Contents Wiring diagrams Section: Automatic Trans All sections

Automatic Transmission: Specifications Ford Focus I facelift

Automatic Trans 7 illustrations ~2486 words

GENERAL SPECIFICATIONS

ItemSpecification
MERCON® V Automatic Transmission Fluid XT-5-QM (or XT-5-QMC) (US); CXT-5-LM12 (Canada)MERCON® V
Motorcraft Metal Surface Cleaner ZC-21WSE-M5B392-A
Ultra Silicone Sealant TA-29
Thread Sealant with PTFE TA-24WSK-M2G350-A2
Multi-Purpose Grease XG-4 and/or XL-5ESB-M1C93-B

GENERAL SPECIFICATIONS

CAPACITIES

Refill Capacities - LitersQuarts
Transaxle dry fill capacity 6.77

CAPACITIES

CLUTCH PLATE USAGE AND CLEARANCE SPECIFICATION CHART

ClutchSteel PlatesFriction PlatesClearance mm (In)Selective Snap Ring Part NumbersSelective Snap Ring Thickness mm (In)
Forward441.5-1.8 (0.0590-0.0708)1.15-1.25 (0.0452-0.0492)
Forward441.5-1.8 (0.0590-0.0708)1.35-1.45 (0.0531-0.0570)
Forward441.5-1.8 (0.0590-0.0708)1.55-1.65 (0.0610-0.0649)
Forward441.5-1.8 (0.0590-0.0708)1.75-1.85 (0.0688-0.0728)
Forward441.5-1.8 (0.0590-0.0708)1.95-2.05 (0.0767-0.0807)
Forward441.5-1.8 (0.0590-0.0708)2.15-2.25 (0.0846-0.0885)
Direct331.0-1.3 (0.0393-0.0511)1.15-1.25 (0.0452-0.0492)
Direct331.0-1.3 (0.0393-0.0511)1.35-1.45 (0.0531-0.0570)
Direct331.0-1.3 (0.0393-0.0511)1.55-1.65 (0.0610-0.0649)
Direct331.0-1.3 (0.0393-0.0511)1.75-1.85 (0.0688-0.0728)
Direct331.0-1.3 (0.0393-0.0511)1.95-2.05 (0.0767-0.0807)
Direct331.0-1.3 (0.0393-0.0511)2.15-2.25 (0.0846-0.0885)
Reverse221.0-1.3 (0.0393-0.0511)1.15-1.25 (0.0452-0.0492)
Reverse221.0-1.3 (0.0393-0.0511)1.35-1.45 (0.0531-0.0570)
Reverse221.0-1.3 (0.0393-0.0511)1.55-1.65 (0.0610-0.0649)
Reverse221.0-1.3 (0.0393-0.0511)1.75-1.85 (0.0688-0.0728)
Reverse221.0-1.3 (0.0393-0.0511)1.95-2.05 (0.0767-0.0807)
Reverse221.0-1.3 (0.0393-0.0511)2.15-2.25 (0.0846-0.0885)
Low/Reverse552.2-2.5 (0.0866-0.0984)1.75-1.85 (0.0688-0.0728)
Low/Reverse552.2-2.5 (0.0866-0.0984)1.95-2.05 (0.0767-0.0807)
Low/Reverse552.2-2.5 (0.0866-0.0984)2.15-2.25 (0.0846-0.0885)
Low/Reverse552.2-2.5 (0.0866-0.0984)2.35-2.45 (0.0925-0.0964)
Low/Reverse552.2-2.5 (0.0866-0.0984)2.55-2.65 (0.1003-0.1043)
Low/Reverse552.2-2.5 (0.0866-0.0984)2.75-2.85 (0.1082-0.1122)
Low/Reverse552.2-2.5 (0.0866-0.0984)2.95-3.05 (0.1161-0.1200)

