O-Ring Size Chart 2026 — AS568 Dash Sizes, Metric ISO 3601 & Material Guide
By myringsizecalculator.com · Updated 2026 · 12 min read
Every O-ring is defined by three dimensions: ID (Inside Diameter), CS (Cross-Section thickness), and OD (Outside Diameter). The formula is always OD = ID + 2 × CS. In the USA the AS568 standard assigns each size a dash number (e.g. -214). In Europe and Asia the ISO 3601 metric standard uses ID × CS in mm (e.g. 25 × 3.0 mm). When between sizes, always choose the size that gives a 10–15% compression of the cross-section in the groove.
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Download the O-Ring Size Chart PDF — AS568 + Metric, Free, Print-ReadyAll 369 AS568 sizes · ISO 3601 metric · Material guide · No sign-up required
1. Understanding O-Ring Dimensions
Before reading any O-ring chart, you need to understand the three dimensions that define every O-ring:
- ID (Inside Diameter) — the diameter of the hole in the centre of the O-ring. This is the primary dimension used to specify an O-ring for a shaft or rod seal.
- CS (Cross-Section) — the diameter of the circular cord that makes up the ring itself. Sometimes called the "width" or "thickness." This controls how much the ring compresses in the groove.
- OD (Outside Diameter) — the total outer diameter. Always calculated, never directly specified:
OD = ID + 2 × CS.
OD = ID + 2 × CS
Example: An O-ring with ID = 25.07 mm and CS = 3.53 mm has OD = 25.07 + (2 × 3.53) = 32.13 mm.
Know any two of the three dimensions and you can always calculate the third.
2. AS568 Standard O-Ring Size Chart
AS568 (published by SAE International) is the dominant O-ring standard in North America and for US military/aerospace applications. It organises O-rings into 6 series by cross-section size, with a three-digit dash number identifying each size. The first digit indicates the series; the remaining digits indicate the ID step within that series.
AS568 -0xx Series (CS = 1.78 mm / 0.070″) — Most Common Small Sizes
| Dash No. | ID (in) | ID (mm) | CS (in) | CS (mm) | OD (in) | OD (mm) |
|---|---|---|---|---|---|---|
| -001 | 0.029 | 0.74 | 0.040 | 1.02 | 0.109 | 2.77 |
| -002 | 0.042 | 1.07 | 0.050 | 1.27 | 0.142 | 3.61 |
| -003 | 0.056 | 1.42 | 0.060 | 1.52 | 0.176 | 4.47 |
| -004 | 0.070 | 1.78 | 0.070 | 1.78 | 0.210 | 5.33 |
| -005 | 0.101 | 2.57 | 0.070 | 1.78 | 0.241 | 6.12 |
| -006 | 0.114 | 2.90 | 0.070 | 1.78 | 0.254 | 6.45 |
| -007 | 0.145 | 3.68 | 0.070 | 1.78 | 0.285 | 7.24 |
| -008 | 0.176 | 4.47 | 0.070 | 1.78 | 0.316 | 8.03 |
| -009 | 0.208 | 5.28 | 0.070 | 1.78 | 0.348 | 8.84 |
