Catalyst Efficiency Monitor - Switch Ratio Method (1996-2002)
In order to assess catalyst oxygen storage, monitor counts front and rear HO2S switches during part-throttle, closed-loop fuel condition after engine is warmed-up and inferred catalyst temperature is within limits. Front switches are accumulated in up to 9 different air mass regions or cells although 3 air mass regions is typical. Rear switches are counted in a single cell for all air mass regions. When required number of front switches has accumulated in each cell, the total number of rear switches is divided by total number of front switches to compute a switch ratio. A switch ratio near zero indicates high oxygen storage capacity. Therefore, high HC efficiency. A switch ratio near one, indicates low oxygen storage capacity. Therefore, low HC efficiency. If actual switch ratio exceeds a calibrated threshold switch ratio, the catalyst is considered faulty. Inputs from ECT or CHT (warm engine), IAT (not extreme ambient temperatures), MAF (greater than minimum engine load), VSS (within vehicle speed window) and TP (at part-throttle) are required to enable Catalyst Efficiency Monitor.
The following are typical switch ratio monitor entry conditions:
- Part throttle with no rapid throttle transients.
- Minimum 330 seconds since start-up at 70°F (21°C).
- ECT or CHT is 170-230°F (76.6-110°C).
- IAT is 20-180°F (-6°C to 82°C)
- Engine load more than 10 percent.
- Time since entering close loop is 30 seconds.
- Vehicle speed is 5-70 MPH.
- Mass air flow is 1-5 lbs/minute.
- Fuel level more than 15 percent.
- EGR is 1-12 percent.
DTCs associated with this test are DTC P0420 (Bank No. 1 or "Y" pipe system), and P0430 (Bank No. 2). Because an exponentially weighted moving average algorithm is used for malfunction determination, up to 6 driving cycles may be required to illuminate MIL during normal customer driving. If KAM is reset or battery is disconnected, a malfunction will illuminate MIL in 2 drive cycles.