DIN 3771 Metric O-Rings
What Is a DIN 3771 O-Ring?
DIN 3771 is a German standard used to identify and specify metric O-rings.
Unlike inch-based O-ring systems such as AS568, DIN 3771 uses metric dimensions, with the basic O-ring size identified by:
Inside Diameter (ID) × Cross Section (C/S)
The standard may also use additional designations to communicate the quality level, rubber material, and IRHD hardness of the O-ring.
This makes DIN 3771 more than a simple dimensional reference.
For engineers and maintenance professionals, a DIN 3771 designation can provide a useful starting point for determining:
- O-ring size
- Dimensional requirements
- Quality level
- Elastomer type
- Rubber hardness
However, the most important engineering principle is:
A DIN 3771 size is not, by itself, a complete application specification.
The correct seal still depends on the working fluid, temperature, pressure, motion, groove design, hardness, surface condition, and required service life.
For a complete listing of all metric o-ring sizes, visit our Metric O-Ring Cross Reference Table.
DIN 3771 Size Chart
| Global Part # | Reference | C/S (MM) | I.D.(MM) | C/S (Inch) | I.D.(Inch) |
|---|
How DIN 3771 O-Ring Sizes Are Identified
The most important difference between DIN 3771 and many inch-based O-ring systems is the way the size is communicated.
An AS568 O-ring, for example, may be identified by a dash number.
A DIN 3771 O-ring is generally understood from its:
ID × Cross Section
This is particularly convenient when working with metric mechanical drawings.
For example:
30 × 2.5 mm
means:
- 30 mm nominal ID
- 2.5 mm nominal cross-section
It does not mean that the O-ring’s actual installed diameter will remain 30 mm.
Once installed, the O-ring is compressed inside a gland, and the resulting sealing geometry depends on the groove design.
DIN 3771 Material and IRHD Hardness Coding
Another important characteristic of DIN 3771 is that additional codes may identify the rubber polymer and IRHD hardness.
This is important because an O-ring’s dimensional size does not determine its chemical or thermal performance.
For example, two O-rings can have exactly the same:
ID × C/S
while having completely different:
- Chemical resistance
- Temperature resistance
- Compression set
- Tensile properties
- Abrasion resistance
- Pressure behavior
because they are manufactured from different elastomer compounds.
Therefore:
Correct DIN 3771 dimensions do not guarantee correct material compatibility.
How to Select a DIN 3771 Replacement O-Ring
Use the following process.
Step 1: Find the Original Reference
Look for:
- OEM drawing
- Maintenance manual
- Spare-parts list
- Previous purchase record
- Packaging label
- Part number
If the original DIN 3771 reference is available, use it.
Step 2: Verify ID and Cross Section
Confirm:
ID
and
C/S
Do not rely on one dimension.
Step 3: Identify the Material
Look for the original:
- Elastomer
- Compound code
- Hardness
- Certification
If this information is missing, determine the working fluid and operating temperature.
Step 4: Determine Static or Dynamic Service
Ask whether the O-ring is:
- Static
- Reciprocating
- Oscillating
- Rotary
Dynamic applications usually require greater attention to:
- Surface finish
- Lubrication
- Friction
- Wear
- Squeeze
Step 5: Check Pressure
Determine:
- Normal pressure
- Peak pressure
- Pressure direction
- Pressure cycling
High-pressure applications may require harder compounds or backup rings.
Step 6: Check Temperature
Record:
Minimum temperature
Continuous operating temperature
Maximum temperature
The seal must remain within the practical temperature capability of the selected elastomer.
Step 7: Inspect the Gland
Verify:
- Groove width
- Groove depth
- Diameter
- Squeeze
- Fill
- Clearance
- Corner radius
The groove is part of the sealing system.
Why Measuring a Used O-Ring Can Be Dangerous
Used O-rings can change dimensions during service.
Swelling
Chemical absorption can increase the size of the elastomer.
Compression Set
Long-term compression can permanently flatten the O-ring.
Extrusion
Pressure can force the seal into a clearance gap.
Abrasion
Dynamic movement can remove material.
Thermal Aging
Heat can cause shrinkage, hardening, cracking, or permanent deformation.
Consequently:
The dimensions of a failed O-ring may not represent its original dimensions.
Whenever possible, measure the gland and consult the original drawing.
DIN 3771 O-Ring Procurement Specification
When requesting a quotation, avoid sending only:
“DIN 3771 O-ring.”
A better RFQ should include:
Standard: DIN 3771
Size: ID × C/S
Quality: N or S
Material: NBR / FKM / EPDM / etc.
Hardness: IRHD or Shore A
Fluid: Actual medium
Temperature: Operating range
Pressure: Operating / peak
Application: Static / dynamic
Quantity: Required quantity
Certification: If applicable
Example
DIN 3771, 30 × 2.5 mm, N quality, NBR, 70 Shore A, mineral hydraulic oil, −20°C to +100°C, static application.
This is substantially more useful to a manufacturer than:
“30 × 2.5 DIN O-ring.”
Frequently Asked Questions About DIN 3771 O-Rings
What is DIN 3771?
DIN 3771 is a German metric O-ring standard associated with the Deutsches Institut für Normung. It identifies O-ring dimensions primarily using inside diameter × cross-section.
What does DIN 3771 mean on an O-ring drawing?
It indicates that the O-ring dimensions are based on the DIN 3771 standard. The complete specification may also contain quality, material, and hardness information.
What does ID × C/S mean?
It means:
Inside Diameter × Cross Section
For example:
40 × 3 mm
means an approximate 40 mm inside diameter and 3 mm cross-section.
What is the difference between DIN 3771 N and S?
N represents normal quality, while S represents special quality within the DIN 3771 designation system.
Does DIN 3771 specify O-ring material?
The standard’s designation system can include coding for rubber polymer and IRHD hardness, but the size itself does not mean that every O-ring of that dimension uses the same material.
Is DIN 3771 the same as ISO 3601?
No. The standards overlap in many metric dimensions, but they are not identical. Some sizes do not have exact counterparts between the two systems.
Can DIN 3771 be replaced by a generic metric O-ring?
Sometimes, particularly in low-risk applications, but the actual dimensions, tolerances, material, hardness, groove, and operating conditions should be verified first.
Can DIN 3771 be replaced by an AS568 O-ring?
Only when a technically suitable dimensional and application match exists. AS568 is primarily an inch-based system, while DIN 3771 is metric.
How do I measure a DIN 3771 O-ring?
Measure the free-state:
Inside Diameter + Cross Section
Then compare the result with the applicable DIN 3771 size table.
Why does a correctly sized DIN 3771 O-ring leak?
Possible causes include:
- Incorrect material
- Incorrect hardness
- Wrong groove dimensions
- Insufficient squeeze
- Excessive pressure
- Extrusion
- Surface damage
- Chemical incompatibility
- Incorrect installation
The size alone does not determine sealing performance.
DIN 3771 O-Ring vs. Other Metric Standards
DIN 3771 is one part of a much larger international O-ring sizing landscape.
| Standard | Region / Origin | Basic Identification |
|---|---|---|
| DIN 3771 | Germany | ID × C/S |
| ISO 3601 | International | Standardized metric/international system |
| BS 4518 | United Kingdom | Metric sizes |
| SMS 1586 | Sweden | ID × C/S |
| JIS B 2401 | Japan | Metric sizes |
| ISO 6149 | International hydraulic | Metric hydraulic applications |
| Generic Metric | General | ID × C/S |
KODA O-Ring’s size-chart directory lists these systems separately, which is a useful reminder that “metric O-ring” is a category, not one universal standard.