CLUTCH PLATE USAGE AND CLEARANCE SPECIFICATION CHART

TORQUE SPECIFICATIONS

DescriptionNm
Converter housing bolts47
Converter housing-to-transaxle case bolts and stud22
Electrical connector bracket nuts25
Final drive input gear bearing retainer nut pre-torque400
Final drive input gear bearing retainer nut rotational torque0.4-0.7
Fluid filler tube bolts8
Intermediate/overdrive band anchor bolt45
Intermediate/overdrive band servo cover bolts13
Intermediate shaft retaining bracket bolts25
Line pressure tap13
Lower suspension arm bolt63
Manual control lever bolt30
Main control valve body bolts a
Main control wire harness ground bolt10
Output shaft speed (OSS) sensor bolt10
Parking pawl cover bolts13
Pump bolts10
Pump case bolts30
Rear engine mounting bracket80
Rear engine mounting (4 nuts)48
Rear engine mounting center nut150
RH engine support insulator bolts48
RH front drive halfshaft center bearing cap nuts25
Suspension strut nuts30
Shift cable bracket bolts20
Shift cable clip bolt47
Shifter assembly bolt13
Solenoid body bolts a
Stabilizer bar nuts55
Starter motor bolts35
Transaxle end cover bolts22
Transmission fluid cooler line fittings33
Transmission fluid pan bolts10
Transmission range (TR) sensor bolts10
Turbine shaft speed (TSS) sensor bolt10
Torque converter-to-engine flexplate nuts40
Tie-rod end nut40

TORQUE SPECIFICATIONS

a Refer to the appropriate procedure.

Torque Converter Diagnosis

Special Tools Illustration Tool Name Tool Number Vehicle Communication Module (VCM) and Integrated Diagnostic System (IDS) software with appropriate hardware, or equivalent scan tool

Prior to installing a new torque converter, all diagnostic procedures must be followed. This is to prevent the unnecessary installation of new or remanufactured torque converters. Only after a complete diagnostic evaluation can the decision be made to install a new torque converter.

Begin with the normal diagnostic procedures as follows

  1. Preliminary Inspection.
  2. Know and Understand the Customer Concern.
  3. Verify the Concern - Carry out the «Torque Converter Operations Test»(ref-278257-S36426290592008012400000).
  4. Carry out Diagnostic Procedures. Run on-board diagnostics, see On-Board Diagnostics With Scan Tool, refer to «Diagnostics»(ref-278257-S10033985182008012400000). Repair all non-transaxle related DTCs first. Repair all transaxle DTCs. Rerun on-board diagnostic to verify repair. Carry out the Line Pressure Test. Refer to «Special Testing Procedures»(ref-278257-S11688308682008012400000). Carry out the Stall Speed Test. Refer to «Special Testing Procedures»(ref-278257-S11688308682008012400000). Carry out the Diagnosis by Symptom Index. Refer to «Diagnosis By Symptom»(ref-278257-S14289017952008012400000). Use the index to locate the appropriate routine that best describes the symptom(s). The routine will list all possible components that may cause or contribute to the symptom. Check each component listed; diagnose and repair as necessary before installing a new torque converter.

Torque Converter Operations Test

This test verifies that the torque converter clutch control system and the torque converter are operating correctly.

  1. Carry out the Self Test, see On-Board Diagnostics With Scan Tool, refer to «Diagnostics»(ref-278257-S10033985182008012400000). Check for DTCs. Refer to «Diagnostic Trouble Code (DTC) Charts»(ref-278257-S37460322072008012400000).
  2. Connect a scan tool.
  3. Bring the engine to normal operating temperature by driving the vehicle at highway speeds for approximately 15 minutes in O/D position.
  4. After normal operating temperature is reached, maintain a constant vehicle speed of about 80 km/h (50 mph) and tap the brake pedal with the left foot.
  5. The engine RPM should increase when brake pedal is tapped, and decrease about 5 seconds after pedal is released. If this does not occur, see Torque Converter Operation Concerns. Refer to «Diagnosis By Symptom»(ref-278257-S14289017952008012400000).
  6. If the vehicle stalls in O/D or D at idle with vehicle at a stop, move the position selector lever to manual L position. If the vehicle stalls, refer to Torque Converter Operation Concerns in the «Diagnosis By Symptom»(ref-278257-S14289017952008012400000). Repair as necessary. If the vehicle does not stall in O/D position, refer to «Diagnosis By Symptom»(ref-278257-S14289017952008012400000).

PINPOINT TEST A: SHIFT AND TORQUE CONVERTER CLUTCH SOLENOIDS (ONLY)

Note. Refer to the Transaxle Vehicle Harness Connector illustration Transaxle Connector Layouts.

