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Rotary Encoder Supplier

Willmall Rotary Encoder supply supports motion feedback needs with selectable resolution, shaft diameter, and mounting method options for PLC, driver, and controller integration.

GOS38A02
Le codeur rotatif incrémental GOS38A02 est conçu pour le contrôle de précision des mouvements dans les applications d'automatisation industrielle. Doté d'un diamètre compact de 38 mm et d'un arbre semi-creux, il fournit un retour d'information précis sur la position et la vitesse avec des résolutions allant jusqu'à 10 000 impulsions par tour.
GOS38B
Le codeur rotatif incrémental GOS38B offre un retour de position et de vitesse fiable et précis pour une large gamme d'applications d'automatisation industrielle. Doté d'un boîtier robuste de 38 mm de diamètre et d'un arbre solide de 6 mm, ce codeur offre plusieurs résolutions d'impulsions adaptées à des exigences de contrôle variées.
Wilmall

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Wilmall Rotary Encoder Manufacturer

Willmall Rotary Encoder supply supports purchasing standard motion feedback configurations with fast availability for commonly used models and selection options for system matching.
  • Complete selection scope across resolution, shaft diameter, and mounting method to align with mechanical interface constraints
  • Configuration compatibility focus to ease matching with PLCs, drivers, and motion controllers during system design
  • Environmental suitability stated for dusty, oily, and humid operating conditions in industrial equipment
  • Stock-oriented availability for commonly used models to support shorter procurement lead times

Qu'est-ce qu'un codeur rotatif ?

A Rotary Encoder is a sensor category that converts rotational motion into electrical output signals. Control systems use Rotary Encoder signals to determine position, speed, direction, or movement increments depending on the encoder type and system design.

How does a Rotary Encoder work in a control system?

A Rotary Encoder generates signal changes as the shaft rotates. A PLC, driver, or controller counts pulses or interprets output states to calculate motion variables, then uses that feedback for monitoring, interlocks, or closed-loop control functions.

Which Rotary Encoder parameters should be selected first?

Selection typically starts with required resolution and the mechanical interface. Resolution relates to feedback granularity, while shaft diameter and mounting method determine whether the Rotary Encoder can be installed on the target machine and aligned with couplings, brackets, and available space.

How should a Rotary Encoder be installed for stable feedback?

Installation generally prioritizes shaft alignment, secure mounting, and minimizing mechanical runout or vibration. Rotary Encoder mounting method and shaft diameter should match the machine interface, and cable routing should reduce strain and avoid contamination paths in dusty or oily areas.

When is a Rotary Encoder suitable for dusty, oily, or humid environments?

A Rotary Encoder is suitable for dusty, oily, or humid environments when the operating conditions include particulates, lubricant exposure, or moisture that can affect sensors and wiring. Environmental suitability should be evaluated against the equipment location, cleaning methods, and the expected presence of oil mist, dust ingress, or condensation.