube, which also pre-dates this issue. timing at the moment sits at 10 base, idle is up around 8-900. vss was replaced at the same time as the iab and tps. fuel regulator is intact, pressure at 38psi with vac removed.

ive looked this car over and over again for a vac leak, and i just cannot find one unless its hidden in the pass fender or under the dash. only line ive even found in halfway beat-up shape was the one coming from the charcoal canister, which i re-ran earlier.
 

a91what

SendMeUrDataLog
10 Year Member
Apr 6, 2011
10,739
6,721
214
Hillsborough county
Jun 9, 2012
#5
  • Jun 9, 2012
  • #5
Do you still have the egr system in place? I hunted for a vac leak for weeks turns out that the two canisters that divert vac for the egr system were sucking in air at the caps
 

Chuckman

GTFO you fat, heavy bastard
15 Year Member
Oct 21, 2005
1,604
1,002
173
st. louis, mo
Jun 9, 2012
#6
  • Jun 9, 2012
  • #6
egr's still in, like i said all the egr parts are fairly recent, even the solenoid. i do have the vac line to the diverter for the air system capped off since im not using it (gt40p's, no air hole in the back of the head, hose running straight to the converters).
 

jrichker

StangNet's favorite TOOL
In Remembrance. Thank you for your contributions
Mar 10, 2000
27,512
2,813
234
Dublin GA
Jun 10, 2012
#7
  • Jun 10, 2012
  • #7
The EGR does not have anything to do with the ports on the back of the heads.

Some basic theory to clarify how things work is in order…

EGR System theory and testing

The EGR shuts off at Wide Open Throttle (WOT), so it has minimal effect on performance. The addition of exhaust gas drops combustion temperature, increases gas mileage and reduces the tendency of the engine to ping. It can also reduce HC emissions by reducing fuel consumption. The primary result of EGR usage is a reduction in NOx emissions.

The EGR system has a vacuum source (line from the intake manifold) that goes to the EVR, computer operated electronic vacuum regulator. The EVR is located on the back of the passenger side shock strut tower. The computer uses RPM, Load. and some other factors to tell the EVR to pass vacuum to open the EGR valve. The EGR valve and the passages in the heads and intake manifold route exhaust gas to the EGR spacer (throttle body spacer). The EGR sensor tells the computer how far the EGR valve is open. Then computer adjusts the signal sent to the EVR to hold, increase or decrease the vacuum. The computer adds spark advance to compensate for the recirculated gases and the slower rate they burn at.




Troubleshooting:
There should be no vacuum at the EGR valve when at idle. If there is, the EVR (electronic vacuum regulator) mounted on the backside of the passenger side wheelwell is suspect. Check the vacuum line plumbing to make sure the previous owner didn’t cross the vacuum lines.

Diagram courtesy of Tmoss & Stang&2birds. (the diagram says 88 GT, but the EGR part is the same for 86-93 Mustangs)


The EGR sensor is basically a variable resistor, like the volume control on a radio. One end is 5 volt VREF power from the computer (red/orange wire). One end is computer signal ground (black/white), and the middle wire (brown/lt green) is the signal output from the EGR sensor. It is designed to always have some small voltage output from it anytime the ignition switch is the Run position. That way the computer knows the sensor & the wiring is OK. No voltage on computer pin 27 (brown/lt green wire) and the computer thinks the sensor is bad or the wire is broken and sets code 31. The voltage output can range from approximately .6-.85 volt.

The EVR regulates vacuum to the EGR valve to maintain the correct amount of vacuum. The solenoid coil should measure 20-70 Ohms resistance. The regulator has a vacuum feed on the bottom which draws from the intake manifold. The other vacuum line is regulated vacuum going to the EGR valve. One side of the EVR electrical circuit is +12 volts anytime the ignition switch is in the run position. The other side of the electrical circuit is the ground path and is controlled by the computer. The computer switches the ground on and off to control the regulator solenoid.



EGR test procedure courtesy of cjones

EGR test procedure courtesy of cjones

to check the EGR valve:
bring the engine to normal temp.

connect a vacuum pump to the EGR Valve or see the EGR test jig drawing below. Connnect the test jig or to directly to manifold vacuum.

