How To Find The Gear Ratio Of A Rear End - How To Find

What is the rear end gear ratio for a 1986 ford f150 v8 1/2 ton 4x4

How To Find The Gear Ratio Of A Rear End - How To Find. Enter the maximum potential safe engine rpm. Knowing your rearend’s gear ratio is crucial when you are considering a transmission upgrade, needing to calibrate the speedometer gear in your transmission, selecting a torque converter, or even getting.

What is the rear end gear ratio for a 1986 ford f150 v8 1/2 ton 4x4
What is the rear end gear ratio for a 1986 ford f150 v8 1/2 ton 4x4

Raise and support the rear of the vehicle with jack stands. The tsm has the reference chart. This ratio refers to the number of teeth on. To do another, enter a new set of values. That’s done by multiplying the ratio of the first gear set by the ratio of the second gear set. The gear attached to the motor shaft is considered the first gear, or the “drive gear”, and the other gear, whose teeth are meshed with the drive gear, is considered the second gear, or “driven gear.” count the number of teeth on the drive gear and on the driven gear. The tsm has the reference chart. You could count the number of teeth on the ring gear and then divide that number by the number of teeth on the pinion gear. You can find the gear ratio in the vds section of the vin. Enter the maximum potential safe engine rpm.

To find the gear ratio, divide the big number by the little number. Then, divide the number of. With the transmission in neutral, rotate the rear driveshaft by hand. 7.5 inch, 8.5 inch, 10.5 inch. The gear attached to the motor shaft is considered the first gear, or the “drive gear”, and the other gear, whose teeth are meshed with the drive gear, is considered the second gear, or “driven gear.” count the number of teeth on the drive gear and on the driven gear. 1800 rpm / 656.93811 = 2.73:1 example without overdrive: This ratio refers to the number of teeth on. Knowing your car’s rear end gear ratio can give you a greater understanding of your car and help in changing different parts. In the above example, 37 ÷ 12 = 3.083333. The value will be returned in estimated differential gear ratio, based on the entered values. If it's a little more than 3, you have 3.08s.