Find a ramp's slope, angle, and surface length from its rise and run — or work backward from a target ratio like the 1:12 ADA maximum to find exactly how much horizontal run you need. Includes a quick ADA compliance check.
✓ Five calculation modes ✓ ft, in, cm & m ✓ Works on mobile
If you've searched "ramp slope calculator," "ramp calculator," "ADA ramp ratio calculator," or "how long does a wheelchair ramp need to be," this page is built to answer every version of that question — with a live tool, not just a static ratio chart.
Everything homeowners, contractors, and accessibility planners ask about designing a safe, code-aware ramp.
Ramp slope describes how steep a ramp is — the relationship between how much it rises vertically and how far it runs horizontally. This is the core idea behind every "ramp slope calculator," "ramp calculator," and "how steep is my ramp" search: a steeper ramp is harder (and sometimes unsafe) to climb, while a shallower ramp needs a lot more horizontal space to cover the same vertical rise. Slope can be expressed three different but equivalent ways — as a percentage, as a ratio, or as an angle — and this calculator's five modes let you start from whichever measurement you already have and solve for the rest.
These three terms get mixed up constantly, which is exactly why "is rise the same as ramp length" is such a common search. Rise is purely vertical — the height difference between the bottom and top of the ramp. Run is purely horizontal — the flat, straight-line distance the ramp covers, not measured along the slope. Surface length (sometimes called ramp length) is the diagonal distance along the sloped surface itself, the actual distance a wheelchair or hand truck travels — always longer than the run, and calculated using the Pythagorean theorem: Surface Length = √(Run² + Rise²).
A ramp's steepness can be written as a ratio (like 1:12, meaning 1 unit of rise for every 12 units of run), as a percentage grade (Slope % = (Rise ÷ Run) × 100), or as an angle in degrees (Angle = arctan(Rise ÷ Run)). All three describe the exact same physical steepness — a 1:12 ramp, an 8.33% grade, and a 4.76° angle are all identical. Converting between them is simple: to go from percent to ratio, divide 100 by the percent (a 5% slope is 100 ÷ 5 = 1:20); the calculator above shows all three representations together on every result, so you never need to convert by hand.
In the United States, the Americans with Disabilities Act (ADA) sets 1:12 as the maximum allowable slope for a new accessible ramp — meaning at least 12 inches of horizontal run for every 1 inch of vertical rise, equivalent to about an 8.33% grade. This is the direct answer to "what is the maximum ADA ramp slope" and "ADA ramp ratio" searches. Where space allows, a gentler 1:16 to 1:20 slope is generally preferred, since it's noticeably easier to push a wheelchair up than the steeper 1:12 maximum. The ADA Check mode above compares your entered rise and run directly against the 1:12 threshold and tells you plainly whether it passes.
Not every ramp needs to meet ADA accessibility standards — the right slope depends entirely on the ramp's purpose. A 1:12 to 1:20 slope is appropriate for wheelchair-accessible entrances and public accommodations. A steeper 2:12 (1:6) slope might be acceptable for a private, occasional-use residential ramp where space is limited and full ADA compliance isn't required. A 3:12 (1:4) slope or steeper is typically reserved for vehicle loading ramps, utility ramps, or short equipment ramps where pedestrian accessibility isn't the goal at all. The Run from Ratio and Rise from Ratio modes above let you plan against any of these common presets, or enter a fully custom ratio for a specific project requirement.
Sometimes it's easier to measure the sloped ramp surface directly (with a tape measure laid along the incline) than the flat horizontal run underneath it — especially once a ramp already exists. In that case, the run can still be recovered using the same Pythagorean relationship rearranged: Run = √(Surface Length² − Rise²). This is exactly what the From Surface Length mode above calculates, which is why the surface length you enter must always be greater than the rise — a mathematical requirement of a real right-triangle ramp shape.
Contractors and builders use ramp slope calculations to design ADA-compliant entrances for homes and commercial buildings. Accessibility consultants and facility managers use them to audit existing ramps for compliance. Homeowners building a simple deck or porch ramp use them to figure out how much horizontal space a comfortable ramp will require before construction begins. Loading dock designers use steeper slope ratios for vehicle and equipment ramps where pedestrian accessibility isn't the primary concern. And landscape architects use the same slope math when designing garden paths, driveways, and graded walkways that need to stay within a safe, walkable incline.
Four simple steps take you from a measurement to a fully described ramp.
Select rise and run, a target ratio, the surface length, or an ADA compliance check.
Provide the values you have, in inches, feet, centimeters, or meters.
The calculator applies standard right-triangle ramp geometry instantly.
See the slope as a percentage, a ratio, and an angle together, plus the ramp's surface length.
The core right-triangle equations behind every calculation mode on this page.
Grade Percentage. The most common way slope is expressed on signage and in code documents.
Ratio. Written as 1:x, where x is how many units of run correspond to 1 unit of rise.
Slope Angle. The incline expressed in degrees from horizontal.
Surface (Ramp) Length. The actual diagonal distance traveled along the ramp.
Run From Surface. Recovers the horizontal run when only the sloped surface was measured.
Eight real calculations, shown with every step.
A 22-inch porch rise at the ADA maximum 1:12 slope needs a full 22 feet of horizontal run.
Choosing the gentler, preferred 1:20 slope for the same 22-inch rise requires nearly 15 additional feet of run compared to the 1:12 maximum.
