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Home >> Chevrolet >> 2010 >> Traverse LT, AWD >> Repair and Diagnosis >> External Pages >> Different car >> Section 481 (Power Seat System) >> Diagnostic Information and Procedures >> Power Seat Inoperative (With Memory A45) >> Circuit/System Description

Circuit/System Description

WARNING: This page is about a different car, the 2016 GMC Acadia, 2016 Chevrolet Traverse, and 2016 Buick Enclave. However, it is still accessible from the selected car via links, so may be relevant.

Battery positive voltage is supplied at all times to the memory seat module (MSM) through the 10 A MSM fuse located in the I/P fuse block. This voltage is used by the MSM for logic power and to supply battery reference voltage to the seat adjuster switch. Battery positive voltage is also supplied at all times to the MSM through the 25 A LT/PWR/SEAT circuit breaker. This voltage is connected to a power rail internal to the MSM and is used to drive the power seat motors and seat heater elements on vehicles equipped with heated seats. Each seat adjuster motor is controlled by the MSM through 2 motor control circuits. The MSM connects all motor control circuits on the power rail to a common reference point whenever they are not in operation. This reference point is biased to approximately 2.5 V. The MSM checks to see if the reference voltage is shorted to ground or battery before enabling any of the seat motors.

All motors are reversible. For example, when the seat switch is operated to move the entire seat forward, battery positive voltage is applied through the switch contacts and the power seat horizontal forward switch signal circuit to the MSM. In response to this signal, the MSM applies battery voltage through the driver seat horizontal motor forward control circuit and ground through the driver seat horizontal motor rearward control circuit to the motor. The motor runs to drive the entire seat forward until the switch is released. Moving the entire seat rearward works similarly to moving the entire seat forward, except that battery positive voltage and ground are applied on the opposite circuits causing the motor to run in the opposite direction.