INDEX PAGE # CAM FOLLOWER BEARING YOKE ROLLER TYPE BEARING METRIC BEARINGS BEARING ENGINEERING DATA CFE-B & CFE-SB SERIES CCFH-SB SERIES

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3 INDEX PAGE # CAM OLLOE EAING EAING ENGINEEING DATA O C & CS SEIES O 5 C & CS SEIES O CE & CES SEIES O 7 CE & CES SEIES O CCS SEIES O 9 CCS SEIES O 0 CCES SEIES O CCES SEIES O CH & CHS SEIES O 3 CH & CHS O CCHS SEIES O 5 CCHS SEIES O YOKE TYPE EAING CY SEALED AND UNSEALED P METIC EAINGS MC SEIES Q MCD SEIES Q 3 MCYD SEIES Q MCY SEIES Q 5 Note: All Measurement and Dimensions are In Inch

4 INDEX PAGE # NEEDLE EAING M SEIES MI INNE ACES 3 TACK EAINGS PLAIN TACK S PLAIN ECCENTIC TACK S LANGED TACK S 3 LANGED ECCENTIC TACK S VGOOVED TACK S 5 VGOOVED ECCENTIC TACK S Note: All Measurement and Dimensions are In Inch

5 CAM OLLOE EAING ENGINEEING DATA earing Life & Load Calculations ŸINTODUCTION: ŸEAING LIE Experience shows seemingly identical rolling bearings operated under identical conditions may not last the same amount of time. In most cases, it is impractical to test a statistically significant number of bearings, so engineers rely on standardized bearinglife calculations to select and size bearings for a particular application. These calculations continue to evolve and become more accurate over time, reflecting the collective experience of the bearing industry, including recent advances in manufacturing, Tribology, materials, enduser condition monitoring, and computation. Properly selected bearings that have been suitably mounted and lubricated will operate for extended periods of time with minimal wear until the fatigue life of the rolling elements is reached. atigue life of a bearing is reached when "Spalling" or flaking of the contact surfaces (rolling element and raceway) occur from repeated stresses. Once the fatigue life of the rolling element or raceway is reached, wear and ultimate failure of the bearing will occur very rapidly. The purpose is to select the proper type and size of bearing for the intended application in order to optimize performance and operating life. asic life or L0 as defined in ISO and AMA standards is the life that 90% of a sufficiently large group of apparently identical bearings can be expected to reach or exceed. The median or average life, sometimes called Mean Time etween ailure (MT), is about five times the calculated basic rating life. Service life is the life of a bearing under actual operating conditions before it fails or needs to be replaced for whatever reason. The socalled specification life is generally a requisite L0 basic rating life and reflects a manufacturer's requirement based on experience with similar applications. The life of a bearing can be defined in terms of hours of operation or number of revolutions the bearing will endure before failure. e need to keep in mind that some variations between individual bearings that look identical do exist. The most coon definition of bearing life as defined by the AMA (American earing Manufacturer s Association) is referred to as the L0 life. The L0 life of a bearing is the number of hours that 0% of a group of seemingly identical bearings will operate prior to fatigue failure occurring. The L0 life can also be expressed in the number of revolutions when the speed is known. hen selecting a bearing the machine designer should select an appropriate L0 life for the particular application. ŸEAING LOADS Engineers typically employ rollingcontact fatigue models that compare bearing load ratings to applied dynamic and static loads as they impact service life and reliability. Dynamic Load ating The life expectancy ( L0 life) in hours of a bearing can be calculated by using the following formula: The basic dynamic load rating covers dynamically stressed bearings that rotate under load. This rating, defined in ISO, is the bearing load that results in a basic rating life or L0 of million revolutions. Dynamic loads should include a representative duty cycle or spectrum of load conditions and any peak loads. L0 = N 0/3 ( D ) P The asic Dynamic ating (D) required for a given application can be calculated by using following formula: D =.05 x P x (L0 x N).3 Static Load ating L0 = Life of the bearing in hours of operation The basic static load rating applies to bearings that rotate at speeds less than 0 rpm, slowly oscillate, or remain stationary under load over certain periods. e sure to include loads of extremely short duration (shock) because they may plastically deform contact surfaces and compromise bearing integrity. D = asic Dynamic ating of the bearing P = adial Load (lbs) N = Speed (PM) O

6 CAM OLLOE EAING ENGINEEING DATA earing Life & Load Calculations Example : ŸTACK CAPACITY: Determine the L0 life of a C cam follower operating at a speed of 00 PM under a load of 000 lbs: In normal applications cam followers and yoke rollers operate against a track, cam or rail on a piece of machinery or equipment. The Track Capacity is the maximum load that a steel track of a given tensile strength will withstand without plastic deformation or brinelling of the track surface. ind the asic Dynamic ating (D) in the specification page for the C cam follower: D (asic Dynamic ating) = 090 lbs Track capacities increase with larger bearings due to the increase in contact surface. Table allow you to determine the track capacities for steel tracks of various hardness and tensile strengths when used with different size cam followers, yoke rollers and Track rollers. rom the given formula: L0 = N L0 = 00 0/3 ( D P ) hen using crowned bearings assume 0% of the value for track capacities due to a decrease in contact area between the track and bearing outer race.to determine the Track Capacity for a particular track of given hardness or tensile strength and bearing size, multiply the Capacity actor in Table by the Track Capacity in Table /3 ( 000 ) L0 = 7,53 hrs. Table Note: This shows the expected operating life for the C under the above conditions is 7,53 hours. If a longer life span is desired and room for installation permits, a larger bearing with a higher asic Dynamic ating (D) could be selected. or example: C / cam follower with a D (asic Dynamic ating) of 70 lbs will operate for 93,570 hours in the identical application. Example : ind the asic Dynamic ating required for M bearing operating rate 000 rmp with a load of 00 lbs. The required L0 life will be 5,000 hours. TACK TENSILE STENGTH PSI. TACK HADNESS OCKELL "C TACK CAPACITY AC TO 0, , , , , , , , , , Table ASIC EAING NO. To determine L0 life use the formula: D = 0.05 x P x ( L0 x N)0.3 D = 0.05 x 00 x (5,000 x,000)0.3 D = 759 lbs Note: M oller earing with a asic Dynamic ating (D) of 70 lbs would be chosen for this application. If M oller earing with a asic Dynamic ating (D) of lbs. were used then operating life would be reduced to 9,73 hrs. as per Example. O TACK CAPACITY LS. ASIC EAING NO. TACK CAPACITY LS. /N 5 5,5 / 5 7,0 9/ 595,0 N 75 /,00 75,50 / 5 3 5, 050,05 3,0,0 3 / 0,00,, 00,00 5 3, 00,0 55, 00, , 00 / 3,70 9, 000,05 9,000 5,00 0 5,000

