Carista Dyno Test
User Guide
Look up your car’s drag coefficient & frontal area
Two of the required inputs — drag coefficient (Cd) and frontal area — can be difficult to find. Pick your make, model and year below. The database holds published figures for 24,910 model variants from 53 manufacturers, 2000–2026.
Loading vehicle data…
Don’t see your exact trim? Values are usually very close between trims of the same body shape — use the nearest match, or the tool’s pre-filled defaults if nothing is close.
How to use the tool
Select the right gear.
Hold a steady starting RPM, then press Start.
— 2,000 — 2,500 RPM for naturally aspirated engines.
Accelerate at full throttle to the redline.
Lift off the gas when you reach the redline.
See your vehicle's estimated peak engine horsepower and torque.*
Where to find it in the app
You'll find the Dyno Test in the Service Tools section of the Carista app.
Where to find it in the app
You'll find the Dyno Test in the Service Tools section of the Carista app.
Why these steps matter
Stay in one gear
Continuous pull
Steady RPM
Results quality
Read this before you start
Use a safe, legal location
Keep your eyes on the road
Obey traffic laws
Remember that speeding is dangerous
Before you start
Understanding the inputs
Vehicle kerb weight
Drivetrain type
Transmission type
Tire size
Tire pressure
Outside temperature
Road angle
Drag coefficient (Cd) & frontal area
Road and tire quality
A single value describing how good the road grip and your tires are, combined. Use this as a guide:
| Range | Conditions |
|---|---|
| 90–100% | Perfect conditions — new tires and good, dry asphalt. |
| 80–90% | Good conditions — normal asphalt and tires in good shape. |
| 60–80% | Average conditions — worn pavement or slightly worn tires. |
| 30–60% | Poor conditions — bad pavement or worn tires. |
| 0–30% | Very poor conditions — very bad pavement or extreme tire wear. |
READING YOUR RESULTS
Once the tool detects the end of your pull, it shows two values:
- Engine horsepower (HP) — the estimated peak horsepower from your pull.
- Engine torque (Nm) — the estimated peak torque from your pull.
These represent the highest power and torque the tool detected during your acceleration run.
TIPS FOR THE MOST ACCURATE RESULTS
- Enter every value as accurately as possible — especially weight, tire size, and aerodynamics.
- Use a flat road and set the road angle to 0° when in doubt.
- Do a single, uninterrupted full-throttle pull to the redline without shifting.
- Start from a steady RPM in the recommended range for your engine type.
- Run the test a few times and compare — consistent conditions give more reliable results.
- Warm up the car first, and make sure tire pressures are correct.
Which cars is it available for?
The Dyno Test works on most OBD2 vehicles that report vehicle speed and engine RPM through the OBD2 port.
Petrol cars from 2001 onwards
Diesel cars from 2004 onwards
It is not brand-specific — it works across makes and models as long as the required live data is available.
Modified cars are fully supported too. Whether your car has an ECU remap, engine hardware changes, or another modification, the tool works just as well and just as accurately — as long as you provide correct input data. The Dyno Test estimates the power your engine is actually producing on the day, so it naturally reflects any modifications you have made.
Not supported yet: hybrids and electric vehicles. The Dyno Test is currently designed for conventional petrol and diesel engines and is not suitable for hybrid or electric vehicles for now. Support for hybrids and EVs is planned for the near future.
What is the Dyno Test tool?
Establish a baseline
Compare improvements
Understand your engine
What is a Real Dynamometer ("Dyno")?
Rolling road (chassis) dyno
You drive the car onto a set of heavy rollers. The car accelerates in place while sensors measure the force the wheels put into the rollers, allowing the machine to calculate power at the wheels.
Engine dyno
The engine is removed from the car and bolted directly to the machine, which measures power at the crankshaft.
A real dyno directly measures power in a controlled workshop, making it highly accurate—but it requires specialist equipment, an appointment, and can be expensive.
Real dyno vs. the Carista Dyno Test
The Carista Dyno Test is not trying to replace a professional dyno. It’s engineered to give you the best possible estimate from the data you provide — whenever and wherever you are.
Professional dyno
- How it works
- Directly measures power on physical machinery.
- Where
- At a specialist workshop.
- Cost
- Can be expensive.
- Availability
- By appointment.
- Result
- Direct measurement.
Carista Dyno Test
- How it works
- Estimates power from a real on-road pull plus your car’s details.
- Where
- Anywhere you can safely accelerate.
- Cost
- Included in Carista.
- Availability
- Any time you want.
- Result
- Best-possible estimate.
The more accurate the information you enter, the closer the estimate will be.
How the estimate is calculated?
You don’t need any math to use the tool - but here’s the idea in plain language. During your pull, the tool records how quickly your car speeds up. From physics, the force needed to accelerate a car depends on its weight and how fast it’s gaining speed. On top of that, some of the engine’s effort is always “used up” by other factors, so the tool also accounts for:
Air resistance (drag)
Grows quickly with speed and depends on your car’s shape and the air temperature.
Rolling resistance
The friction created by the tires as they move along the road.
Road incline
Extra effort needed to climb, or a little help gained when going downhill.
Gearing and transmission losses
Not all of the engine’s power reaches the wheels.
By adding all of these together and working backwards from your acceleration, the tool estimates how much torque - and therefore horsepower - your engine must be producing. That’s why entering accurate details matters so much: each one feeds directly into the calculation.
FAQ
Why are my results different from the manufacturer's brochure figures?
Brochure numbers are measured on professional equipment under ideal conditions, usually for a brand-new car. Your real engine's output changes with age, condition, fuel, temperature, and altitude — and this tool is an estimate based on a real-world run. Some difference is completely normal.
Why are all the input fields required?
Every value — weight, tires, aerodynamics, conditions — feeds directly into the calculation. Missing or rough values lead to less accurate results, so the tool asks for all of them.
Does it work on hybrids or electric cars?
Not yet. The tool is currently for conventional petrol and diesel engines only. Hybrid and EV support is planned for the near future.
Why do two runs give slightly different numbers?
Real-world conditions vary between runs — grip, wind, temperature, and how steadily you held the throttle all play a part. Running the test a few times and comparing gives you a better overall picture.
Is this as accurate as a real dyno?
A professional dyno directly measures power and remains the gold standard, so it's the ultimate reference. That said, the Carista Dyno Test is engineered to bevery accurate: when you provide correct input data and follow the steps, it's designed to get you close to real dyno figures. It's a convenient, affordable, and genuinely reliable estimate you can use anytime, anywhere.
Help us improve the tool
Dyno Test is in BETA - your feedback helps improve it. If you can, please share:
- Your car’s official or known horsepower and torque
- The horsepower and torque Dyno Test showed
- Test conditions, such as road, weather, and gear used
- Any modifications and, if known, the original and modified figures
Every report helps improve accuracy. Differences between real and estimated figures are especially valuable - thank you!