Note. Refer to the Transaxle Internal Harness Diagram illustration Transaxle Connector Layouts.

Note. Read and record all DTCs. All TR sensor and OSS DTCs must be repaired before entering Output State Control (OSC).

Scheme 1

Scheme 1: PINPOINT TEST A: SHIFT AND TORQUE CONVERTER CLUTCH SOLENOIDS (ONLY)

Scheme 2

Scheme 2

Scheme 3

Scheme 3

Scheme 4

Scheme 4

Scheme 5

Scheme 5

Scheme 6

Scheme 6
  1. A1 ELECTRONIC DIAGNOSTICS SET UP Key in OFF position. Shift selector lever to position P. Make sure the transaxle harness connector is fully seated, terminals are fully engaged in connector and in good condition before proceeding. Connect the diagnostic tool. Key in ON position. Enter the following diagnostic mode on the diagnostic tool: Diagnostic Data Link Enter the following diagnostic mode on the diagnostic tool: PCM Enter the following diagnostic mode on the diagnostic tool: Active Command Modes Enter the following diagnostic mode on the diagnostic tool: Output State Control (OSC) Enter the following diagnostic mode on the diagnostic tool: Trans-Bench Mode Does vehicle enter Trans-Bench Mode? YES: REMAIN in Trans-Bench Mode. Go to A2. NO: REPEAT procedure to enter Trans-Bench Mode. If vehicle did not enter Trans-Bench Mode, REFER to the «Introduction - Gasoline Engines»(ref-268480) article for diagnosis of PCM.
  2. A2 WIGGLE TEST Remain in Trans-Bench Mode. Select PIDs to be monitored: SSA. SSB. SSC. SSD. SSE. Select "ON" to turn suspect solenoid on. Press "SEND". Wiggle all wiring and connectors to the transaxle. Monitor the Solenoid State for changes. Select "OFF" to turn solenoid off. Press "SEND". Does the suspect solenoid(s) fault state change? YES : REPAIR the circuit. TEST the system for normal operation. NO : Go to A3 .
  3. A3 CHECK SOLENOID FUNCTION Turn each solenoid ON and OFF. Does the solenoid turn ON and OFF when commanded and can solenoid activation be heard? YES : Go to A4 . NO : Go to A5 .
  4. A4 OSC TRANS-DRIVE TEST (GEAR OR TCC) Carry out OSC Trans-Drive Mode. Select GEAR for Shift Solenoids or follow procedures for «GEAR in Drive Mode»(ref-278257-S28976263592008012400000) or «Drive Mode Procedure for GEAR»(ref-278257-S04458430252008012400000). Select TCC for Torque Converter Clutch. Follow procedures of «TCC in Drive Mode»(ref-278257-S17622567542008012400000). Does the transaxle upshift and downshift or torque converter engage/disengage when commanded? YES: CLEAR all DTCs. Road test to verify if concern is still present. If concern is still present, REFER to «Diagnosis By Symptom»(ref-278257-S14289017952008012400000) to diagnose shift or torque converter concern. NO: Go to A5.
  5. A5 CHECK FOR BATTERY VOLTAGE Disconnect: Transaxle Vehicle Harness Connector Visually inspect all wires and connectors for damage. Measure the voltage between transaxle vehicle harness connector, harness side, and ground as follows: SSA - Pin 6. SSB - Pin 8. SSC - Pin 3. SSD - Pin 9. SSE - Pin 1. Is voltage present? YES : Go to A7 . NO : Go to A6 .
  6. A6 CHECK FOR SHORTS TO GROUND Key in OFF position. Measure the resistance between transaxle vehicle harness connector, harness side, and ground as follows: SSA - Pin 6. SSB - Pin 8. SSC - Pin 3. SSD - Pin 9. SSE - Pin 1. Is the resistance greater than 10,000 ohms? YES : Go to A8 . NO : REPAIR the circuit in question. TEST the system for normal operation.
  7. A7 CHECK FOR SHORT TO BATTERY VOLTAGE Disconnect: PCM Connector Key in ON position. Measure the voltage between transaxle vehicle harness connector, harness side, and ground as follows: SSA - Pin 6. SSB - Pin 8. SSC - Pin 3. SSD - Pin 9. SSE - Pin 1. Is voltage present? YES : REPAIR the circuit in question. TEST the system for normal operation. NO : INSTALL a new PCM. TEST the system for normal operation.
