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Yokogawa ADR541-S00 S1
Yokogawa ADR541-S00 S1
Yokogawa ADR541-S00 S1
Yokogawa ADR541-S00 S1
Yokogawa ADR541-S00 S1
Yokogawa ADR541-S00 S1
· Product image is representative; revision or series may vary. Contact us to request a specific version.

ADR541-S00 S1

Relay Output Module
In Stock

Product Information:

Relay Output Module (16-channel, 24 to 110 V

DC/100 to 240 V AC, Isolated)

Relay Output Module

The Relay Output Module outputs the 16-channel

relay contact signals.

It can be used in dual redundant configuration.

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Technical specifications for ADR541-S00 S1

  • Manufacturer:
    Yokogawa
  • Product Category:
    DCS System
  • Estimated shipping dimensions:
    12.5 x 10.8 x 14.6 cm
  • Weight:
    0.3 kg
  • Tariff Code:
    8537101190
  • Country of origin:
    Japan
  • Place of shipment:
    Xiamen, Fujian, China
  • Number of output channels:
    16 channels
  • Rated applied voltage:
    24 to 110 V DC, 100 to 240 V AC, 50/60 Hz
  • Output response time:
    12 ms or less (for status output) 20 ms or less (for mixed status and pulse outputs)
  • Pulse width:
    40 ms to 7200 s
  • Pulse width resolution:
    8 ms, but ON/OFF delay added for maximum 10 ms
  • Maximum current consumption:
    780 mA (5 V DC)
  • External connection:
    Pressure clamp terminal, Dedicated cable (AKB334)
  • Relay switching life:
    100000 operations
  • Stock:
    10

Information

Overview Manuals Working principle Installation Requirements

Features:

  • It can be used in dual redundant configuration
  • The Relay Output Module outputs the 16-channel relay contact signals
  • Relay Output Module (16-channel, 24 to 110 V DC/100 to 240 V AC, Isolated)
The Yokogawa ADR541-S00 S1 is a 16-channel relay output module for CENTUM VP systems, primarily used for digital switch control. It features 16 independent relay contacts, capable of handling external loads of various voltage levels, including up to 240V AC or 110V DC.

As the "S00" model, it typically employs a standard Field Input/Output (FIO) architecture, providing a reliable physical interface for solenoid valves, motor starters, and alarms in the process industry, serving as a critical bridge between DCS logic and field actuators.

The ADR541-S00 S1 YOKOGAWA Relay Output Module may still be available for purchase and support from Moore Automated Company beyond End-Of-Life (EOL) by the manufacturer (OEM).
YOKOGAWA ADR541-S00 S1 Relay Output Module DATASHEET(manual), Link Important Notice: Other accessories, manuals, cables, calibration data, software, etc. are not included with this equipment unless listed in the above stock item description. All prices are shown in USD.
The ADR541-S00 S1 receives low-voltage digital commands from the field control unit (FCU). These commands, after passing through the module's internal optical isolation circuit, drive the coil of a miniature electromagnetic relay. When the coil is energized and generates a magnetic field, it causes the mechanical contacts to physically move (close or open), thereby connecting or disconnecting the high-voltage power supply circuit on the field side. This dual mechanism of "optical isolation + mechanical contacts" achieves both precise driving of high-voltage loads through low-voltage logic and ensures complete electrical isolation between the control system and high-power field devices.
The ADR541-S00 S1 belongs to the FIO (Field Network I/O) series and requires compatible infrastructure:
  1. Node Units: Can be installed in ESB bus node units (ANB10S/D), fiber optic ESB bus node units (ANB11S/D), and field control units (AFV30, AFV40).
  2. External Connections: Wiring is typically done using AKB334 dedicated cables or crimp terminals.
  3. Maintenance: This module is designed for in-line replacement, allowing hardware replacement without interrupting factory operations.

Ask our team:

  • In embedded electronic architectures, what are the core functional abstraction layer and system-level operational responsibilities of the ADR541-S00 S1?
    The ADR541-S00 S1 is generally understood as a system-level electronic component designed to participate in structured signal management, interface coordination, and controlled data propagation within the large integrated circuit ecosystem.
  • How does the ADR541-S00 S1 maintain deterministic electrical performance under multi-factor stress conditions, including thermal drift, power supply fluctuations, and electromagnetic disturbances?
    The ADR541-S00 S1 typically follows stability-oriented design principles, aiming to maintain consistent operational behavior under dynamic environments and electrical operating conditions.
  • How does the ADR541-S00 S1 implement lifecycle reliability engineering to ensure parameter stability over long operating periods?
    The ADR541-S00 S1 is typically evaluated within a reliability framework that focuses on long-term thermal tolerance, material stability, and resistance to gradual drift of electrical parameters.
  • What electromagnetic compatibility (EMC) design paradigms are used for the ADR541-S00 S1 when operating in high-density or EMI-intensive environments?
    The ADR541-S00 S1 is typically designed with an EMC architecture in mind to reduce sensitivity to external interference while maintaining controlled emission characteristics.
  • What power efficiency optimization mechanisms are embedded in the ADR541-S00 S1's operating architecture?
    The ADR541-S00 S1 typically employs low-power design methods to minimize energy loss while maintaining functional stability in continuous operation scenarios.
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Moore Disclaimer: Moore Automated's sales automation equipment and related solutions are intended for industrial automation and business operational efficiency improvement purposes only. Product information, technical parameters, and application cases are for reference only and do not constitute an absolute guarantee of performance for any specific industry, scenario, or final application. Actual equipment performance may vary depending on factors such as the usage environment, system integration method, and maintenance conditions. Users should confirm compatibility and safety based on professional technical assessments. Moore Automated assumes no liability for any direct or indirect losses caused by improper use, modification, or failure to operate according to specifications, to the extent permitted by law.