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Axle Ratio Calculator

Calculate your vehicle's rear axle gear ratio from ring gear and pinion tooth counts. See how different axle ratios affect torque multiplication, towing capability, highway RPM, and fuel economy — essential for truck buyers, off-roaders, and performance builds.

Axle Ratio Calculator — Vista Previa de Relación en Vivo
Axle Ratio
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Proportion Solver
A : B = C : D — Enter any 3 values
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Results
Visual ratio breakdown
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    Ratio Simplifier
    Reduce any ratio to its simplest form
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    Simplified Result
    Reduced to lowest terms
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      Ratio Scaler
      Multiply a ratio by a scale factor
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      Scaled Result
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        What is Axle Ratio?

        The axle ratio — also called the rear-end ratio, differential ratio, or final drive ratio — measures how many times the driveshaft must rotate to turn the axle (and wheels) once. A 3.73:1 axle ratio means the driveshaft spins 3.73 revolutions for every single rotation of the rear wheels, multiplying engine torque by that same factor at the wheel.

        Truck and SUV owners often choose numerically higher ratios like 3.73:1 or 4.10:1 for better towing grunt and quicker off-the-line acceleration, while highway cruisers prefer numerically lower ratios like 3.08:1 or 3.23:1 to keep RPMs down for quiet, fuel-efficient cruising. The ratio is physically determined by the number of teeth on the ring gear divided by the teeth on the pinion gear inside the differential housing.

        Fórmulas y Ecuaciones Utilizadas

        Esta Axle Ratio Calculator utiliza 5 ecuaciones principales:

        1 Axle Ratio Calculation ▼
        Axle Ratio = Ring Gear Teeth / Pinion Gear Teeth

        A ring gear with 41 teeth and pinion with 11 teeth: Axle Ratio = 41/11 = 3.73:1.

        2 Engine RPM at Speed ▼
        RPM = (Speed × Axle Ratio × Trans Ratio × 336) / Tire Diameter

        At 60 mph, 3.73 axle, 0.70 overdrive, 28-inch tires: RPM = (60 × 3.73 × 0.70 × 336) / 28 = 1878 RPM.

        3 Effective Ratio (with Transmission) ▼
        Effective Ratio = Axle Ratio × Transmission Gear Ratio

        3.73 axle × 2.97 first gear = 11.08:1 overall ratio in first gear.

        Explore all calculation options on the Calculadora de Relación home page.

        Cómo Usar esta Calculadora

        Para usar esta Calculadora de Relación, siga 3 pasos:

        1

        Ingrese los Valores

        Escriba los valores de relación conocidos en los campos de entrada. Deje un campo vacío; ese es el valor desconocido que resuelve la Calculadora de Relación.

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        Elija el Modo

        Seleccione el modo de relación: Resolver, Simplificar o Escalar. Cada modo aplica diferentes ecuaciones a sus valores de entrada.

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        Obtenga Resultados

        Haga clic en Calcular. La pantalla de resultados muestra la respuesta con una barra de relación visual, un gráfico circular y un desglose de la solución paso a paso.

        Problemas de Ejemplo y Soluciones Paso a Paso

        Aquí hay 3 problemas de ejemplo con soluciones paso a paso usando esta Calculadora de Relación:

        Entrada 1 Ring & pinion gear: 41 teeth ring, 10 teeth pinion
        1 Identify ring gear tooth count (41) and pinion gear tooth count (10).
        2 Divide ring gear teeth by pinion gear teeth: 41 ÷ 10 = 4.10.
        3 Express as differential axle ratio.
        ✓ Axle Ratio is 4.10 : 1
        Entrada 2 Find engine RPM at 65 MPH with 3.73 axle, 0.70 OD, and 31" tires
        1 Multiply speed (65 MPH), axle ratio (3.73), overdrive ratio (0.70), and constant 336: 65 × 3.73 × 0.70 × 336 = 57,094.68.
        2 Divide by tire diameter in inches (31"): 57,094.68 ÷ 31 ≈ 1,841.77 RPM.
        ✓ Engine Speed is ~1,842 RPM at 65 MPH
        Entrada 3 Tire size change: upgrading from 29" to 33" tires on a 3.55 axle
        1 Determine original ratio (3.55) and tire scaling: (33 ÷ 29) = 1.1379.
        2 Calculate equivalent axle ratio to restore factory powerband: 3.55 × (33 / 29) = 4.04.
        3 Select closest commercial gear set (4.10:1).
        ✓ Recommended New Axle Ratio is 4.10 : 1

        Preguntas Frecuentes

        What axle ratio is best for towing? ▼

        For heavy towing (7,000+ lbs), use 3.73:1 or 4.10:1. These ratios multiply engine torque more effectively, making it easier to pull heavy loads, maintain speed on grades, and start from stops. The tradeoff is 1-3 MPG lower highway fuel economy compared to 3.08 or 3.23 ratios.

        How does axle ratio affect fuel economy? ▼

        Lower numerical ratios (3.08, 3.23) improve highway fuel economy because the engine turns fewer RPM at cruising speed. A 3.08 axle might run 1,600 RPM at 70 MPH, while a 4.10 runs 2,100 RPM. The higher RPM burns more fuel per mile, typically 2-4 MPG worse on the highway.