7 CAM OLLOE EAING ENGINEEING DATA Table 3: Typical earing Life for Various Design Applications Uses Design life in hours Agricultural equipment Aircraft equipment Automotive ace car Light motor cycle Heavy motor cycle Light cars Heavy cars Light trucks Heavy trucks uses Electrical Household appliances Motors / hp Motors 3 hp Motors, medium Motors, large Elevator cables sheaves Mine ventillation fans Propeller thrust bearings Propeller shaft bearings Gear drives oat gearing units Gear drives Ship gear drives Machinery for hour service which are not always fully utilized Machinery for hour service which are fully utilized Machinery for continuous hour service > > Uses Gearing units Automotive Multipurpose Machine tools ail Vehicles Heavy rolling mill Machines eater mills riquette presses Grinding spindles Machine tools Mining machinery Paper machines olling mills Small cold mills Large multipurpose mills ail vehicle axle Mining cars Motor rail cars Open pit mining cars Streetcars Passenger cars reight cars Locomotive outer bearings Locomotive inner bearings Machinery for short or intermittent opearation where service interruption is of minor importance Machinery for intermittent service where reliable opearation is of great importance Instruments and apparatus in frequent use O3 Design life in hours >

8 CAM OLLOE EAING ENGINEEING DATA ŸCONED O.D. Table 5: Eccentric stud ASIC EAING NO. EAING SIZE C, CH and CY series bearings are available with crowned O.D. Crowning of the outer race or roller surface reduces the possibility of edge loading of rollers in applications where misalignment can cause this problem. Crown radius of different sizes of bearing are mentioned in Table. Table : OD crown radius USHING. ±.00 ECOMMENDED HOUSING OE. ±.00 ½ / / / 0.7 CON ADIUS (INCHES) () ASIC EAING NO. CON ADIUS (INCHES) () CC/NS CC 7/ S CC/S 7 CCS.003 CC9/S 7 CC / S POEDIVE EAING NO. CCNS 7 CC / S CCS CC 3/ S.7.90 CC/ S CC3S / CCS 0 CC3 / S CCS 0 CC3 / S CCS CCS 3 CC / S CC5S 3 /..5 CC / S CCS CC 3/ S CC7S 0 CC / S 0 CCS 0 CC 5/ S 0 CC9S 0 CC 3/ S 0 CC0S 0 ŸSTANDAD NOMENCLATUE O POEDIVE CAMOLLOE EAING Eccentric stud Optional Prefix C Crowned O.D. (inch series) asic Type, Construciton C, CH, CY, MC, MC,... Optional Prefix E Eccentric ushing (Std Stud only) Size Inch Series : O.D. in Inches Metric stud type : O.D. in Metric yoke type : ore in Optional Suffix S ith Seal Hex holed X Cylindrical O.D. (metric series) The eccentric stud feature provides a means of easy radial adjustment for precise positioning of cam followers, track, guide and support rollers. Inline combinations of eccentric stud bearings can be aligned without the need for close tolerances of mounting holes and members. Problems involving control of clearances, preloading and compensation for wear can be avoided or solved by the easy adjustment of new bearings. In most applications, a lock nut is sufficient to hold the bearing at the desired position. In applications where a more positive means of holding a given position is required, this can be accomplished by drilling and dowelling through the housing into the bushing and the stud. The hex socket allows positive torque for adjustment and locking. CCE ½ S O

9 CAM OLLOE C & CS CAM OLLOE SL /3 SL TL TL /3 HD D HD Unsealed SD D HC SD HC Sealed Cam follower C Series Standered SEALED UNSEALED POE DIVE POEDIVE G NO. G.NO. * ** *** (D).00 IDTH().005 (SD) L GTH (SL.) OLD TH'D L'GTH. (TL) INE TH'DS. (HD) LU. ITTING SIZE ()* OSS. HOUSING ***ECOM. MAX. OE CLAMPING STATIC TOQUE CAPACITY LS.LS IN. ASIC DYN. ATING LS. C/N C/NS ½ 03 CENTE (HC) * 9/ C/ C/S * 9/ C9/ C9/S * 9/ CN CNS 0.0 5/ * 3/ C CS 5/ * 3/ 3 5 C/ C/S 0.7 5/ * 3/ 3 5 C CS / C CS / C CS / 7/0 / C C S.5 / 7/0 / C C S /0 5/ 9/ C C S.375 /0 5/ 9/ C / C /S / 57/ C C S.5 / 57/ C C S 7/ 3/ C C S.75 7/ 3/ C CS / 3/ C C S / 3/ C / C /S 9/ 5/ C C S 9/ 5/ C3. C3.S / C3 C3 S / / C3 / C3 /S.375 / C CS / / / 9/ C5S / 9/ N.P.T CS / N.P.T C7S / 3 N.P.T CS ** / 3 N.P.T* C9S ** / 3 / N.P.T* 5 7/ C0S ** / N.P.T* 5 59/ Standard tolerances do not apply. Consult PowerDrive Service. Oil hole () drilled from the flange end of the stud to the radial oil hole only. lange extends " beyond face of outer race, and endplate extends " beyond face of outer race. Clamping torque is based on dry threads. If threads are lubricated, use half of values shown. Coarse threads. O5

