Responsive Motion Structure
The RE12016 crossed roller bearing is used in compact mechanisms where smooth rotational response and straightforward structural arrangement are required. Its configuration allows efficient coordination between moving parts while keeping assembly design simple.
It is well suited to small-scale equipment that depends on consistent motion under light mechanical demand.

Technical Specifications (RE12016)
| Inner Diameter (d) | 120 mm |
| Outer Diameter (D) | 150 mm |
| Roller Pitch Diameter (Dpw) | 136 mm |
| Width | 16 mm |
| Chamfer (rmin) | 0.6 |
| Shoulder Size (ds) | 127 |
| Shoulder Size (Dh) | 141 |
| Basic Load Rating | 24.2 kN |
| Basic Load Rating | 43.2 kN |
| weight | 0.72 kg |
| Running Accuracy | P5 / P4 / P2 (optional) |
| Lubrication | Lithium grease or customer-specified grease |
| Material | High-purity bearing steel / stainless option |
| Seal Options | Open / NBR seals / low-dust labyrinth |
| Preload | Light, Medium, Heavy (configurable) |
Check More Type of RE Series Crossed Roller Bearing
- Motion Response Behavior
The RE12016 responds smoothly under light operating conditions, with rotational movement that remains consistent during repeated start and stop actions. Its internal roller configuration helps reduce variation in motion, allowing the mechanism to behave predictably in compact systems where space and load are limited.
This makes it suitable for equipment that relies on steady motion rather than high-load performance.
- Structural Coordination Notes
The internal arrangement of the RE12016 allows the moving components to interact in a controlled and orderly way, which helps maintain stable operation within simplified mechanical layouts. It supports efficient structural coordination without requiring complex housing designs or additional adjustment mechanisms.
This contributes to easier system integration in compact assemblies where structural simplicity is preferred.
Usage & Motion Notes
What types of applications commonly use the RE12016?
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The RE12016 is often selected for compact mechanical systems where smooth rotary motion and simplified structural design are required.
How is service life typically determined?
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Service life is generally influenced by operating conditions, installation quality, and lubrication management rather than a fixed usage period.
What lubrication practices help extend bearing life?
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Using appropriate lubrication at recommended intervals helps maintain stable operation and reduces unnecessary wear during long-term use.
How can stable torque be maintained during operation?
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Consistent mounting conditions and proper alignment help the bearing maintain steady rotational behavior over extended operating cycles.
What affects bearing performance during installation?
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Uneven mounting surfaces or improper tightening can affect internal alignment, leading to changes in rotational smoothness and overall operating consistency.
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