| -010 | 0.239 | 6.07 | 0.070 | 1.78 | 0.379 | 9.63 |
| -011 | 0.301 | 7.65 | 0.070 | 1.78 | 0.441 | 11.20 |
| -012 | 0.364 | 9.25 | 0.070 | 1.78 | 0.504 | 12.80 |
| -013 | 0.426 | 10.82 | 0.070 | 1.78 | 0.566 | 14.38 |
| -014 | 0.489 | 12.42 | 0.070 | 1.78 | 0.629 | 15.98 |
| -015 | 0.551 | 13.99 | 0.070 | 1.78 | 0.691 | 17.55 |
| -016 | 0.614 | 15.60 | 0.070 | 1.78 | 0.754 | 19.15 |
| -017 | 0.676 | 17.17 | 0.070 | 1.78 | 0.816 | 20.73 |
| -018 | 0.739 | 18.77 | 0.070 | 1.78 | 0.879 | 22.33 |
| -019 | 0.801 | 20.35 | 0.070 | 1.78 | 0.941 | 23.91 |
| -020 | 0.864 | 21.95 | 0.070 | 1.78 | 1.004 | 25.50 |
AS568 -1xx Series (CS = 2.62 mm / 0.103″)
| Dash No. | ID (in) | ID (mm) | CS (in) | CS (mm) | OD (in) | OD (mm) |
|---|---|---|---|---|---|---|
| -102 | 0.049 | 1.24 | 0.103 | 2.62 | 0.255 | 6.48 |
| -103 | 0.081 | 2.06 | 0.103 | 2.62 | 0.287 | 7.29 |
| -104 | 0.112 | 2.84 | 0.103 | 2.62 | 0.318 | 8.08 |
| -106 | 0.174 | 4.42 | 0.103 | 2.62 | 0.380 | 9.65 |
| -108 | 0.237 | 6.02 | 0.103 | 2.62 | 0.443 | 11.25 |
| -109 | 0.299 | 7.59 | 0.103 | 2.62 | 0.505 | 12.83 |
| -110 | 0.362 | 9.19 | 0.103 | 2.62 | 0.568 | 14.43 |
| -111 | 0.424 | 10.77 | 0.103 | 2.62 | 0.630 | 16.00 |
| -112 | 0.487 | 12.37 | 0.103 | 2.62 | 0.693 | 17.60 |
| -113 | 0.549 | 13.94 | 0.103 | 2.62 | 0.755 | 19.18 |
| -114 | 0.612 | 15.54 | 0.103 | 2.62 | 0.818 | 20.78 |
| -116 | 0.737 | 18.72 | 0.103 | 2.62 | 0.943 | 23.95 |
| -118 | 0.862 | 21.89 | 0.103 | 2.62 | 1.068 | 27.13 |
| -120 | 0.987 | 25.07 | 0.103 | 2.62 | 1.193 | 30.30 |
| -125 | 1.237 | 31.42 | 0.103 | 2.62 | 1.443 | 36.65 |
| -130 | 1.487 | 37.77 | 0.103 | 2.62 | 1.693 | 43.00 |
| -150 | 2.487 | 63.17 | 0.103 | 2.62 | 2.693 | 68.40 |
AS568 -2xx Series (CS = 3.53 mm / 0.139″) — Most Widely Used
| Dash No. | ID (in) | ID (mm) | CS (in) | CS (mm) | OD (in) | OD (mm) |
|---|---|---|---|---|---|---|
| -201 | 0.171 | 4.34 | 0.139 | 3.53 | 0.449 | 11.40 |
| -202 | 0.234 | 5.94 | 0.139 | 3.53 | 0.512 | 13.00 |
| -204 | 0.359 | 9.12 | 0.139 | 3.53 | 0.637 | 16.18 |
| -206 | 0.484 | 12.29 | 0.139 | 3.53 | 0.762 | 19.35 |
| -208 | 0.609 | 15.47 | 0.139 | 3.53 | 0.887 | 22.53 |
| -210 | 0.734 | 18.64 | 0.139 | 3.53 | 1.012 | 25.70 |
| -212 | 0.859 | 21.82 | 0.139 | 3.53 | 1.137 | 28.88 |
| -214 | 0.984 | 24.99 | 0.139 | 3.53 | 1.262 | 32.05 |
| -216 | 1.109 | 28.17 | 0.139 | 3.53 | 1.387 | 35.23 |
| -218 | 1.234 | 31.34 | 0.139 | 3.53 | 1.512 | 38.40 |
| -220 | 1.359 | 34.52 | 0.139 | 3.53 | 1.637 | 41.58 |
| -222 | 1.484 | 37.69 | 0.139 | 3.53 | 1.762 | 44.75 |
| -224 | 1.609 | 40.87 | 0.139 | 3.53 | 1.887 | 47.93 |
| -226 | 1.734 | 44.04 | 0.139 | 3.53 | 2.012 | 51.10 |
