Beschreibung
Product Overview
The Honeywell 51402455-100 is a Dual Node Card File (DNCF) engineered for Honeywell TDC 3000 Distributed Control Systems. It serves as a physical and electrical hosting platform for up to two independent controller nodes, enabling scalable control architectures and improved system resilience within LCN-based control environments.
Designed for continuous industrial operation, this module integrates a rigid aluminum card cage, internal backplane, and forced-air cooling to support stable controller performance over extended service life. Each installed node operates autonomously with its own dedicated power supply, allowing mixed node configurations without operational dependency.
System Functionality and Architecture
Within a TDC 3000 control system, the 51402455-100 functions as the central mounting and interconnection frame for controller nodes communicating over the Local Control Network (LCN). The dual-node architecture allows engineers to deploy redundant or parallel control strategies while minimizing cabinet space and wiring complexity.
The module supports heterogeneous node configurations, including one three-board controller node alongside one two-board controller node. Electrical isolation between nodes enhances fault containment and improves overall system availability.
Mechanical Design and Thermal Management
The chassis is constructed from industrial-grade aluminum to provide structural rigidity and effective thermal dissipation. An integrated cooling fan assembly maintains consistent airflow across installed boards, reducing thermal stress and supporting long-term reliability in control room and cabinet installations.
The card cage and backpanel are precision-aligned to ensure secure board seating and dependable signal integrity under vibration and continuous load conditions.
Electrical and Communication Characteristics
The 51402455-100 interfaces directly with the Honeywell LCN infrastructure, enabling deterministic control communication between controllers and supervisory systems. While the card file itself does not perform control logic, it is critical to power distribution, backplane signaling, and network connectivity for hosted nodes.
Certain supplier listings attribute generic electrical values to this assembly; however, actual operating voltage, current draw, and communication interfaces are defined by the installed controller nodes and associated power modules rather than the card file alone. Engineers should always reference the specific node and DNPWR documentation when designing power budgets.
Technical Specifications
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Manufacturer: Honeywell
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Model: 51402455-100
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Product Classification: Dual Node Card File / Controller Chassis
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Compatible System: Honeywell TDC 3000 DCS
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Node Capacity: Up to two independent controller nodes
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Supported Configurations: One 3-board node and one 2-board node
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Power Architecture: Separate power supply per node (DNPWR modules)
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Network Interface: Local Control Network (LCN) via installed nodes
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Enclosure Material: Aluminum
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Cooling Method: Integrated forced-air fan assembly
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Installation Environment: Control cabinets and industrial DCS rooms
Typical Application Scenarios
The 51402455-100 is commonly deployed in:
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Honeywell TDC 3000 control cabinets requiring node density optimization
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High-availability process control systems using independent controller nodes
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System expansions where additional LCN nodes are added without redesigning the cabinet layout
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Long-life industrial installations where mechanical robustness and thermal stability are critical
Frequently Asked Questions
Can both controller nodes operate independently?
Yes. Each node hosted in the 51402455-100 functions as a fully independent controller with its own power supply and LCN connectivity.
Does the module include control electronics?
No. The card file provides mechanical mounting, backplane connections, cooling, and power distribution support. Control logic resides entirely within the installed controller nodes.
Is redundancy mandatory when using a dual node card file?
No. The dual-node design allows redundancy, parallel control, or mixed configurations depending on system requirements.
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