Do not connect the EGR test jig to the EVR (Electronic Vacuum Regulator).


apply 5in vacuum to the valve. Using the test jig, use your finger to vary the vacuum

if engine stumbled or died then EGR Valve and passage(there is a passageway through the heads and intake) are good.

if engine did NOT stumble or die then either the EGR Valve is bad and/or the passage is blocked.

if engine stumbled, connect EGR test jig to the hose coming off of the EGR Valve.
Use your finger to cap the open port on the vacuum tee.
snap throttle to 2500 RPM (remember snap the throttle don't hold it there).
did the vacuum gauge show about 2-5 in vacuum?
if not the EVR has failed

EGR test jig


To test the computer and wiring to the computer, you can use a test light across the EVR wiring connectors and dump the codes. When you dump the codes, the computer does a self test that toggles every relay/actuator/solenoid on and off. When this happens, the test light will flicker. If the test light remains on the computer or the wiring is suspect.

To check the EVR to computer wiring, disconnect the EVR connector and connect one end of the Ohmmeter to the dark green wire EVR wiring. Remove the passenger side kick panel and use a 10 MM socket to remove the computer connector from the computer. Set the Ohmmeter to high range and connect the other ohmmeter lead to ground. You should see an infinite open circuit indication or a reading greater than 1 Meg Ohm. If you see less than 200 Ohms, the dark green wire has shorted to ground somewhere.

Late Model Restoration may still have the Ford Racing M-12071-N302 kit with the EGR valve & sensor along with the ACT & ECT sensors for $45. See http://www.latemodelrestoration.com/iwwida.pvx?;item?item_no=M12071N302 1&comp=LRS for more details


Code 34 Or 334 - EGR voltage above closed limit –

Revised 26-Sep-2011 to add EGR cleaning and movement test for pintle when vacuum is applied to diaphragm

Failed sensor, carbon between EGR pintle valve and seat holding the valve off its seat. Remove the EGR valve and clean it with carbon remover. Prior to re-installing see if you can blow air through the flange side of the EGR by mouth. If it leaks, there is carbon stuck on the pintle valve seat clean or, replace the EGR valve ($85-$95).

Recommended procedure for cleaning the EGR:
Conventional cleaning methods like throttle body cleaner aren’t very effective. The best method is a soak type cleaner used for carburetors. If you are into fixing motorcycles, jet skis, snowmobiles or anything else with a small carburetor, you probably have used the one gallon soak cleaners like Gunk or Berryman. One of the two should be available at your local auto parts store for $22-$29. There is a basket to set the parts in while they are soaking. Soak the metal body in the carb cleaner overnight. Don’t immerse the diaphragm side, since the carb cleaner may damage the diaphragm. If you get any of the carb cleaner on the diaphragm, rinse it off with water immediately. Rinse the part off with water and blow it dry with compressed air. Once it has dried, try blowing through the either hole and it should block the air flow. Do not put parts with water on them or in them in the carb cleaner. If you do, it will weaken the carb cleaner and it won’t clean as effectively.

Gunk Dip type carb & parts soaker:



If you have a handy vacuum source, apply it to the diaphragm and watch to see if the pintle moves freely. Try blowing air through either side and make sure it flows when the pintle retracts and blocks when the pintle is seated. If it does not, replace the EGR.


If the blow by test passes, and you have replaced the sensor, then you have electrical ground problems. Check the resistance between the black/white wire on the MAP/BARO sensor and then the black/white wire on the EGR and the same wire on the TPS. It should be less than 1.5 ohm. Next check the resistance between the black/white wire and the negative battery post. It should be less than 1.5 ohm.

Note that all resistance tests must be done with power off. Measuring resistance with a circuit powered on will give false readings and possibly damage the meter.

Let’s put on our Inspector Gadget propeller head beanies and think about how this works:
The EGR sensor is a variable resistor with ground on one leg and Vref (5 volts) on the other. Its’ resistance ranges from 4000 to 5500 Ohms measured between Vref & ground, depending on the sensor. The center connection of the variable resistor is the slider that moves in response to the amount of vacuum applied. The slider has some minimum value of resistance greater than 100 ohms so that the computer always sees a voltage present at its’ input. If the value was 0 ohms, there would be no voltage output. Then the computer would not be able to distinguish between a properly functioning sensor and one that had a broken wire or bad connection. The EGR I have in hand reads 700 Ohms between the slider (EPV) and ground (SIG RTN) at rest with no vacuum applied. The EGR valve or sensor may cause the voltage to be above closed limits due to the manufacturing tolerances that cause the EGR sensor to rest at a higher position than it should.

The following sensors are connected to the white 10 pin connector (salt & pepper engine harness connectors)


This will affect idle quality by diluting the intake air charge




Thermactor Air System
Some review of how it works...

