The Foxboro RH924YA (Field Control Processor 280) functions as a high-density, high-speed controller for the Foxboro Evo and I/A Series Distributed Control Systems (DCS). This 100% Brand New original FCP280 module utilizes a 64-bit RISC CPU architecture to deliver superior computational power for critical process automation. By executing regulatory control, logic interlocks, and sequential timing locally at the controller level, the RH924YA reduces network latency and ensures deterministic response times. It serves as the primary processing node for large-scale industrial operations, including petrochemical refining and power generation, where system availability and data integrity remain paramount.
| Parameter | Technical Details |
| Processor Type | 64-bit RISC CPU |
| Volatile Memory | 256 MB SDRAM |
| Non-Volatile Memory | 128 MB Flash |
| I/O Support | Up to 64 Fieldbus Modules (FBMs) |
| Network Interface | 100 Mbps Fiber Optic Ethernet |
| Input Voltage | 24 VDC ±15% (Supports Redundant Feeds) |
| Power Consumption | 10 W Typical |
| Operating Temp | -40°C to +70°C (-40°F to +158°F) |
| Execution Speed | Sub-millisecond logic execution |
| Certifications | IEC 61508 (Functional Safety), CE, UL |
| Shipping Weight | 3.0 kg (Includes protective industrial packaging) |
Massive Scalability: The RH924YA doubles the I/O capacity of previous generation processors, supporting up to 64 Fieldbus Modules (FBMs). This allows engineers to consolidate more field points into a single control node, simplifying rack architecture and lowering total cost of ownership.
Superior Fault-Tolerant Redundancy: When installed in a redundant pair, two RH924YA modules operate in a tightly synchronized "primary/standby" state. In the event of a hardware failure, the backup processor assumes full control without any bump in the process signal, maintaining 100% uptime for safety-critical loops.
Optical Isolation & Security: The module communicates via 100 Mbps fiber optic Ethernet. This optical link provides total galvanic isolation, shielding the processor from the severe electromagnetic interference (EMI) and voltage surges common in power plants and heavy industrial facilities.
Extended Life Cycle Design: The 256 MB SDRAM provides substantial headroom for future firmware upgrades and more complex control databases. This "future-proof" hardware ensures the FCP280 remains compatible with evolving Foxboro Evo software features for years to come.
Can the RH924YA be used to replace an older FCP270?
Yes. The FCP280 is designed as a direct evolutionary path for the FCP270. It offers faster processing and larger memory; however, you should consult the system's software release notes to ensure your current Foxboro I/A or Evo version supports the expanded FBM capacity.
What is the significance of the "industrial grade" temperature rating?
The RH924YA operates between -40°C and +70°C. This wide range allows for installation in remote instrument enclosures near the process equipment, eliminating the need for expensive air-conditioned cabinet rooms in many field applications.
How does the module handle power supply failures?
The processor accepts redundant 24 VDC inputs. If one power source fails, the module continues to operate via the second source without interruption. Furthermore, all control strategies reside in non-volatile 128 MB Flash memory, preventing data loss during total power outages.
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