| -228 | 1.859 | 47.22 | 0.139 | 3.53 | 2.137 | 54.28 |
| -230 | 1.984 | 50.39 | 0.139 | 3.53 | 2.262 | 57.45 |
| -232 | 2.109 | 53.57 | 0.139 | 3.53 | 2.387 | 60.63 |
| -234 | 2.234 | 56.74 | 0.139 | 3.53 | 2.512 | 63.80 |
| -236 | 2.359 | 59.92 | 0.139 | 3.53 | 2.637 | 66.98 |
| -238 | 2.484 | 63.09 | 0.139 | 3.53 | 2.762 | 70.15 |
| -240 | 2.609 | 66.27 | 0.139 | 3.53 | 2.887 | 73.33 |
| -244 | 2.859 | 72.62 | 0.139 | 3.53 | 3.137 | 79.68 |
| -248 | 3.109 | 78.97 | 0.139 | 3.53 | 3.387 | 86.03 |
| -260 | 3.859 | 98.02 | 0.139 | 3.53 | 4.137 | 105.08 |
| -284 | 8.984 | 228.19 | 0.139 | 3.53 | 9.262 | 235.25 |
AS568 -3xx Series (CS = 5.33 mm / 0.210″) — Selected Sizes
| Dash No. | ID (in) | ID (mm) | CS (in) | CS (mm) | OD (in) | OD (mm) |
|---|---|---|---|---|---|---|
| -309 | 0.551 | 13.99 | 0.210 | 5.33 | 0.971 | 24.66 |
| -310 | 0.614 | 15.60 | 0.210 | 5.33 | 1.034 | 26.26 |
| -312 | 0.739 | 18.77 | 0.210 | 5.33 | 1.159 | 29.43 |
| -314 | 0.864 | 21.95 | 0.210 | 5.33 | 1.284 | 32.61 |
| -316 | 0.989 | 25.12 | 0.210 | 5.33 | 1.409 | 35.79 |
| -318 | 1.114 | 28.30 | 0.210 | 5.33 | 1.534 | 38.96 |
| -320 | 1.239 | 31.47 | 0.210 | 5.33 | 1.659 | 42.14 |
| -325 | 1.489 | 37.82 | 0.210 | 5.33 | 1.909 | 48.49 |
| -330 | 1.739 | 44.17 | 0.210 | 5.33 | 2.159 | 54.84 |
| -340 | 2.239 | 56.87 | 0.210 | 5.33 | 2.659 | 67.54 |
| -350 | 2.739 | 69.57 | 0.210 | 5.33 | 3.159 | 80.24 |
| -360 | 3.239 | 82.27 | 0.210 | 5.33 | 3.659 | 92.94 |
| -375 | 3.989 | 101.32 | 0.210 | 5.33 | 4.409 | 111.99 |
| -395 | 14.984 | 380.59 | 0.210 | 5.33 | 15.404 | 391.26 |
AS568 -4xx Series (CS = 6.99 mm / 0.275″) — Selected Sizes
| Dash No. | ID (in) | ID (mm) | CS (in) | CS (mm) | OD (in) | OD (mm) |
|---|---|---|---|---|---|---|
| -425 | 1.239 | 31.47 | 0.275 | 6.99 | 1.789 | 45.44 |
| -430 | 1.489 | 37.82 | 0.275 | 6.99 | 2.039 | 51.79 |
| -432 | 1.614 | 40.99 | 0.275 | 6.99 | 2.164 | 54.96 |
| -436 | 1.864 | 47.35 | 0.275 | 6.99 | 2.414 | 61.32 |
| -440 | 2.114 | 53.70 | 0.275 | 6.99 | 2.664 | 67.67 |
| -444 | 2.364 | 60.05 | 0.275 | 6.99 | 2.914 | 74.02 |
| -450 | 2.739 | 69.57 | 0.275 | 6.99 | 3.289 | 83.54 |
| -460 | 3.239 | 82.27 | 0.275 | 6.99 | 3.789 | 96.24 |
| -475 | 25.940 | 659.00 | 0.275 | 6.99 | 26.490 | 672.99 |
3. ISO 3601 Metric O-Ring Size Chart
Outside North America, O-rings are specified using the ISO 3601 metric standard. Metric O-rings are written as ID × CS in millimetres — for example, 20 × 2.0 means 20 mm inside diameter, 2.0 mm cross-section, 24 mm OD. The most common cross-sections are 1.0, 1.5, 1.8, 2.0, 2.5, 3.0, 3.5, 4.0, and 5.0 mm.