Revised 17-Sept-2011 to add testing procedure.

The Thermactor air pump (smog pump) supplies air to the heads or catalytic converters. This air helps break down the excess HC (hydrocarbons) and CO (carbon monoxide). The air supplied to the catalytic converters helps create the catalytic reaction that changes the HC & CO into CO2 and water vapor. Catalytic converters on 5.0 Mustangs are designed to use the extra air provided by the smog pump. Without the extra air, the catalytic converters will clog and fail.

The Thermactor air pump draws air from an inlet filter in the front of the pump. The smog pump puts air into the heads when the engine is cold and then into the catalytic converters when it is warm. The Thermactor control valves serve to direct the flow. The first valve, TAB (Thermactor Air Bypass) or AM1 valve) either dumps air to the atmosphere or passes it on to the second valve. The second valve, TAD (Thermactor Air Diverter valve or AM2 valve) directs it to the heads or the catalytic converters. Check valves located after the TAB & TAD solenoids prevent hot exhaust gases from damaging the control valves or pump in case of a backfire. The air serves to help consume any unburned hydrocarbons by supplying extra oxygen to the catalytic process. The computer tells the Thermactor Air System to open the Bypass valve at WOT (wide open throttle) minimizing engine drag. This dumps the pump's output to the atmosphere, and reduces the parasitic drag caused by the smog pump to about 2-4 HP at WOT. The Bypass valve also opens during deceleration to reduce or prevent backfires.

Code 44 RH side air not functioning.
Code 94 LH side air not functioning.

The computer uses the change in the O2 sensor readings to detect operation of the Thermactor control valves. When the dump valve opens, it reduces the O2 readings in the exhaust system. Then it closes the dump valve and the O2 readings increase. By toggling the dump valve (TAB), the computer tests for the 44/94 codes.

Failure mode is usually due to a clogged air crossover tube, where one or both sides of the tube clog with carbon. The air crossover tube mounts on the back of the cylinder heads and supplies air to each of the Thermactor air passages cast into the cylinder heads. When the heads do not get the proper air delivery, they set codes 44 & 94, depending on which passage is clogged. It is possible to get both 44 & 94, which would suggest that the air pump or control valves are not working correctly, or the crossover tube is full of carbon or missing.





Computer operation & control for the Thermactor Air System
Automobile computers use current sink technology. They do not source power to any relay, solenoid or actuator like the IAC, fuel pump relay, or fuel injectors. Instead the computer provides a ground path for the positive battery voltage to get back to the battery negative terminal. That flow of power from positive to negative is what provides the energy to make the IAC, fuel pump relay, or fuel injectors work. No ground provided by the computer, then the actuators and relays don't operate.

One side of the any relay/actuator/solenoid in the engine compartment will be connected to a red wire that has 12-14 volts anytime the ignition switch is in the run position. The other side will have 12-14 volts when the relay/actuator/solenoid isn't turned on. Once the computer turns on the clamp side, the voltage on the computer side of the wire will drop down to 1 volt or less.

In order to test the TAD/TAB solenoids, you need to ground the white/red wire on the TAB solenoid or the light green/black wire on the TAD solenoid.

For 94-95 cars: the colors are different. The White/Red wire (TAB control) is White/Orange (Pin 31 on the PCM). The Green/Black wire (TAD control) should be Brown (pin 34 at the PCM). Thanks to HISSIN50 for this tip.

Testing the system:

To test the computer, you can use a test light across the TAB or TAD wiring connectors and dump the codes. When you dump the codes, the computer does a self test that toggles every relay/actuator/solenoid on and off. When this happens, the test light will flicker.

Disconnect the big hose from smog pump: with the engine running you should feel air output. Reconnect the smog pump hose & apply vacuum to the first vacuum controlled valve: Its purpose is to either dump the pump's output to the atmosphere or pass it to the next valve.

The next vacuum controlled valve directs the air to either the cylinder heads when the engine is cold or to the catalytic converter when the engine is warm. Disconnect the big hoses from the back side of the vacuum controlled valve and start the engine. Apply vacuum to the valve and see if the airflow changes from one hose to the next.

The two electrical controlled vacuum valves mounted on the rear of the passenger side wheel well turn the vacuum on & off under computer control. Check to see that both valves have +12 volts on the red wire. Then ground the white/red wire and the first solenoid should open and pass vacuum. Do the same thing to the light green/black wire on the second solenoid and it should open and pass vacuum.