        How do I determine my vehicle's axle ratio? ▼

        Check the door jamb sticker, owner's manual, or RPO codes. Alternatively, jack up one rear wheel (with the other on the ground, transmission in neutral), rotate the raised wheel two full turns, and count driveshaft rotations. If the driveshaft turns 7.46 times, you have a 3.73 ratio (7.46 ÷ 2).

        Can I change my axle ratio? ▼

        Yes. Swapping the ring and pinion gear set changes the axle ratio. Common swaps include 3.08 to 3.73 for towing, or 3.55 to 4.10 for off-road trucks with larger tires. Expect to pay $800-$1,500 for parts and professional installation with proper setup.

        What is a limited-slip differential? ▼

        A limited-slip differential (LSD) distributes torque to both rear wheels when one loses traction, unlike an open diff that sends all power to the spinning wheel. The axle ratio is the same regardless of differential type — LSD only affects how torque is split between left and right wheels.

        What is the difference between 3.73 and 4.10 axle ratios? ▼

        A 4.10 ratio provides approximately 10% more torque multiplication at the wheels than 3.73, resulting in quicker acceleration and better towing grunt. However, at 70 MPH the engine spins about 200 RPM faster, increasing fuel consumption. Choose 4.10 for heavy towing or large tires, 3.73 for a balanced tow/economy compromise.

        Do I need to re-gear after installing bigger tires? ▼

        If your tires increase by more than 10% in diameter, re-gearing is strongly recommended. Larger tires effectively lower your axle ratio, causing sluggish acceleration, higher transmission temperatures, and the feeling that the engine is always laboring. Multiply your original ratio by (new tire diameter ÷ old tire diameter) to find the compensating ratio.

        How do I calculate engine RPM at highway speed? ▼

        Use the formula: RPM = (MPH × Axle Ratio × Transmission Ratio × 336) ÷ Tire Diameter (inches). For example, 70 MPH with 3.73 axle, 0.70 overdrive, and 32-inch tires: (70 × 3.73 × 0.70 × 336) ÷ 32 = 1,916 RPM.

        What axle ratio do I need for 37-inch tires? ▼

        If your vehicle originally had 32-inch tires with a 3.73 axle, you need: 3.73 × (37 ÷ 32) = 4.31. The closest commercial ratio is 4.30 or 4.56. For daily driving with occasional off-road, 4.30 works well. For frequent trail use or heavy loads, 4.56 is better.

        What does the ring and pinion tooth count mean? ▼

        The ring gear is the large gear bolted to the differential carrier, and the pinion is the small gear at the end of the driveshaft. Dividing ring teeth by pinion teeth gives the axle ratio. A 41-tooth ring with 11-tooth pinion = 3.73:1. Manufacturers use specific tooth count combinations to achieve standard ratios.

        Is a higher axle ratio better for off-roading? ▼

        Generally yes. Higher numerical ratios (4.10, 4.56, 4.88) provide more torque at low speeds for crawling over obstacles. Combined with low-range transfer case ratios (2.72:1 or 4.0:1), you get extreme torque multiplication for technical terrain. However, very high ratios limit highway top speed and fuel economy.

        Aprenda Sobre las Relaciones

        ¿Qué es una relación?

        Una relación es una comparación entre dos o más cantidades que muestra el tamaño relativo de una respecto a otra. Escrita como A : B, significa 'por cada A unidades de la primera cantidad, hay B unidades de la segunda.' Por ejemplo, una relación de 3 : 4 significa que por cada 3 partes de A, hay 4 partes de B. Las relaciones se utilizan en cocina, construcción, finanzas, ciencias y en la vida diaria.

        ¿Cómo resuelvo una proporción?

        Una proporción es una ecuación que establece que dos relaciones son iguales: A : B = C : D. Para resolver un valor faltante, utilice la multiplicación cruzada. Si D es desconocido: D = (B × C) / A. Esto funciona porque en relaciones iguales, los productos cruzados siempre son iguales: A × D = B × C. Nuestro Solucionador de Proporciones hace esto automáticamente: ingrese 3 valores cualesquiera y encontrará el cuarto.

        ¿Cómo simplifico una relación?

        Para simplificar una relación, encuentre el Máximo Común Divisor (MCD) de ambos números y divida cada uno por él. Por ejemplo, para 24 : 36, el MCD es 12. Entonces 24 ÷ 12 = 2 y 36 ÷ 12 = 3, dando la relación simplificada de 2 : 3. Nuestro Simplificador encuentra automáticamente el MCD y reduce su relación a sus términos mínimos.

        ¿Qué es el escalado de relaciones y cuándo es útil?

        Escalar una relación significa multiplicar ambas partes por el mismo factor para crear una relación equivalente más grande (o más pequeña). Por ejemplo, escalar 2 : 5 por un factor de 3 da 6 : 15. Esto es muy útil en recetas (triplicar una receta), construcción (escalar planos), mezclar soluciones o cualquier escenario donde necesite mantener la misma proporción a una escala diferente.

        ¿Cuál es la diferencia entre una relación y una fracción?

        Una relación A : B compara dos cantidades entre sí (parte a parte), mientras que una fracción A/B normalmente representa una relación de parte a todo. Sin embargo, cualquier relación se puede expresar como una fracción: 3 : 4 equivale a 3/4 = 0.75. La diferencia clave es el contexto: las relaciones comparan cantidades cara a cara, mientras que las fracciones representan una porción de un total.