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FAG
B71907-CT-P4S-UM
B71907-CT-P4S-UM
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Delivery time approx. 2-4 working days
Produkteigenschaften
| Material | Bearing steel 100Cr6 (rings & balls) |
| Außenring | smooth |
| Dichtung | open |
| Käfig | Hard cage (phenolic resin) |
| Temperaturbereich | -30 to +100 °C |
| Toleranzklasse | P4S |
| Bohrung | cylindrical |
| Kontaktwinkel | 15 |
| Vorspannung | UM |
Abmessungen
| Innen Ø (mm) | 35 | Außen Ø (mm) | 55 | Breite (mm) | 10 |
FAG B71907-CT-P4S-UM – Precision angular contact ball bearings for reproducible precision in manufacturing
Quality that safeguards processes
The FAG B71907-CT-P4S-UM is designed for precision and supports manufacturing tasks where smooth running, speed stability, and consistent results are essential. It addresses applications where precision, smooth running, and process reliability interact and consistently reproducible results are required.
Designed for durability
The design is optimized for low friction and smooth start-up and shut-down behavior, ensuring consistent performance even during long machining cycles. In continuous operation, the bearing delivers reliable performance, reducing rework and increasing machine availability. High-quality manufacturing results in smooth bearing dynamics, contributing to predictable results and efficient machine utilization.
Use and added value
Its strengths are evident wherever smooth movements, highly repeatable processes, and controlled temperature and vibration levels are required. For operators, this translates into predictable quality, reduced downtime, and economical use of existing resources.
Conclusion
Anyone looking for a robust solution for precise motion sequences will find here a bearing that will impress in the long term and integrate seamlessly into modern manufacturing environments.
Quality that safeguards processes
The FAG B71907-CT-P4S-UM is designed for precision and supports manufacturing tasks where smooth running, speed stability, and consistent results are essential. It addresses applications where precision, smooth running, and process reliability interact and consistently reproducible results are required.
Designed for durability
The design is optimized for low friction and smooth start-up and shut-down behavior, ensuring consistent performance even during long machining cycles. In continuous operation, the bearing delivers reliable performance, reducing rework and increasing machine availability. High-quality manufacturing results in smooth bearing dynamics, contributing to predictable results and efficient machine utilization.
Use and added value
Its strengths are evident wherever smooth movements, highly repeatable processes, and controlled temperature and vibration levels are required. For operators, this translates into predictable quality, reduced downtime, and economical use of existing resources.
Conclusion
Anyone looking for a robust solution for precise motion sequences will find here a bearing that will impress in the long term and integrate seamlessly into modern manufacturing environments.
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