Omron F3SG-R Advanced Series Light Curtain Sender, Receiver, 64 Beam(s), 30 mm Resolution
- N° de stock RS:
- 215-5109
- Référence fabricant:
- F3SG-4RA1310-30
- Fabricant:
- Omron
Sous-total (1 unité)*
3 509,75 €
(TVA exclue)
4 246,80 €
(TVA incluse)
Frais de livraison offerts pour toute commande de plus de 90,00 €
Temporairement en rupture de stock
- Expédition à partir du 09 novembre 2026
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Unité | Prix par unité |
|---|---|
| 1 + | 3 509,75 € |
*Prix donné à titre indicatif
- N° de stock RS:
- 215-5109
- Référence fabricant:
- F3SG-4RA1310-30
- Fabricant:
- Omron
Spécifications
Documentation technique
Législations et de normes
Détails du produit
Recherchez des produits similaires en sélectionnant un ou plusieurs attributs.
Sélectionner tout | Attribut | Valeur |
|---|---|---|
| Marque | Omron | |
| Product Type | Light Curtain | |
| Series | F3SG-R Advanced | |
| Beam Resolution | 30mm | |
| Component Type | Sender, Receiver | |
| Safety Type | Type 4 | |
| Standards/Approvals | No | |
| Number of Beams | 64 | |
| Protective Height | 1.31m | |
| Maximum Supply Voltage | 24V | |
| Maximum Protective Width | 20m | |
| Minimum Scanning Distance | 0.3m | |
| Maximum Scanning Distance | 20m | |
| Maximum Response Time | 13ms | |
| Sélectionner tout | ||
|---|---|---|
Marque Omron | ||
Product Type Light Curtain | ||
Series F3SG-R Advanced | ||
Beam Resolution 30mm | ||
Component Type Sender, Receiver | ||
Safety Type Type 4 | ||
Standards/Approvals No | ||
Number of Beams 64 | ||
Protective Height 1.31m | ||
Maximum Supply Voltage 24V | ||
Maximum Protective Width 20m | ||
Minimum Scanning Distance 0.3m | ||
Maximum Scanning Distance 20m | ||
Maximum Response Time 13ms | ||
Omron F3SG-R Advanced Series Light Curtain, 1.31m Protective Height, 64 Beams - F3SG-4RA1310-30
This light curtain is a safety sensor designed to detect intrusions into hazardous zones in industrial environments. It operates as a paired sender and receiver to create a protected detection field and is intended for integration where access control and machine safeguarding are required. The device offers a balance of detection density and range suitable for automated production lines and material-handling equipment.
Features and Benefits:
• 64-beam array providing fine object discrimination and presence detection
• 30mm beam resolution enabling detection of small cross-sections reliably
• 0.3m minimum scanning distance allowing close-proximity protection
• 13 ms maximum response time supporting rapid hazard interruption
• 24V supply compatibility for straightforward connection to control systems
• 20m maximum scanning distance permitting long-range safeguarding coverage
• 30mm beam resolution enabling detection of small cross-sections reliably
• 0.3m minimum scanning distance allowing close-proximity protection
• 13 ms maximum response time supporting rapid hazard interruption
• 24V supply compatibility for straightforward connection to control systems
• 20m maximum scanning distance permitting long-range safeguarding coverage
Applications
• Suitable for protecting access to robotic workcells and guards
• Ideal for safeguarding conveyor infeed and outfeed zones
• Used with automated packaging machinery for operator protection
• Can be used for perimeter monitoring of machine arrays
• Used for safe zoning of inspection and assembly stations
• Ideal for safeguarding conveyor infeed and outfeed zones
• Used with automated packaging machinery for operator protection
• Can be used for perimeter monitoring of machine arrays
• Used for safe zoning of inspection and assembly stations
How does the device handle wide protection requirements?
It supports a maximum protective width of 20 m, enabling a single detection zone to span extensive machine fronts or multiple adjacent operations.
What classification governs its use in higher-risk applications?
It meets a high-integrity safety category intended for applications demanding robust fault tolerance and layered safeguarding strategies.
What connection roles do the two components play?
One unit emits the protective beam array while the counterpart receives and monitors beam continuity to detect interruptions.
How does the beam count affect detection performance?
The dense 64-beam configuration increases the likelihood of detecting small objects by creating closely spaced light curtains across the guarded plane.
Liens connexes
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