10 CAM OLLOE C & CS CAM OLLOE SL / 3 TL HD H D SD HC Sealed Cam followers with hex holes, with and without seals UNSEALED POE DIVE G.NO. SEALED POE DIVE G.NO. (D).00 IDTH().005 (SD) OIL L'GTH. (SL) TH'D L'GHT. (TL) INE TH'DS. CENTE (HC) (HD) LU. ITTING SIZE () MIN OSS. HOUSING ***EMOM. MAX. OE. CLAMPING STATIC ASIC DYN. TOQUE CAPACITY ATING. LS LS.IN. LS. C/N C/NS ½ 03 9/ C/ C/S / C9/ C9/ S / CN CNS 0.0 5/ 3/ C CS 5/ 3/ 3 5 C/ C/ S 0. 5/ 3/ 3 5 C CS 0.30 / C CS 0.30 / C CS 0.0 / 7/0 / C C S / 7/0 / C C S /0 5/ 9/ C C S.375 /0 5/ 9/ C / C /S 0. / 57/ C C S.5 0. / 57/ C C S 7/ 3/ C C S.75 7/ 3/ C CS 0.0 / 3/ C C S 0.0 / 3/ C / C /S 9/ 5/ C C S 9/ 5/ C3 C3S / C3 C3 S / C3 / C3 /S.30 / C CS / / / *** / / Clamping torque is based on dry threads. If threads are lubricated, use half of values shown. Lubrication hole () at bottom of hex hole and inch straight drive fitting with ball check supplied but not installed. Hex hole standard on sizes above CS. O

11 CAM OLLOE CE & CES CAM OLLOE / 3 SL G TL ECC. D D Sealed Cam followers with eccentric studs, with and without seals SEALED POE DIVE G.NO. (D).00 IDTH().005 USH. L'GTH (G*).00 USH.. (D) ±.00 L'GTH L'GTH. (SL) TH'D L'GTH. (TL) CE/ CE/S CE9/ CE9/S 0.53 CE CES 0.37 CE/ CE/S CE CES CE CES CE CES CE CE S CE UNSEALED POE DIVE G.NO. LU. ITTING SIZE ()** *** ECOM. MAX. CLAMPING STATIC TOQUE CAPACITY LS.LS. IN. ASIC DYN. ATING LS. INE TH'DS. ECC ** ** / 0.05 ** 5 5/ 0.05 ** / 7/ / 7/ CE S 0.7 / CE CE S / CE / CE /S / 50 0 CE CE S.5 / 50 0 CE CE S CE CE S CE CES CE CE S CE ½ CE /S CE CE S CE3 CE3S / CE3 CE3 S / CE3 / CE3 /S CE CES / / / * or positive clamping, use housing thickness equal to G dimension ushing press fit on stem and unhardened to permit dowel or set screw for permanent locking. ** Oil hole () drilled from lange end of stud to the radial oil hole only. *** Clamping torque is based on dry threads. If threads are lubricated, use half of values shown O7

12 CAM OLLOE CE & CES CAM OLLOE / 3 SL G TL ECC. D D Sealed Cam followers with eccentric studs and hex holes, with and without seals USH. L'GTH (G*).00 USH.. (D) ±.00 L'GTH CES CE/ CE/S CE INE TH'DS. ECC. LU. ITTING SIZE () *** ECOM. CLAMPING TOQUE LS.IN / / CE S.5 CE CE S CE CE S.375 CE / CE /S CE CE S CE L'GTH. (SL) TH'D L'GTH. (TL) ½ CES CE CES CE CES CE (D).00 IDTH().005 MAX. STATIC CAPACITY LS. ASIC DYN. ATING LS / 7/ / 7/ / / / / 50 0 CE S CE CE S CE CES CE CE S CE / CE /S CE CE S CE3 CE3S / CE3 CE3 S / CE3 / CE3 /S CE CES / / / UNSEALED POE DIVE G.NO. SEALED POE DIVE G.NO CE/N CE/NS CE/ CE/S CE9/ CE9/S CE * or positive clamping, use housing thickness equal to G dimension ushing press fit on stem and unhardened to permit dowel or set screw for permanent locking. *** Clamping torque is based on dry threads. If threads are lubricated, use half of values shown. Lubrication hole () at bottom of hex hole and inch straight drive fitting with ball check supplied but not installed. O

