N317-ECP bearing: complete specifications & equivalents

The N317-ECP is a ISO 15 radial bearing sized 85 x 180 x 41 mm (bore x OD x width). Verify dimensions against the official catalog before ordering.

Bearing dimension schematic Front view shows outer diameter D and bore d; side section shows width B. D = 180 mm d = 85 B = 41 mm side section front view
Principal dimensions: bore d 85 mm, outer diameter D 180 mm, width B 41 mm. Schematic, not to scale.

Specification table

ParameterValue
Brand SKF
Bore diameter d 85 mm
Outer diameter D 180 mm
Width B 41 mm
Material GCr15
Seal / shield open
Internal clearance CN
Tolerance class P0
Cage polymer (PA66 glass-fibre reinforced)
Basic dynamic load rating C 340 kN
Basic static load rating C0 335 kN
Fatigue load limit Pu 41.5 kN
Reference speed (thermal) 4000 rpm
Limiting speed (mechanical) 4800 rpm
Operating temperature -40 to +120 °C
Mass 4550 g
Manufacturer designation SKF N 317 ECP
Standard ISO 15
Catalog version SKF PUB BU/P1 17000/1 EN (Oct 2018), ch. 6.1 single-row cylindrical roller bearings
Last verified 2026-09-26

Source: catalog reference (SKF PUB BU/P1 17000/1 EN (Oct 2018), ch. 6.1 single-row cylindrical roller bearings) · extracted 2026-09-26

Parameters extracted from the official SKF Rolling Bearings catalogue (SKF PUB BU/P1 17000/1 EN (Oct 2018), ch. 6.1 single-row cylindrical roller bearings); SKF® and SKF Explorer® are trademarks of AB SKF, used here for identification only — mpnbase is not an authorized SKF distributor. Boundary dimensions are ISO 15 interchangeable; current production values may differ, verify at skf.com.

Dimensions in inches & N300-series range

Bore d 3.346 in
Outer diameter D 7.087 in
Width B 1.614 in
ISO bore code 17
Radial section height (D−d)/2 47.5 mm
Smallest bore in N300-series 17 mm
Largest outer diameter in N300-series 280 mm
Width range across N300-series 14–58 mm
Bore position in N300-series (smallest first) 15 of 22
Bore above smallest N300-series size 68 mm

Cross references & equivalents

Equivalent modelBrandMatch levelNote
NJ317-ECP SKF full
Dimensions and internal design equivalent — standard interchange.
Same ISO 15 envelope 85×180×41 mm and equivalent catalogue ratings; the NJ execution differs in flange/retaining-ring configuration — boundary-dimension interchangeable, but axial-locating behaviour is not identical.
NUP317-ECP SKF full
Dimensions and internal design equivalent — standard interchange.
Same ISO 15 envelope 85×180×41 mm and equivalent catalogue ratings; the NUP execution differs in flange/retaining-ring configuration — boundary-dimension interchangeable, but axial-locating behaviour is not identical.
NU317 SKF full
Dimensions and internal design equivalent — standard interchange.
Same ISO 15 envelope 85×180×41 mm and equivalent catalogue ratings; the NU execution differs in flange/retaining-ring configuration — boundary-dimension interchangeable, but axial-locating behaviour is not identical.
NU317 SKF full
Dimensions and internal design equivalent — standard interchange.
Same ISO 15 envelope 85×180×41 mm and equivalent catalogue ratings; the NU execution differs in flange/retaining-ring configuration — boundary-dimension interchangeable, but axial-locating behaviour is not identical.
NU317 SKF full
Dimensions and internal design equivalent — standard interchange.
Same ISO 15 envelope 85×180×41 mm and equivalent catalogue ratings; the NU execution differs in flange/retaining-ring configuration — boundary-dimension interchangeable, but axial-locating behaviour is not identical.

Interchange levels: full standard interchange · partial verify parameters · verify manual confirmation required. Links resolve to the equivalent model's specification page where available.

