For those who are utilizing the sensor, what part number did you use???
Paul Bartz
Kalamazoo MI
78 Royale Rear Twins
from what I have experienced, the displacement is not the factor.
Here is the one I got and what it fits:There are 454's listed along side 350s and 262s. Randy has read that it is the cylinder size and the that V6 has about the same bore as the 454. I don't know about the 350s.
This part also fits:
Year(s) Make Model Engine 1992-1993 Buick Roadmaster V8 - 5.7L vin 7 350ci - TBI GAS OHV[Estate] V8 - 5.7L vin 7 350ci - TBI GAS OHV[Limited] V8 - 5.7L vin 7 350ci - TBI GAS OHV 1990-1992 Cadillac Brougham V8 - 5.7L vin 7 350ci - TBI GAS OHV 1999-2000 Cadillac Escalade V8 - 5.7L vin R 350ci - MFI GAS OHV 1985-1995 Chevrolet Astro V6 - 4.3L vin N 262ci - 4BBL GAS OHVV6 - 4.3L vin Z 262ci - TBI GAS OHVV6 - 4.3L vin B 262ci - TBI GAS OHVV6 - 4.3L vin W 262ci - MFI GAS OHV 1987-1994 Chevrolet Blazer V8 - 5.7L vin K 350ci - TBI GAS OHV 1985-1986 Chevrolet C10 V6 - 4.3L vin N 262ci - 4BBL GAS OHV 1988-1999 Chevrolet C1500 V6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHVV8 - 5.7L vin R 350ci - MFI GAS OHV 1992-1996 Chevrolet C1500 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 5.7L vin R 350ci - MFI GAS OHV 1985-1986 Chevrolet C20 V6 - 4.3L vin N 262ci - 4BBL GAS OHV 1988-2000 Chevrolet C2500 V8 - 5.7L vin K 350ci - TBI GAS OHVV6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI CNG OHVV8 - 5.7L vin R 350ci - MFI CNG OHVV8 - 5.7L vin R 350ci - MFI GAS OHV 1992-1996 Chevrolet C2500 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHVV8 - 5.7L vin R 350ci - MFI GAS OHV 1988-2000 Chevrolet C3500 V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHVV8 - 5.7L vin R 350ci - MFI GAS OHVV8 - 5.7L vin R 350ci - MFI CNG OHV 1987-1989 Chevrolet Camaro V8 - 5.7L vin 8 350ci - MFI GAS OHV 1986-1993 Chevrolet Caprice V6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 5.7L vin 7 350ci - TBI GAS OHV[Classic] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Classic] V8 - 5.7L vin 7 350ci - TBI GAS OHV[Classic Brougham] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Classic LTZ] V8 - 5.7L vin 7 350ci - TBI GAS OHV 1985-1993 Chevrolet Caprice V6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 5.7L vin 7 350ci - TBI GAS OHV[Classic] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Classic] V8 - 5.7L vin 7 350ci - TBI GAS OHV[Classic Brougham] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Classic LTZ] V8 - 5.7L vin 7 350ci - TBI GAS OHV 1987-1988 Chevrolet Caprice V6 - 4.3L vin Z 262ci - TBI GAS OHV[Classic] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Classic Brougham] V6 - 4.3L vin Z 262ci - TBI GAS OHV 1991-1993 Chevrolet Caprice V8 - 5.7L vin 7 350ci - TBI GAS OHVV6 - 4.3L vin Z 262ci - TBI GAS OHV[Classic] V8 - 5.7L vin 7 350ci - TBI GAS OHV[Classic] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Classic LTZ] V8 - 5.7L vin 7 350ci - TBI GAS OHV 1987-1989 Chevrolet Corvette V8 - 5.7L vin 8 350ci - MFI GAS OHV 1985-1987 Chevrolet El Camino V6 - 4.3L vin Z 262ci - TBI GAS OHV 1996-2002 Chevrolet Express 1500 V8 - 5.7L vin R 350ci - MFI GAS OHV 1996-2002 Chevrolet Express 2500 V8 - 5.7L vin R 350ci - MFI GAS OHVV8 - 5.7L vin R 350ci - MFI CNG OHVV8 - 5.7L vin R 350ci - MFI BI-FUEL OHV 1996-2002 Chevrolet Express 3500 V8 - 5.7L vin R 350ci - MFI GAS OHVV8 - 5.7L vin R 350ci - MFI CNG OHVV8 - 5.7L vin R 350ci - MFI BI-FUEL OHV 1985-1991 Chevrolet G10 V6 - 4.3L vin N 262ci - 4BBL GAS OHVV6 - 4.3L vin Z 262ci - TBI GAS OHV[Sportvan] V6 - 4.3L vin N 262ci - 4BBL GAS