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Like the TS bearing design, the TSF design consists of two main separable parts: the cone (inner ring) assembly and the cup (outer ring). It is typically mounted in opposing pairs on a shaft. TSF bearings have flanged cups to facilitate axial location and accurately align seals in through-bored housings.
Unit of Measure

Specifications

Series

N/A JP10000

Cone Part Number

N/A JP10049

Cup Part Number

N/A JP10010-B

Design Unit

N/A Metric

Cage Material

N/A Stamped Steel

Related Assembly Number(s)

N/A JP10049-90B02

Dimensions

d - Bore

N/A 100 mm3.937 in

D - Cup Outer Diameter

N/A 145 mm5.7087 in

D1 - Flange Outer Diameter

N/A 152.000 mm5.9843 in

B - Cone Width

N/A 22.500 mm0.8858 in

C - Cup Width

N/A 17.500 mm0.6890 in

C1 - Cup Flange Width

N/A 4.000 mm0.1575 in

T1 - Bearing Width to Flange

N/A 10.500 mm4.134 in

Abutment and Fillet Dimensions

R - Cone Backface "To Clear" Radius1 N/A 3.050 mm0.12 in
r - Cup Backface "To Clear" Radius2 N/A 3 mm0.12 in

da - Cone Frontface Backing Diameter

N/A 106 mm4.17 in

db - Cone Backface Backing Diameter

N/A 112 mm4.41 in

Da - Cup Frontface Backing Diameter

N/A 143.00 mm5.63 in

Ab - Cage-Cone Frontface Clearance

N/A 3.8 mm0.15 in

Aa - Cage-Cone Backface Clearance

N/A 1.3 mm0.05 in
a - Effective Center Location3 N/A 6.1 mm0.24 in

Basic Load Ratings

C90 - Dynamic Radial Rating (90 million revolutions)4 N/A 32500 N7310 lbf
C1 - Dynamic Radial Rating (1 million revolutions)5 N/A 125000 N28200 lbf

C0 - Static Radial Rating

N/A 172000 N38700 lbf
Ca90 - Dynamic Thrust Rating (90 million revolutions)6 N/A 26300 N5920 lbf

Factors

K - Factor7 N/A 1.24
e - ISO Factor8 N/A 0.47
Y - ISO Factor9 N/A 1.27

G1 - Heat Generation Factor (Roller-Raceway)

N/A 104

G2 - Heat Generation Factor (Rib-Roller End)

N/A 40.9
Cg - Geometry Factor10 N/A 0.126
  • 1 These maximum fillet radii will be cleared by the bearing corners.
  • 2 These maximum fillet radii will be cleared by the bearing corners.
  • 3 Negative value indicates effective center inside cone backface.
  • 4 Based on 90 x 106 revolutions L10 life, for The Timken Company life calculation method. C90 and Ca90 are radial and thrust values.
  • 5 Based on 1 x 106 revolutions L10 life, for the ISO life calculation method.
  • 6 Based on 90 x 106 revolutions L10 life, for The Timken Company life calculation method. C90 and Ca90 are radial and thrust values for a single-row, C90(2) is the two-row radial value.
  • 7 These factors apply for both inch and metric calculations. Consult your Timken representative for instruction on use.
  • 8 These factors apply for both inch and metric calculations. Consult your Timken representative for instruction on use.
  • 9 These factors apply for both inch and metric calculations. Consult your Timken representative for instruction on use.
  • 10 Geometry constant for Lubrication Life Adjustment Factor a3l.
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