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Standard Clarity
IEC 60529

IEC 60529 - Degrees of Protection Provided by Enclosures (IP Code)

Degrees of protection provided by enclosures (IP Code)

Maintained by Giorgi Gaprindashvili Published Updated Editorial check

How to read an IP code

IP 6 7 A-F 1st digitsolids & contact, 0-6 (6 = dust-tight) 2nd digitwater, 0-9 (9 = high-pressure jets) lettersA-F add detail (contact, oil, weather)
The IP code reads left to right: first digit is protection against solids and contact (0-6), second is protection against water (0-9), optional letters add detail.

Key facts

Full title
Degrees of protection provided by enclosures (IP Code)
Published by
IEC; adopted in Europe by CENELEC as EN 60529
Code format
IP + solids digit (0-6) + water digit (0-9), plus an optional access letter (A, B, C, D) and supplementary letter (H, M, S, W)
What X means
The characteristic was not declared or not tested - it does not mean zero protection
The K suffix
Comes from ISO 20653 (road vehicles), not from IEC 60529; the IEC high-pressure test itself is IPX9
Applies to
Enclosures for electrical equipment with a rated voltage up to 72.5 kV
Does not cover
Corrosion, icing, oil and coolant, hazardous atmospheres, or mechanical impact (impact is the IK code, IEC 62262)

Reading an IP code

An IP code reads left to right: the letters IP, then the first characteristic numeral, then the second characteristic numeral, with optional letters where applicable. The first and second positions describe different protection characteristics.

When a characteristic is not specified in the designation, X is used in that position. IPX4 therefore declares water numeral 4 while leaving the first characteristic unspecified; IP6X declares solids numeral 6 while leaving the water characteristic unspecified. X is not a score of zero and does not by itself prove whether other evidence or testing exists.

First digit: solids and contact

The first digit runs from 0 to 6 and covers two linked things at once: how well the enclosure keeps out solid foreign objects, and how well it protects people from touching hazardous parts inside.

It climbs from no protection (0), through progressively smaller objects, to dust-protected (5, limited dust ingress with no harmful effect) and finally dust-tight (6, no dust ingress at all). A first digit of 6 is the ceiling; there is no 7, 8 or 9 for solids.

Second digit: water

The second digit runs from 0 to 9. Levels 1 to 4 cover dripping, spraying and splashing water; 5 and 6 cover water jets and powerful water jets; 7 and 8 cover immersion; and 9 covers close-range high-pressure, high-temperature jets.

A common trap is treating the second digit as a single ladder. It is not. Jet tests (5, 6) and immersion tests (7, 8) check different things, so passing one does not imply the other. A product rated for immersion is not automatically rated against high-pressure jets unless it was tested for them as well.

IEC IP69, commercial IP69K wording and ISO K-bearing codes

IEC 60529 includes water numeral 9 for high-pressure, high-temperature water-jet protection. ISO 20653 is a separate road-vehicle standard and uses K-bearing designations for special road-vehicle requirements that are not covered by IEC 60529 in the same notation.

Commercial literature often uses “IP69K” as shorthand for high-pressure, high-temperature cleaning resistance. Do not silently convert that wording into IEC IP69 or into an ISO code such as IP6K9K. For a real product, verify the exact designation, cited standard, edition and declared test conditions.

Why an IP rating does not convert back to NEMA

NEMA enclosure Types and IEC IP codes overlap, but the two systems do not cover the same set of characteristics. NEMA Types can include conditions such as corrosion, icing, oil or coolant exposure and other construction requirements that a two-character IP code does not express.

NEMA has published one-way correlations for particular editions and applications, while explicitly warning that an IP degree cannot be treated as an equivalent NEMA Type. Standard Clarity therefore does not automatically relabel products between the systems; use an attributed, edition-specific cross-reference only as screening information.

IP code digits at a glance

DigitFirst digit - solids and contactSecond digit - water
0No protectionNo protection
1Objects larger than 50 mm (e.g. back of hand)Vertically dripping water
2Objects larger than 12.5 mm (e.g. a finger)Dripping water with the enclosure tilted up to 15 degrees
3Objects larger than 2.5 mm (e.g. a tool)Spraying water up to 60 degrees from vertical
4Objects larger than 1 mm (e.g. a wire)Splashing water from any direction
5Dust-protected (limited ingress, no harmful effect)Water jets from a 6.3 mm nozzle
6Dust-tight (no dust ingress)Powerful water jets from a 12.5 mm nozzle
7Not defined for the first digitTemporary immersion up to about 1 m
8Not defined for the first digitContinuous immersion beyond 1 m, on conditions set by the manufacturer
9Not defined for the first digitClose-range high-pressure, high-temperature jets (IPX9)
The first digit tops out at 6 (dust-tight); the second continues to 9. An X in either position means that characteristic was not declared.

Tools that use this standard

Related standards

StandardRelationshipWhat it means
ISO 20653Related road-vehicle ingress standardUses K-bearing designations for special road-vehicle requirements. Keep the ISO notation and test context distinct from IEC 60529 IP69 and from commercial “IP69K” shorthand.
NEMA 250 / UL 50ECross-referenced withNorth American enclosure Types overlap with IP ingress characteristics but include additional requirements. Cross-reference only from an identified source/edition and do not treat it as permission to relabel a product.
IEC 62262 (IK code)Complemented byMechanical impact resistance, which IEC 60529 dropped after its second edition, is rated separately by the IK code.

Related guides

Frequently asked questions

What does IP stand for in an IP rating?
IP stands for Ingress Protection (the standard originally introduced the letters as International Protection). The code gives a precise, tested rating for how well an enclosure keeps out solid objects and water, replacing vague terms such as waterproof or dustproof.
What does the X mean in a rating like IPX4 or IP6X?
X is a placeholder meaning that characteristic is not specified by that position in the designation; it does not mean zero protection and does not, by itself, tell you whether a separate test was performed. IPX4 has an undeclared solids digit and water level 4 (splashing); IP6X is dust-tight with no declared water rating.
What is the difference between IP67 and IP68?
Both are dust-tight, shown by the first digit 6. IP67 covers temporary immersion to about 1 m; IP68 covers continuous immersion deeper than 1 m under conditions the manufacturer specifies, so IP68's exact depth and duration vary from product to product rather than being fixed by the standard.
Is IPX5 or IPX7 more waterproof?
Neither strictly outranks the other, because they test different things. IPX5 is resistance to water jets from any direction; IPX7 is resistance to immersion. A device can pass one and fail the other, which is why products meant to survive both are tested and rated for both.
What does IP69K mean, and is it part of IEC 60529?
IP69K means dust-tight protection (first digit 6) plus the ISO 20653 high-pressure, high-temperature water-jet test (9K). The K test belongs to ISO 20653 rather than IEC 60529; IEC 60529 uses IPX9 for its own high-pressure, high-temperature water test.
Can I convert an IP rating to a NEMA type?
No universal conversion is valid. NEMA enclosure Types and IEC IP codes cover overlapping but different characteristics. NEMA has published source- and edition-specific comparison material for some Types, but a cross-reference is screening information rather than permission to relabel a product. Verify the actual product declarations and applicable standard.
Does IEC 60529 cover mechanical impact resistance?
No. Impact resistance was removed after the second edition and is rated separately by the IK code in IEC 62262. IEC 60529 also does not cover corrosion, chemical exposure, or protection in hazardous (explosive) atmospheres.

Source: IEC webstore. An overview for design reference - verify against the current edition before relying on it for compliance.