PNA40-62 bearing: complete specifications & equivalents

The PNA40-62 is a DIN 616 radial bearing sized 40 x 62 x 20 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 = 62 mm d = 40 B = 20 mm side section front view
Principal dimensions: bore d 40 mm, outer diameter D 62 mm, width B 20 mm. Schematic, not to scale.

Specification table

ParameterValue
Brand SKF
Bore diameter d 40 mm
Outer diameter D 62 mm
Width B 20 mm
Material GCr15
Seal / shield open
Internal clearance CN
Tolerance class P0
Cage none
Basic dynamic load rating C 27.5 kN
Basic static load rating C0 57 kN
Fatigue load limit Pu 7.1 kN
Reference speed (thermal) 9000 rpm
Limiting speed (mechanical) 10000 rpm
Operating temperature -40 to +120 °C
Mass 230 g
Manufacturer designation PNA 40/62
Standard DIN 616
Catalog version SKF PUB BU/P1 17000/1 EN (Oct 2018), ch. 7.6 alignment needle roller bearings, with an inner ring
Last verified 2026-09-26

Source: catalog reference (SKF PUB BU/P1 17000/1 EN (Oct 2018), ch. 7.6 alignment needle roller bearings, with an inner ring) · extracted 2026-09-26

Parameters extracted from the official SKF Rolling Bearings catalogue (SKF PUB BU/P1 17000/1 EN (Oct 2018), ch. 7.6 alignment needle roller bearings, with an inner ring); 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 & PNA-series range

Bore d 1.575 in
Outer diameter D 2.441 in
Width B 0.787 in
ISO bore code —
Radial section height (D−d)/2 11 mm
Smallest bore in PNA-series 12 mm
Largest outer diameter in PNA-series 62 mm
Width range across PNA-series 12–20 mm
Bore position in PNA-series (smallest first) 9 of 9
Bore above smallest PNA-series size 28 mm

Cross references & equivalents

No verified interchange data yet. Send an inquiry and our team will confirm equivalents manually.

How the PNA40-62 model number is decoded

PNA 40/62 combines machined-ring needle roller capacity with self-alignment: 40×62×20 mm envelope, convex outer-ring outside running in a correspondingly sphered washer or housing seat. The PNA 40/62 figures state the 40 mm seat and 20 mm width; the letters carry the construction — machined rings, integral flanges, and the convex outside surface that aligns inside its seat. Execution notes: alignment comes from the convex outer ring outside surface running in a plain sphered seat — no separate self-aligning washer is needed, and roughly ±2° of static seat error is absorbed. Speed planning separates the two ceilings: 9,000 r/min thermal reference and 10,000 r/min mechanical limiting — needle bearings tolerate high rpm only with adequate lubricant film at the 40 mm seat. Mounting: seat the convex outer ring surface in its sphered counterpart dry first, confirm the 40 mm inner-ring raceway rotates freely through the full alignment range, then lubricate and assemble for service.

Typical equipment & failure modes

Common applications

  • pivot bearings where housing bores cannot be kept coaxial
  • linkage eyes and clevis mounts on frames that flex
  • agricultural machinery joints exposed to frame distortion
  • door and gate hinges with heavy radial load

Known failure patterns

  • raceway spalling once the catalogue L10 life is exceeded or after overload events
  • polymer cage deformation when the local temperature exceeds the 120 °C sustained limit
  • grease starvation at the roller ends when relubrication intervals are stretched in dirty duty
  • corrosion pitting from condensation in intermittently operated machinery

Selection pitfalls — read before you substitute

  • At 40 mm bore, verify shaft deflection against the needle length: these rollers tolerate little edge loading, and a simply supported span between 40 mm seats can bend past the compensation range long before the load rating is exhausted.
  • Oscillating pivots fail differently: rocking through a small angle concentrates wear in the same roller positions — inspect those zones, and consider rotating the assembly's clock position at service intervals.
  • Contamination, not fatigue, kills most small needle bearings: with raceways this narrow, one hard particle dents a full-width line — seal the housing even when the bearing execution itself is open.
  • The 27.5/57 kN ratings and 230 g mass are SKF catalogue values transcribed from ch. 7.6 of PUB BU/P1 17000 (PDF table page 652); combined-type axial ratings appear in the text above because the structured record carries radial values only.

Frequently asked questions

What limits the service life of a PNA 40/62?

Beyond the L10 rating, the practical limits are journal/raceway hardness for the 40 mm seat, lubricant condition at the roller ends, and contamination through open ends — the 11.0 mm radial section leaves no reserve once a raceway is dented or ribboned.

What are the dimensions and ratings of the PNA 40/62?

A PNA 40/62 measures 40 mm bore/Fw × 62 mm outside diameter × 20 mm width (1.575 × 2.441 × 0.787 in). From SKF catalogue PUB BU/P1 17000: radial dynamic rating C 27.5 kN, static C0 57 kN, fatigue limit Pu 7.1 kN, limiting speed 10,000 r/min, reference speed 9,000 r/min, mass about 230 g.

How is the PNA 40/62 designation read?

PNA marks the self-aligning needle roller family (inner-ring with machined rings): figures give the 40 mm seat and 20 mm width; the convex outer-ring outside surface aligns within roughly ±2° in its sphered seat.

Can the PNA 40/62 run on an unhardened shaft?

Depends on the family member: RPNA runs directly on the shaft (hardened, 58–64 HRC, ground), while PNA includes a ground inner ring for an ordinary 40 mm k5 seat. Both add the sphered outer ring for seat misalignment.

Reviewed & verified by the MPN Base engineering desk against source catalog SKF PUB BU/P1 17000/1 EN (Oct 2018), ch. 7.6 alignment needle roller bearings, with an inner ring on 2026-09-26. Read our editorial & correction policy.