Remember that the computer does not source power for any actuator or relay, but provides the ground necessary to complete the circuit. That means one side of the circuit will always be hot, and the other side will go to ground or below 1 volt as the computer switches on that circuit.

The computer provides the ground to complete the circuit to power the solenoid valve that turns the
vacuum on or off. The computer is located under the passenger side kick panel. Remove the kick panel & the cover over the computer wiring connector pins. Check Pin 38 Solenoid valve #1 that provides vacuum to the first Thermactor control valve for a switch from 12-14 volts to 1 volt or less. Do the same with pin 32 solenoid valve #2 that provides vacuum to the second Thermactor control valve. Starting the engine with the computer jumpered to self test mode will cause all the actuators to toggle on and off. If after doing this and you see no switching of the voltage on and off, you can start testing the wiring for shorts to ground and broken wiring. An Ohm check to ground with the computer connector disconnected & the solenoid valves disconnected should show open circuit between the pin 32 and ground and again on pin 38 and ground. In like manner, there should be less than 1 ohm between pin 32 and solenoid valve #2 and pin 38 & Solenoid valve #1.

If after checking the resistance of the wiring & you are sure that there are no wiring faults, start looking at the solenoid valves. If you disconnect them, you can jumper power & ground to them to verify operation. Power & ground supplied should turn on the vacuum flow, remove either one and the vacuum should stop flowing.

Typical resistance of the solenoid valves is in the range of 20-70 Ohms.

Theory of operation:
Catalytic converters consist of two different types of catalysts: Reduction and Oxidation.
The Reduction catalyst is the first converter in a 5.0 Mustang, and the Oxidation converter is the second converter. The Oxidation converter uses the extra air from the smog pump to burn the excess HC. Aftermarket converters that use the smog pump often combine both types of catalysts in one housing. Since all catalytic reactions depend on heat to happen, catalytic converters do not work as efficiently with long tube headers. The extra length of the long tubes reduces the heat available to operate the O2 sensors and the catalytic converters. That will cause emissions problems, and reduce the chances of passing an actual smog test.


Now for the Chemistry...
"The reduction catalyst is the first stage of the catalytic converter. It uses platinum and rhodium to help reduce the NOx emissions. When an NO or NO2 molecule contacts the catalyst, the catalyst rips the nitrogen atom out of the molecule and holds on to it, freeing the oxygen in the form of O2. The nitrogen atoms bond with other nitrogen atoms that are also stuck to the catalyst, forming N2. For example:

2NO => N2 + O2 or 2NO2 => N2 + 2O2

The oxidation catalyst is the second stage of the catalytic converter. It reduces the unburned hydrocarbons and carbon monoxide by burning (oxidizing) them over a platinum and palladium catalyst. This catalyst aids the reaction of the CO and hydrocarbons with the remaining oxygen in the exhaust gas. For example:

2CO + O2 => 2CO2

There are two main types of structures used in catalytic converters -- honeycomb and ceramic beads. Most cars today use a honeycomb structure." Quote courtesy of How Stuff Works (HowStuffWorks "Catalysts")

What happens when there is no extra air from the smog pump...
As engines age, the quality of tune decreases and wear causes them to burn oil. We have all seem cars that go down the road puffing blue or black smoke from the tailpipe. Oil consumption and poor tune increase the amount of HC the oxidation catalyst has to deal with. The excess HC that the converters cannot oxidize due to lack of extra air becomes a crusty coating inside the honeycomb structure. This effectively reduces the size of the honeycomb passageways and builds up thicker over time and mileage. Continuous usage under such conditions will cause the converter to fail and clog. The extra air provided by the Thermactor Air System (smog pump) is essential for the oxidation process. It oxidizes the added HC from oil consumption and poor tune and keeps the HC levels within acceptable limits.

Newer catalytic converters do not use the Thermactor Air System (smog pump) because they are designed to work with an improved computer system that runs leaner and cleaner
They add an extra set of O2 sensors after the catalytic converters to monitor the oxygen and HC levels. Using this additional information, the improved computer system adjusts the air/fuel mixture for cleaner combustion and reduced emissions. If the computer cannot compensate for the added load of emissions due to wear and poor tune, the catalytic converters will eventually fail and clog. The periodic checks (smog inspections) are supposed to help owners keep track of problems and get them repaired.
 

