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Home >> Ford >> 2000 >> Taurus LX, 3.0 2, AX4N >> Repair and Diagnosis >> External Pages >> Different car >> Section 1347 (Automatic Transaxle - 6F35) >> Description And Operation >> Hydraulic Circuits >> Solenoid Hydraulic Circuits

Solenoid Hydraulic Circuits

WARNING: This page is about a different car, the 2010 Mercury Milan and 2010 Ford Fusion. However, it is still accessible from the selected car via links, so may be relevant.

Line pressure from the main pressure regulator valve is directed to the individual shift, TCC  and LPC  solenoids by the solenoid regulator valve through the SOL FD circuit. The solenoids, controlled by the PCM, direct the fluid to the valves that they control.

The LPC  solenoid applies varying pressure to the main pressure regulator valve to control line pressure.

In the PARK and NEUTRAL positions, Shift Solenoid D (SSD) applies varying pressure to the low reverse/456 regulator and latch valves through the VBS CBR1/456 hydraulic circuit to position the valves to apply the low/reverse clutch. ON/OFF Shift Solenoid E (SSE) directs pressure to the clutch control bypass valve to position the valve to direct regulated line pressure from the low reverse/456 regulator valve to the low/reverse clutch.

Fig 1: Park And Neutral Position Solenoid Hydraulic Circuit Diagram
G06278177Courtesy of FORD MOTOR CO.

In the REVERSE position, SSD  applies varying pressure to the low reverse/456 regulator and latch valves through the VBS CBR1/456 hydraulic circuit to position the valves to apply the low/reverse clutch. ON/OFF SSE  directs pressure to the clutch control bypass valve to position the valve to direct regulated line pressure from the low reverse/456 regulator valve to the low/reverse clutch. The clutch control bypass valve also directs line pressure from the REVERSE circuit to the 35R regulator valve through the C35R FD and DRIVE 2/C35R FD circuits. Shift Solenoid B (SSB) directs varying pressure to the 35R regulator and latch valves through the VBS C35R hydraulic circuit to apply the direct (3, 5, R) clutch.

Fig 2: Reverse Position Solenoid Hydraulic Circuit Diagram
G06278178Courtesy of FORD MOTOR CO.

In 1st gear, Shift Solenoid A (SSA) applies varying pressure to the 1234 clutch regulator and latch valves through the VBS C1234 hydraulic circuit to apply the forward (1, 2, 3, 4) clutch.

When vehicle speed is below 6 km/h (4 mph), or the selector lever is in the manual low position, SSD  applies varying pressure to the low reverse/456 regulator and latch valves through the VBS CBR1/456 hydraulic circuit to position the valves to apply the low/reverse clutch. ON/OFF SSE  directs pressure to the clutch control bypass valve to position the valve to direct regulated line pressure from the low reverse/456 regulator valve to the low/reverse clutch. As vehicle speed increases above 6 km/h (4 mph) in 1st gear, SSD  removes pressure from the low reverse/456 regulator and latch valves and SSE  removes pressure from the clutch control bypass valve to release the low/reverse clutch.

Fig 3: Manual Low Position And 1ST Gear Solenoid Hydraulic Circuit Diagram (1 Of 2)
G06278179Courtesy of FORD MOTOR CO.
Fig 4: Manual Low Position And 1ST Gear Solenoid Hydraulic Circuit Diagram (2 Of 2)
G06278180Courtesy of FORD MOTOR CO.

In 2nd gear, the forward (1, 2, 3, 4) clutch remains applied. SSC  applies varying pressure to the 26 regulator and latch valves through the VBS CB26 hydraulic circuit to apply the intermediate (2, 6) clutch.

Fig 5: 2ND Gear Solenoid Hydraulic Circuit Diagram
G06278181Courtesy of FORD MOTOR CO.

In 3rd gear, the forward (1, 2, 3, 4) clutch remains applied. SSC  releases pressure to the 26 regulator and latch valves to release the intermediate (2, 6) clutch. SSB  directs pressure to the 35R regulator and latch valves through the VBS CB26 hydraulic circuit to apply the direct (3, 5, R) clutch.

Fig 6: 3RD Gear Solenoid Hydraulic Circuit Diagram
G06278182Courtesy of FORD MOTOR CO.

In 4th gear, the forward (1, 2, 3, 4) clutch remains applied. SSB  releases pressure to the 35R regulator and latch valves. SSD  directs pressure to the low reverse/456 regulator and latch valves through the VBS CBR1/456 hydraulic circuit. With SSE  released, the clutch control bypass valve directs the regulated line pressure from the low reverse/456 regulator valve to the Overdrive (O/D) (4, 5, 6) clutch to apply the clutch.

Fig 7: 4TH Gear Solenoid Hydraulic Circuit Diagram
G06278183Courtesy of FORD MOTOR CO.

In 5th gear, the O/D  (4, 5, 6) clutch remains applied. SSA  releases pressure to the 1234 regulator and latch valves to release the forward (1, 2, 3, 4) clutch. SSB  directs pressure to the 35R regulator and latch valves through the VBS C35R hydraulic circuit to apply the direct (3, 5, R) clutch.

Fig 8: 5TH Gear Solenoid Hydraulic Circuit Diagram
G06278184Courtesy of FORD MOTOR CO.

In 6th gear, the O/D  (4, 5, 6) clutch remains applied. SSB  releases pressure to the 35R regulator and latch valves. SSC  applies varying pressure to the 26 clutch regulator and latch valves through the VBS CB26 hydraulic circuit to apply the intermediate (2, 6) clutch.

The TCC  can be applied in 4th, 5th or 6th gear. To apply the TCC  , the TCC  solenoid applies pressure to the TCC  regulator valve and the TCC  control valve to position the valves to apply the clutch.

Fig 9: 6TH Gear Solenoid Hydraulic Circuit Diagram
G06278185Courtesy of FORD MOTOR CO.

During a mechanical, hydraulic or electrical failure with the manual lever in the DRIVE position, the transaxle defaults to 5th gear. When the transaxle is in 5th gear failsafe, the PCM does not control the shift solenoids and they default to their normal state (maximum pressure, minimum pressure, on or off). The LPC  solenoid defaults to maximum pressure, SSA  defaults to minimum pressure, SSB  defaults to maximum pressure, SSC  defaults to minimum pressure, SSD  defaults to maximum pressure and the TCC solenoid defaults to minimum pressure.

With SSB  applying maximum pressure to the direct (3, 5, R) regulator and latch valves, the direct (3, 5, R) clutch is applied. With SSD  applying maximum pressure to the low reverse/456 regulator and latch valves with SSE  in the OFF position, the O/D  (4, 5, 6) clutch is applied, providing 5th gear.

Fig 10: 5TH Gear Failsafe Solenoid Hydraulic Circuit Diagram
G06278186Courtesy of FORD MOTOR CO.