D1/2/603C

D1/2/603C Hybrid Ceramic Deep Groove Ball Bearings
Price $ 38.42
Number
Part Number D1/2/603C
System of Measurement Inch
Bearing Type Ball
For Load Direction Radial
Construction Single Row
Inner Ring Type Standard
Seal Type Open
Bore Dia 0.5"
Bore Dia Tolerance -0.0003" to 0"
Outer Dia 1.125"
Outer Dia Tolerance -0.0003" to 0"
Width 0.3125"
Width Tolerance -0.0047" to 0"
Ring Material Chrome Steel
Cage Material Stainless Steel
Dynamic Radial Load 1135 lbf
Static Radial Load 448 lbf
Shaft Mount Type Press Fit
Temperature Range -86 to 230 °F
ABEC Rating Abec#7/isop4
Radial Clearance Trade No MC3
RoHS Compliant
REACH Compliant
D1/2/603C Hybrid Ceramic Deep Groove Ball Bearings cad drawing

Request a Quote

*
*
*
Allow file formats (gif、jpeg、jpg、png、pdf、txt、doc、xls、xlsx、docx)

Design Features of D1/2/603C Bearing

D1/2/603C Bearing utilizes ceramic balls, typically made of silicon nitride (Si3N4), combined with steel inner and outer races. D1/2/603C bore dia is 0.5". Its out dia is 1.125". D1/2/603C width is 0.3125". This Bearing provides a sophisticated, high-performance solution that caters to the unique challenges presented by modern industrial and technological applications.

 

What Benefits Can D1/2/603C Bearing Provide?

  • Reduced Friction: Ceramic's low frictional properties ensure smoother operation and decreased heat generation.
  • Enhanced Durability: The wear-resistant nature of ceramic extends the bearing's lifespan, particularly in demanding conditions.
  • Corrosion Resistance: Ceramic balls resist moisture and chemicals, safeguarding the bearing from corrosive environments.
  • Electrical Insulation: Its non-conductive composition prevents electrical arcing, essential in electrically active setups.
  • High-Speed Operation: Its attributes permit this bearing to operate efficiently at elevated rotational speeds.

 

What Can D1/2/603C Bearing Be Used for?

D1/2/603C Bearing is employed in various applications due to its unique characteristics. It can be used for:

  • Electric Motors: Ideal for preventing electrical arcing, especially in electric vehicles.
  • Precision Machinery: Suited for high rotational accuracy needs.
  • Aerospace: Meeting the demands of wear resistance and thermal stability.
  • High-Frequency Machining: Beneficial for high-speed spindles and machining centers.
  • Harsh Environments: Resisting corrosion and withstanding extreme temperatures.