CFIFNBG

2585N16

2585N16 Inch Crossed Gears - 14 1/2° Pressure Angle
$68.31 /Each    info

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Part Number CFIFNBG
System of Measurement Inch
Gear Type Helical
Component Gear
Helical Gear Style Crossed
Bore Type Keyed
Diameter Pitch 16
Number Of Teeth 32
Helix Angle 45 °
Pressure Angle 14.5 °
Pitch Diameter 2"
OD 2.09"
Face Width 0.5"
Overall Width 1"
Bore Dia 0.63"
Material 1137 Carbon Steel
Teeth Heat Treatment Hardened
Hub Diameter 1.87"
Hub Width 0.5"
Keyway Width 0.187"
Keyway Depth 0.094"
Set Screw Thread Size 1/4"-20
Includes Set Screw
Tooth Direction Right Hand
RoHS Not Compliant
REACH Not Compliant
INTERCHANGE
The LILY Bearing part series CFIFNBG is a potential replacement for these common bearing part numbers.
LILY
CFIFNBG

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All other trademarks mentioned herein are used for the purpose of compatibility description and product identification only. Lily Bearing is not affiliated with, endorsed by, or sponsored by the holders of these trademarks.


Design Features of CFIFNBG Gear

CFIFNBG are designed for transmitting motion between non-parallel, non-intersecting shafts—typically at 90°—offering smooth and quiet operation with reduced backlash. They use inch-based dimensions for compatibility with North American systems and are available in materials like steel or plastic to suit different load and speed requirements. CFIFNBG face width is 0.5". Its overall width is 1". Precision machining ensures reliable performance in compact or space-constrained applications.


What Benefits Can CFIFNBG Gear Provide?

  • Enable smooth and quiet transmission between non-parallel, non-intersecting shafts, ideal for compact or specialized layouts.
  • 14 1/2° pressure angle ensures gentle meshing, reducing backlash and wear for extended service life.
  • Inch-based dimensions allow seamless integration with North American mechanical components.
  • Available in various materials to meet different load, noise, and cost requirements across diverse applications.


What Can CFIFNBG Gear Be Used for?

  • Compact Power Transmission: Used to transfer motion between skewed or non-parallel shafts in tight or unconventional spaces where traditional gear arrangements won’t fit.
  • Precision Instruments: Ideal for measuring devices and fine mechanical systems that require smooth, quiet, and accurate movement.
  • Specialized Machinery: Applied in custom equipment designs where standard gear configurations are not feasible due to layout constraints.
  • Robotics and Automation: Support flexible shaft positioning in robotic joints and automated mechanisms needing precise and reliable performance.
  • Light-Duty, High-Precision Applications: Suitable for aerospace, medical, and optical equipment where low torque but high positional accuracy is essential.

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