Chuckman

GTFO you fat, heavy bastard
15 Year Member
Oct 21, 2005
1,604
1,002
173
st. louis, mo
Jun 10, 2012
#8
  • Jun 10, 2012
  • #8
jrichker said:
The EGR does not have anything to do with the ports on the back of the heads.
Click to expand...

this i know, which is why i said the diverter valve for the air system was capped off. i have the smog pump is setup to either dump to atmosphere or straight back to the cats, since there isnt a smog port on the p's.

something must have gone screwy when i had this thing apart, it ran fine all spring, even got a couple track days in (which actually made all this happen in the first place, blew up a heater hose at the track and tried to limp it a couple miles to get a new one). i ended up putting a new intake and tstat gasket (leaking coolant out the front), had no problems for about a week, then it just sucked what seemed like the whole rad's worth of coolant into the oil pan. re-gasketed the whole thing, and this is where the stalling at temp really began (it did start this crap when it was sucking coolant, dont see any evidence that its doing it now though).
 

jrichker

StangNet's favorite TOOL
In Remembrance. Thank you for your contributions
Mar 10, 2000
27,512
2,813
234
Dublin GA
Jun 11, 2012
#9
  • Jun 11, 2012
  • #9
Put a vacuum gauge on the engine and look for 18"-21" of vacuum at 1000-1200 RPM. You may have a slipped intake gasket or some broken vacuum tubing. I hope that this isn't a repeat of anything I suggested earlier
 

Chuckman

GTFO you fat, heavy bastard
15 Year Member
Oct 21, 2005
1,604
1,002
173
st. louis, mo
Jun 11, 2012
#10
  • Jun 11, 2012
  • #10
just dug out my vac gauge (which is older than me btw, amazed it still works) and got 15" at idle, and 17" at 11-1200, 20" at 1500. sounds like it may be a bit low. i have the a/c port on the tree capped off, which means there should be no vacuum inside the cabin right? it does have a tfs1 cam, dunno if its big enough to cause weird vac issues though, just mentioning it.

i threw a new pcv at it last night (something i meant to do while i had it apart, the old one still had a bit of milkshake on it) and attempted to fiddle with the cai to maybe get the maf in a better airstream, only to have a damn coupler rip in half. since its been a pita since i got it anyway, i just put the stock airbox back in when i got home from work today. havent tried to see if either solved the problem yet.

im working my way through the list with the easy to get to stuff first, tps is set at 1.01v with my dvm. iab/iac, tps, 02's, vss, and both temp sensors are only about 1.5 years old with maybe 3k miles (did em all when i rebuilt the first motor), hopefully one of them isnt bad. fuel pressure is 38psi with the vac removed, and nothing spurts out. does smell a bit rich at the tails, but not excessively so.

ill mess with the vac lines a bit tonight, i kinda doubt its an intake gasket because of how i put it on (tacky rtv and used two of my upper intake's studs as guides), but am not ruling it out, especially the upper or spacer since i've been just using rtv on that joint lately instead of paying another $20-30 and waiting 3 days for a pair of tfs gaskets with as often as i seem to take the upper off to fix/mess with something.
 

ratio411

Founding Member
Apr 21, 2002
3,870
73
109
Pensacola FL
Jun 11, 2012
#11
  • Jun 11, 2012
  • #11
Don't overlook what you are being told by the computer gurus here, but I would throw out the fact that a coil or ignition module that is going out will often operate fine until operating temp is reached, at which point they will cease working until cooled again.
 

Chuckman

GTFO you fat, heavy bastard
15 Year Member
Oct 21, 2005
1,604
1,002
173
st. louis, mo
Jun 11, 2012
#12
  • Jun 11, 2012
  • #12
coils new, and i did end up swapping the pip and tfi, no change.

i was going to mess with the vac lines tonight, but got distracted (mostly cause i dont know how i wanna do it). i did try to track down whats up with that code 34 again, all the grounds look ok (.9-1.5ohms from egr to tps/bap/block/battery), took the valve off, cleaned it off a bit, cant blow anything through the ports, applying engine vacuum does make it bog, and with the sensor both on and off the valve i get a base of 4300ohms and moving the "plunger" in it went to ~2700-2800. and thats the point at which i am utterly confused, your post says it should "range" between 4000-5500, but then you say it sits above 100? does that mean that with the plunger all the way out it should be at that low number, and with it in it should be 4k+? or is it supposed to be 100 from one side to center, and 4000 from side to side (looking at how its laid out in the connector)?
 

ratio411

Founding Member
Apr 21, 2002
3,870
73
109
Pensacola FL
Jun 12, 2012
#13
  • Jun 12, 2012
  • #13
Chuckman said:
coils new, and i did end up swapping the pip and tfi, no change.
Click to expand...