13 CAM OLLOE CCS CAM OLLOE SL /3 TL HD D Sealed SD HC /" on CC5S, CCS, CC7S Cam followers with crowned O.D.s and seals UNSEALED POE DIVE G.NO. (D).00 IDTH().005 (SD) OLD L GTH (SL.) TH'D L'GTH. (TL) INE TH'DS. CENTE (HC) (HD) LU. ITTING SIZE ()* OSS. HOUSING OE.0003 *** ECOM. CLAMPING TOQUE LS.IN. MAX. STATIC CAPACITY LS. ASIC DYN. ATING LS. CC/NS ½ 03 * 9/ CC/S * 9/ CC9/S * 9/ CCNS 0.0 5/ * 3/ CCS 5/ * 3/ 3 5 CC/S 0. 5/ * 3/ 3 5 CCS / CCS / CCS / 7/0 / CC S.5 / 7/0 / CC S /0 5/ 9/ CC S.375 /0 5/ 9/ CC /S / 57/ CC S.5 / 57/ CC S 7/ 3/ CC S.75 7/ 3/ CCS / 3/ CC S / 3/ CC /S 9/ 5/ CC S 9/ 5/ CC3S / CC3 S / / CC3 /S.375 / CCS / / / 9/ CC5S / 9/ N.P.T CCS / N.P.T CC7S / 3 N.P.T CCS ** / 3 N.P.T.* CC9S ** / 3 / N.P.T.* 5 7/ CC0S ** / N.P.T.* 5 59/ * ** *** Standard tolerances do not apply. Consult PowerDrive Service. Oil hole () drilled from the flange end of the stud to the radial oil hole only. lange extends " beyond face of outer race, and endplate extends " beyond face of outer race. Clamping torque is based on dry threads. If threads are lubricated, use half of values shown. Coarse threads. O9

14 CAM OLLOE CCS CAM OLLOE SL / TL 3 HD H D Sealed SD HC Cam followers with crowned O.D.s, hex holes, and seals UNSEALED POE DIVE G.NO. (D).00 IDTH().005 (SD) CC/NS 0.3 CC/S CC9/S 0.53 CCNS OLD LU. ITTING SIZE ()** OSS. 9/ HOUSING OE / / / / 3 5 5/ 3/ 3 5 / / / 7/0 / / 7/0 / /0 5/ 9/ CC S.375 /0 5/ 9/ CC /S / 57/ CC S.5 / 57/ CC S 7/ 3/ CC S.75 7/ 3/ CCS / 3/ CC S / 3/ CC /S 9/ 5/ CC S.000 9/ 5/ CC3S / CC3 S / CC3 /S.375 / 59/ CCS / / / 9/ L GTH (SL) TH'D L'GTH. (TL) INE TH'DS ½ CCS CC/S 0. CCS 03 CENTE (HC) (HD) / 5/ CCS CCS CC S.5 CC S *** Clamping torque is based on dry threads. If threads are lubricated, use half of values shown. Lubrication hole () at bottom of hex hole and inch straight drive fitting with ball check supplied but not installed. Hex hole standard on sizes above CCS. O0 *** ECOM. MAX. CLAMPING STATIC TOQUE CAPACITY LS.LS. IN ASIC DYN. ATING LS. 0

15 CAM OLLOE CCES CAM OLLO /3 SL G* TL ECC. D D Sealed Cam followers with crowned O.D.s, eccentric studs and seals UNSEALED POE DIVE G.NO. (D).00 IDTH().005 USH. L'GTH (G*).00 USH.. (D) ±.00 L'GTH CCE/NS 0.3 CCE/S CCE9/S 0.53 CCES CCE/S *** ECOM. CLAMPING TOQUE LS.IN. L'GTH. (SL) TH'D L'GTH. (TL) INE TH'DS. ECC. ½ ** ** ** / 0.05 ** / 0.05 ** 5 CCES CCES CCES / 7/ CCE S.5 / 7/ CCE S 0.7 / CCE S / CCE /S / 50 0 CCE S.5 / 50 0 CCE S CCE S CCES CCE S CCE /S CCE S CCE3S / CCE3 S / CCE3 /S CCES / / / * ** *** LU. ITTING SIZE ()** MAX. STATIC CAPACITY LS. ASIC DYN. ATING LS. or positive clamping, use housing thickness equal to G dimension ushing press fit on stem and unhardened to permit dowel or set screw for permanent locking. Oil hole () drilled from the flange end of the stud to the radial oil hole only. Clamping torque is based on dry threads. If threads are lubricated, use half of values shown. O

16 CAM OLLOE CCES CAM OLLO /3 SL G* TL ECC. D H D Sealed Cam followers with crowned O.D.s, eccentric studs, hex holes, and seals UNSEALED POE DIVE G.NO. (D).00 IDTH().005 USH. L'GTH (G*).00 USH.. (D) ±.00 L'GTH L'GTH. (SL) TH'D L'GTH. (TL) INE TH'DS. ECC. LU. ITTING SIZE () *** ECOM. CLAMPING TOQUE LS.IN. MAX. STATIC CAPACITY LS. ASIC DYN. ATING LS. CCE/NS 0.3 ½ CCE/S CCE9/S CCES / CCE/S / CCES CCES CCES / 7/ CCE S.5 / 7/ CCE S 0.7 / CCE S / CCE /S / 50 0 CCE S.5 / 50 0 CCE S CCE S CCES CCE S CCE /S CCE S CCE3S / CCE3 S / CCE3 /S CCES / / / * *** or positive clamping, use housing thickness equal to G dimension ushing press fit on stem and unhardened to permit dowel or setscrew for permanent locking. Clamping torque is based on dry threads. If threads are lubricated, use half of values shown. Lubrication hole () at bottom of hex hole and inch straight drive fitting with ball check supplied but not installed. O

