Skip to content

What are you looking for?


You may also like

Emerson SE4101 Ethernet I/O CardEmerson SE4101 Ethernet I/O CardEmerson SE4101 Ethernet I/O Card
Emerson SE4101 Ethernet I/O Card
Emerson SE4101 Ethernet I/O Card
Emerson SE4101 Ethernet I/O Card

Emerson SE4101 Ethernet I/O Card


Only 10 left - Selling fast

PRODUCT SKU : SE4101

PRODUCT TYPE : Communication Module

PRODUCT VENDOR : EMERSON


  • 100% Genuine Parts – Risk-Free 30-Day Returns
  • 1-Year Warranty & Expert Support for Every Order

Product Details

Configured for high-bandwidth protocol integration in DeltaV control networks, the Emerson SE4101 (SE4101 Ethernet I/O Card) provides direct physical/electrical execution of Modbus TCP, EtherNet/IP, IEC 61850 MMS, and OPC UA data acquisition.

Hardware Specifications

Parameter Specification
Model SE4101
Brand Emerson
Origin USA
Weight Not specified
Dimensions Standard DeltaV I/O module form factor
Operating Temp -40 deg C to +70 deg C
Power Consumption 7 W (Simplex) / 13 W (Redundant)
Input Voltage 24 VDC +/- 10%
Device Capacity Up to 256 Ethernet devices / 32,000 signals

Process Control: FOUNDATION Fieldbus / Profibus PA connectivity

The SE4101 enables seamless data integration between third-party Ethernet-based field instrumentation and the DeltaV control environment. By supporting a broad array of industrial communication protocols, the card acts as a high-speed gateway capable of scanning up to 32,000 process signals from 256 unique Ethernet nodes. The hardware architecture maintains strict electrical separation through channel-to-channel isolation on the I/O interface, ensuring that faults within the Ethernet physical layer do not impact the core controller backplane bus. This protocol-agnostic design allows for deterministic data exchange while providing the necessary buffering to handle varying network latencies characteristic of complex Ethernet topologies.

Frequently Asked Questions (FAQ)

Q: What are the power requirements for redundant vs. simplex configurations?

A: In a simplex configuration, the module consumes a maximum of 325 mA, whereas the redundant configuration increases the load to a maximum of 575 mA at 24 VDC. Ensure the power carrier is sized to accommodate these specific current requirements.

Q: Is the firmware on the SE4101 field-upgradeable?

A: Yes. The SE4101 supports firmware flash compatibility via the DeltaV engineering workstation. It is mandatory to follow the established delta-update procedures to ensure protocol stack integrity and system-wide synchronization.

Field Installation Guidelines

  • Mounting: Seat the SE4101 into the dedicated Ethernet I/O slot on the DeltaV carrier. Ensure the backplane interface pins are clean and the locking lever is secured to maintain a stable electrical connection.

  • Network Wiring: Use industrial-grade, shielded RJ45 Ethernet cabling. Segregate network traffic from high-voltage AC power conduits to minimize electromagnetic interference (EMI) and signal attenuation.

  • Grounding: Terminate the carrier assembly to the cabinet earth ground bus. Proper grounding is necessary to ensure the effectiveness of the module's integrated surge protection and noise immunity.

  • Verification: Confirm link status via the module's diagnostic LEDs and the DeltaV control workstation. Ensure the device IP addressing and protocol mapping are correctly configured before enabling scan services for the connected Ethernet nodes.

Additional Information

  • 100% Genuine Parts: All products are original and authentic, ensuring reliable industrial performance.
  • 30-Day Refund Guarantee: Return any in-stock item within 30 days in original, unopened packaging for a full refund (excluding shipping and fees).
  • 12-Month Warranty: Covers defects in materials or workmanship; excludes misuse, normal wear, or unauthorized modifications.
  • Worldwide Shipping: We ship via USPS, UPS, FedEx, and DHL. Delivery times vary by country and may be subject to customs or import fees.
  • Support & Contact: Technical and warranty assistance is available anytime. Contact us here: Contact.
  • Purchase Guidance: Check product specifications and compatibility carefully before ordering to ensure proper application.




Recently Viewed Products

Tech & Buying Guide

Technical Insights, Installation Guides, and Buying Tips
Understanding Marshalling Cabinets in Industrial Control Systems Architecture

Understanding Marshalling Cabinets in Industrial Control Systems Architecture

Industrial control system deployments rely on structured signal distribution to bridge field instrumentation with central processing hardware. A marshalling cabinet serves as the vital intermediate connection point between heavy field home-run multi-pair cables and delicate input/output (I/O) modules housed inside Programmable Logic Controller (PLC) or Distributed Control System (DCS) enclosures. By segregating field cable terminations from control hardware, engineers maintain system flexibility, safeguard controller components, and streamline commissioning workflows.

Read more
FAT vs SAT in Industrial Control Systems: Key Differences and Execution Guide

FAT vs SAT in Industrial Control Systems: Key Differences and Execution Guide

Industrial control system deployment relies on strict verification protocols to guarantee operational safety, system stability, and regulatory compliance. Commissioning complex Programmable Logic Controller (PLC) racks, Distributed Control Systems (DCS), and Safety Instrumented Systems (SIS) requires two critical milestones: the Factory Acceptance Test (FAT) and the Site Acceptance Test (SAT). Both procedures validate that system automation meets design specifications, but they occur at different stages of project execution and target distinct operational risks.

Read more
Hub vs Switch vs Router in Industrial Automation Architecture

Hub vs Switch vs Router in Industrial Automation Architecture

Modern factory automation relies on reliable industrial networking infrastructure to exchange real-time field data across operational technology systems. Engineers often encounter networking hardware like hubs, switches, and routers when integrating Programmable Logic Controllers, Distributed Control Systems, and SCADA monitoring nodes. Although these devices share physical ports, they operate at different layers of the Open Systems Interconnection reference model and deliver distinct traffic management capabilities.

Read more