Too bad that wasn't it.
It sux to throw money at it, but I have had an EFI engine lose it's coil in the same manner you describe, and the ECM had no idea (codes).
Back to the computer gurus...
 

89stang1

Stroked and Juiced
10 Year Member
Nov 5, 2008
730
234
74
nj
Jun 12, 2012
#14
  • Jun 12, 2012
  • #14
My car did exact thing right around 180 degrees car would die and not restart then restart fine 4 or 5 hours later i swapped lots of parts cause computer wasnt throwing any good codes, so i swapped computer and new computer gave me pip sensor code i replaced it with the better Napa line called Elkin pip sensor car has ran fine since some of the cheaper priced chain part store pip sensors are known to come out of box dead.
 

Chuckman

GTFO you fat, heavy bastard
15 Year Member
Oct 21, 2005
1,604
1,002
173
st. louis, mo
Jun 12, 2012
#15
  • Jun 12, 2012
  • #15
89stang1 said:
My car did exact thing right around 180 degrees car would die and not restart then restart fine 4 or 5 hours later
Click to expand...

and there lies my problem: the thing will restart with throttle, idle, and run at temp, but then as soon as you let off the throttle again it'll die, or if you let it off easy to idle and let it sit there it'll start surging after a few seconds till it dies.
 

jrichker

StangNet's favorite TOOL
In Remembrance. Thank you for your contributions
Mar 10, 2000
27,512
2,813
234
Dublin GA
Jun 13, 2012
#16
  • Jun 13, 2012
  • #16
See the "Surging Idle Checklist” for help with all your idle/stall problems. You can guess at the problem and throw parts at it, or you can use the checklist to help you find the problem quickly and inexpensively. The checklist is right here in the Stangnet 5.0 Tech forum and you don’t have navigate to some other unknown web site. It‘s free and doesn’t cost anything: at last count there were more than 103,000 visits and still climbing

The quick and easy way to dump the codes is in there too, and all you need to do it is a paper clip! The first two posts contain all the fixes & updates. At last count there were 24 possible causes and fixes for surging idle/stall problems. I continue to update it as more people post fixes or ask questions.
 

Chuckman

GTFO you fat, heavy bastard
15 Year Member
Oct 21, 2005
1,604
1,002
173
st. louis, mo
Jun 15, 2012
#17
  • Jun 15, 2012
  • #17
well, i replaced every vacuum line i could get to (couldnt get to the two inside the fender for the tank), put in the 4ga. wire at the computer ground, and threw a new egr sensor at it, and it looks like the stalling/idle problems are gone now, though i still get the damn code 34, i was really hoping not to throw a new valve at it since its kinda $$ (and it holds air/actuates fine), is there a measurement for how far the spring plate is supposed to be from the sensor mounting surface?

also, after i let it get to temp last night and idled/revved it for about 10 mins last night, i plugged in my code scanner, and when i unplugged it the car died, and wouldn't even crank over, like the batt was dead. its been slow to crank when hot in the past, but its never not cranked at all (at least just when hot, i did have the starter die completely on me like a year ago). could it be the starter heat-soaking and dieing again, or should i be looking somewhere else?
 

Chuckman

GTFO you fat, heavy bastard
15 Year Member
Oct 21, 2005
1,604
1,002
173
st. louis, mo
Jun 15, 2012
#18
  • Jun 15, 2012
  • #18
alright, scratch the cure on the stalling problems. tried to take it around the block to get her warmed up a bit to try to see what was going on with this no-crank situation, and on the way back it stalled twice coming back into my neighborhood, wouldnt crank over, but was able to coast-start it. coming up the driveway to the garage it did it again (poor reaction times on my part, some trhottle would have saved it), and i couldnt even get it to jump start off the truck, voltmeter would crash back down to 9v after every attempt to start, and come back up to 12.5-13 once it had a few seconds for the trucks alternator to charge it. luckily a few of the guys from down the street were outside and helped me push it back up the hill to the garage.

ill throw my charger on it and have a better look at the wiring later, but i did run that extra 4ga wire from the computer ground on the fender to the ground screw on the timing cover where the battery grounds to. could this be draining the battery somehow? was still showing 14.5-15v on the gauge while driving around, and the starter does TRY to turn it over, but just doesnt get more than one umph on it.
 

jrichker

StangNet's favorite TOOL
In Remembrance. Thank you for your contributions
Mar 10, 2000
27,512
2,813
234
Dublin GA
Jun 15, 2012
#19
  • Jun 15, 2012
  • #19
No Crank checklist for 5.0 Mustangs

Revised 05-Oct-2010 to update Fluke references.