17 CAM OLLOE CH & CHS CAM OLLO SL / 3* SL TL /3* TL HD HD D D SD SD HC Sealed HC CH5, CH, CH7 CH5S, CHS, CH7S CH & CHS series heavy stud camfollowr SEALED UNSEALED POE DIVE POEDIVE G NO. G.NO. (D).00 IDTH().005 (SD) L GTH (SL.) OLD TH'D L'GTH. (TL) INE TH'DS. OSS. HOUSING *** ECOM. MAX. OE CLAMPING STATIC TOQUE CAPACITY LS.LS IN. ASIC DYN. ATING LS. CH/ CH/S CENTE (HC) * 3 50 CH9/ CH9/S 0.53 * 3 50 CH CHS / 5/ * 5/ CH/ CH/S / 5/ * 5/ CH CHS 7/0 39/ CH CHS 7/0 39/ CH CHS / 5/ CH CH S.5 / 5/ CH CH S 5/ 3/ CH CH S.375 5/ 3/ CH / CH /S / CH CH S.5 / CH CH S 7/ CH CH S.75 7/ CH CHS.5 / CH CH S.5 / CH / CH /S 9/ / CH CH S 9/ / CH3 CH3S / / CH3 CH3 S / / CH3 / CH3 /S / 7/ CH CHS / / 5/ CH5S / 9/ / N.P.T. 3 9/ CHS N.P.T. 5/ CH7S / 3 / N.P.T * *** (HD) LU. ITTING SIZE ()* Oil hole () drilled from the flange end of the stud to the radial oil hole only. Clamping torque is based on dry threads. If threads are lubricated, use half of values shown. Coarse Thread. O3

18 CAM OLLOE CH & CHS SEIES HEAVY CAM OLLOE SL / TL 3 HD H D SD HC Sealed /" on CH5S, CHS, CH7S Cam followers with hex holes, with and without seals UNSEALED SEALED POE DIVE POE DIVE G.NO. G.NO. (D).00 IDTH().005 CH/ (SD) OLD L GTH (SL.) TH'D L'GTH. (TL) INE TH'DS. OSS. HOUSING *** ECOM. MAX. CLAMPING OE STATIC TOQUE CAPACITY LS LS. IN ASIC DYN. ATING LS. CENTE (HC) CH9/ CH9/S CH / 5/ 5/ CH/ CH/S / 5/ 5/ CH CHS 7/0 39/ CH CHS 7/0 39/ CH CHS / 5/ CH CH S.5 / 5/ CH CH S 5/ 3/ CH CH S.375 5/ 3/ CH / CH /S / CH CH S.5 / CH CH S 7/ CH CH S.75 7/ CH.5 / CH CH S.5 / CH / CH /S 9/ / CH CH S 9/ / CH3 / / CH3 CH3 S / / CH3 / CH3 /S / CH / / *** CH/S CHS CHS CH3S CHS (HD) LU. ITTING SIZE () / / Clamping torque is based on dry threads. If threads are lubricated, use half of values shown. Lubrication hole () at bottom of hex hole and inch straight drive fitting with ball check supplied but not installed. Hex hole standard on sizes above CHS O

19 CAM OLLOE CCHS SEIES HEAVY CAM OLLOE SL / 3 TL HD D Sealed SD HC Cam followers with crowned O.D.s and seals (D).00 IDTH().005 (SD) L GTH (SL) TH'D L'GTH. (TL) CCH/S CCH 9/ S 0.53 CCHS 0.33 CCH / S CCHS CCHS CCH S CCH / S UNSEALED POE DIVE G.NO. OLD INE TH'DS. LU. ITTING SIZE ()* OSS. HOUSING OE.0003 *** ECOM. MAX. CLAMPING STATIC TOQUE CAPACITY LS.LS. IN. 50 ASIC DYN. ATING LS. CENTE (HC) (HD) * 3 / * 3/ / 5/ * 5/ / 5/ * 5/ /0 39/ /0 39/ / 5/ / 5/ CCH / S 5/ 3/ CCH 3/ S.375 5/ 3/ CCH / S / CCH 5/ S.5 / CCH 3/ S 7/ CCH 7/ S.75 7/ CCH S.5 / CCH / S.5 / CCH / S 9/ / CCH 3/ S 9/ / CCH 3S / / CCH 3 / S / / CCH 3 / S / 7/ CCH S / / 5/ CCH5S / 9/ / N.P.T. 3 9/ CCHS N.P.T. 5/ CCH7S / 3 / N.P.T Coarse Thread. * Oil hole () drilled from the flange end of the stud to the radial oil hole only. *** Clamping torque is based on dry threads. If threads are lubricated, use half of values shown. O5

20 CAM OLLOE CCHS SEIES HEAVY CAM OLLOE SL / 3 TL HD H D SD HC Sealed Cam followers with crowned O.D.s, hex holes and seals UNSEALED POE DIVE G.NO. (D).00 IDTH().005 (SD) OLD L GTH (SL.) TH'D L'GTH. (TL) INE TH'DS. OSS. HOUSING OE.0003 ***ECOM. MAX. CLAMPING STATIC TOQUE CAPACITY LS.LS. IN. 50 ASIC DYN. ATING LS. CCH/S CENTE (HC) 3 CCH9/S CCHS / 5/ 5/ CCH/S / 5/ 5/ CCHS 7/0 39/ CCHS 7/0 39/ CCHS / 5/ CCH S.5 / 5/ CCH S 5/ 3/ CCH S.375 5/ 3/ CCH /S / CCH S.5 / CCH S 7/ CCH S.75 7/ CCHS.5 / CCH S.5 / CCH /S 9/ / CCH S 9/ / CCH3S / / CCH3 S / / CCH3 /S / CCHS / / *** (HD) LU. ITTING SIZE () / / Clamping torque is based on dry threads. If threads are lubricated, use half of values shown. Lubrication hole () at bottom of hex hole and inch straight drive fitting with ball check supplied but not installed. Hex hole standard on sizes above CCHS. O

