Product Short Description
Technical Specifications
- Electrical Specifications
- Power Supply: 24V DC, powered by Trident system rack, with a maximum power distribution capacity of 15W to support multiple installed DI modules.
- Backplane Bus: Trident dedicated TMR communication bus, supporting data transmission rate up to 100Mbps with communication latency ≤1μs.
- Electrical Isolation: 1500V DC isolation between baseplate backplane and external connections, and between each I/O slot, preventing signal crosstalk and voltage surges.
- Slot Configuration: 8 dedicated slots for Trident DI modules, allowing parallel installation of multiple digital input modules for signal acquisition expansion.
- Power Distribution: Independent over – current and over – voltage protection for each slot, automatically isolating faulty slots to avoid affecting the entire baseplate and system.
- Physical Specifications
- Installation Method: Standard Trident rack – mount installation, compatible with Trident system I/O columns and cabinets, with quick – lock mounting mechanisms for easy assembly.
- Dimensions: Conforms to Trident standard I/O baseplate size, 220mm × 110mm × 35mm, lightweight design at 1.2kg for easy handling and on – site installation.
- Connectors: Equipped with high – density, locking backplane connectors and field – side terminal interfaces, ensuring stable connections even in high – vibration industrial environments.
- Component Kit: Includes baseplate, interconnect cables, slot covers, and terminal covers, providing a complete solution for DI module installation and protection.
Description
- Environmental Specifications
- Operating Temperature: -40°C to +70°C, adapting to extreme temperature conditions in offshore platforms, chemical plants, and other industrial sites.
- Storage Temperature: -40°C to +85°C, ensuring the baseplate remains intact during transportation and long – term storage.
- Relative Humidity: 5% – 95% (no condensation), preventing circuit corrosion and short – circuits caused by moisture.
- Vibration Resistance: Withstands 5g (10-2000Hz) vibration, complying with industrial standards for mechanical stability.
- Shock Resistance: Withstands 10g impact force, protecting internal circuits and connectors from damage during installation and operation.
- EMC Compliance: Meets EN 55032 and EN 55024 electromagnetic compatibility standards, with strong anti – EMI and RFI capabilities.
Functional Characteristics
- TMR – Compatible Connection & Signal Integrity
- The baseplate backplane is designed to match the Trident TMR architecture, ensuring that digital input signals from modules are transmitted through three redundant paths, eliminating single – point communication failures.
- It maintains signal integrity during transmission, with built – in signal conditioning circuits to filter out external noise and ensure accurate data collection by the controller.
- Modular & Hot – Swap Support
- It supports hot – swap of Trident DI modules. Modules can be installed or replaced online without shutting down the Trident SIS, significantly reducing maintenance – related production losses.
- The modular slot design allows flexible configuration of the number of DI modules according to on – site needs, facilitating system expansion or modification without changing the baseplate.
- Comprehensive Protection & Diagnostics
- Each slot is equipped with independent over – current, over – voltage, and reverse – polarity protection circuits to prevent damage to the baseplate and modules caused by abnormal field wiring.
- It integrates real – time diagnostic functions, monitoring power status, slot connection status, and bus communication status, and sends fault alarms to the Trident controller for quick troubleshooting.
- LED indicator lights on the baseplate display overall power on, bus communication normal, and slot fault status, enabling on – site personnel to quickly check the working status.
- Seamless Compatibility & Easy Integration
- It is fully compatible with all Trident DI modules and mainframes, requiring no additional configuration software for connection, realizing plug – and – play integration.
- It supports cascading of multiple baseplate kits, enabling distributed I/O deployment in large – scale plants and extending the system’s signal acquisition range.
Application Scenarios
- Oil and Gas Industry
- Deployed in offshore drilling platforms and onshore oil and gas processing plants, it provides a connection foundation for DI modules in emergency shutdown systems (ESD) and fire & gas (F&G) detection systems, ensuring reliable collection of signals from emergency stop buttons and pressure switches.
- Used in long – distance oil and gas pipeline monitoring systems, it supports distributed DI module deployment along the pipeline to collect leakage alarm and valve position signals.
- Chemical and Petrochemical Industry
- Applied to large chemical complexes, it connects DI modules in reactor safety protection systems and material feeding interlock systems, monitoring temperature switch and flow switch signals to prevent over – temperature and over – pressure accidents.
- Used in petrochemical refining processes, it provides a stable interface for DI modules to collect signals from safety valve status and gas detector data, ensuring the safety of flammable and explosive production environments.
- Power Industry
- In thermal power plants, it serves as the connection baseplate for DI modules in boiler protection and steam turbine safety systems, collecting bearing temperature alarm and steam pressure switch signals to trigger timely protection actions.
- In nuclear power plants, it is used in reactor safety control systems, providing a safe and reliable interface for DI modules to collect coolant flow and emergency shutdown device signals, in line with nuclear safety level requirements.
- Other High – Risk Industrial Fields
- In the metallurgical industry, it provides a connection solution for DI modules in blast furnace and converter safety systems, monitoring high – temperature alarm switches and water cooling system pressure signals.
- In the water treatment industry, it connects DI modules in large – scale sewage treatment plants to collect water level sensor and pump status signals, ensuring the stability of the treatment process.
- In the pharmaceutical industry, it serves as the baseplate for DI modules in drug production line safety interlock systems, monitoring safety door opening/closing and material feeding in – place signals to ensure drug production quality and safety.
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