No crank. slow crank and stuck starter solenoid problems have the same root causes – low battery voltage and poor connections. For that reason, they are grouped together.
Use the same initial group of tests to find the root cause of both no crank and stuck solenoid problems.

Since some of the tests will bypass the safety interlocks, make sure that the car is in neutral and the parking brake is set. Becoming a pancake isn’t part of the repair process…


1.) Will the car start if it is jumped? Then clean battery terminals and check battery for low charge and dead cells. A good battery will measure 12-13 volts at full charge with the ignition switch in the Run position but without the engine running.
A voltmeter placed across the battery terminals should show a minimum of 9.5-10 volts when the ignition switch is turned to the Start position and the starter engages or tries to engage. Less than this will result in a clicking solenoid, or slow cranking (if it cranks at all) or a starter solenoid that sticks and welds the contacts together.

Most auto parts stores will check your battery for free. It does not have to be installed in the car to have it checked; you can carry it with you to the auto parts store.

The battery posts and inside of the battery post terminals should be scraped clean with a knife or battery post cleaner tool. This little trick will fix a surprising number of no start problems.

The clamp on with 2 bolts battery terminal ends are a known problem causer. Any place you see green on a copper wire is corrosion. Corrosion gets in the clamped joint and works its way up the wire under the insulation. Corroded connections do not conduct electricity well. Avoid them like the plague...

If the starter solenoid welds the contacts, then the starter will attempt to run anytime there is power in the battery. The cables and solenoid will get very hot, and may even start smoking. The temporary fix for a welded starter solenoid is to disconnect the battery and smack the back of the solenoid housing a sharp blow with a hammer. This may cause the contacts to unstick and work normally for a while.

A voltmeter is handy if you are familiar with how to use it to find bad connections. Measure the voltage drop across a connection while trying to start the car: more than .5 volts across a connection indicates a problem. The voltage drop tests need to be done while cranking the engine. It's the current flowing through a connection or wire that causes the voltage drop.

See http://assets.fluke.com/appnotes/automotive/beatbook.pdf for help for help troubleshooting voltage drops across connections and components. .



2.) Check the battery to engine block ground down near the oil filter, and the ground behind the engine to the firewall. All grounds should be clean and shiny. Use some sandpaper to clean them up.

3.) Jump the big terminals on the starter solenoid next to the battery with a screwdriver - watch out for the sparks! If the engine cranks, the starter and power wiring is good. The starter relay is also known as a starter solenoid.

The rest of the tech note only concerns no crank problems. If your problem was a stuck solenoid, go back to step 1.

4.) Then pull the small push on connector (small red/blue wire) off the starter solenoid (Looks like it is stuck on a screw). Then jump between the screw and the terminal that is connected to the battery. If it cranks, the relay is good and your problem is in the rest of the circuit.

5.) Remember to check the ignition switch, neutral safety switch on auto trans and the clutch safety switch on manual trans cars. If they are good, then you have wiring problems.

Typical start circuit...
Diagram courtesy of Tmoss & Stang&2birds



6.) Pull the starter and take it to AutoZone or Pep Boys and have them test it. Starter fails test, then replace it. If you got this far, the starter is probably bad.


Starter solenoid wiring for 86-91 Mustang



Starter solenoid wiring 92-93 Mustang or earlier Mustang with upgraded high torque mini starter.


Electrical checks for the switches and starter solenoid

Remove the small red/blue wire from the starter solenoid. Use a screwdriver to bridge the connection from the battery positive connection on the starter solenoid to the small screw where the red/blue wire was connected. The starter should crank the engine. If it does not, the starter solenoid is defective or the battery lacks sufficient charge to crank the engine.

If the starter does crank the engine, the problem is in the clutch safety circuit (5 speed) or Neutral Sense Switch (auto trans) or ignition switch.


Typical start circuit...
Diagram courtesy of Tmoss & Stang&2birds


You will need a voltmeter or test lamp for the rest of the checks. Connect one lead of the voltmeter or test lamp to ground. The other lead will connect to the item under test.
Look for 12 volts on the white/pink wire when the ignition switch is turned to the Start position. Check the ignition switch first.
No 12 volts, replace the ignition switch.

