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Yokogawa AIP578 V net Repeater Module

The Yokogawa AIP578, also cataloged as the AIP578 Optical Link Transceiver Module, operates as a dedicated hardware component for extending communication ranges within V net repeater network platforms.

Hardware Specifications

Parameter Specification
Model AIP578
Brand Yokogawa
Origin Japan
Weight 0.18 kg
Dimensions 5.1 cm x 12.7 cm x 20.3 cm
Operating Temp 0 to 50 deg C
Power Consumption 5 W (0.2 A at 24 VDC)
Transmission Distance 4 km maximum
Module Function RIO Optical Link Transceiver
Interface Compatibility V net Repeater / RIO I/O
Isolation Voltage 2500 VDC (channel to system ground)
Resolution 16-bit

Process Control & DCS Instrumentation Features

The transceiver module utilizes specialized physical layer conversion components to transition electrical signals from the backplane into optical signals for long-distance topology extensions. To prevent common-mode noise propagation across distributed nodes, the unit enforces strict channel-to-channel isolation and channel-to-system ground isolation barriers. It integrates native infrastructure hooks for the V net protocol, maintaining deterministic data velocities and signal integrity while suppressing localized industrial electromagnetic interference (EMI) across extended network distances up to 4 km.

Frequently Asked Questions

Q: Does this hardware asset support live replacement under active network conditions?

A: The module configuration allows hot-swap extraction and insertion without requiring a complete system shutdown, provided that network redundancy topologies are active to maintain continuous V net communications.

Q: What are the consequences of exceeding the stated 4 km transmission boundary?

A: Exceeding the 4 km optical budget induces signal attenuation levels that surpass the receiver sensitivity threshold, which results in frame drops, increased CRC errors, and potential bus communication failures on the V net link.

Q: How is the physical grounding handled on this optical transceiver block?

A: Optical links eliminate copper ground loops between distant locations; however, the local module chassis must be grounded via the standard rack grounding pins to achieve full 2500 VDC isolation performance against local electrostatic discharge.

Field Installation Guidelines

  • Insert the module into the designated slot of the FIO or V net repeater rack assembly. Secure all mechanical retention screws to ensure stable electrical engagement with the active backplane bus.
  • Clean all optical fiber connectors thoroughly before insertion into the transceiver ports to minimize insertion loss. Observe the minimum bend radius constraints specified for the fiber optic cabling inside the enclosure.
  • Confirm that the input voltage supply maintains a stable 24 VDC within the +/-10% tolerance boundary. Route all field network cables through separate wire ducts away from high-voltage motor control lines to limit industrial RFI exposure.

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