Bearings
Needle Roller Bearings
Drawn Cup
TLAM & BK Series Drawn Cup Needle Bearings
Quick Code: BB-499055
BK2016 NTN Drawn Cup Roller Bearing with Closed End
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Product Specification
Brand
NTN
Cage
Sheet steel cage
Inside Dia (Fw)
20mm
Lubrication hole
Without lubrication groove
Needle rows
Single-row bearing
Outside Dia (D)
26mm
Seal
None, open bearing
Temperature range
-30 to +140 °C
Width (C)
16mm
Reference
BK2016
Additional Reference:
10156570
Quick Order Code
BB-499055
Product Description
The BK2016 NTN Drawn Cup Roller Bearing is a precision-engineered needle roller bearing designed for compact and demanding mechanical applications. This specialized bearing features a unique closed-end design that provides superior protection and performance in space-constrained environments.
Key Features:
- Completely closed on one side of the outer ring
- Prevents grease leaks and protects against foreign particle ingress
- Lightweight construction with high load-carrying capacity
- Low section height for space-efficient design
- Shell-type outer ring that is accurately drawn, carburized, and quenched
- Sheet steel cage for enhanced durability
- Single-row bearing configuration
- Operating temperature range from -30°C to +140°C
Technical Specifications:
- Brand: NTN
- Inside Diameter: 20mm
- Outside Diameter: 26mm
- Width: 16mm
- Lubrication: Without lubrication groove
- Seal Type: Open bearing
Benefits:
- Ideal for applications requiring perfect shaft end closure
- No need for axial positioning fixtures
- Compact and space-saving design
- Cost-effective solution for mass-produced components
Typical Applications:
- Automotive components
- Small electric motors
- Precision machinery
- Robotics and automation equipment
- Industrial machinery with space constraints
- Precision positioning systems
- Small appliance manufacturing
The BK2016 NTN Drawn Cup Roller Bearing is an excellent choice for engineers and designers seeking a reliable, compact, and high-performance needle roller bearing that provides robust protection and efficient load transmission in challenging mechanical environments.

