Product Short Description
Product Overview
RCU501 is a high-performance embedded real-time process control computer independently developed by Kongsberg Maritime, designed as the primary field-level master controller for shipboard and offshore industrial automation systems. It adopts PowerPC embedded processor architecture, integrates multi-bus communication interfaces and built-in basic discrete I/O channels, and undertakes localized signal collection, closed-loop logic control, fault judgment, alarm transmission and network data forwarding tasks.
Description
Technical Performance Specifications
- Processor Core: PowerPC 8245, main frequency 400MHz
- Memory Configuration: 32MB SDRAM operating memory, 16MB Flash program storage memory
- Built-in Local I/O Channels: 4 universal digital input channels, 4 universal digital output channels
- Communication Bus Interfaces
- Dual redundant Ethernet LAN control network
- Dual independent RedundancyNet interfaces for redundant RCU hot backup
- Dual RBUS remote I/O process bus for docking RDIO/RDIOR series I/O modules
- 32 RS232/RS422/RS485 multi-protocol serial ports for third-party sensor/equipment docking
- 2 PROFIBUS-DP bus channels, 2 CAN-Bus bus channels
- Power Supply Standard: 18–32 VDC marine standard DC power, redundant dual power input terminals
- Operating Environmental Parameters
- Operating Temperature Range: 0°C ~ +70°C
- Storage Temperature Range: -40°C ~ +85°C
- Vibration Resistance: Complies with IEC 60068-2-6 marine vibration standard, 2–100Hz continuous vibration resistance
- Humidity Resistance: 5%–95% non-condensing relative humidity
- Safety & Explosion Protection Grade: Ex Zone 2 explosion-proof certified, SIL 1/SIL 2 safety integrity level compliant
- Physical Dimensions & Weight
- Dimensions: 220mm (H) × 110mm (W) × 135mm (D)
- Net Weight: 1.25kg
- Protection Rating: IP20 (indoor control cabinet installation only)
Core Functional Features
- Distributed Decentralized Control: Executes all control logic locally without relying on central operator station, drastically reducing ship cable wiring quantity and fault loss range
- Redundant Full-network Architecture: Dual Ethernet, dual RedundancyNet, dual RBUS bus and dual power supply multi-layer redundant design; automatic hot backup switchover within 20ms after single circuit failure
- Built-in BIST Complete Self-Test Function: Automatically completes hardware circuit, memory, bus communication, I/O channel self-inspection after power-on; real-time fault code push to operator station via network
- Independent Watchdog Safety Circuit: Hardware watchdog timer with independent power supply; automatically trigger full module reset and output fail-safe state when program crash or communication loss occurs
- Multi-protocol Third-party Equipment Compatibility: Supports NMEA0183 marine navigation protocol, Modbus RTU/TCP, PROFIsafe safety bus, CANopen and other industrial standard communication protocols
- Configurable Fail-Safe Output Logic: Users can set all local digital outputs to keep open circuit or closed circuit state after communication disconnection or module failure
- Online Firmware Upgrade: Supports remote online program update via Ethernet without disassembling module or stopping system operation
Application Scenarios
- Marine Vessel Automation: Merchant cargo ship, passenger ship, tugboat main engine remote control, auxiliary machinery pump/valve interlock control, cargo hold liquid level/temperature real-time monitoring
- Dynamic Positioning (DP) Systems: Offshore drilling platform, supply vessel DP positioning logic calculation, thruster rotation speed and direction closed-loop control
- Marine Safety & Alarm Monitoring Systems: Bilge water high-level alarm, fire detection signal collection, inert gas system safety interlock, ship blackout emergency protection logic
- Offshore Energy Industrial Control: Offshore wind turbine base monitoring, subsea equipment auxiliary control, offshore platform process pipeline monitoring
- Navigation Sensor Data Integration: Gyrocompass, GPS, echo sounder, wind meter signal centralized collection and protocol conversion forwarding
Material Composition & Structural Characteristics
- Outer Shell Material: High-strength flame-retardant ABS engineering plastic shell, anti-corrosion, anti-static, flame retardant grade UL94-V0; both sides equipped with heat dissipation grid to accelerate internal circuit heat dissipation
- Internal Circuit Board Material: Double-sided tin-sprayed FR4 high-temperature resistant circuit board, all signal circuits adopt gold-plated pin terminals to prevent marine salt spray corrosion and poor contact
- Connection Terminal Structure: Screw-type compression terminal blocks for power and bus wiring; pluggable detachable terminal design, convenient on-site wiring and module replacement without cutting cables
- Mounting Structure: Standard 35mm DIN rail card slot fixed structure, equipped with locking buckle to prevent module sliding and falling off under ship vibration
- Indicator Light Layout: Front panel integrated power supply status LED, network communication running LED, fault alarm LED, RBUS bus running LED; each LED adopts high-brightness long-life lamp beads, visible in low-light control cabinet environment
Working Principle
- Power Supply Stage: Dual independent 24VDC power input circuits supply power to the main control board; internal power conversion circuit converts input DC voltage into multiple groups of stable 3.3V, 5V, 12V DC power for processor, memory, communication chips and I/O drive circuits
