Yokogawa ADV151-E63/D5A00 FIO Digital Input Module
Yokogawa ADV151-E63/D5A00 FIO Digital Input Module
Yokogawa ADV151-E63/D5A00 FIO Digital Input Module
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Yokogawa ADV151-E63/D5A00 FIO Digital Input Module

  • Manufacturer: Yokogawa

  • Part Number: ADV151-E63/D5A00

  • Condition:New with Original Package

  • Product Type: Digital Input Modules

  • Country of Origin: Japan

  • Payment:T/T, Western Union

  • Shipping port: Xiamen

  • Warranty: 12 months

Yokogawa ADV151-E63/D5A00 FIO Digital Input Module

The Yokogawa ADV151-E63/D5A00, also cataloged as the ADV151 Digital Input Module, operates as a dedicated hardware component for discrete signal acquisition and Sequence of Events (SOE) timestamping within Yokogawa CENTUM VP and CS 3000 DCS platforms. This module processes 32 isolated 24 VDC sink/source input channels from field contacts, limit switches, and pushbuttons. Designed for Field Input/Output (FIO) subsystem nodes, it enforces galvanically isolated logic execution across industrial control buses via dual 16-channel isolation banks.

Suffix Breakdown & Model Matrix

Code / Suffix Designation Technical Description
ADV151 Base Model Digital Input Module (32-channel, 24 VDC, Isolated)
-E Type Standard execution type
6 Protection / Display With status display; with no explosion protection
3 Environmental Option ISA Standard G3 conformal coating and extended temperature range (-20 to +70 deg C)
/D5A00 Option Code Specific dual-redundant configuration / option mounting style

Hardware Specifications

Parameter Specification
Model ADV151-E63/D5A00
Brand Yokogawa
Origin Japan
Weight 0.30 kg
Dimensions 107.5 mm x 130 mm x 32.8 mm
Operating Temp -20 to +70 deg C
Power Consumption 500 mA at 5 VDC
Input Channels 32 channels (isolated)
Rated Input Voltage 24 VDC (sink/source)
Operating Voltage Range 18 to 26.4 VDC (ON voltage >= 18 VDC, OFF voltage <= 5.0 VDC)
Nominal Input Current 4.1 mA +-20% per channel at 24 VDC
Isolation Voltage 2 kV AC for 1 minute (signal to system), 500 V AC between commons
Response Time <= 8 ms (status input), 20 ms (minimum ON detection for pushbutton)

Channel-to-Channel Isolation and Loop Diagnostics

The Yokogawa ADV151-E63/D5A00 integrates robust channel-to-channel isolation architecture with common ground separation every 16 channels. This construction suppresses ground loops and limits potential field noise propagation back to the internal 5 VDC FIO backplane bus. The module supports Sequence of Events (SOE) time stamping directly at the I/O interface layer, registering status transitions with millisecond resolution. Equipped with ISA Standard G3 conformal coating, internal printed circuit boards resist corrosive chemical environments, preventing conductive filament growth across high-density circuit traces.

Frequently Asked Questions

Q: Does the ADV151-E63/D5A00 require dedicated software configuration to toggle between sink and source input wiring?

A: No, the sink or source operational mode is determined by field terminal wiring topology and external loop power supply referencing across the 16-channel common terminals.

Q: What is the maximum switching frequency supported by the discrete input channels?

A: The module supports a maximum ON/OFF cycle frequency of 25 Hz for pushbutton and mechanical contact inputs, bounded by a minimum 20 ms ON detection threshold.

Q: Can this module operate in live redundant FIO node configurations?

A: Yes, the ADV151-E63/D5A00 supports dual-redundant installation using paired FIO baseplate slots, allowing online module insertion and replacement without disrupting active field loop scanning.

Field Installation Guidelines

Secure the ADV151-E63/D5A00 module directly into the assigned I/O slot on the FIO node unit until the top and bottom retention latches lock. Terminate external field signal cables using pressure clamp terminal blocks, MIL connector cables, or dedicated AKB331 pre-assembled cable assemblies. Ensure field wiring shields connect to the cabinet single-point ground bus and remain insulated through terminal transitions. Maintain separation between 24 VDC input signal lines and high-voltage AC power wiring inside terminal ducting to maintain transient noise margins. Tighten field terminal screws to standard torque limits, maintaining a minimum engagement of 5 full threads on all field wiring terminals.

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