1 of 1

EK1501-0100 | BECKHOFF | Coupleur EtherCAT

EK1501-0100 | BECKHOFF | Coupleur EtherCAT

Il ne reste que 10 article(s) en stock
  • Fabricant : BECKHOFF

  • N° de produit : EK1501-0100

  • Pays d'origine :Allemagne

  • Type de produit : Coupleur EtherCAT

  • Paiement : Virement bancaire, Western Union

  • Poids : 2000g

  • Dimensions : 51 mm x 100 mm x 69 mm

  • Port d'expédition : Xiamen

  • Garantie : 12 mois

Quantité
Voir les détails complets

Description

To enable reliable communication across long-distance industrial networks, the Beckhoff EK1501-0100 integrates multi-mode fiber optic media conversion directly with EtherCAT Terminal systems. This device bridges the gap between 100BASE-FX optical networks and standard RJ45 copper connections, serving as a highly secure communication node. By utilizing multi-mode glass fiber, this coupler allows connection distances of up to 2000 meters between individual stations, bypassing the electromagnetic interference vulnerabilities of traditional copper cabling.

The module features an integrated three-digit decimal ID switch, which allows the configuration of up to 4096 unique station IDs. This hardware-defined addressing is critical for Hot Connect topologies, enabling system modules to be connected or disconnected during live operation. The coupler generates an internal E-bus current of up to 2000 mA, powering the connected ELxxxx terminal series directly from the incoming 24 V DC system supply.

Key Technical Features

  • High-Distance Fiber Connection: Supports 100BASE-FX multi-mode fiber (50/125 um glass fiber) using a robust SC Duplex connection.
  • Hardware Address ID Switch: Configures station IDs up to 4096 via physical rotary switches, facilitating complex Hot Connect applications.
  • Robust Power Supply: Accepts 24 V DC system power and supplies up to 2000 mA current to the internal E-bus.
  • Electrical Isolation: Complete 500 V galvanic isolation between the power contacts, internal supply voltage, and Ethernet ports.
  • Ex Certification: Standardized with ATEX Zone 2 rating (II 3 G Ex nA IIC T4 Gc) for hazardous explosive atmospheres.

Industrial Applications

  • Wind Power & Renewable Energy: Optical media conversion prevents lightning damage and noise propagation between tower base and nacelle.
  • Water/Wastewater Treatment: Bridges expansive process areas spanning up to 2000 meters without active repeaters.
  • Automotive Assembly Lines: Leverages Hot Connect IDs for tool changers, allowing quick physical re-tooling without software reconfiguration.
  • Hazardous Zones: Safely deploys I/O nodes in explosive-prone environments requiring ATEX Zone 2 ratings.

Technical Specifications

Parameter Specification
Manufacturer Beckhoff Automation GmbH & Co. KG
Model Number EK1501-0100
Protocol EtherCAT
Data Transfer Medium Multi-mode glass fiber 50/125 um
Max. Distance Between Stations 2000 m (100BASE-FX)
Bus Interface 1 x SC Duplex
Power Supply 24 V DC (-15% / +20%)
E-bus Current Supply 2000 mA
Configurable IDs 4096 (via 3-digit decimal ID switch)
Electrical Isolation 500 V (power contact / supply voltage / Ethernet)
Connection Cross-Section (Solid/Stranded) 0.08 to 2.5 mm2 (AWG 28-14)
Stripping Length 8 to 9 mm
Protection Rating IP20
Operating Temperature 0 to 55 degC
Storage Temperature -25 to 85 degC
Dimensions (W x H x D) 51 mm x 100 mm x 69 mm
Product Weight 190 g
Shipping Weight 2 kg (including diagnostic protective packaging)
Country of Origin Germany

Empirical Engineering Insights

Alternative Models & Compatibility

The EK1501-0100 serves as a direct upgrade to copper-based couplers (such as the EK1100) when running control signals over long distances or through electrically noisy environments. It is functionally identical to the standard EK1501 multi-mode coupler but includes the three-decade rotary ID switch necessary for dynamic Hot Connect topologies. When swapping or designing network nodes, ensure your TwinCAT system configuration aligns with the physical position of the rotary switches on the unit.

Application Pitfalls & Engineering Notes

One of the most common configuration errors involves exceeding the 2000 mA E-bus current limit. Calculating the sum current consumption of all connected ELxxxx terminals is critical. If your terminal configuration exceeds 2 A, you must inject fresh current using an EL9410 or EL9400 power supply terminal to prevent communication instability or dropouts.