OHV[Sportvan] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sportvan] V6 - 4.3L vin Z 262ci - TBI GAS OHV 1985-1992 Chevrolet G10 V6 - 4.3L vin N 262ci - 4BBL GAS OHVV6 - 4.3L vin Z 262ci - TBI GAS OHV[Sportvan] V6 - 4.3L vin N 262ci - 4BBL GAS OHV[Sportvan] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sportvan] V6 - 4.3L vin Z 262ci - TBI GAS OHV 1985-1992 Chevrolet G20 V6 - 4.3L vin N 262ci - 4BBL GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHVV6 - 4.3L vin Z 262ci - TBI GAS OHV[Sportvan] V6 - 4.3L vin N 262ci - 4BBL GAS OHV[Sportvan] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sportvan] V6 - 4.3L vin Z 262ci - TBI GAS OHV 1985-1992 Chevrolet G30 V6 - 4.3L vin N 262ci - 4BBL GAS OHVV8 - 5.7L vin M 350ci - 4BBL GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHVV6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHV[Sportvan] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sportvan] V8 - 7.4L vin N 454ci - TBI GAS OHV 1996 Chevrolet G30 V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI CNG OHV[Sportvan] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sportvan] V8 - 5.7L vin K 350ci - TBI CNG OHV 1987-1990 Chevrolet G30 V8 - 5.7L vin M 350ci - 4BBL GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHVV6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHV[Sportvan] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sportvan] V8 - 7.4L vin N 454ci - TBI GAS OHV 1992 Chevrolet G30 V6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHV[Sportvan] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sportvan] V8 - 7.4L vin N 454ci - TBI GAS OHV 1985 Chevrolet Impala V6 - 4.3L vin Z 262ci - TBI GAS OHV 1985-1986 Chevrolet K10 V6 - 4.3L vin N 262ci - 4BBL GAS OHV 1988-1999 Chevrolet K1500 V6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 5.7L vin R 350ci - MFI GAS OHV 1992-1996 Chevrolet K1500 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 5.7L vin R 350ci - MFI GAS OHV 1985 Chevrolet K20 V6 - 4.3L vin N 262ci - 4BBL GAS OHV 1988-2000 Chevrolet K2500 V8 - 5.7L vin K 350ci - TBI GAS OHVV6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI CNG OHVV8 - 5.7L vin R 350ci - MFI GAS OHVV8 - 5.7L vin R 350ci - MFI CNG OHV 1992-1996 Chevrolet K2500 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHVV8 - 5.7L vin R 350ci - MFI GAS OHV 1988-2000 Chevrolet K3500 V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHVV8 - 5.7L vin R 350ci - MFI GAS OHV 1985-1988 Chevrolet Monte Carlo V6 - 4.3L vin Z 262ci - TBI GAS OHV 1987-1989 Chevrolet P20 V8 - 5.7L vin K 350ci - TBI GAS OHV 1987-1999 Chevrolet P30 V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHVV6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 5.7L vin R 350ci - MFI GAS OHV 1987 Chevrolet R10 V6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHV 1987-1988 Chevrolet R10 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHV 1989-1991 Chevrolet R1500 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHV 1987-1988 Chevrolet R20 V6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHV 1987-1988 Chevrolet R20 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHV 1989 Chevrolet R2500 V8 - 7.4L vin N 454ci - TBI GAS OHV 1989-1991 Chevrolet R2500 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHV 1987-1988 Chevrolet R30 V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHVV8 - 7.4L vin W 454ci - 4BBL GAS OHV 1989-1991 Chevrolet R3500 V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHVV8 - 7.4L vin W 454ci - 4BBL GAS OHV 1988-1993 Chevrolet S10 V6 - 4.3L vin Z 262ci - TBI GAS OHVV6 - 2.8L vin R 173ci - TBI GAS OHV 1988-1993 Chevrolet S10 Blazer V6 - 4.3L vin Z 262ci - TBI GAS OHV 1995-2000 Chevrolet Tahoe V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 5.7L vin R 350ci - MFI GAS OHV 1987 Chevrolet V10 V6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHV 1987-1988 Chevrolet V10 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHV 1989-1991 Chevrolet V1500 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHV 1987 Chevrolet V20 V8 - 5.7L vin K 350ci - TBI GAS OHV 1987-1988 Chevrolet V20 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHV 1989-1991 Chevrolet V2500 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHV 1987-1988 Chevrolet V30 V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHVV8 - 7.4L vin W 454ci - 4BBL GAS OHV 1989-1991 Chevrolet V3500 V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHVV8 - 7.4L vin W 454ci - 4BBL GAS OHV 1985-1986 GMC C1500 V6 - 4.3L vin N 262ci - 4BBL GAS OHV 1988 GMC C1500 V6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHV 1998-1999 GMC C1500 V8 - 5.7L vin R 350ci - MFI GAS OHV 1989-1997 GMC C1500 [Sierra] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sierra] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Sierra] V8 - 5.7L vin R 350ci - MFI GAS OHV[Sierra XC] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sierra XC] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Sierra XC] V8 - 5.7L vin R 350ci - MFI GAS OHV 1992-1999 GMC C1500 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 5.7L vin R 350ci - MFI GAS OHV 1985-1986 GMC C2500 V6 - 4.3L vin N 262ci - 4BBL GAS OHV 1988 GMC C2500 V6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHV 1999-2000 GMC C2500 V8 - 5.7L vin R 350ci - MFI GAS OHVV8 - 5.7L vin R 350ci - MFI CNG OHV 1989-1998 GMC C2500 [Sierra] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sierra] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Sierra] V8 - 7.4L vin N 454ci - TBI GAS OHV[Sierra] V8 - 5.7L vin K 350ci - TBI CNG OHV[Sierra] V8 - 5.7L vin R 350ci - MFI CNG OHV[Sierra] V8 - 5.7L vin R 350ci - MFI GAS OHV[Sierra XC] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sierra XC] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Sierra XC] V8 - 7.4L vin N 454ci - TBI GAS OHV[Sierra XC] V8 - 5.7L vin K 350ci - TBI CNG OHV[Sierra XC] V8 - 5.7L vin R 350ci - MFI GAS OHV[Sierra XC] V8 - 5.7L vin R 350ci - MFI CNG OHV 1992-1999 GMC C2500 Suburban V8 - 7.4L vin N 454ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 5.7L vin R 350ci - MFI GAS OHV 1988 GMC C3500 V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHV 1998-2000 GMC C3500 V8 - 5.7L vin R 350ci - MFI GAS OHVV8 - 5.7L vin R 350ci - MFI CNG OHV 1989-1997 GMC C3500 [Sierra] V8 - 7.4L vin N 454ci - TBI GAS OHV[Sierra] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sierra] V8 - 5.7L vin R 350ci - MFI GAS OHV[Sierra] V8 - 5.7L vin R 350ci - MFI CNG OHV[Sierra XC] V8 - 7.4L vin N 454ci - TBI GAS OHV[Sierra XC] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sierra XC] V8 - 5.7L vin R 350ci - MFI GAS OHV[Sierra XC] V8 - 5.7L vin R 350ci - MFI CNG OHV 1985-1987 GMC Caballero V6 - 4.3L vin Z 262ci - TBI GAS OHV 1985-1992 GMC G1500 [Rally] V6 - 4.3L vin N 262ci - 4BBL GAS OHV[Rally] V8 - 5.7L vin K 350ci - TBI GAS OHV[Rally] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Vandura] V6 - 4.3L vin N 262ci - 4BBL GAS OHV[Vandura] V6 - 4.3L vin Z 262ci - TBI GAS OHV 1985-1991 GMC G1500 [Rally] V6 - 4.3L vin N 262ci - 4BBL GAS OHV[Rally] V8 - 5.7L vin K 350ci - TBI GAS