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Yokogawa NFSBT02 FIO I/O Node Baseplate Backplane

Yokogawa NFSBT02 FIO I/O Node Baseplate Backplane

  • 1000 Disponibile
  • Manufacturer: Yokogawa

  • Product No.: NFSBT02

  • Condition: Disponibile

  • Product Type: FIO I/O Node Baseplate Backplane

  • Product Origin: Japan

  • Payment:T/T, Western Union

  • Weight: 300g

  • Shipping port: Xiamen

  • Warranty: 12 months

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Descrizione

Overview

The NFSBT02 is a dedicated Field I/O (FIO) node baseplate developed by Yokogawa for use in CENTUM VP distributed control systems and ProSafe-RS safety instrumented systems. Rather than processing signals directly, this baseplate forms the electrical and mechanical foundation of an FIO node, enabling reliable installation and interconnection of multiple I/O modules.

By integrating power routing, system bus distribution, grounding, and module alignment into a single backplane assembly, the NFSBT02 ensures stable operation and long-term maintainability in high-availability control and safety architectures.

Key Functions

The NFSBT02 baseplate serves as the internal infrastructure of an FIO node. It provides standardized slots for I/O modules and establishes consistent electrical interfaces across the node.

Core functions include power delivery to installed modules, distribution of the FIO communication bus, and centralized grounding for improved noise immunity. The design supports system redundancy and hot-swap operation when used within compatible system configurations.

System Compatibility

The NFSBT02 is engineered specifically for Yokogawa FIO subsystems and integrates seamlessly with both control and safety platforms.

Compatible systems include:

  • CENTUM VP Distributed Control System

  • ProSafe-RS Safety Instrumented System

  • Yokogawa FIO node architectures

Technical Specifications

Functional Characteristics

  • Model: NFSBT02

  • Product Type: FIO node baseplate / backplane

  • Primary Role: Mechanical mounting and electrical interconnection of I/O modules

  • Slot Capacity: Commonly supports up to 8 I/O modules per baseplate

  • Redundancy Support: Yes, depending on node and system design

Electrical Design

  • Logic Power Distribution: 5 V DC via internal backplane traces

  • Field Power Routing: 24 V DC distributed to I/O modules

  • Communication Interface: Integrated FIO system bus

  • Grounding: Built-in grounding and shielding paths to reduce electrical noise

Mechanical Properties

  • Installation Method: Panel or cabinet mounting inside I/O node enclosures

  • Cooling Method: Passive cooling through natural convection

  • Construction: Industrial-grade printed circuit board with reinforced frame

  • Module Handling: Supports live insertion and removal when system conditions allow

Environmental Ratings

  • Operating Temperature Range: 0 °C to 55 °C

  • Storage Temperature Range: −40 °C to 70 °C

  • Relative Humidity: 5% to 95% RH, non-condensing

  • EMC Performance: Designed for electrically noisy industrial environments

Typical Applications

The NFSBT02 is widely deployed in control and safety systems where modular I/O architecture and long-term reliability are required, including:

  • Oil and gas production facilities

  • Petrochemical and chemical processing plants

  • Power generation and utility systems

  • Large-scale process automation installations

Frequently Asked Questions

What role does the NFSBT02 play in an FIO node?

The NFSBT02 provides the physical structure and electrical pathways required for I/O modules to operate. It distributes power, communication signals, and grounding across the node but does not perform signal conversion itself.

Does the NFSBT02 support redundant system designs?

Yes. When used with compatible Yokogawa FIO node configurations, the baseplate supports redundant architectures for high-availability control and safety applications.

Can I/O modules be replaced without shutting down the system?

Hot-swap capability depends on the specific I/O module type and system configuration, but the NFSBT02 is designed to support live insertion under supported conditions.

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In evidenza

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