Metric O-Rings — Common 2.0 mm Cross-Section Sizes
| Designation | ID (mm) | CS (mm) | OD (mm) | ID (in) | CS (in) | Typical Application |
|---|---|---|---|---|---|---|
| 3 × 2.0 | 3.00 | 2.00 | 7.00 | 0.118 | 0.079 | Miniature valves |
| 4 × 2.0 | 4.00 | 2.00 | 8.00 | 0.157 | 0.079 | Fittings, sensors |
| 5 × 2.0 | 5.00 | 2.00 | 9.00 | 0.197 | 0.079 | Small bore pneumatics |
| 6 × 2.0 | 6.00 | 2.00 | 10.00 | 0.236 | 0.079 | Hydraulic fittings |
| 8 × 2.0 | 8.00 | 2.00 | 12.00 | 0.315 | 0.079 | Rod seals, pistons |
| 10 × 2.0 | 10.00 | 2.00 | 14.00 | 0.394 | 0.079 | Very widely used |
| 12 × 2.0 | 12.00 | 2.00 | 16.00 | 0.472 | 0.079 | Very widely used |
| 14 × 2.0 | 14.00 | 2.00 | 18.00 | 0.551 | 0.079 | Pump housings |
| 15 × 2.0 | 15.00 | 2.00 | 19.00 | 0.591 | 0.079 | Cylinder bores |
| 16 × 2.0 | 16.00 | 2.00 | 20.00 | 0.630 | 0.079 | Valves, pneumatics |
| 18 × 2.0 | 18.00 | 2.00 | 22.00 | 0.709 | 0.079 | Hydraulic cylinders |
| 20 × 2.0 | 20.00 | 2.00 | 24.00 | 0.787 | 0.079 | Most common overall |
| 22 × 2.0 | 22.00 | 2.00 | 26.00 | 0.866 | 0.079 | General industrial |
| 25 × 2.0 | 25.00 | 2.00 | 29.00 | 0.984 | 0.079 | Fittings, flanges |
| 30 × 2.0 | 30.00 | 2.00 | 34.00 | 1.181 | 0.079 | Larger bore seals |
| 35 × 2.0 | 35.00 | 2.00 | 39.00 | 1.378 | 0.079 | Flanged connections |
| 40 × 2.0 | 40.00 | 2.00 | 44.00 | 1.575 | 0.079 | Pipe fittings |
| 50 × 2.0 | 50.00 | 2.00 | 54.00 | 1.969 | 0.079 | Medium bore hydraulics |
Metric O-Rings — Common 3.0 mm Cross-Section Sizes
| Designation | ID (mm) | CS (mm) | OD (mm) | ID (in) | Typical Use |
|---|---|---|---|---|---|
| 8 × 3.0 | 8.00 | 3.00 | 14.00 | 0.315 | Hydraulic cylinders |
| 10 × 3.0 | 10.00 | 3.00 | 16.00 | 0.394 | Fittings & connectors |
| 12 × 3.0 | 12.00 | 3.00 | 18.00 | 0.472 | Pumps & valves |
| 15 × 3.0 | 15.00 | 3.00 | 21.00 | 0.591 | Very widely used |
| 20 × 3.0 | 20.00 | 3.00 | 26.00 | 0.787 | Very widely used |
| 25 × 3.0 | 25.00 | 3.00 | 31.00 | 0.984 | Industrial general |
| 30 × 3.0 | 30.00 | 3.00 | 36.00 | 1.181 | Cylinder bores |
| 40 × 3.0 | 40.00 | 3.00 | 46.00 | 1.575 | Hydraulic systems |
| 50 × 3.0 | 50.00 | 3.00 | 56.00 | 1.969 | Flanges |
| 60 × 3.0 | 60.00 | 3.00 | 66.00 | 2.362 | Large bore pneumatics |
| 80 × 3.0 | 80.00 | 3.00 | 86.00 | 3.150 | Pipe seals |
| 100 × 3.0 | 100.00 | 3.00 | 106.00 | 3.937 | Large flanged joints |
4. How to Measure an O-Ring
If you have an existing O-ring you need to match, measure its ID and CS — never the OD, which is a derived dimension and varies with stretch.
- Measure the Inside Diameter (ID): Lay the O-ring flat on a ruler. Measure straight across the inside of the ring from inner edge to inner edge. For small or irregular O-rings, use digital calipers for accuracy.
- Measure the Cross-Section (CS): Using calipers, measure the diameter of the cord (the rubber part) at any point around the ring. This is the CS. Do not measure a stretched or compressed ring.
- Calculate the OD:
OD = ID + 2 × CS. Use this to verify your measurement against the part drawing or groove dimensions. - Match to a standard size: Search the AS568 or ISO 3601 tables above for the closest matching ID and CS combination. If your measurement falls between two sizes, check the groove dimensions to determine which size gives 10–15% cross-section compression.
- Verify with the dash number: For AS568, confirm the dash number against the part drawing or OEM specification. Never substitute a metric O-ring into an inch groove or vice versa without verifying groove fill.
