The SIR System may be active up to 30 seconds after the ignition transitions to OFF.
The supplemental inflatable restraint system utilizes the following components:
Restraints Control Module
Airbag Indicator
Airbags
Seat Belt Pretensioners
Impact Sensors
Restraints Occupant Classification System Module (AL0)
Passenger Airbag Indicator (C99 / AL0)
Passenger Airbag Disable Switch (C99)
Seat Belt Tension Sensor
Seat Belt Indicators
Event Data Recorder (EDR) Data
Non-locked event storage overwrite mechanism and over writable event types
Restraints Control Module
The RCM is the control unit for the SIR system. The RCM contains internal sensors in addition to the
external impact sensors. The RCM contains sensors which translate vehicle acceleration into an electrical
signal, which may be used by other modules. In the event of a collision, the RCM compares the signals
from the internal and external impact sensors to a threshold value stored in memory. When the
generated signals exceed the stored value, the RCM will cause current to flow through the appropriate
deployment loops to deploy the restraints. The RCM records the SIR system status when a deployment
occurs and illuminates the SIR system Airbag indicator. The RCM performs continuous diagnostic
monitoring of the SIR system electrical components and circuitry when the ignition is ON. If the RCM
detects a malfunction, a DTC will set and the RCM will command the instrument cluster to illuminate the
SIR system Airbag indicator, notifying the driver that a malfunction exists. If power is lost during a
collision, the RCM maintains a limited energy reserve for deployment of the Airbags. It is important
when disabling the SIR system for servicing or rescue operations to allow the limited energy reserve to
dissipate, which could take up to 2 minutes.
Airbag Indicator
The SIR system Airbag indicator, located in the instrument cluster, is used to notify the driver of SIR
system malfunctions and verify that the RCM is communicating with the instrument cluster. When the
ignition is turned ON, the RCM is active. The instrument cluster will momentarily turn on the SIR system
Airbag indicator. While the indicator is on, the RCM conducts tests on all SIR system components and
circuits. If no malfunctions are detected the RCM will communicate with the instrument cluster through
the serial data circuit and command the SIR system Airbag indicator to turn OFF. The RCM provides
continuous monitoring of the SIR system components and circuits by conducting a sequence of checks.
If a malfunction is detected the RCM will set a DTC and command the instrument cluster to illuminate
the SIR system Airbag indicator via serial data. The presence of an SIR system malfunction could result
in non-deployment of the inflatable restraints or deployment in conditions that normally would not
warrant deployment. The SIR system Airbag indicator will remain on for the duration of the malfunction
or until the system has been repaired.
Airbags
The vehicle will contain a number of Airbags, depending on vehicle available and optional equipment:
Steering wheel
Instrument panel
Driver seat
Passenger seat
Instrument Panel Lower Airbag
Passenger knee
Left roof rail
Right roof rail
To view the locations of the Airbags refer to: Master Electrical Component List.
Airbags contain a housing, inflatable Airbag, an initiating device, a canister of gas generating material
and, in some cases, stored compressed gas. Each Airbag has a discrete deployment loop to supply
current and deploy the Airbag. The current passing through the Airbags ignite the material in the
canister producing a rapid generation of gas and is some cases, the release of compressed gas. The gas
produced from this reaction rapidly inflates the Airbag. Once the Airbag is inflated, it deflates through
the Airbag vent holes and/or the bag fabric.
The steering wheel and instrument panel Airbag will either be a dual-stage or a single stage design. A
dual-stage Airbag uses two stages of deployment, which varies the amount of restraint to the occupant
according to the collision severity. For moderate frontal collisions, the Airbag deploys at less than full
deployment which consists of stage 1 of the Airbag. During a more severe frontal collision, a full
deployment is initiated which consists of stage 1 and stage 2 of the Airbag.
Seat Belt Pretensioners
The vehicle will contain a number of seat belt Pretensioners, depending on vehicle available and optional
equipment:
Driver – Seat belt anchor
Driver – Seat belt retractor
Passenger – Seat belt anchor
Passenger – Seat belt retractor
Rear Outboard Left/Right Passenger – Seat belt retractor
To view the locations of the Airbags refer to: Master Electrical Component List.
The seat belt Pretensioners consist of a housing, seat belt retractor, seat belt anchor, seat belt webbing,
initiator, and a canister of gas generating materials. The initiator is part of the seat belt pretensioner
deployment loop. When the vehicle is involved in a collision of sufficient force, the RCM causes current
to flow through the seat belt deployment loops to the initiator. Current passing through the initiator
ignites the material in the canister producing a rapid generation of gas. The gas produced from this
reaction deploys the seat belt Pretensioners which removes the slack in the seat belts. Depending on
the severity of the collision, the seat belt Pretensioners may deploy without the frontal inflator modules
deploying, or they will deploy immediately before the frontal inflator modules deploy.
Impact Sensors
The vehicle will contain a number of impact sensors, depending on vehicle available and optional
equipment:
Front Impact Sensor — Left
Front Impact Sensor — Right
Side Impact Sensor — Left Front
Side Impact Sensor — Right Front
Side Impact Sensor — Left Middle
Side Impact Sensor — Right Middle
Side Impact Sensor — Left Rear
Side Impact Sensor — Right Rear
To view the locations of the Airbags refer to: Master Electrical Component List.
The impact sensors contain a sensing device which monitors vehicle acceleration or pressure to detect
collisions that are severe enough to warrant Airbag deployment. The impact sensors are not part of the
deployment loop, but instead provide input to the RCM.
Restraints Occupant Classification System Module
The Restraints Occupant Classification System Module is used to monitor the type of occupant that is
sitting in the front passenger seat and communicate the status to the RCM. The RCM then uses this
information to determine whether to enable or suppress the deployment of the passenger instrument
panel Airbag. The Restraints Occupant Classification System Module consists of an electronic control
module, a sensor mat in the seat, Seat Belt Tension Sensor (if equipped), and a harness.
Passenger Airbag Indicator
The passenger Airbag indicator identifies the status of the instrument panel Airbag. The RCM will
momentarily turn on the passenger Airbag indicators after ignition is turned ON. If an occupant is not
detected in the passenger seat or the occupant type is not suitable for Airbag deployment, the
Restraints Control module will illuminate the passenger Airbag OFF indicator. If an occupant is detected
in the passenger seat, the Restraints Control module will illuminate the passenger Airbag ON indicator.
Seat Belt Tension Sensor
The seat belt tension sensor (if equipped) is mounted on the passenger seat belt retractor to measure
the seat belt tension. If the shoulder portion of a passenger seat belt is fully extended, the infant car
seat restraint locking feature may be engaged, disabling the passenger Airbag.
Passenger Airbag Disable Switch
The passenger Airbag disable switch provides the means to manually disable the ability for the
passenger instrument panel Airbag to deploy. The vehicle has a passenger Airbag status indicator to
inform the driver when the passenger Airbag is on or off based on the disable switch position.
Seat Belt Indicators
The seat belt indicators are controlled by the RCM. For further information on seat belt indicators refer
to: Seat Belt System Description and Operation.
Event Data Recorder (EDR) Data
The vehicle is equipped with an event data recorder (EDR). When a specific collision or similar condition
occurs (such as airbag deployment or hitting a road obstacle), the recorder records the data related to
vehicle dynamics and safety systems within a short period of time, such as the status of occupant safety
components, status of accelerator/brake pedals, vehicle speed, etc., helping understand the operating
conditions of vehicle systems.
The data elements recorded by EDR mainly include the following data: