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Standard

Vehicle Acceleration Measurement

2002-10-25
HISTORICAL
J1491_200210
To define a test procedure that when conducted will provide a repeatable measure of a vehicle's maximum acceleration performance.
Standard

Vehicle Acceleration Measurement

2006-07-31
CURRENT
J1491_200607
To define a test procedure that will provide a repeatable measure of a vehicle's launch response and maximum accelleration performance.
Standard

VEHICLE ACCELERATION MEASUREMENT

1985-06-01
HISTORICAL
J1491_198506
To define significant driving situations involving acceleration, establish meaningful measures of such accelerations, and develop test procedures that will measure a vehicle’s maximum performance capabilities during those driving situations.
Standard

VEHICLE ACCELERATION MEASUREMENT

1990-06-01
HISTORICAL
J1491_199006
To define a test procedure that when conducted will provide a repeatable measure of a vehicle's maximum acceleration performance.
Standard

VEHICLE ACCELERATION MEASUREMENT

1995-03-28
HISTORICAL
J1491_199503
To define a test procedure that when conducted will provide a repeatable measure of a vehicle's maximum acceleration performance.
Standard

SAE Cold Start and Driveability Procedure

1998-08-01
HISTORICAL
J1635_199808
To subjectively evaluate engine starting behavior and driveability characteristics of a motor vehicle which has been soaked at ambient temperature for a given time period after attaining a stabilized engine coolant temperature. This SAE Recommended Practice also defines driveability defects and the rating system.
Standard

Road Load Measurement Using Onboard Anemometry and Coastdown Techniques

2008-12-12
HISTORICAL
J2263_200812
This SAE Recommended Practice establishes a procedure for determination of vehicle road load force for speeds between 115 and 15 km/h (71.5 and 9.3 mi/h). It employs the coastdown method and applies to vehicles designed for on-road operation. The final result is a model of road load force (as a function of speed) during operation on a dry, level road under reference conditions of 20 °C (68 °F), 98.21 kPa (29.00 in-Hg), no wind, no precipitation, and the transmission in neutral.
Standard

Road Load Measurement Using Onboard Anemometry and Coastdown Techniques

2020-05-26
CURRENT
J2263_202005
This SAE Recommended Practice establishes a procedure for determination of vehicle road load force for speeds between 115 km/h and 15 km/h (or between 70 mph and 10 mph). It employs the coastdown method and applies to vehicles designed for on-road operation. The final result is a model of road load force (as a function of speed) during operation on a dry, level road under reference conditions of 20 °C (68 °F), 98.21 kPa (29.00 in-Hg), no wind, no precipitation, and the transmission in neutral.
Standard

ROAD LOAD MEASUREMENT USING ONBOARD ANEMOMETRY AND COASTDOWN TECHNIQUES

1996-10-01
HISTORICAL
J2263_199610
This SAE Recommended Practice establishes a procedure for determination of vehicle road load force for speeds between 115 and 15 km/h (71.5 and 9.3 mph). It employs the coastdown method and applies to vehicles designed for on-road operation. The final result is a model of road load force (as a function of speed) during operation on a dry, level road under reference conditions of 20 °C (68 °F), 98.21 kPa (29.00 in-Hg), no wind, no precipitation, and the transmission in neutral.
Standard

Fuel Economy Measurement Road Test Procedure

2008-02-18
HISTORICAL
J1082_200802
This SAE Standard incorporates driving cycles that produce fuel consumption data relating to Urban, Suburban, and Interstate driving patterns and is intended to be used to determine the relative fuel economy among vehicles and driving patterns under warmed-up conditions on test tracks, suitable roads, or chassis dynamometers.1
Standard

Fuel Economy Measurement Road Test Procedure

2002-10-25
HISTORICAL
J1082_200210
This SAE Standard incorporates driving cycles that produce fuel consumption data relating to Urban, Suburban, and Interstate driving patterns and is intended to be used to determine the relative fuel economy among vehicles and driving patterns under warmed-up conditions on test tracks, suitable roads, or chassis dynamometers.1 The urban driving cycle forms the basis of a Cold-Start Test Procedure described in SAE J1256.
Standard

Fuel Economy Measurement Road Test Procedure

2023-05-10
CURRENT
J1078_202303
This SAE Standard incorporates driving cycles that produce fuel consumption data relating to Urban, Suburban, and Interstate driving patterns and is intended to be used to determine the relative fuel economy among vehicles and driving patterns under warmed-up conditions on test tracks, suitable roads, or chassis dynamometers.1
Standard

FUEL ECONOMY MEASUREMENT—ROAD TEST PROCEDURE—COLD START AND WARM-UP FUEL ECONOMY

1995-06-01
HISTORICAL
J1256_199506
This procedure is a modification of the urban driving cycles noted in SAE J1082 and which is run on a suitable road or test track. The procedure yields cold start/warm-up fuel economy values indicative of consumer level at the ambient condition of the test. Within referenced limitations, the procedure can be utilized to determine the fuel economy differential among vehicles or between vehicle changes.
Standard

FUEL ECONOMY MEASUREMENT—ROAD TEST PROCEDURE

1979-01-01
HISTORICAL
J1082B_197901
This procedure incorporates driving cycles that produce fuel consumption data relating to Urban, Suburban, and Interstate driving patterns. The procedure is intended to be used to determine the relative fuel economy among vehicles and driving patterns under warmed-up conditions on a test track or on suitable roads. The urban driving cycle forms the basis of a Cold-Start Test Procedure described in SAE Recommended Practice SAE J1256.
Standard

FUEL ECONOMY MEASUREMENT—ROAD TEST PROCEDURE

1974-04-01
HISTORICAL
J1082_197404
This procedure incorporates driving cycles that produce fuel consumption data relating to urban, suburban, and interstate driving patterns. The procedure is intended to be used to determine the relative fuel economy among vehicles and driving patterns under warmed-up conditions on a test track or on suitable roads.
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