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Home >> Jeep >> 2024 >> Wagoneer Carbide, RWD >> Repair and Diagnosis >> External Pages >> Different car >> Section 11 (3.0L - DTCS P0011-00 To P0035-00) >> DTC Troubleshooting >> P0033-00-Turbocharger/Supercharger Bypass Valve Control Circuit Open >> Theory Of Operation

Theory Of Operation

WARNING: This page is about a different car, the 2024 Jeep Grand Wagoneer L and 2024 Jeep Grand Wagoneer. However, it is still accessible from the selected car via links, so may be relevant.

When the throttle plate is closed suddenly, excessive boost pressure can build up between the Turbocharger and the Throttle Body. This can occur because the compressed air created by the Turbocharger is trapped. This results in compressor surge which can cause compressor lag or damage the Turbocharger. The Powertrain Control Module (PCM) detects this pressure increase from feedback provided on the Boost Pressure signal from the Throttle Inlet Pressure/Temp Sensor. The Pressure sensor portion of the sensor operates like a typical three wire sensor. The PCM provides a 5-Volt Supply and Sensor Return circuit to the Throttle Inlet Pressure/Temp Sensor and receives the feedback voltage on the signal circuit.

The Turbocharger Surge Valve vents the boost pressure trapped between the Turbocharger and Throttle Body when the throttle plate is closed suddenly. During normal engine operation the Turbocharger Surge Valve is de-energized (off) and spring loaded closed. When closed the Turbocharger is allowed to create boost pressure. The PCM energizes the Turbocharger Surge Valve to overcome the spring pressure and open the valve. When the Surge Valve is opened the boost pressure trapped between the Turbocharger and the Throttle Body is vented back to the inlet of the Turbocharger, relieving the pressure and preventing compressor surge. The Turbocharger Surge Valve is controlled by the PCM using a Low Side Driver (LSD) inside the PCM.

The 3.0L engine is equipped with two turbocharger surge valves. One for each bank. Surge Valve 1 vents the boost pressure for cylinders one through three. Surge Valve 2 vents the boost pressure for cylinders four through six.

Typical Low Side Driver Operation and Fault Detection:  This type of driver circuit is generally used for relay control, solenoid control or a similar type of driver device. The PCM provides a ground to operate the device when switched on. The ground could be constant or Pulse Width Modulated (PWM). The PCM also provides fault detection for the device, wiring and internal driver. Fault detection can be done by monitoring voltage on the circuit, current draw, or a combination of both. For diagnostic purposes the PCM uses an internal pull down diagnostic resistor connected in series and a voltage reference (V-Ref) comparator for fault detection:

NOTE:

A load that has a resistance that is below manufacturer specification, or a second load device shorted to the low side driver circuit can cause excessive current draw on the internal driver. The driver will be switched off to protect against overheating and damaging the driver. In this instance the Circuit High fault may be detected because the available voltage on the comparator circuit is above V-Ref.