Ruland, 25.4 mm OD 11 mm, 38.1 mm Length 7 mm Flexible Beam Coupling

Sous-total (1 unité)*

61,62 €

(TVA exclue)

74,56 €

(TVA incluse)

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  • Expédition à partir du 06 avril 2026
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Unité
Prix par unité
1 +61,62 €

*Prix donné à titre indicatif

N° de stock RS:
591-560
Référence fabricant:
FSMR25-11-7-A
Fabricant:
Ruland
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Marque

Ruland

Product Type

Flexible Beam Coupling

Outside Diameter

25.4 mm

Length

38.1mm

Maximum Speed

6000rpm

Torque Rating

3.28Nm

Moment of Inertia

4.12 x 10-6 kg/m²

Number of Beams

6

Misalignment - Angular

3.0°

Misalignment - Parallel

0.38mm

Style

Set Screw

Misalignment - Axial

0.25mm

Minimum Operating Temperature

-40°C

Material

7075-T651 Extruded Drawn Aluminium Bar

Bore Size A

11mm

Bore Size B

7mm

Maximum Operating Temperature

107°C

Standards/Approvals

RoHS3, REACH, DIN 912 12.9

Screw Size

M5

Pays d'origine :
US
The Ruland Six beam coupling is designed for optimal performance in light duty power transmission applications. The innovative machining process crafts the coupling from a single piece of 7075 aluminium, ensuring a robust, lightweight product that is both durable and efficient. Featuring zero-backlash technology, it effectively connects servo motors to lead screws while balancing design for reduced vibration at high speeds. With an impressive maximum speed of 6,000 RPM, this coupling meets stringent maximum torque capabilities, making it an excellent choice for applications requiring reliability and precision. Manufactured in the USA under strict controls, the product stands as a testament to quality and compliance with international manufacturing standards.

Balanced structure reduces vibrations, promoting longer component life

Manufactured from high-strength 7075 aluminium for outstanding reliability

Compatible with metric hardware, ensuring easy integration into existing systems

Dynamic torque ratings cater to varying operational demands

Designed for high-speed applications, supporting up to 6,000 RPM

Performance ensures minimal windup, increasing overall efficiency

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