Ruland Oldham, 33mm Outside Diameter, 14mm Bore, 47.6mm Length Oldham Coupling

Sous-total (1 unité)*

207,53 €

(TVA exclue)

251,11 €

(TVA incluse)

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  • Expédition à partir du 06 mars 2026
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Unité
Prix par unité
1 +207,53 €

*Prix donné à titre indicatif

N° de stock RS:
603-500
Référence fabricant:
MOCC33-14-SS
Fabricant:
Ruland
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Marque

Ruland

Coupling Types

Oldham

Bore

14mm

Outside Diameter

33mm

Length

47.6mm

Fastening Type

Clamp

Pays d'origine :
US

Three Phase Bridge Rectifiers with Screw Terminals, VS-60MT/70MT..KPbF Series, Vishay Semiconductor


Industry standard INT-A-PAK package, fully compatible with power modules
High thermal conductivity package, electrically insulated case
Excellent power volume ratio, outline for easy connections
Isolating voltage 4000Vrms

Approvals

UL E78996
The Ruland Clamp Oldham Coupling Hub is a component of a three-piece design consisting of two anodized aluminum hubs press-fit onto a center disk. This design allows for a highly customizable coupling that easily combines clamp or set screw hubs with inch, metric, keyed, and keyless bores. Disks are available in three materials, enabling users to tailor performance to their specific application. It can accommodate all forms of misalignment and is especially effective in applications with high parallel misalignment (up to 10% of the OD).

Balanced design for reduced vibration at high speeds
Operates with low bearing loads protecting sensitive system components such as bearings
Machined from bar stock that is sourced exclusively from North American mills
RoHS compliant
REACH compliant
Zero backlash


Bridge Rectifiers - Vishay Semiconductor


The Bridge Rectifier converts an Alternating Current (AC) input into a Direct Current (DC) output for full-wave rectification applications. The diode arrangement provides the same polarity of output for either polarity of input. A three-phase full-wave rectifier is an arrangement of six diodes in a bridge circuit configuration. The packages are designed for minimal size, highest reliability and maximum thermal performance.

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