OHV[Rally] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Vandura] V6 - 4.3L vin N 262ci - 4BBL GAS OHV[Vandura] V6 - 4.3L vin Z 262ci - TBI GAS OHV 1985-1992 GMC G2500 [Rally] V6 - 4.3L vin N 262ci - 4BBL GAS OHV[Rally] V8 - 5.7L vin K 350ci - TBI GAS OHV[Rally] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Vandura] V6 - 4.3L vin N 262ci - 4BBL GAS OHV[Vandura] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Vandura] V8 - 5.7L vin K 350ci - TBI GAS OHV 1987-1990 GMC G3500 V8 - 5.7L vin M 350ci - 4BBL GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHV[Rally] V8 - 5.7L vin K 350ci - TBI GAS OHV[Rally] V8 - 7.4L vin N 454ci - TBI GAS OHV[Vandura] V8 - 5.7L vin K 350ci - TBI GAS OHV[Vandura] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Vandura] V8 - 7.4L vin N 454ci - TBI GAS OHV 1992 GMC G3500 V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHV[Rally] V8 - 5.7L vin K 350ci - TBI GAS OHV[Rally] V8 - 7.4L vin N 454ci - TBI GAS OHV[Vandura] V8 - 7.4L vin N 454ci - TBI GAS OHV[Vandura] V8 - 5.7L vin K 350ci - TBI GAS OHV[Vandura] V6 - 4.3L vin Z 262ci - TBI GAS OHV 1996 GMC G3500 V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI CNG OHV[Rally] V8 - 5.7L vin K 350ci - TBI CNG OHV[Rally] V8 - 5.7L vin K 350ci - TBI GAS OHV[Special] V8 - 5.7L vin K 350ci - TBI GAS OHV[Vandura] V8 - 5.7L vin K 350ci - TBI CNG OHV[Vandura] V8 - 5.7L vin K 350ci - TBI GAS OHV 1985-1992 GMC G3500 V8 - 5.7L vin M 350ci - 4BBL GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHV[Rally] V8 - 5.7L vin K 350ci - TBI GAS OHV[Rally] V8 - 7.4L vin N 454ci - TBI GAS OHV[Vandura] V6 - 4.3L vin N 262ci - 4BBL GAS OHV[Vandura] V8 - 5.7L vin K 350ci - TBI GAS OHV[Vandura] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Vandura] V8 - 7.4L vin N 454ci - TBI GAS OHV 1987-1991 GMC Jimmy V8 - 5.7L vin K 350ci - TBI GAS OHV 1985-1986 GMC K1500 V6 - 4.3L vin N 262ci - 4BBL GAS OHV 1988 GMC K1500 V6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHV 1999 GMC K1500 V8 - 5.7L vin R 350ci - MFI GAS OHV 1989-1998 GMC K1500 [Sierra] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sierra] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Sierra] V8 - 5.7L vin R 350ci - MFI GAS OHV[Sierra XC] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sierra XC] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Sierra XC] V8 - 5.7L vin R 350ci - MFI GAS OHV 1992-1999 GMC K1500 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 5.7L vin R 350ci - MFI GAS OHV 1985 GMC K2500 V6 - 4.3L vin N 262ci - 4BBL GAS OHV 1988 GMC K2500 V6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHV 1998-2000 GMC K2500 V8 - 5.7L vin R 350ci - MFI GAS OHVV8 - 5.7L vin R 350ci - MFI CNG OHV 1989-1997 GMC K2500 [Sierra] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sierra] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Sierra] V8 - 7.4L vin N 454ci - TBI GAS OHV[Sierra] V8 - 5.7L vin K 350ci - TBI CNG OHV[Sierra] V8 - 5.7L vin R 350ci - MFI GAS OHV[Sierra] V8 - 5.7L vin R 350ci - MFI CNG OHV[Sierra XC] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sierra XC] V6 - 4.3L vin Z 262ci - TBI GAS OHV[Sierra XC] V8 - 7.4L vin N 454ci - TBI GAS OHV[Sierra XC] V8 - 5.7L vin K 350ci - TBI CNG OHV[Sierra XC] V8 - 5.7L vin R 350ci - MFI GAS OHV[Sierra XC] V8 - 5.7L vin R 350ci - MFI CNG OHV 1992-1999 GMC K2500 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHVV8 - 5.7L vin R 350ci - MFI GAS OHV 1988 GMC K3500 V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHV 1998-2000 GMC K3500 V8 - 5.7L vin R 350ci - MFI GAS OHV 1989-1997 GMC K3500 [Sierra] V8 - 