  8. A8 CHECK FOR OPENS Disconnect: Powertrain Control Module Measure the resistance between PCM connector pins, harness side, and transaxle vehicle harness connector pins, harness side, for the suspected solenoid as follows: SSA - PCM connector pin 42 - transaxle connector pin 6. SSB - PCM connector pin 43 - transaxle connector pin 8. SSC - PCM connector pin 44 - transaxle connector pin 3. SSD - PCM connector pin 46 - transaxle connector pin 9. SSE - PCM connector pin 34 - transaxle connector pin 1. Is the resistance less than 5 ohms? YES : Go to A9 . NO : REPAIR the circuit in question. TEST the system for normal operation.
  9. A9 ELECTRICAL SIGNAL CHECK Connect: PCM Connector Key in ON position. Measure the voltage between transaxle vehicle harness connector, harness side, and ground for the suspected solenoid as follows: SSA - Pin 6. SSB - Pin 8. SSC - Pin 3. SSD - Pin 9. SSE - Pin 1. Enter the following diagnostic mode on the diagnostic tool: Trans - Bench Mode Select Parameter SSA, SSB, SSC, SSD or SSE. Select "ON". Press "SEND". Measure the voltage while cycling the solenoid ON and OFF. Select "OFF", press "SEND". Does the voltage change? YES : Go to A10 . NO : INSTALL a new PCM. TEST the system for normal operation.
  10. A10 CHECK SOLENOID RESISTANCE Measure the resistance between solenoid pin and solenoid body component side for suspected solenoid as follows: SSA - Pin 6 and Body - 10.9-26.2 ohms. SSB - Pin 8 and Body - 10.9-26.2 ohms. SSC - Pin 3 and Body - 1.0-4.2 ohms. SSD - Pin 9 and Body - 1.0-4.2 ohms. SSE - Pin 1 and Body - 1.0-4.2 ohms. Is the resistance within specification? YES : If SSA or SSB is suspected, go to A12 . If SSC, SSD or SSE is suspected, go to A11 . NO : INSTALL a new SSA, SSB, SSC, SSD or SSE. TEST the system for normal operation.
  11. A11 CHECK SSC, SSD, SSE FOR SHORT TO GROUND Measure the resistance between suspected solenoid pin 1, component side and solenoid body. Is the resistance less than 5 ohms? YES : INSTALL a new SSC, SSD or SSE. TEST the system for normal operation. NO : Go to A12 .
  12. A12 CHECK THE TRANSAXLE INTERNAL HARNESS FOR OPEN Measure the resistance between transaxle internal harness connector pins and suspected solenoid connectors as follows: SSA - Between transaxle internal harness connector pin 6 and transaxle internal harness solenoid connector pin 6. SSB - Between transaxle internal harness connector pin 8 and transaxle internal harness solenoid connector pin 8. Is the resistance less than 5 ohms? YES : Go to A13 . NO : INSTALL a new transaxle internal harness. TEST the system for normal operation.
  13. A13 CHECK THE TRANSAXLE INTERNAL HARNESS FOR OPEN Measure the resistance between transaxle internal harness connector pins and suspected solenoid connectors as follows: SSC - Between transaxle internal harness connector pin 3 and transaxle harness solenoid connector pin 3. SSD - Between transaxle internal harness connector pin 9 and transaxle internal harness solenoid connector pin 9. SSE - Between transaxle internal harness connector pin 1 and transaxle internal harness solenoid connector pin 1. Is the resistance less than 5 ohms? YES : Go to A14 . NO : INSTALL a new transaxle internal harness. TEST the system for normal operation.
  14. A14 CHECK THE TRANSAXLE INTERNAL HARNESS GROUND CIRCUIT Measure the resistance between transaxle internal harness connector pins and ground eye hook as follows: SSC - Between transaxle internal harness solenoid connector pin 11 and ground eye hook. SSD - Between transaxle internal harness solenoid connector pin 12 and ground eye hook. SSE - Between transaxle internal harness solenoid connector pin 10 and ground eye hook. Is the resistance less than 5 ohms? YES : INSTALL a new PCM. TEST the system for normal operation. NO : INSTALL a new transaxle internal harness. TEST the system for normal operation.

