Ruland, 19.1 mm OD 6 mm, 31.8 mm Length 5 mm Flexible Beam Coupling

Sous-total (1 unité)*

138,34 €

(TVA exclue)

167,39 €

(TVA incluse)

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  • Prêt à être expédié à partir du 25 mai 2026
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Unité
Prix par unité
1 +138,34 €

*Prix donné à titre indicatif

N° de stock RS:
593-642
Référence fabricant:
FSMR19-6-5-SS
Fabricant:
Ruland
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Marque

Ruland

Product Type

Flexible Beam Coupling

Outside Diameter

19.1 mm

Length

31.8mm

Maximum Speed

6000rpm

Torque Rating

4.64Nm

Moment of Inertia

2.964 x 10-6 kg/m²

Misalignment - Angular

3.0°

Number of Beams

6

Misalignment - Parallel

0.20mm

Style

Set Screw

Misalignment - Axial

0.13mm

Bore Size B

5mm

Bore Size A

6mm

Material

303 Stainless Steel

Minimum Operating Temperature

-40°C

Series

FSMR19

Maximum Operating Temperature

176°C

Standards/Approvals

RoHS3, REACH, DIN 912 12.9

Screw Size

M4

Pays d'origine :
US
The Ruland Six beam coupling is designed for light duty power transmission applications, connecting servo motors to lead screws with exceptional precision and zero-backlash. Crafted from 303 stainless steel, this coupling boasts a robust construction and higher torque capacity compared to traditional options. Enhanced by a balanced design, it minimises vibration even at high speeds, making it ideal for applications requiring reliability and performance. The coupling’s exquisite machining from a single piece of material ensures durability and conformance to stringent standards. With RoHS3 and REACH compliance, this coupling exemplifies both quality and environmental responsibility, produced under tight controls in a Marlborough, MA factory.

Offers maximum shaft penetration of 15.4 mm for versatile installation

Dynamic and static torque ratings ensure reliable performance

Compact and lightweight design to optimise space without compromising strength

Accommodates various misalignment types, enhancing installation flexibility

Meets stringent DIN 912 12.9 standards for maximum torque capabilities

Available with a full bearing support requirement for added operational stability

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