7.4L vin N 454ci - TBI GAS OHV[Sierra] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sierra] V8 - 5.7L vin R 350ci - MFI GAS OHV[Sierra XC] V8 - 7.4L vin N 454ci - TBI GAS OHV[Sierra XC] V8 - 5.7L vin K 350ci - TBI GAS OHV[Sierra XC] V8 - 5.7L vin R 350ci - MFI GAS OHV 1988-1989 GMC P2500 V8 - 5.7L vin K 350ci - TBI GAS OHV 1987-1999 GMC P3500 V8 - 5.7L vin K 350ci - TBI GAS OHVV6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHVV8 - 5.7L vin R 350ci - MFI GAS OHV 1987 GMC R1500 V6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHV 1987-1991 GMC R1500 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHV 1987-1989 GMC R2500 V6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHV 1987-1991 GMC R2500 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHV 1987-1991 GMC R3500 V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin W 454ci - 4BBL GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHV 1988-1990 GMC S15 V6 - 4.3L vin Z 262ci - TBI GAS OHV 1988-1992 GMC S15 Jimmy V6 - 4.3L vin Z 262ci - TBI GAS OHV 1985-1991 GMC Safari V6 - 4.3L vin N 262ci - 4BBL GAS OHVV6 - 4.3L vin Z 262ci - TBI GAS OHVV6 - 4.3L vin B 262ci - TBI GAS OHV[XT] V6 - 4.3L vin Z 262ci - TBI GAS OHV[XT] V6 - 4.3L vin B 262ci - TBI GAS OHV 1990-1991 GMC Safari V6 - 4.3L vin Z 262ci - TBI GAS OHVV6 - 4.3L vin B 262ci - TBI GAS OHV[XT] V6 - 4.3L vin Z 262ci - TBI GAS OHV[XT] V6 - 4.3L vin B 262ci - TBI GAS OHV 1996-2002 GMC Savana 1500 V8 - 5.7L vin R 350ci - MFI GAS OHV 1996-2002 GMC Savana 2500 V8 - 5.7L vin R 350ci - MFI GAS OHVV8 - 5.7L vin R 350ci - MFI BI-FUEL OHV 1996-2002 GMC Savana 3500 V8 - 5.7L vin R 350ci - MFI GAS OHVV8 - 5.7L vin R 350ci - MFI BI-FUEL OHV 1991-1993 GMC Sonoma V6 - 2.8L vin R 173ci - TBI GAS OHVV6 - 4.3L vin Z 262ci - TBI GAS OHVV6 - 4.3L vin W 262ci - MFI GAS OHV[GT] V6 - 2.8L vin R 173ci - TBI GAS OHV[GT] V6 - 4.3L vin W 262ci - MFI GAS OHV 1992 GMC Sonoma V6 - 2.8L vin R 173ci - TBI GAS OHVV6 - 4.3L vin W 262ci - MFI GAS OHVV6 - 4.3L vin Z 262ci - TBI GAS OHV[GT] V6 - 2.8L vin R 173ci - TBI GAS OHV[GT] V6 - 4.3L vin W 262ci - MFI GAS OHV 1992-1993 GMC Typhoon V6 - 4.3L vin Z 262ci - TBI GAS OHV Turbo-charged 1987 GMC V1500 V6 - 4.3L vin Z 262ci - TBI GAS OHVV8 - 5.7L vin K 350ci - TBI GAS OHV 1987-1991 GMC V1500 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHV 1987 GMC V2500 V8 - 5.7L vin K 350ci - TBI GAS OHV 1987-1991 GMC V2500 Suburban V8 - 5.7L vin K 350ci - TBI GAS OHV 1987-1991 GMC V3500 V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 7.4L vin W 454ci - 4BBL GAS OHVV8 - 7.4L vin N 454ci - TBI GAS OHV 1992-1999 GMC Yukon V8 - 5.7L vin K 350ci - TBI GAS OHVV8 - 5.7L vin R 350ci - MFI GAS OHV[Denali] V8 - 5.7L vin R 350ci - MFI GAS OHV[SLE] V8 - 5.7L vin R 350ci - MFI GAS OHV[SLT] V8 - 5.7L vin R 350ci - MFI GAS OHV 1999-2000 GMC Yukon V8 - 5.7L vin R 350ci - MFI GAS OHV[Denali] V8 - 5.7L vin R 350ci - MFI GAS OHV[SLE] V8 - 5.7L vin R 350ci - MFI GAS OHV[SLT] V8 - 5.7L vin R 350ci - MFI GAS OHV 1999 GMC Yukon V8 - 5.7L vin R 350ci - MFI GAS OHV[Denali] V8 - 5.7L vin R 350ci - MFI GAS OHV[SLE] V8 - 5.7L vin R 350ci - MFI GAS OHV[SLT] V8 - 5.7L vin R 350ci - MFI GAS OHV 1991-1993 Oldsmobile Bravada V6 - 4.3L vin Z 262ci - TBI GAS OHVV6 - 4.3L vin W 262ci - MFI GAS OHV 1992 Oldsmobile Custom Cruiser V8 - 5.7L vin 7 350ci - TBI GAS OHV 1986 Pontiac Bonneville V6 - 4.3L vin Z 262ci - TBI GAS OHV[Brougham] V6 - 4.3L vin Z 262ci - TBI GAS OHV[LE] V6 - 4.3L vin Z 262ci - TBI GAS OHV 1987-1988 Pontiac Firebird V8 - 5.7L vin 8 350ci - MFI GAS OHV[Trans Am] V8 - 5.7L vin 8 350ci - MFI GAS OHV 1989 Pontiac Firebird [Formula] V8 - 5.7L vin 8 350ci - MFI GAS OHV[Trans Am] V8 - 5.7L vin 8 350ci - MFI GAS OHV[Trans Am GTA] V8 - 5.7L vin 8 350ci - MFI GAS OHV 1987-1989 Pontiac Firebird V8 - 5.7L vin 8 350ci - MFI GAS OHV[Formula] V8 - 5.7L vin 8 350ci - MFI GAS OHV[Trans Am] V8 - 5.7L vin 8 350ci - MFI GAS OHV[Trans Am GTA] V8 - 5.7L vin 8 350ci - MFI GAS OHV 1986-1987 Pontiac Grand Prix V6 - 4.3L vin Z 262ci - TBI GAS OHV[Brougham] V6 - 4.3L vin Z 262ci - TBI GAS OHV[LE] V6 - 4.3L vin Z 262ci - TBI GAS OHV 1985-1986 Pontiac Parisienne V6 - 4.3L vin Z 262ci - TBI GAS OHV[Brougham] V6 - 4.3L vin Z 262ci - TBI GAS OHV
Bruce Hislop
Perth Communications
br...@perthcomm.com
Sent from my Blackberry Curve
Jim:
From www.eng-tips.com/viewthread.cfm?qid=54276, scroll down to time stamp 28 Jul 03 15:47 (on the right side of the page). He gives a SAE Technical Paper Series 900488, Combustion Knock Sensing: Sensor Selection and Application Issues, authored by Steven M. Dues, Joseph M. Adams, and George A. Shinkle: Delco Remy Div, General Motors Corp. A chart from the SAE paper shows that the fundamental frequency of a 75mm bore is about 7kHz, a 94mm bore is about 6.0 kHz, while that of a 110mm bore is about 5.2kHz. The chart shows a fairly linear relationship of frequency to bore diameter. However, in searching on that item, SAE wants money.
He goes on to say: In the mid '90's, a GM engineer sent me a list of GM sensors, showing part numbers, resonant frequencies, parallel load resistance, and mounting style. At the time, they were producing sensors in these frequencies: 5.2kHz, 6.0kHz, and 7.0kHz.
So would you conclude bore size is the criteria we should be concerned with in selecting the subject??? If using the above criteria, 110 mm divided by 25.4 mm/inch equals 4.33”. Standard bore for the Caddy 500 is 4.300”. If so, I still need to determine the proper sensor for a Cadillac 500 engine.
What is that part number or what other year, make, and model engine(s) are in that ballpark???
Paul Bartz
Kalamazoo MI
78 Royale Rear Twins
Anyone have words of wisdom on choosing the subject (e. g. is there any relation
to the engine displacement vs. what sensor to use)??? If not, are there any
technical differences between the various ones???
For those who are utilizing the sensor, what part number did you use???
... One of his comments was that the knock sensor is looking for the "echo" across the bore. With that statement he recommended that the ideal location for the sensor was near the head surface of the block. That obviously is a challenge with exhaust manifolds so one must do the best you can with that in mind...John Biwersi
The goal is to detect the knock sound and avoid noise from valve trains, timing chains etc. The GM number for the sensor that he supplied me for the 5.5-6.4 Kilohertz is 12591625. The bottom line is if one is attempting to get as much power and milage from fuel with a typical automotive gasoline engine it requires the maximum timing advance which may not be obtained if a knock sensor is incorrectly signaling a ECM. I think that it is a safe bet, that GM would not have gone through the effort of various knock sensors if they could have obtained milage goals with a one size fits all sensor.
It sure would be interesting to learn if there was a difference with the GM 12591625 sensor. I just sent another post as to what I think is a good mounting location on the 455. What was the Delco number for this sensor?
-- "There is still time to enjoy your childhood while playing in a bigger sandbox!"