Commissioning & Wiring Tips

The physical ID switches must be configured before applying power to the coupler. The Beckhoff ASIC reads these hardware settings only during the boot cycle. If you change the ID switches while the unit is powered, the new ID will not register until a complete power cycle has occurred. Ensure the SC Duplex optical connectors are cleaned with appropriate optical tools prior to insertion to prevent high signal attenuation.

Installation Guidelines

CRITICAL WARNING

Always completely isolate and de-energize the entire control cabinet before inserting or removing the EtherCAT Coupler or any associated I/O modules. Failure to de-energize can lead to destructive electrical arcs, permanent damage to the E-bus contacts, or CPU bus faults.

1
Snap the EK1501-0100 directly onto a standard 35 mm DIN rail (conforming to EN 60715) until the lock clicks securely into place.
2
Set the physical station ID via the three rotary decimal switches on the front face prior to powering up the system.
3
Securely plug the clean multi-mode fiber optic cable into the SC Duplex port and verify that the physical latch is locked.
4
Apply 24 V DC power supply to the US and UP terminal contacts and monitor LED diagnostics to confirm successful initialization.
Loading product navigation…

What is the primary function of the ID switch on the EK1501-0100?

The ID switches allow physical setting of a unique decimal identifier (up to 4096) directly on the device. This is crucial for Hot Connect configurations, letting TwinCAT recognize changing I/O topologies dynamically.

How do I expand the E-bus current capability if I exceed 2000 mA?

If the sum current consumption of your connected ELxxxx terminals exceeds 2000 mA, you must integrate an additional power feed terminal, such as the EL9410 or EL9400, to supplement current on the internal E-bus.

Does the EK1501-0100 support single-mode fiber optic cables?

No, the EK1501-0100 is specifically designed for multi-mode glass fiber (50/125 um) connections up to 2000 meters. For single-mode optical fiber installations, alternative models must be selected.

What happens if I change the decimal ID switch while the coupler is powered?

The coupler only reads the hardware ID switch setting during its startup phase. If you change the switches mid-operation, you must perform a power cycle for the new ID to take effect.

Expédition express mondiale

  • Livraison standard : 4 à 6 jours ouvrables via DHL, FedEx et UPS.
  • Expédition express : Expédition le jour même pour les commandes en stock passées avant 14h00 (GMT+8).
  • Couverture mondiale : Service dans plus de 150 pays, avec livraison rapide en Arabie Saoudite et aux Émirats arabes unis.

Retours et garantie

  • Garantie de 30 jours : Retours acceptés pour les produits en stock dans leur emballage d'origine scellé en usine.
  • Garantie de 12 mois : Chaque composant industriel est couvert par notre garantie technique professionnelle.

Les commandes sont traitées et livrées du lundi au vendredi (hors jours fériés).


Pour connaître l'éligibilité complète, les frais de restockage et les détails des retours internationaux, veuillez consulter notre site officiel Politique de remboursement et de retour .

TECHNICAL SPECIFICATIONS

Country of origin
Allemagne

Produits récemment consultés

Connaissances techniques

Opérations mathématiques avec OpenPLC pour les applications d'automatisation industrielle

Cet article explique comment les systèmes PLC réalisent des opérations mathématiques de base telles que l'addition, la soustraction, la multiplication, la division, le modulo et l'exponentiation dans...

Logique booléenne avancée avec la programmation FBD PLC : applications industrielles pratiques au-delà de la logique de base

L'article explique plusieurs fonctions avancées de la logique booléenne utilisées en programmation d'automates programmables industriels (API) au-delà des opérations de base ET, OU et NON. Il aborde...

Logique booléenne en programmation PLC : comprendre les portes logiques FBD

La logique booléenne est la base de tout programme PLC. Des commandes machines simples aux systèmes d'automatisation industrielle complexes, les portes logiques déterminent comment les contrôleurs...

Guide approfondi sur les pare-feux industriels et la segmentation des réseaux OT

Les pare-feux industriels jouent un rôle crucial dans la cybersécurité OT, protégeant les réseaux PLC, DCS et SCADA grâce à la segmentation, au contrôle des entrées/sorties et à l’intégration IDS/IPS...

Guide des pinces robotiques : de la manipulation délicate à l'automatisation lourde

Les pinces robotiques modernes évoluent au-delà des mâchoires mécaniques traditionnelles. Des systèmes adhésifs inspirés des geckos aux pinces souples de qualité alimentaire, en passant par des...

Retour en arrière : comment les premiers moteurs électriques ont transformé l'exploitation minière souterraine

Des compresseurs à courant continu entraînés par corde aux wagonnets de mine alimentés par batterie, les premières opérations minières ont marqué un tournant dans l’électrification industrielle. Cet...