A 0.5 m rise over a 6 m run works out to exactly the 1:12 ADA maximum, an 8.33% grade, and a 4.76° incline.
A steeper 1:6 residential ramp fits a much shorter run than an ADA-compliant slope, at the cost of a noticeably steeper incline.
Given only 15 feet of available run at a 1:16 slope, the maximum comfortable rise this ramp can handle is about 11.25 inches.
Measuring the sloped surface directly (290 inches) and knowing the rise (24 inches) recovers a run of about 289 inches — just barely within the 1:12 ADA maximum.
A 200-inch run isn't enough for a 24-inch rise to meet the ADA 1:12 maximum — at least 288 inches (24 ft) of run would be required instead.
A 3:12 loading ramp for equipment (not pedestrian accessibility) fits a 30-inch rise into just 10 feet of run, at a much steeper 14° angle.
Common ramp slope ratios and what they mean in practice.
| Ratio | Grade % | Typical Use |
|---|---|---|
| 1 : 12 | 8.33% | ADA Maximum (Accessible) |
| 1 : 16 | 6.25% | Preferred Accessible |
| 1 : 20 | 5.00% | Easiest / Comfortable |
| 1 : 6 (2:12) | 16.67% | Steeper Residential |
| 1 : 4 (3:12) | 25.00% | Loading / Equipment Ramp |
| Grade % | Angle |
|---|---|
| 5% | ≈ 2.86° |
| 8.33% | ≈ 4.76° |
| 10% | ≈ 5.71° |
| 25% | ≈ 14.04° |
| Unit | Equivalent |
|---|---|
| 1 ft | 12 in |
| 1 in | 2.54 cm |
| 1 m | 100 cm |
Built for anyone who needs an accurate ramp design fast — not just a rough eyeball estimate.
Slope from rise/run, run from ratio, rise from ratio, surface-length back-calculation, and an ADA check — all in one place.
Every mode recalculates live using standard right-triangle ramp geometry.
See percentage, ratio, and angle together, so you never need to convert between them by hand.
Common ratios like 1:12, 1:16, and 1:20 are built in and ready to use.
Work in inches, feet, centimeters, or meters — whichever matches your measurements.
A fully responsive layout means the same accurate tool works on desktop, tablet, and mobile.
Real projects where this exact calculation matters.
Designing ADA-compliant wheelchair ramps for homes and commercial buildings.
Checking whether an existing ramp meets required slope standards.
Figuring out how much horizontal space a comfortable ramp needs before building.
Designing steeper ramps for vehicles and equipment where accessibility isn't the goal.
Keeping graded walkways and driveways within a safe, walkable incline.
Planning accessibility upgrades across multiple building entrances consistently.
Avoid these classic errors when planning a ramp.
Run is the flat horizontal distance; surface length is the longer diagonal distance along the slope — mixing them up understates the ramp's true footprint.
Combining inches with feet, or centimeters with meters, without converting first produces a badly wrong slope calculation.
Only ramps at or below a 1:12 slope (8.33% grade) meet the ADA maximum — always check explicitly rather than assuming.
Long ADA ramps typically require level landings at intervals and at turns — this calculator covers slope geometry only, not full code compliance.
A 1:12 ratio means 12 units of run per 1 unit of rise, not the reverse — flipping this produces a wildly incorrect run or rise.
Using an ADA-strict slope for a simple equipment ramp (or vice versa) can result in an impractically long or unnecessarily steep design.
Rounding an intermediate rise, run, or angle value before the final calculation can shift the final slope percentage meaningfully.
For any public, commercial, or safety-critical ramp, always verify the final design against local code and a qualified professional.
Straight answers to the most common questions about ramp slope.
Under ADA guidelines, the maximum slope for a new accessible ramp is 1:12, equivalent to an 8.33% grade.
Divide rise by run and multiply by 100 to get the percentage grade, or use the Slope from Rise/Run mode above for the full picture including ratio and angle.
No — rise is purely vertical, run is purely horizontal, and ramp (surface) length is the longer diagonal distance along the slope.
Multiply the rise by the run-side of your target ratio — for example, a 20-inch rise at 1:12 needs 20 × 12 = 240 inches of run.
Divide 100 by the percentage — a 5% slope equals 100 ÷ 5 = a 1:20 ratio.
1:12 is the ADA maximum for new accessible ramps; 1:16 to 1:20 is preferred when space allows, since it's easier to navigate.
Yes, use the From Surface Length mode above, which recovers the run using Run = √(Surface² − Rise²).
It checks whether your rise and run meet the 1:12 slope maximum, but does not certify full ADA compliance, which also covers landings, handrails, width, and more.
Yes, it uses standard right-triangle ramp geometry, though real-world construction should always be verified against local code.
Yes, the calculator and every calculation mode on this page are completely free to use, with no signup required.
Yes, the entire page — including the calculator and tables — is fully responsive and works on phones and tablets.
Yes, it's built around the same rise, run, slope percentage, and ratio math used in professional ramp design.
Yes, it's designed to be usable without construction expertise, while still showing every formula used.
Inches, feet, centimeters, and meters are all supported — just pick the unit that matches your measurements.
Yes, use the Copy Results button to copy a plain-text summary, or Share to send your results directly.
Calculate ramp slope, required run, rise, surface length, and check ADA compliance using this professional Ramp Slope Calculator.