How the N317-ECP model number is decoded

For a 85 mm shaft, SKF lists N317-ECP as single-row caged cylindrical roller: 180 mm OD, 41 mm wide, Pu 41.5 kN, the catalogue lists 4,000 r/min thermal reference speed and 4,800 r/min mechanical limiting speed. The N configuration means two integral flanges on the inner ring and no flanges on the outer ring, so the plain outer ring is the separable part; functionally the bearing is non-locating: the outer ring can displace axially in both directions and the bearing carries radial load only. Reading the order-string suffix ECP: the E-design execution with a glass-fibre reinforced polyamide (PA66) cage, limited to 120 °C continuous. With C 340 kN and C0 335 kN, size the bearing on the 85×180 mm ISO 15 envelope and check the 41.5 kN Pu against the equivalent-load floor; the catalogue lists 4,000 r/min thermal reference speed and 4,800 r/min mechanical limiting speed. Fit practice for N317-ECP: the outer ring slides in its housing seat; provide axial retention for the outer ring only if the application requires it, and let it float to absorb shaft expansion. Single-row cylindrical rollers tolerate only about 3–4 minutes of arc misalignment, so verify shaft and housing alignment.

Typical equipment & failure modes

Common applications

  • rolling-mill auxiliary drive shafts
  • paper-machine press rolls
  • cement-plant conveyor drives
  • heavy gearbox and pinion shafts

Known failure patterns

  • inner-ring raceway spalling from overload or contamination in the line-contact hertz zone
  • outer-ring raceway fatigue after extended service at loads above the catalogue L10 rating
  • polymer cage softening above 120 °C
  • cage pocket wear from roller skidding at insufficient radial load or during start-up before oil film build-up
  • roller-end scoring from inadequate oil flow in the roller-raceway contact
  • edge-loading fatigue after shaft deflection beyond the 3–4 minute alignment limit
  • smearing (microwelding) on roller surfaces during skid starts with insufficient minimum load

Selection pitfalls — read before you substitute

  • Do not use a N bearing where axial load must be carried — the design carries radial load only
  • The dimension series 3 (medium-section ISO 15 envelope) envelope is shared with the N/NU/NJ/NUP executions of 317, but flange configuration and axial-locating behaviour differ — quote the full SKF N 317 ECP and do not substitute rib styles without checking the shaft locating scheme.
  • Press-fit force goes through ring faces only; driving a ring home through the rollers brinells the 180 mm raceway.
  • Press-fit force goes through ring faces only; driving a ring home through the rollers brinells the 180 mm raceway.
  • The 340/335 kN ratings are SKF catalogue 17000 (2018) values for the ECP execution; re-verify against the current catalogue for critical drives and keep the catalogue version with the specification.

Frequently asked questions

What are the dimensions and catalogue data of N317-ECP?

SKF N 317 ECP is a single-row caged cylindrical roller bearing with 85 mm bore, 180 mm OD and 41 mm width per ISO 15. SKF lists C 340 kN, C0 335 kN, Pu 41.5 kN, reference speed 4,000 r/min and limiting speed 4,800 r/min, mass about 4550 g.

What does the N designation and ECP suffix mean?

The ECP suffix marks the E-design execution with a glass-fibre reinforced polyamide (PA66) cage, limited to 120 °C continuous. Structurally this execution has two integral flanges on the inner ring and no flanges on the outer ring, so the plain outer ring is the separable part.

Can N317-ECP take axial load and locate the shaft?

No — the plain outer ring has no flanges, so the N bearing floats axially and is for radial load; locate the shaft with a separate bearing.

How does N317-ECP compare with the other executions in the same envelope?

The N/NU/NJ/NUP executions share the ISO 15 envelope and load ratings but differ in flange arrangement and axial-locating behaviour; quote the exact order number.

What limits the service life of this bearing most often?

Line-contact fatigue above the L10 rating, cage wear at light loads and high temperatures, and edge loading from misalignment beyond about 3–4 minutes of arc are the typical failure drivers.

Reviewed & verified by the MPN Base engineering desk against source catalog SKF PUB BU/P1 17000/1 EN (Oct 2018), ch. 6.1 single-row cylindrical roller bearings on 2026-09-26. Read our editorial & correction policy.