• Emerson SE4002S1T2B1 DeltaV S-series Discrete Output Card
  • Emerson SE4002S1T2B1 DeltaV S-series Discrete Output Card
  • Emerson SE4002S1T2B1 DeltaV S-series Discrete Output Card
  • Emerson SE4002S1T2B1 DeltaV S-series Discrete Output Card
Product Overview The Emerson SE4002S1T2B1 DeltaV S-series Discrete Output Card is a field-output module used to transfer discrete commands from an Emerson DeltaV control application to external equipmen……
Emerson SE4002S1T2B1 DeltaV S-series Discrete Output Card
  • Emerson
  • SE4002S1T2B1
  • Discrete Output Card
  • USA
  • 131 × 41.8 × 130.8 mm
  • 0.4 kg
  • Xiamen, China
  • New & In Stock
  • T/T, PayPal, Western Union
  • 1 Year
  • 1-3 Working Days
  • DHL, UPS, TNT, FedEx and EMS.
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Emerson SE4002S1T2B1 DeltaV S-series Discrete Output Card

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Emerson SE4002S1T2B1 DeltaV S-series Discrete Output Card

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Emerson SE4002S1T2B1 DeltaV S-series Discrete Output Card

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Emerson SE4002S1T2B1 DeltaV S-series Discrete Output Card

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Product Overview

The Emerson SE4002S1T2B1 DeltaV S-series Discrete Output Card is a field-output module used to transfer discrete commands from an Emerson DeltaV control application to external equipment.

In a process plant, a controller often needs to initiate a physical action based on a defined operating condition. A pump may need to start after its permissives are satisfied, a valve may need to change position during a sequence, or a relay may need to be energized to enable another control circuit. The SE4002S1T2B1 sits between the DeltaV control logic and the corresponding field-side circuit.

Unlike an analog output, which normally represents a continuously variable control value, a discrete output represents a defined state or command. Its practical role can therefore be seen in applications such as start/stop commands, valve actuation, solenoid control, equipment enable signals, reset commands, and interlock-related actions.

A typical field sequence is:

DeltaV Logic → SE4002S1T2B1 → Termination / Wiring → Interface Device → Field Equipment

For example, during an automated process sequence, the controller may determine that a pump is permitted to start. The output channel then changes state, the field control circuit responds, and the pump receives the corresponding command.

The SE4002S1T2B1 should be evaluated as part of this complete circuit. If the output indication changes but the equipment does not react, the cause may be downstream of the card, such as wiring, termination, relay circuitry, or the final actuator.


Technical Specifications

Parameter Specification
Manufacturer Emerson
Model SE4002S1T2B1
Product Family DeltaV S-series
Product Type Discrete Output Card
Primary Function Discrete Field Command Output
System Role Field Output Interface
Application Industrial Automation / Process Control
Installation Emerson DeltaV Control System
Dimensions 131 × 41.8 × 130.8 mm
Weight 0.4 kg

Product Features

The SE4002S1T2B1 handles discrete output commands within an Emerson DeltaV S-series control architecture.

  • Emerson DeltaV S-series Discrete Output Card
  • Model SE4002S1T2B1
  • Used for binary field commands
  • Transfers control-system output states to field circuits
  • Suitable for equipment start/stop applications
  • Applicable to valve and solenoid control
  • Can be used with relay-based field interfaces
  • Supports automated equipment sequences
  • Suitable for interlock and permissive-related functions
  • Integrates into DeltaV S-series I/O architecture
  • Applicable to process-control maintenance and replacement

The actual output circuit should be checked against the installed system configuration before replacement.


Working Principle

The SE4002S1T2B1 operates on the output side of the DeltaV signal path. The controller determines the required state according to its application logic, and the corresponding discrete output channel transfers that command toward the field circuit.

A practical arrangement is:

Control Logic → Output Channel → Termination → Field Wiring → Final Control Device

Take a pump-start sequence as an example.

The DeltaV application first evaluates the required permissives. If the conditions are satisfied, the configured output command is issued. The SE4002S1T2B1 changes the relevant output state, and the resulting signal reaches the pump-control circuit.

The equipment then responds according to its own control arrangement.

In simplified form:

Start Request → Output State → Field Circuit → Motor Control → Pump Operation

For a solenoid-controlled valve, the same concept becomes:

Valve Command → Output State → Solenoid Circuit → Valve Movement

The output card does not independently decide when equipment should operate. That decision comes from the DeltaV control strategy. The card is responsible for carrying the discrete command into the field interface.


Output Command and Equipment Feedback

A useful way to understand the SE4002S1T2B1 is to separate command from confirmation.

The output path may be:

DeltaV → SE4002S1T2B1 → Equipment

while a separate input path returns:

Equipment → Discrete Input → DeltaV

For example, a motor-start command may be issued through the output card. A running-status contact can then return through a discrete input channel.

This allows the control application to determine whether:

  • The motor started successfully
  • The motor remained stopped
  • A valve reached its commanded position
  • A field device failed to respond
  • An interlock prevented operation
  • Equipment feedback disagrees with the command

This command/feedback relationship is especially useful in automatic sequences because it gives the controller information about the actual field condition rather than relying only on the issued command.


Role in a DeltaV S-series Control Architecture

The SE4002S1T2B1 occupies the field-output portion of the DeltaV architecture.

A simplified signal path is:

Operator / Automatic Sequence → DeltaV Controller → SE4002S1T2B1 → Field Interface → Equipment

System Element Function
SE4002S1T2B1 Sends discrete output commands
DeltaV Controller Executes application and sequence logic
S-series I/O Infrastructure Provides I/O connectivity
Termination Hardware Interfaces field wiring
Interposing Relay Interfaces external control circuits
Solenoid Converts electrical command into mechanical action
Motor Control Circuit Handles equipment start/stop control
Valve Actuator Executes valve movement
Discrete Input Card Returns equipment feedback
HMI Displays commands and equipment status
Field Equipment Performs the commanded action

The actual architecture depends on the plant’s DeltaV configuration and field-device arrangement.