21 YOKE CY, CYS & CCYS TYPE EAINGS D D E E H H LU. GOOVE LU. GOOVE Unsealed Sealed CY, CYS & CCYS series Cam followers without studs for shaft mounting, with and without seals UNSEALED POE DIVE G.NO. SEALED POE DIVE G.NO. SEALED POE DIVE G.NO. IDTH OE () OVE END. O OIL PLATES END (D) IDTH() () PLATES (H) NOM. TOL (E) SHAT MIN OSS. NOM..00 PUSH IT DIVE IT TOL. NOM. TOL. PESS IT NOM. TOL. MAX. STATIC ASIC DYN. CAPACITY ATING. LS. LS. CY CYS CCYS / ½ CY CYS CCYS / / CY CYS CCYS /3 / CY CY S CCY S /3 / CY CY S CCY S 0.3 3/ 9/ CY CY S CCY S / 9/ CY ½ CY /S CCY /S 57/ ± ± ± CY CY S CCY S / CY CY S CCY S.03 3/ CY CY S CCY S / CY CYS CCYS.33 3/ CY CY S CCY S.33 3/ CY ½ CY /S CCY /S.53 / 5/ CY CY S CCY S.53 / 5/ CY3 CY3S CCY3S CY3 CY3 S CCY3 S CY3 ½ CY3 /S CCY3 /S / 59/ CY CYS CCYS.000 5/ 9/ CY5S CCY5S / CYS CCYS / CY7S CCY7S CYS CCYS CY9S CCY9S / 5/ 5 / ± CY0S CCY0S /3 5 5/3.55 Standard tolerances do not apply. Consult POE DIVE Customer Service. NOTE: Consult POE DIVE Customer Service for limiting speeds. P.5 ± ±

22 METIC CAM OLLOE MC CAM OLLOE L E SL HC TL HD D D D SD 500 ADIUS UNSEALED POE DIVE G.NO. SEALD POEDIVE G NO. MC3 MC3S MC MCS MC MCS MC9 MC9S MC9 MC9S MC MCS MC MCS MCA MCAS MCA MCAS MC MCS MC MCS MCA MCAS MCA MCAS MC MCS MC MCS MC3 MC3S MC3 MC3S MC MCS MC MCS MC0 MC0S MC0 MC0S MC0A MC0AS MC0A MC0AS MC7 MC7S MC7 MC7S MC7A MC7AS MC7A MC7AS MC5 MC5S MC5 MC5S MC5A MC5AS MC5A MC5AS MC MCS MC MCS MCA MCAS MCA MCAS MC7 MC7S MC7 MC7S MC7A MC7AS MC7A MC7AS MC0 MC0S MC0 MC0S MC5 MC5S MC5 MC5S MC90 MC90S MC90 MC90S (D).00 IDTH().005 (SD) L GTH (SL.) OVEALL LENGTH L NOM. ENDPLATE EXTENSIONE NOM. THEAD TH'D L'GTH. (TL) OLD CENTE (HC) (HD) M5x Mx Mx M0x M0x M0x M0x Mx Mx Mx Mx Mx M0x M0x M0x M0x Mx Mx Mx Mx Mx Mx Mx Limited Availability, Check Stock Q

23 METIC CAM OLLOE MC CAM OLLOE L SL HC E TL HD D D D SD 500 ADIUS UNSEALED POE DIVE G.NO. SEALD POEDIVE G NO. MC3 MC3S MC MCS MC MCS MC9 MC9S MC9 MC9S MC MCS MC MCS MCA MCAS MCA MCAS MC MCS MC MCS MCA MCAS MCA MCAS MC MCS MC MCS MC3 MC3S MC3 MC3S MC MCS MC MCS MC0 MC0S MC0 MC0S MC0A MC0AS MC0A MC0AS MC7 MC7S MC7 MC7S MC7A MC7AS MC7A MC7AS MC5 MC5S MC5 MC5S MC5A MC5AS MC5A MC5AS MC MCS MC MCS MCA MCAS MCA MCAS MC7 MC7S MC7 MC7S MC7A MC7AS MC7A MC7AS MC0 MC0S MC0 MC0S MC5 MC5S MC5 MC5S MC90 MC90S MC90 MC90S EAMED D NOM. CONE CLAMPING CLAMPING TOQUE ADIUS. MAX () LIMITING SPEED GEASE HOUSING OE. OIL ISO/AMA ASIC LOAD ATINGS NETONS DYNAMIC STATIC ISO/AMA ASIC LOAD ATINGS NETONS DYNAMIC MASS STATIC rpm rpm () (5) kg Limited Availability, Check Stock Q MAX

24 METIC CAM OLLOE MCD CAM OLLOE L SL HC TL HD E D D D SD C EAING NO.. D () NOM IDTH SD NOM. 500 CON ADIUS L'GTH. SL OVEALL LENGTH L NOM. ENDPLATE EXTENSION E NOM. THEAD LENGTH TL THEAD.HD NOM Mx MCD Mx MCD M0x.5 9 MCD M0x.5 9 MCD Mx.5 5 MCD Mx.5 5 MCD Mx MCD Mx CONE ADIUS ENDPLATE. C CLAMPING TOQUE (3) MAX. GEASE 0. NOM. 57 rpm rpm MCD MAX..0 MCD MCD MCD MCD MCD7. 00 MCD0. 7 MCD90. 7 LIMITING SPEED () HC NOM EAMED D NO M. MCD EAING NO. OIL HOUSING OE. ISO LOAD ATING OIL LOAD ATING (NETONS) DYNAMIC 00 LOAD ATING AS TACK EAMED D NO M. Kg STATIC 7000 DYNAMIC 000 STATIC Limited Availability, Check Stock () Standard bearing has a crowned roller outside diameter. or straight cylindrical outside diameter, add suffix "X". (Example MCDX) () Since load, lubrication method, temperature and other factors affect the maximum operating speed, it is impossible to determine precise limiting speed. The listed limiting speeds are based on lightly loaded bearings having adequate lubrication and are listed only as a design guide. If grease lubricated, frequent relubrication is required. Actual bearing testing in the specific application should be conducted if the anticipated operating speed approaches the listed limiting speed. (3) Clamping torque is based on dry threads. If threads are lubricated, use half of value shown. Q3

25 METIC CAM OLLOE MCYD YOKE S I(3) o i D E 500 CON ADIUS EAING NO. OE. MAX D () CONE HEIGHT EAING IDTH I MAX. ASHE. E o i NOM. LOAD ATING (NE TONS) ISO LOAD ATING LOAD ATING AS TACK DYNAMIC STATIC DYNAMIC STATIC G. LIMITING MASS SPEED (APPOX.) () PM Kg MCYD MCYD MCYD MCYD MCYD MCYD MCYD MCYD MCYD () Standard bearing has a crowned roller outside diameter. or straight cylindrical outside diameter, add suffix "X". (Example MCYD5X) () Since load, lubrication method, temperature and other factors affect the maximum operating speed, it is impossible to determine precise limiting speed. The listed limiting speeds are based on lightly loaded bearings having adequate lubrication and are listed only as a design guide. If grease lubricated, frequent relubrication is required. Actual bearing testing in the specific application should be conducted if the anticipated operating speed approaches the listed limiting speed. Q

26 METIC YOKE MCY YOKE D E 500 ADIUS MCY5 MCY5S MCY5 MCY5S MCY MCYS MCY MCYS MCY MCYS MCY MCYS MCY0 MCY0S MCY0 MCY0S MCY MCYS MCY MCYS MCY5 MCY5S MCY5 MCY5S MCY7 MCY7S MCY7 MCY7S MCY0 MCY0S MCY0 MCY0S MCY5 MCY5S MCY5 MCY5S MCY MCYS MCY MCYS MCY MCYS MCY MCYS MCY0 MCY0S MCY0 MCY0S MCY5 MCY5S MCY5 MCY5S MCY50 MCY50S MCY50 MCY50S Limited Availability, Check Stock () Standard bearing has a crowned roller outside diameter. or straight cylindrical outside diameter, add suffix "X". (Example MCY5X or MCY5SX) () Tolerance limits for oller Diameter are shown below. Cylindrical oller Dia. D Crowned oller Dia. D D (NOM.) D (NOM.) TOLEANCE OVE INCL. MAX Q5 TOLEANCE OVE INCL. MAX

27 METIC YOKE MCY YOKE D E 500 ADIUS LIMITING SPEED MOUNTING DIMENSIONS UNSEALED EAING NUME () SEALED EAING NUME () SHAT METE (3) LOOSE IT O LIGHT LOADS g MCY5S MCY5 MCY5S MCY MCYS MCY MCYS MCY MCYS MCY MCYS MCY0 MCY0S MCY0 MCY0S MCY MCYS MCY MCYS MCY5 MCY5S MCY5 MCY5S MCY7 MCY7S MCY7 MCY7S MCY0 MCY0S MCY0 MCY0S MCY5 MCY5S MCY5 MCY5S MCY MCYS MCY MCYS MCY MCYS MCY MCYS MCY0 MCY0S MCY0 MCY0S MCY5 MCY5S MCY5 MCY5S MCY50 MCY50S MCY50 MCY50S CLAMPING GEASE. () E Min. Max Max. MCY5 LIGHT TANSITION IT O MEDIUM LOADS h OIL () Min LOAD ATINGS ISO/AMA ASIC LOAD ATINGS NETONS DYNAMIC STATIC TACK LOAD ATINGS NETONS DYNAMIC MASS STATIC (5) rpm 9500 rpm kg Limited Availability, Check Stock (3) or a tight fit and heavy loads, use ISO tolerance j. () Since load, lubrication method, temperature and other factors affect the maximum operating speed, it is impossible to determine precise limiting speed. The listed limiting speeds are based on lightly loaded bearings having adequate lubrication and are listed only as a design guide. If grease lubricated, frequent relubrications is required. Actual bearing testing in the specific application should be conducted if the anticipated operating speed approaches the listed limiting speed. (5) Dynamic load should not exceed 50% of Dynamic ating as a track roller. Q

28 NEEDLE EAING M SEIES H D LU. GOOVE LU. GOOVE Outer ring and roller assembly with separable inner ring POE DIVE outer ring & roller assy. POE DIVE NUME inner ring only M0N M0N D H SHAT. MAX OTAT SHAT TOL. 0 STAT. SHAT HSG. OE. TOL. 0 OTAT. HSG. TOL. 0 STAT. HSG. TOL. 0 STATIC LOAD ATING (LS.) ASIC DYNAMIC ATING (LS.) for shaft MIN / MI7N / M0 MI / MN MIN / MN MI9N / M MI / MN MI0N / MN MIN / M MI / MN MIN / MN MI3N / M MI / M MI / MN MIN MN MI5N M MI M MI M0N MIN M0 MI MN MIN M MI M MI MN MI0N M MI M MI MN MIN M MI M MIS MN MIN M MI M MI M MI TOL. 0 TOL. ILLET