- Signal Collection Stage: Built-in 4DI/4DO local discrete channels directly collect switch signals from field limit switches, pressure switches; multi-bus interfaces receive digital signal data uploaded by remote RDIO/RDIOR I/O modules via RBUS bus
- Logic Operation Stage: PowerPC processor loads pre-configured control logic program from Flash memory into SDRAM for real-time cyclic operation; completes interlock judgment, PID closed-loop calculation, threshold alarm comparison and safety logic processing of all collected signals
- Output Execution Stage: According to logic operation results, control built-in digital output channels to drive field indicator lights, small electromagnetic valves; send control instructions to remote I/O modules through RBUS bus to control high-power pumps, fans and other actuators
- Network Data Transmission Stage: Processed real-time monitoring data, fault alarm information and equipment operating parameters are uploaded to central operator stations, redundant backup RCU controllers through dual Ethernet and RedundancyNet bus; simultaneously receive remote operation instructions issued by operator stations to adjust control output status
- Fault Safety Protection Stage: When bus communication interruption, power supply undervoltage, program deadlock or channel short-circuit faults are detected by BIST self-test circuit and watchdog, the module immediately switches all output channels to pre-set fail-safe state and uploads fault alarm codes to the monitoring network
Installation Requirements
- Installation Environment Limitation: Must be installed inside sealed IP54 or above electrical control cabinet; strictly prohibited for open-air deck installation or direct contact with sea water, salt mist and oil vapor
- DIN Rail Installation Standard: Use standard 35mm top-hat DIN rail; install horizontal level, keep minimum 20mm heat dissipation gap between adjacent modules on left and right sides, minimum 50mm vertical gap between upper and lower modules
- Wiring Specification
- Power Cable: Use 1.0–2.5mm² multi-core shielded marine control cable; dual power supply terminals must connect two independent power distribution circuits to realize power redundancy
- Bus Communication Cable: RBUS, Ethernet and serial communication all use double-layer shielded twisted-pair cables; cable shielding layer single-point grounding at control cabinet grounding busbar to eliminate marine electromagnetic interference
- Signal I/O Cable: Digital input/output wiring uses 0.75–1.5mm² shielded cable; separate wiring trenches for power strong current cables and signal weak current cables, keep minimum 10cm separation distance
- Grounding Requirement: The module shell grounding terminal must connect to the ship’s protective grounding busbar with a short copper wire of not more than 30cm length, grounding resistance less than 4Ω
- Address Configuration Before Power-On: Adjust the 3-bit rotary address switch on the side of the module to set unique RBUS node ID; the module only reads the address value during initial power-on startup, address modification requires power cycle restart to take effect
Operation & Maintenance Precautions
- Power-On Operation Precautions
- Verify wiring correctness and insulation resistance of all cables before power supply access; short-circuit test of power terminals is prohibited
- Power on sequentially: First supply auxiliary power of control cabinet, then supply dual power supply of RCU501; wait for self-test completion (all fault LEDs off) before putting into automatic control operation
- Do not plug or unplug communication bus terminal plugs under live power supply; live plugging will cause bus short-circuit and burn internal communication drive chips
- Daily Maintenance Requirements
- Monthly inspection: Check front panel LED status, confirm no persistent fault alarm lights; clean surface dust of heat dissipation grid with dry soft brush, avoid liquid cleaning agent contact with module shell
- Quarterly inspection: Tighten all screw terminal blocks to prevent loosening caused by long-term ship vibration; measure input power voltage to ensure stable within 18–32VDC range
- Annual maintenance: Complete full BIST self-test manually via operator station; backup module firmware program and control logic configuration file to offline storage device
- Fault Handling Prohibitions
- When module fault alarm LED is on, cut off module power supply first before disassembling and checking internal circuits; live disassembly will cause electric shock and secondary circuit damage
- It is prohibited to replace internal circuit board components by non-professional maintenance personnel; all faulty modules need to be returned to Kongsberg authorized service center for professional repair
- Do not modify the module’s built-in fail-safe logic parameters at will; random modification may lead to ship machinery safety interlock failure and major navigation accidents
- Storage Precautions for Spare Modules
- Store spare RCU501 modules in constant temperature and humidity warehouse, storage environment temperature -20°C ~ +40°C, relative humidity 10%–60% non-condensing
- Modules must be sealed with anti-static packaging bags during storage; avoid placing together with corrosive chemical reagents, oil products and sea salt samples
- Long-term stored modules need to be powered on and run self-test for 2 hours every 6 months to prevent circuit board capacitor aging failure






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