Typical Discrete Output Functions

The SE4002S1T2B1 can be encountered in control sequences involving clearly defined operating states.

Common examples include:

Motor Commands

Discrete outputs can be associated with start, stop, enable, or reset functions within motor-control circuits.

Valve Actuation

A discrete command can be used to operate a solenoid or other interface associated with an on/off valve.

Equipment Enable

Some equipment requires a discrete enable signal before another control function becomes available.

Interlock-Related Actions

A control sequence may use discrete outputs to execute a predefined response after a process condition or permissive changes.

Alarm or Auxiliary Devices

Discrete outputs can also be used to operate external devices that require a binary command.

The exact function depends on how the DeltaV application and field circuit have been configured.


Industrial Applications

Application Typical Use
Oil and Gas Pump and valve control
Chemical Processing Solenoid and actuator operation
Power Generation Auxiliary equipment commands
Petrochemical Plants Sequence and interlock actions
Water Treatment Pump and valve operation
Manufacturing Machine start/stop control
Process Plants Equipment enable and reset
Material Handling Conveyor and motor commands

Installation and Maintenance

A discrete output can initiate a real physical action, so maintenance and commissioning should be carried out with appropriate equipment isolation and approved testing procedures.

Recommended practices include:

  • Confirm the complete SE4002S1T2B1 model.
  • Verify the assigned DeltaV I/O position.
  • Review the channel configuration.
  • Identify the equipment controlled by each output.
  • Record existing field wiring before removal.
  • Inspect termination points.
  • Check associated relays and interface devices.
  • Inspect output wiring for loose or damaged connections.
  • Review the field-side control circuit.
  • Verify the DeltaV output configuration.
  • Inspect the I/O card and connectors.
  • Follow the approved equipment isolation procedure.
  • Install the replacement card.
  • Restore the field connections.
  • Check output-channel diagnostics.
  • Perform controlled output testing.
  • Confirm the field device reacts correctly.
  • Check associated feedback signals.
  • Verify permissives and interlocks.
  • Test the relevant automatic sequence.
  • Document the final configuration.

If the DeltaV output changes state but the equipment does not operate, trace the circuit from the card outward:

SE4002S1T2B1 → Termination → Wiring → Relay / Interface → Actuator → Equipment

If the field device operates but DeltaV does not show the expected status, investigate the return feedback path separately.


Compatible System Components

The SE4002S1T2B1 can be integrated with several types of field and control-system components.

Component Function
Emerson SE4002S1T2B1 DeltaV S-series Discrete Output Card
DeltaV Controller Generates control commands
S-series I/O Infrastructure Provides system-level I/O connectivity
Termination Assembly Provides field-wiring interface
Interposing Relay Switches or isolates external circuits
Solenoid Valve Executes discrete actuation
Motor Starter / Control Circuit Receives start/stop commands
Valve Actuator Performs commanded movement
Discrete Input Card Provides equipment feedback
HMI Displays operating states
Field Wiring Carries output commands

Recommended Related Models

The recommendations below focus on DeltaV I/O components that are useful when building a related-product cluster around discrete command, equipment feedback, and event monitoring.

Model / Product Family Product Type Typical Application
Emerson SE4002S1T2B1 DeltaV S-series Discrete Output Card Discrete field command output
Emerson SE4002S1T1B1 DeltaV S-series Discrete Output Card Discrete equipment control
Emerson SE4002S1T1B3 DeltaV S-series Discrete Output Card Field-side discrete commands
Emerson SE4001S3T2B2 DeltaV S-series Discrete Input Card Equipment status feedback
Emerson SE4001S5T2B5 DeltaV S-series Sequence of Event Input Card Time-associated event monitoring
Emerson SE4001S2T2B4 DeltaV S-series Discrete Input Card Discrete field-state acquisition
Emerson SE4001S2T2B6 DeltaV M-series Discrete Input Plus Card Enhanced discrete input applications

Key Advantages

  • Emerson DeltaV S-series Discrete Output Card.
  • Model SE4002S1T2B1.
  • Sends discrete commands from DeltaV to field circuits.
  • Suitable for start/stop and equipment-control functions.
  • Applicable to valve, solenoid, relay, and motor-control applications.
  • Useful in automated sequences and interlock functions.
  • Can be paired with discrete feedback for command verification.
  • Suitable for DeltaV maintenance and replacement applications.

Technical FAQs

How does the SE4002S1T2B1 participate in a pump start sequence?

The DeltaV application determines whether the required permissives are satisfied and then issues the configured start command. The SE4002S1T2B1 transfers the discrete command into the field control circuit, while a separate feedback signal can confirm that the pump actually reached the running state.

What is the difference between an output command and equipment confirmation?

The output channel represents what the control system has requested. Equipment confirmation comes from a separate feedback path, such as a running contact or valve-position signal. A complete control sequence may require both pieces of information.

Why can an output channel fault be confused with a field-device problem?

The output card is only one section of the circuit. A damaged conductor, incorrect termination, failed relay, blown protection device, defective solenoid, or actuator problem can prevent the field equipment from responding even when the output channel itself changes state.

What should be verified when replacing an SE4002S1T2B1 with another discrete output card?

The complete model number and DeltaV channel configuration should be checked first. Engineers should then verify the field wiring, termination arrangement, connected device, output behavior, and any associated feedback or interlock logic. A successful replacement test should confirm the actual equipment response rather than only the I/O indication.



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