5. O-Ring Material Selection Guide
Choosing the wrong O-ring material is the leading cause of seal failure. The material must be compatible with the media being sealed and the operating temperature. Here is the quick-pick guide for the five most common materials:
| Material | Temp Range | Best For | Avoid With | Cost |
|---|---|---|---|---|
| Buna-N (NBR) Nitrile, Buna |
−40°C to +120°C (−40°F to +248°F) |
Petroleum oils, hydraulic fluid, fuel, water, general purpose | Ozone, UV, brake fluid (glycol), ketones, chlorinated solvents | $ Lowest |
| Viton (FKM) Fluorocarbon |
−20°C to +200°C (−4°F to +392°F) |
High temp, aggressive chemicals, fuels, aromatic solvents, acids | Ketones, amines, hot water/steam above 120°C, MEK | $$$$ High |
| EPDM Ethylene Propylene |
−40°C to +150°C (−40°F to +302°F) |
Hot water, steam, brake fluid, weather/ozone, outdoor exposure | Petroleum oils, fuels, mineral oils, most hydrocarbons | $$ Low–Medium |
| Silicone (VMQ) Silicon rubber |
−55°C to +230°C (−67°F to +446°F) |
Food & medical, extreme temps, dry heat, air/gas seals | Petroleum oils, steam, acids, alkalis (poor mechanical strength) | $$$ Medium–High |
| HNBR Hydrogenated Nitrile |
−30°C to +150°C (−22°F to +302°F) |
Automotive refrigerants, sour gas, H2S environments, ozone | Strong acids, ketones, esters, aromatic solvents | $$$ Medium–High |
| PTFE (Teflon) Polytetrafluoroethylene |
−200°C to +260°C (−328°F to +500°F) |
Universal chemical resistance, corrosive media, low friction | Molten alkali metals, fluorine gas (otherwise near-universal) | $$$$ High |
Quick Material Selector: Match Fluid to Material
| Fluid / Media | First Choice | Second Choice | Avoid |
|---|---|---|---|
| Engine oil / hydraulic oil | Buna-N (NBR) | HNBR, Viton | EPDM, Silicone |
| Petrol / diesel / fuel | Buna-N (NBR) | Viton (FKM) | EPDM, Silicone |
| Water / hot water | EPDM | Silicone, PTFE | Buna-N |
| Steam | EPDM | PTFE | Buna-N, Viton |
| Brake fluid (glycol) | EPDM | PTFE | Buna-N, Neoprene |
| Acids / alkalis (dilute) | Viton (FKM) | EPDM, PTFE | Buna-N, Silicone |
| Aromatic solvents | Viton (FKM) | PTFE | Buna-N, EPDM, Silicone |
| Food & beverage contact | Silicone (FDA grade) | EPDM (FDA grade), PTFE | Standard Buna-N |
| Medical / pharmaceutical | Platinum Silicone | PTFE, FFKM | Most standard rubbers |
| Refrigerants (R134a etc.) | HNBR | Neoprene | Buna-N (some grades) |
| Ozone / outdoor / UV | EPDM | Silicone, Viton | Buna-N, Natural rubber |
| High temp (>120°C) | Viton (FKM) | Silicone, PTFE | Buna-N, EPDM (dynamic) |
6. O-Ring Hardness (Durometer)
O-ring hardness is measured in Shore A durometer. The most common hardness for O-rings is 70 Shore A (the industry default). Here is how hardness affects sealing performance:
| Shore A | Feel | Pressure Range | Best For |
|---|---|---|---|
| 40–50 | Very soft / gel-like | Low pressure only | Fragile surfaces, low-load static seals |
| 60 | Soft rubber | Low to moderate | Soft surface sealing, vacuum applications |
| 70 | Standard rubber | General purpose | Default for most hydraulic, pneumatic, and industrial applications |
| 80–90 | Firm rubber | High pressure (hydraulic) | High-pressure dynamic seals, extrusion resistance |
| 90 | Hard rubber | Very high pressure | Tube fitting boss seals (AS568 -9xx), hydraulic systems above 3,000 psi |
7. O-Ring Groove Design Reference
The O-ring groove (gland) must be designed to allow 10–15% compression of the cross-section for static seals, and 15–25% for dynamic seals. Insufficient compression causes leaks; excessive compression causes extrusion and premature failure.
Groove Depth = CS × 0.85 to 0.90
This gives 10–15% compression. Example: CS = 3.53 mm → Groove depth = 3.53 × 0.87 ≈ 3.07 mm.
Groove width should be 1.3–1.5 × CS to allow 15–30% volumetric fill. Always consult AS568 or ISO 3601 gland design tables for the exact groove dimensions for your dash number.
8. Frequently Asked Questions
What does the AS568 dash number mean?
How do I find my O-ring size?
Can I substitute a metric O-ring for an AS568 size?
What is the most common O-ring size?
What is the best O-ring material for oil?
What is the best O-ring material for water and steam?
What does Shore A 70 mean for O-rings?
What is the O-ring compression percentage for a static seal?
FREE DOWNLOAD
Download the O-Ring Size Chart PDF — Free, Print-ReadyAll 369 AS568 sizes · ISO 3601 metric · Material guide included · No sign-up required