The 262 V6 (4.3 liter) is from an Astro Van, C10 pickup, and in several other applications. It is essentially a 350 block with 2 cylinder lopped off. The bore on these are 4.125 but there are some variations in the 350 family. The 454 had a 4.251 in (108.0 mm) bore. The 455 is 4.126 so I think this would be the appropriate sensor/esc combination. Looking up the sensor on the OReilly's site, I find this sensor crosses to 454, 350, and 262 engines. The Cad 500 with around 4.3 in bore will have a slightly less frequency characteristic but this sensor may still work well. My 403 is 4.35 in bore, about the same as the Cad 500 - I used the sensor/esc combination from an Astro Van (easy to extract from a donor) and it seems to be working, however, if any of you Cad guys find a better sensor tuned for the larger bore, then I would like to get that information. As George mentioned earlier, I mounted my sensor in the water jacket with the thought that sound travels well in water. Besides, GM mounted many of their sensors in the water jacket also.
Randy (looking for the perfect frequency - what?)
Randy (wondering if there was another part number for a larger bore (at
least 4.3) engine)
'77 Eleganza II "403"
Probably more critical to the life of the engine :-)
If the knock sensor is working well for the engine, then you can be a
tad more aggressive with spark with some confidence that the ECM will
"protect" the engine. However, I would not rely on the KS except for
the first time. I think that once you see some knocks in a particular
RPM/MAP cell, I would drop the SA in those cells a couple of degrees.
To me, that is one of the best things about the EBL - that you can tweak
the SA based on how your particular engine behaves. Each engine is
going to be different as to when they will knock and how much SA they
can tolerate. What we are really after is to have the peak pressure in
each cylinder to occur at 14 degrees ATDC. If we could achieve that at
all RPM/MAP conditions then we would always get the optimum performance
from the engine. So SA is related to how fast the flame front
proceeds. Unfortunately, the designs of the 60s and 70s had a fairly
slow flame front so we need quite a bit of SA to achieve Peak Pressure
at 14 * ATDC. Consequently, there is more time for detonation to take
place. Modern engines have a faster flame front thus can run less SA
and therefore, less time for detonation to take place.
Randy (wondering how we could tell when peak pressure occurs without a dyno)
'77 Eleganza II "403"
On 6/22/2010 9:14 AM, Surbo wrote:
> Randy& others;
My 2009 Silv-O-Lite piston catalog gives the following bore sizes:
CID Inches
262 4.000
350 3.800 and 4.000 versions
403 4.351
454 4.250
455 4.125
500 4.300
As you’ll recall, a chart from the early 1990-01-01 published SAE Technical Paper 900488, Combustion Knock Sensing: Sensor Selection and Application Issues, authored by Steven M. Dues, Joseph M. Adams, and George A. Shinkle: Delco Remy Div, General Motors Corp, shows that the fundamental frequency of a 75mm (2.952”) bore is about 7kHz, a 94mm (3.700”) bore is about 6.0 kHz, while that of a 110mm (4.330”) bore is about 5.2kHz.
At the time, it was stated that GM was producing sensors in these frequencies: 5.2kHz, 6.0kHz, and 7.0kHz and I haven’t found any info so far on what variety of frequencies(s) today’s sensors are produced.
From the foregoing, it looks like we want a knock sensor that is tuned to the 5.2kHz resonant frequency, specified above for the bore size of 4.330”, of which the Chevy 454 cid engine in the above chart is closest.
In researching the type of knock sensor specified for the Chevrolet 454 cid pickup engine, by using Wells Mfg website, they show the following variety:
Year Wells P/N
1987-90 SU154
1991-95 SU169 (auto trans)
1996-00 SU1122
I contacted Wells to find out what the difference is among the above three sensors. Initially they could not verify if my suspicions of thread size and design resonant frequency differences were correct. However, the rep asked if I could e-mail him, which I agreed to do, the information I’ve researched and he would look for whatever they have available and may be able to e-mail drawings, etc. He went on to say that it’s entirely possible that the OEM’s may not have even provided them any engineering design data. I’ll share his response once received.
Paul Bartz
Kalamazoo MI
78 Royale Rear Twins
I wonder how critical the match of a knock sensor is to the ultimate mpg?
Bruce Hislop
Perth Communications
br...@perthcomm.com
Sent from my Blackberry Curve
That's why I have my total advance at 47 degrees when in lean cruise.
So far, that seems about right for my engine. The EBL has a table that
allows you to bump SA when in lean cruise. I'm bumping by about 4.5
degrees when at 17.2:1 AFR.