Fluid Leakage in Torque Converter Area

In diagnosing and correcting fluid leaks in the pump support and gear and torque converter area, use the following procedures to locate the exact cause of the leakage. Leakage between the transaxle and engine, as evidenced by fluid around the torque converter housing, may have several sources. By careful observation it is possible, in many instances, to pinpoint the source of leakage before removing the transaxle from the vehicle. The paths which the fluid takes to reach the bottom of the torque converter housing are shown in the illustration. The 5 steps following correspond with the numbers in the illustration.

Scheme 7

Scheme 7: Fluid Leakage in Torque Converter Area
  1. Fluid leaking by the pump seal lip will tend to move along the impeller hub and onto the back of the impeller housing. Except in the case of a total seal failure, fluid leakage by the lip of the seal will be deposited on the inside of the torque converter housing only, near the outside diameter of the housing. Fluid from the vent assembly may move along the impeller hub and onto the back of the impeller housing. Fluid from a converter hub weld leak will move along a path on the inside of the converter housing.
  2. Fluid leakage by the outside diameter of the pump seal and pump body will follow the same path that leaks by the inside diameter of the pump seal follow. Fluid from a converter hub weld leak will move along a path on the inside of the converter housing.
  3. Fluid leakage from the converter drain plug, (model-dependent) converter seal weld or converter-to-flexplate stud weld will appear at the outside diameter of the torque converter on the back face of the flexplate, and in the converter housing only near the flexplate. Fluid leaks from the torque converter will leave a ring of fluid around the inside of the torque converter housing.
  4. Fluid that leaks by a pump-to-case screw or pump gasket will be deposited on the inside of the torque converter housing only. Fluid will not be deposited on the back of the torque converter.
  5. Engine oil leaks are sometimes incorrectly diagnosed as transaxle pump gasket leaks. The following areas of possible leakage should also be checked to determine if engine oil leakage is causing the concern. Leakage at the valve cover gasket may allow oil to flow over the torque converter housing or seep down between the torque converter housing and cylinder block causing oil to be present in or at the bottom of the torque converter housing. Oil galley plug leaks will allow oil to flow down the rear face of the cylinder block to the bottom of the torque converter housing. Leakage at the crankshaft rear oil seal will work back to the flexplate, and then into the torque converter housing.

Torque Converter

  1. A new or remanufactured torque converter must be installed if one or more of the following statements is true: A torque converter malfunction has been determined based on complete diagnostic procedures. Converter stud or studs, impeller hub or bushing are damaged. Discoloration (due to overheating). Evidence of transmission assembly or fluid contamination due to the following transmission or converter failure modes: Major metallic failure. Multiple clutches or clutch plate failures. Sufficient component wear which results in metallic contamination. Internal torque converter contamination present. For additional information refer to «Torque Converter Contamination Inspection»(ref-278257-S14223904422008012400000).

Torque Converter Contamination Inspection

Do not use water-based cleaners or mineral spirits to clean or flush the torque converter or transmission damage will occur. Use only clean automatic transmission fluid designated for the transmission and converter being serviced.

  1. If a new or remanufactured torque converter is not being installed, the following steps must be completed.
  2. With the torque converter on a bench, pour a small amount of transmission fluid from the torque converter onto an absorbent white tissue or through a paper filter and examine the transmission fluid.
  3. Observe the color and odor of the transmission fluid. The transmission fluid should be red, not brown or black. Odor may indicate an overheating condition such as clutch disc or band failure.
  4. Examine the stain on the tissue for evidence of particles (spec of any kind). Examine the transmission fluid level indicator for signs of antifreeze (gum or varnish). If particles are present in the transmission fluid or there is evidence of engine coolant or water, a new torque converter must be installed.
  5. If there are no particles or contamination present, drain the remainder of the transmission fluid from the torque converter.
  6. Add 1.9L (2 qt) of clean transmission fluid into the converter and agitate by hand.
  7. Thoroughly drain the transmission fluid.

See also:
JACKING AND LIFTING