Configured for high-reliability safety applications in the ProSafe-RS Safety Instrumented System (SIS), the Yokogawa SSC50D-F2524 (SSC50D Duplexed Safety Control Unit) provides direct physical/electrical execution.
| Suffix Code | Functional Description |
|---|---|
| SSC50D | Base model designation for the Duplexed Safety Control Unit chassis |
| -F | Vnet/IP communication protocol interface configuration |
| 2 | Dual-redundant utility power supply architecture |
| 5 | Basic construction type with no integrated explosion protection metrics |
| 2 | 24 V DC system input voltage rating |
| 4 | ISA Standard G3 conformal coating with expanded environmental temperature compliance |
| /CFS1100 | Integrated Safety Control Function License activation key |
| Parameter | Specification |
|---|---|
| Model | SSC50D-F2524 |
| Brand | Yokogawa |
| Origin | Japan |
| Weight | 0.3 to 2.5 kg maximum variance depending on populated sub-cards |
| Dimensions | Standard compact 19-inch rack-mount or wall-bracket footprint |
| Operating Temp | -20 to +60 deg C (ISA G3 compliant environments) |
| Power Consumption | ~6 W typical operating load draw |
| System Voltage | 24 V DC nominal input (Supports dual-redundant power configurations) |
| Safety Integrity Level | SIL3 certified by TUV Rheinland (IEC 61508 compliance) |
| Communication Protocol | Vnet/IP high-speed deterministic network interface |
| Node Node Capacity | Supports up to 9 safety node units for expanded I/O tracking |
| Signal Input Profiles | Voltage loops (0-10 V) and Current loops (4-20 mA) |
| Signal Output Profiles | Analog user-selectable ranges: 4-20 mA or 0-10 V |
| Hardware Scan Precision | +-0.1% of Full Scale accuracy window |
| Step Response Velocity | Less than 300 ms loop execution for a full-scale change |
| Operating Humidity | 5% to 95% RH, non-condensing |
The Yokogawa SSC50D-F2524 achieves SIL3 certification by executing safety logic within a duplexed, dual-CPU processor pipeline that enforces hardware-level fault tolerance. The unit uses a fault-safe state execution engine to continuously verify synchronized calculation steps between the internal processors. If a discrepancy or internal bus failure is detected, built-in self-diagnostics isolate the fault and trigger an immediate fail-safe state execution or hot-swap sequence. This duplexed layout, combined with full galvanic isolation across the backplane data tracks, ensures that single-point electronic failures are detected instantly without degrading active emergency shutdown (ESD) or fire and gas (F&G) protection matrices.
Q: How does the duplexed processor setup coordinate fault detection during active safety scans?
A: The control unit runs dual-redundant processing lines where both CPUs calculate the safety logic in lockstep. Internal hardware cross-checking circuits compare data registers continuously; any processing fault or timing drift triggers automated diagnostics to switch tasks to the standby processor or force the network into a defined fail-safe state.
Q: What are the exact physical and software constraints when integrating additional safety node units?
A: The hardware architecture supports up to 9 downstream safety node units connected over the Vnet/IP network path. To register these expansion nodes, the primary controller must run software version R4.01 or later with an active CFS1100 Safety Control Function License enabled in the system matrix.
Q: How does the integrated memory protection sub-layer behave during a sudden drop in 24 V DC input power?
A: The module contains a hardware-level memory protection circuit that detects incoming voltage drops on the 24 V DC rails. When a power loss crosses the low threshold, the system writes all current safety states, logic variables, and error logs directly to non-volatile storage before the hardware shuts down, preventing data corruption.
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