Ruland, 50.8 mm OD, 64 mm Length 16 mm Flexible Coupling 14 mm

Subtotal (1 unit)*

MYR1,295.25

Add to Basket
Select or type quantity
Temporarily out of stock
  • Shipping from 06 April 2026
Need more? Click ‘Check delivery dates’ to find extra stock and lead times.
Units
Per Unit
1 +MYR1,295.25

*price indicative

RS Stock No.:
592-556
Mfr. Part No.:
MDCDE51-16-14-A
Manufacturer:
Ruland
Find similar products by selecting one or more attributes.
Select all

Brand

Ruland

Product Type

Flexible Coupling

Outside Diameter

50.8 mm

Length

64mm

Bore Size A

16mm

Bore Size B

14mm

Maximum Speed

10000rpm

Hub Material

Aluminium

Minimum Operating Temperature

-10°C

Membrane Material

302 Stainless Steel

Series

MDCDE51

Maximum Operating Temperature

65°C

Standards/Approvals

DIN 912 12.9, RoHS3, REACH

Screw Size

M5

COO (Country of Origin):
US
The Ruland Cutting-edge electrically isolating double disc coupling designed to deliver exceptional performance in high-speed applications. Its unique design features two anodized aluminum hubs and stainless steel disc springs, allowing for zero backlash and accommodating various types of misalignment. The coupling's lightweight construction makes it an ideal choice for projects requiring precision and reliability, particularly in the semiconductor and solar industries. With a maximum rotational speed of 10,000 RPM, this coupling ensures that you can achieve optimal performance while maintaining stringent compliance with industry standards. The Ruland manufacturing process is keenly focused on quality, utilizing solid bar stock sourced from North American mills, guaranteeing durability and high performance in every application.

Helps reduce vibration at high speeds for smoother operation

Isolates currents between connected components to prevent electrical interference

Manufactured using RoHS3 and REACH compliant materials for eco-friendliness

Supplied with precise torque capabilities for enhanced operational reliability

Offers a balanced design that maximises performance while minimising wear

Related links