29 NEEDLE EAING M SEIES POE DIVE outer ring & roller assy. POE DIVE NUME inner ring only 0 D TOL. 0 TOL. H SHAT. MAX OTAT ILLET SHAT for shaft TOL. 0 STAT. SHAT HSG. OE. TOL. 0 OTAT. HSG. TOL. 0 STAT. HSG. STATIC ASIC LOAD DYNAMIC TOL. ATING ATING 0 (LS.) (LS.) M MI5S M3 MIS M3N MIN M3 MI M3 MI M3 MI M3N MIN M3 MI M3 MI M0N MI3N M0 MI M0 MI M0 MI MN MI3N M MI M MI MN MI0N M MI M MI M MI M5 MI M5 MI M5N MIN M5 MI M5 MI M5 MI M0 MI M0 MI M MI M MI M MI M MI M7 MI M0 MI M0 MI MN MI7N M MI M9N MI0N M9 MI M0N MIN M0 MI M MI M MI M3 MI M0 MI M MI Limited Availability, Check Stock

30 NEEDLE EAING MI INNE ACES H POE DIVE, MI series inner races, as shown in preceding pages with outer race and roller assemblies, are repeated below for convenience of application as hardened and ground steel bushings or sleeves. They are complete with radial oil holes and annular lubrication grooves. Inner races of special configurations and materials are available on special order to suit individual requirements. A LU. GOOVE DIMENSIONS IN INCHES POE DIVE INNE ING NUME A OE. NOM. INNE O.D. TOL. 0 TOL. 0 NOM. IDTH.005 H. MAX. ILLET O SHAT MI MIN MI7N MI MIN MI9N MI MI0N MIN MI MIN MI MI3N MI MIN MI MI5N MI MIN MI MI MIN MI MI MI0N MI MIN

31 NEEDLE EAING MI INNE ACES DIMENSIONS IN INCHES POE DIVE INNE ING NUME A OE. NOM. INNE O.D. TOL. 0 TOL. 0 NOM. IDTH.005 H. MAX. ILLET O SHAT MI MIS MI MI MIN MI MI5S MI MIS MIN MI MI MIN MI MI MI MI3N MI MI MI MI3N MI MI MI MI0N MI MI MI MI MI MIN MI MI MI MI MI MI MI MI MI MI MI7N MI / 0. MI0N / 0. MI / 0. MIN / 0. MI / 0. MI / 0. MI / 0. MI / 0. MI / 0.

32 TACK EAING PLAIN TACK L S M K A N PL SEIES A K L oller Dia oller idth Stud Dia. Stud Length M Thread Length PL PL PL 0. PL PL/ PL S Shoulder Legnth 7/0 Shoulder Dia Min / / / PL.37 /3NC PL PL PL PL/ PL/ PL PL PL PL3/ PL PL/ PL PL / PL / PL / PL / PL /NC Part No. N Thread S ec. Mtg. Hole Size Mounting Member Max earing Capacity, Static Thrust (lbs) Stud Capacity Shear (lbs)

33 TACK EAING PLAIN ECCENTIC TACK L M U S K A T N PLE SEIES N S T U Thread Shoulder Dia. Shoulder Legnth Eccentric Dia. Eccentric Length Eccentric ec. Mtg. Hole Size 7/ Min earing Capacity, Static Thrust (lbs) 0 7/ / / PLE PLE PLE/ PLE/ PLE PLE PLE PLE3/ PLE PLE PLE / A K L M Part No. oller Dia oller idth Stud Dia. Stud Length PLE Thread Length PLE PLE 0. PLE PLE/ PLE S Mounting Member Max Stud Capacity Shear (lbs) 970

34 TACK EAING LANGED TACK L D S M K A C N Thread 0º L SEIES Sholder Dia S Sholder Legnth ec.mtg. Hole Size 7/ Max Min earing Capacity, Static Thrust (lbs) 0 7/ / / / L L/ L/ L L L L3/ L L L/ L L / L / L / A C D K L M oller Dia oller idth lange Dia lange Thickness L Stud Dia 0.37 Stud Legnth Thread Legnth L L L L/.. L/.03 L L Part No. N Thread S3 Mounting Member Stud Capacity Shear (lbs) 970

35 TACK EAING LANGED ECCENTIC TACK L D M U S A K C T N Thread 0º LE SEIES A oller Dia C D oller lange lange idth Dia Thickness LE LE LE LE S S U ec.mtg. Sholder Sholder Eccentric Eccentric Eccentricity Hole Legnth Dia. Dia Legnth Size earing Stud Capacity, Capacity Static Thrust (lbs) Shear (lbs) K Stud Dia L Stud Legnth M N Thread Legnth Thread / / / / LE/ LE LE LE LE/ LE/ LE LE LE LE3/ LE LE/ LE LE / Part No. S Mounting Member Max Min

36 TACK EAING VGOOVED TACK L M S K N Thread A G 90º VL SEIES A C D L M Part No. oller Dia oller idth lange Dia lange Thickness Stud Dia Stud Legnth Thread Legnth VL/ VL VL/ VL3/.7 VL3/ VL/.500 VL5/ VL/.500 VL7/ VL/ N earing Capacity, Static Thrust (lbs) S Thread Sholder Dia Sholder Legnth ec.mtg. Hole Size Max 7/ Min / / / K S5 Mounting Member Stud Capacity Shear(lbs)

37 TACK EAING VGOOVED ECCENTIC TACK L M S U K T N Thread A G 90º VLE SEIES earing Capacity, Static Thrust (lbs) Stud Capacity Shear (lbs) Thread Sholder Dia U S T Sholder Eccentric Eccentric Eccentricity Legnth Dia Length Max Min 7/ / / A oller Dia oller idth C lange Dia D lange Thickness K L M Stud Dia Stud Legnth Thread Legnth VLE/ VLE VLE/ VLE3/.7 VLE3/.90 VLE/.500 VLE5/ VLE/ VLE7/ Part No. N S ec.mtg. Hole Size Mounting Member

38

39

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