NA6907 bearing: complete specifications & equivalents

The NA6907 is a ISO 1206 radial bearing sized 35 x 55 x 36 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 = 55 mm d = 35 B = 36 mm side section front view
Principal dimensions: bore d 35 mm, outer diameter D 55 mm, width B 36 mm. Schematic, not to scale.

Specification table

ParameterValue
Brand SKF
Bore diameter d 35 mm
Outer diameter D 55 mm
Width B 36 mm
Material GCr15
Seal / shield open
Internal clearance CN
Tolerance class P0
Cage none
Basic dynamic load rating C 48.4 kN
Basic static load rating C0 93 kN
Fatigue load limit Pu 11.4 kN
Reference speed (thermal) 9500 rpm
Limiting speed (mechanical) 11000 rpm
Operating temperature -40 to +120 °C
Mass 310 g
Manufacturer designation NA 6907
Standard ISO 1206
Catalog version SKF PUB BU/P1 17000/1 EN (Oct 2018), ch. 7.4 machined rings with flanges, with an inner ring
Last verified 2026-09-26

Source: catalog reference (SKF PUB BU/P1 17000/1 EN (Oct 2018), ch. 7.4 machined rings with flanges, 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. 7.4 machined rings with flanges, 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 & NA-69-series range

Bore d 1.378 in
Outer diameter D 2.165 in
Width B 1.417 in
ISO bore code 07
Radial section height (D−d)/2 10 mm
Smallest bore in NA-69-series 12 mm
Largest outer diameter in NA-69-series 130 mm
Width range across NA-69-series 22–63 mm
Bore position in NA-69-series (smallest first) 10 of 22
Bore above smallest NA-69-series size 23 mm

Cross references & equivalents

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

How the NA6907 model number is decoded

For a 35 mm shaft that cannot be hardened on site, NA 6907 adds a hardened, ground inner ring to the machined needle roller design: envelope 35×55×36 mm per the dimension series 69 needle roller bearings with inner ring plan. Reading the designation: the letters name the series with inner ring, the numbers the boundary plan — 35 mm bore (d), 36 mm width; the 55 mm OD follows the dimension series, and the inner ring is a separate ground component. Inner rings are separable: order replacement inner rings separately by d×D×B, since the outer ring and roller assembly survive journals that ruin an inner raceway. Minimum load matters: below roughly 0.02·C the rollers skid and smear; preloading the pivot or specifying a heavier execution avoids the glazing that pure oscillation produces on these raceways. Because the inner ring is separable, mount it first against its shoulder, then slide the outer ring and roller set over it — the order avoids forcing rollers across the shaft threads or burrs.

Typical equipment & failure modes

Common applications

  • electric motor armature shafts with ground seats
  • printing and paper-handling rollers
  • gearbox shafts where the journal cannot be hardened on site
  • wheel and lever pivots needing a replaceable inner ring

Known failure patterns

  • needle edge loading and raceway denting when the shaft deflects beyond the compensation range
  • 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
  • brinelling of raceways from impact or pressing force transmitted through the rolling elements
  • inner-ring raceway spalling after the narrow ring section runs hot with excessive interference

Selection pitfalls — read before you substitute

  • At 35 mm bore, verify shaft deflection against the needle length: these rollers tolerate little edge loading, and a simply supported span between 35 mm seats can bend past the compensation range long before the load rating is exhausted.
  • Reference and limiting speeds are different limits: the 9,500 r/min reference is the thermal criterion under load, The limiting value is mechanical; the reference value is thermal under load, and grease choice moves it substantially.
  • Hardness is load capacity: in families without an inner ring the 35 mm journal must hold 58–64 HRC with a ground finish; a surface that looks fine but sits at 45 HRC will rib the raceway within weeks.
  • The 48.4/93 kN ratings and 310 g mass are SKF catalogue values transcribed from ch. 7.4 of PUB BU/P1 17000 (PDF table page 642); combined-type axial ratings appear in the text above because the structured record carries radial values only.

Frequently asked questions

Is the NA 6907 sealed?

No — the open execution relies on housing seals; 2RS executions of the 49 series add contact seals with a wider outer ring as a separate order number.

Which dimensions does the NA 6907 have?

A NA 6907 measures 35 mm bore/Fw × 55 mm outside diameter × 36 mm width (1.378 × 2.165 × 1.417 in). From SKF catalogue PUB BU/P1 17000: radial dynamic rating C 48.4 kN, static C0 93 kN, fatigue limit Pu 11.4 kN, limiting speed 11,000 r/min, reference speed 9,500 r/min, mass about 310 g.

What does NA 6907 mean in SKF part numbering?

The letters mark a machined-ring needle roller bearing with inner ring: 35 mm bore, 36 mm width, 55 mm OD per the series plan. The hardened inner ring is the raceway, so an ordinary k5 shaft seat suffices.

Does the NA 6907 need a hardened and ground shaft?

Yes — that is the point of this family. The NA 6907 carries its own hardened, ground inner ring on a 35 mm seat, so the shaft needs only a normal k5/j6 finish. The inner ring is separable and replaceable.

Reviewed & verified by the MPN Base engineering desk against source catalog SKF PUB BU/P1 17000/1 EN (Oct 2018), ch. 7.4 machined rings with flanges, with an inner ring on 2026-09-26. Read our editorial & correction policy.