This is the center frequency for bandpass filter 1., Units: KHz 21 4 4 0 1 - 4 0 0 4 2 This is the quality factor for bandpass filter 1., Units: Q 21 4 4 0 1 - 4 0 0 4 2 This sets the integration time constant for the Integrate and Read mode., Units: Microsecs. 7 4 4 0 22 4 4 0 Microsecs. 4 1 Time delay from the TDC_Reference -MEDRES- to wherethe WINGATE goes high - start of integration., Units: Microsecs. 7 4 4 0 21 4 4 0 Milliseconds 4 1 Integration time - duration of WINGATE., Units: Microsecs. 7 4 4 0 21 4 4 0 Milliseconds 4 1 The portion of the knock A/D reading used in the calculation of the average noise level knock event., Units: Multiplier Multiplier 4 1 This calibration is used to establish the knock limit if Delta RPM knock detection is true., Units: Multiplier 21 4 4 0 1 - 4 0 0 Multiplier 4 1 This calibration is used to establish the knock limit if Tip_In_Knock_Detection is TRUE., Units: Multiplier 21 4 4 0 1 - 4 0 0 Multiplier 4 1 This calibration is used with the Integrated energy read to determine if knock occurred., Units: Multiplier 8 4 4 0 21 4 4 0 Multiplier 4 1 This calibration is used with the Integrated energy read to establish a knock threshold., Units: Multiplier 17 4 4 0 21 4 4 0 Factor 4 1 This calibration determines the number of samples from Integrated Energy to use in computing Average Noise Level. Used for steady and semi-steady conditions. This number should always be greater than KE_Sample_Number_Fast., Units: Number Counts 4 2 This calibration determines the number of samples from Integrated Energy to use in computing Average Noise Level during transient conditions., Units: Number Counts 4 2 This is the number of ESC sensors used to determine if ESC sensors should be multiplexed in diagnostics., Units: Number Default N=E compu method 4 2 An RPM increase greater than this over a 25 msec time period will enable the Delta RPM detection logic., Units: RPM RPM 4 1 If the average noise is greater than this value the adaptive gain will be decreased., Units: Volts Volts 4 1 If the average noise is less than this value the adaptive gain will be increased., Units: Volts Volts 4 1 Initialization value for Knock_Detector_MAD value invoked during powerup., Units: Millivolts Millivolts 4 1 Maximum allowable knock detector mean absolute deviation (MAD) for any sensor., Units: Millivolts Millivolts 4 1 Minimum allowable knock detector mean absolute deviation (MAD) for any sensor., Units: Millivolts Millivolts 4 1 Above this manifold pressure, threshold Knock_Detector_MAD can be updated., Units: kPa kPa 4 1 Above this engine speed, threshold Knock_Detector_MAD can be updated., Units: RPM RPM 4 1 This calibration is a knock retard fast multiplier based on engine speed for Integrate and Read Modes., Units: Degrees/V 21 4 4 0 1 - 4 0 0 Degrees/V 4 1 This calibration is the total maximum knock retard authority allowed when Power Enrichment is not active., Units: Degrees 17 4 4 0 1 - 4 0 0 Degrees 4 1 This calibration is the total maximum knock retard authority allowed when Power Enrichment is active., Units: Degrees 21 4 4 0 1 - 4 0 0 Degrees 4 1 This calibration is a knock retard fast multiplier based on engine speed with the purpose of returning the spark advance/retard to knock-limited levels, Units: Multiplier 21 4 4 0 1 - 4 0 0 Multiplier 4 1 Delta TPS to activate transient condition check., Units: Percent Percent 4 1 Maximum TPS to activate transient condition check., Units: Percent Percent 4 1 This calibration is a scaler based on delta octane difference between high octane and low octane table used to control how quickly Octane_Adaptive_Scaler is learned up., Units: Multiplier 31 ? 4 0 0 1 - 4 0 0 Multiplier 4 1 This is the rate to increment the Octane Scaler when conditions are met., Units: Multiplier Multiplier 4 1 Learn down octane scaler only if Knock_Retard_Fast exceeds this minimum threshold., Units: Degrees Degrees 4 1 This is the rate to decrement the Octane Scaler when conditions are met., Units: Multiplier Multiplier 4 1