Randy (thinking I'm close but still experimenting)
'77 Eleganza II "403"
That's why I have my total advance at 47 degrees when in lean cruise. So far, that seems about right for my engine. The EBL has a table that allows you to bump SA when in lean cruise. I'm bumping by about 4.5 degrees when at 17.2:1 AFR.
I have 3.70 Final Drive. I always cruise between 60 - 65 mph which puts
me around 2800 - 2900 RPMs. Engine seems to run well. I don't notice
any missing or backfire and it seems to pull well. I'm almost always
pulling a Jeep which cost about 1 1/2 to 2 mpg the best I can tell. The
way I have my tables set, I gradually go richer as load increase until I
drop out of lean cruise then I'm back at 14.7 and stay there until I go
into Power Enrichment. Based on the WB, it appears that the commanded
AFR I see in the log is very close to what is being monitored. I don't
feel any difference in the engine as I transition through the above AFRs
except that I do notice when PE kicks in. PE is a bigger jump because
I'm going from 14.7 to 12.7 so I feel that change. Also, I have delayed
the engagement of PE some so that I'm not in PE mode with every little
bump in the road (overpasses, small hills, etc).
Randy (not sure 600 RPMs is making that much difference in engine
efficiency - sure pulls better but need an OD)
'77 Eleganza II "403"

I always cruise between 60 - 65 mph which puts me around 2800 - 2900 RPMs. Engine seems to run well. I don't notice any missing or backfire and it seems to pull well.
The maximum hp, go fast idea, is counter to the economy of lean cruise, slow rpm.
Some people don't seem to know why a 1200 rpm diesel will pull 50,000 pounds at 8 mpg? Complete combustion takes time and if you turn 3600 rpm you are pumping a lot of unburned fuel.
George;
I'm just curious if you are running synthetic oil?
Thanks;
Gordon
Checking mpg from the EBL over the measured course would give an idea of the engine efficiency. Need a consistent foot on the pedal. We could burn up a tank of gas pretty quickly running these tests. Would be good info and would answer some of the questions we have.
You got that right! Right now, the only 'green iron' that sits outside
is my T-24 baler. Even the old JD bicycles (1970s vintage) have a spot
inside.
Randy (always needing a bigger barn)
'77 Eleganza II "403"
You need to hurry back here so we can get started with the testing :-)
Bob, come on down, we could have a mini-rally :-)
Randy (trying to get the "must-dos" done so I can play)
'77 Eleganza II "403"
On 6/23/2010 11:06 PM, George Beckman wrote:
> Here is my plan.
Back to fixing the JD 24T baler so I can finish baling this year - about
150 bales to go. Poor old thing is about worn out - me too!
Randy (can we dial in too much SA? -- Where's that dyno?)
'77 Eleganza II "403"
Didn't want to start and run without a lot of coaxing.
I did not change Max Advance because that is set at 42 degrees which is the max you can electronically advance the timing reliably. Remember, the SA table shows the SA plus any adders (lean cruise) shows the SA at the crank. So whatever is calculated with the initial advance added (6 degrees) gives you the total SA. So if the table calls for 44 and the lean cruise is adding 4 then you will have 48 degrees at the crank.
I had suggested that the initial advance be set at 8* to allow for a little more total advance, but 6* was arrived at by consensus.
For some reason, I'm not able to download the zip file you uploaded. It
says "the page you navigated to does not exist". This happens with all
the zip files in the Files Section. Other files work OK. Strange?
It is hard to keep the tune where it should be when using IAT. You tune
when air temps are cool, then summer happens and now we have hotter
temps. You say you don't see much change in the IAT temps when at
idle. Mine will increase quite a bit during idle. I measure up in the
jeep air horn.
Randy (not sure about IAT advantages - seems like a good idea)
'77 Eleganza II "403"
Bruce Hislop
Perth Communications
br...@perthcomm.com
Sent from my Blackberry Curve
It is hard to keep the tune where it should be when using IAT. You tune when air temps are cool, then summer happens and now we have hotter temps. You say you don't see much change in the IAT temps when at idle. Mine will increase quite a bit during idle. I measure up in the jeep air horn.
My IAT rises maybe 10c in city driving and less than 5c on the hyway. I have a blend of 10% with CTS, but I don't have the laptop to give my exact table.
George have you considered going to Open Loop idle? My understanding is OL idle is common on large engines to give a smoother idle.
Randy (just thinking....)
'77 Eleganza II "403"

pen loop may work. I like CL because many times I am between 0 and 6000 feet, and like the altitude compensation.