RXM4200
Description
Product Description
I. Official Standard Core Parameters
1. Basic Specifications
Model: RXM4200 Remote Expansion Communication Module
Communication Architecture: TMR Triple Redundancy Transmission Architecture, Three Links Synchronous Data Interaction
Transmission Medium: Special Coaxial Cable, Strong Anti-interference Capability
Communication Rate: High-speed Backplane Synchronous Transmission, Real-time Data with No Delay
Transmission Distance: Single Link Up to 1000 Meters
Connection Method: Pairing Use on Both Host Rack Side and Expansion Rack Side
Data Type: Supports DI, DO, AI, AO, Pulse Signal for Full-Type Data Forwarding
Redundancy Mode: Three Links Standby for Each Other, Single Link Failure Automatically Switches Without Interrupting Communication
Fault Diagnosis: Comprehensive Detection of Link Breakage, Signal Attenuation, Communication Timeout, Line Interference
Isolation Performance: Electrical Isolation of Communication Lines from System Internal Circuits at 1500VAC
Anti-interference Design: Built-in Electromagnetic Shielding, Surge Suppression, Signal Filtering Circuit
Hot Swap Function: Supports Online Insertion and Replacement, System Operation Not Affected
Power Supply: Backplane 24VDC Power Supply, Voltage Float Range ±10%
Module Power Consumption: Approximately 9 Watts
Operating Temperature Range: -40°C to 70°C
Storage Temperature Range: -55°C to 85°C
Product Certification: CE, UL, CSA, TÜV SIL3 Authoritative Safety Certification
Installation Method: Compatible with Tricon Host Rack and Expansion Rack Standard I/O Slots
Form Size: 225×112×40 Millimeters
Product Weight: Approximately 1.3 Kilograms
2. Panel Indicator Light Interpretation
Green PWR Light: Module Power Supply Status is Normal
Green OK Light: Triple Redundancy Communication Links are Operating Stably
Red FAULT Light: Communication Links are Abnormal, Line Fault or Module Fault Alarm
Green LINK Light: Corresponding Communication Links Data Transmission is Normal
3. Main Features of the Product
Expansion Capability: Can be Multi-level Series-Connected to Expand Multiple Remote I/O Racks, Significantly Expanding the Number of System Control Points
Stable Transmission: Industrial-grade Long-distance Transmission Design, Suitable for Long-distance Cabinet Wiring Scenarios in Factory Areas
Strong Synchronization: Host and Remote Rack Program Logic and Data States are Completely Synchronized and Consistent
Easy Debugging: Relying on TriStation Configuration Software, Can Monitor Communication Status, Link Load, and Fault Points Online
Safe and Reliable: Compliant with SIL3 Safety Level Standards, Meeting the Requirements for Various High-risk Process Safety Control Applications
II. Typical Application Scenarios
Large Chemical Plants: Distributed SIS Safety Interlock System Remote Rack Interconnection in Multiple Areas
Power Stations: Remote I/O Point Position Centralized Control of Generator Sets and Auxiliary Machinery Systems
Oil and Gas Extraction: Remote Signal Transmission between Field Substations Control Cabinets and Central Control Rooms
Large Compressor Station: Data Intercommunication between Local Host Racks and Remote Field Execution Racks
Overall Factory Safety System: Integrating Dispersed Safety Interlock Points, Unified into Central SIS System Control
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