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

Sous-total (1 unité)*

71,12 €

(TVA exclue)

86,06 €

(TVA incluse)

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*Prix donné à titre indicatif

N° de stock RS:
591-363
Référence fabricant:
FCMR25-11-11-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

Misalignment - Angular

3.0°

Number of Beams

6

Style

Clamp

Misalignment - Parallel

0.38mm

Misalignment - Axial

0.25mm

Material

7075-T651 Extruded Drawn Aluminium Bar

Bore Size B

11mm

Bore Size A

11mm

Minimum Operating Temperature

-40°F

Series

FCMR25

Maximum Operating Temperature

225°F

Standards/Approvals

DIN 912 12.9

Screw Size

M4

Pays d'origine :
US
The Ruland Clamp style six beam coupling is expertly designed to ensure optimal performance in light-duty power transmission applications. Crafted from high-grade 7075 aluminium, it delivers both lightweight convenience and low inertia, making it an excellent choice for precision engineering tasks. With 11mm x 11mm bores and an outer diameter of 25.4mm, this coupling maintains a balanced design that significantly reduces vibrations at high speeds, allowing for robust integration in applications where reliability is paramount. Enhanced with Nypatch anti-vibration hardware, it guarantees consistent screw seating, preventing galling and ensuring high holding power throughout its service life. Ideal for connecting servo motors to lead screws, this product combines innovation with stringent manufacturing standards to achieve performance excellence.

Nypatch technology improves screw installation efficiency and reliability

Crafted from USA-sourced materials, ensuring stringent quality control

Lightweight construction reduces overall system weight for improved agility

Exceptional torque capacity enhances compatibility with various applications

Designed for easy installation with a straightforward torque wrench specification

Compact design maximises space efficiency in confined applications

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