The next step will require you to push the clutch pedal to the floor (5 speed) or put the transmission in neutral (auto trans) while the ignition switch is turned to the Start position.
Good 12 volts, check the clutch safety switch (5 speed) or Neutral Sense Switch (auto trans) for good 12 volts on both sides of the switches. No 12 volts on both sides of the switch and the switches are defective or out of adjustment. Check the wiring for bad connections while you are at it.
 

Chuckman

GTFO you fat, heavy bastard
15 Year Member
Oct 21, 2005
1,604
1,002
173
st. louis, mo
Jun 17, 2012
#20
  • Jun 17, 2012
  • #20
ok, looks like ive got the cranking problem solved, ran new battery and starter cables, also put in a new starter (lifetime warranty). itll start when hot again but wont stay that way, wants to stall out instead of idle. fan wasnt even running this time either, something else i gotta fix now it didnt stall to begin with this time, though, i actually shut it off, and then couldnt keep it running without throttle again.

so far what i've checked (going in order of the surging list)
koer codes check as 34, 94, and 44. expecting the 94 and 44 cause of how i have the smog setup. koeo only show the 34 (see below)
iac valve- ~1 year old, clean, all resistance and voltages seem check out.
tps- replaced at same time as iac, set to 1v
new vac lines everywhere except inside the fender, heater controls blocked off on the tree.
O2's are less than a year old (fall), dont have an analog voltmeter.
14+ volts at idle
10-pin connectors cleaned, with the pins spread.
put on stock airbox and tube.
all grounds are 4ga, and new. ground from the ecu to block is going to same location as the main battery ground, still dont know if this is right.
no ect or act codes, both sensors were replaced with the new motor.
new pcv valve.
new vss, i havent even driven the car anywhere anyway.
new egr sensor, ground checks out, and the valve itself doesnt leak and actuates fine (stumbles engine with direct vac). valve was also replaced a couple years ago. this one really weirds me out cause i STILL get a code 34 with all new stuff here.
timing is set to 10btdc base.
regulator checks good, no spewing fuel, no smoke, etc.
new distributor/pip, also new tfi module.

either later today or tomorrow i'll throw the vac gauge back on it and see where it is, and ill check the maf voltage/resistance.
 
  • 1
  • 2
Next
1 of 2 Next Last
You must log in or register to reply here.

Similar threads

T
Oil burning on my recently buil 302
  • The blk67
  • May 15, 2026
  • Fox 5.0 Mustang Tech
Replies
3
Views
161
Fox 5.0 Mustang Tech May 15, 2026
Noobz347
Engine (EGR Deleted) Solution the hotter combustion chambers?
  • PonyGTrider
  • Jan 21, 2026
  • Fox 5.0 Mustang Tech
  • 3 4 5
Replies
97
Views
3K
Fox 5.0 Mustang Tech May 2, 2026
PonyGTrider
7
Engine Random hanging idle
  • 706 Saleen
  • Feb 11, 2026
  • Fox 5.0 Mustang Tech
Replies
9
Views
664
Fox 5.0 Mustang Tech Feb 19, 2026
86HO5.0
8
S
Fuel ‘88 GT Runs Rich Cold — Fixes Itself When I Unplug Sensors (ECT, MAF, O2, etc.)
  • Sufarry
  • Nov 6, 2025
  • Fox 5.0 Mustang Tech
Replies
12
Views
882
Fox 5.0 Mustang Tech Nov 9, 2025
Mustang5L5
W
1993 LX 5.0 dies after ignition parts replacement
  • Warhorse85
  • Aug 16, 2025
  • Fox 5.0 Mustang Tech
  • 5 6 7
Replies
122
Views
3K
Fox 5.0 Mustang Tech Nov 4, 2025
General karthief
Share:
Bluesky Email Share Link
  • Mustang Forums
  • 1979 - 1995 (Fox, SN95.0, & 2.3L) -General/Talk-
  • Fox 5.0 Mustang Tech
Menu
Log in

Register

  • Forums
  • What's new
  • Media
  • Resources
  • Contact
  • Sponsor
X

Privacy & Transparency

We use cookies and similar technologies for the following purposes:

  • Personalized ads and content
  • Content measurement and audience insights

Do you accept cookies and these technologies?

X

Privacy & Transparency

We use cookies and similar technologies for the following purposes:

  • Personalized ads and content
  • Content measurement and audience insights

Do you accept cookies and these technologies?