The YOKOGAWA SNB10D-225/CU2T, also cataloged as the SNB10D Safety Node Unit, operates as a dedicated hardware component for SIL3-compliant signal processing and I/O management within ProSafe-RS Safety Instrumented System (SIS) platforms.
| Suffix Code | Description |
|---|---|
| SNB10D | Safety Node Unit (Rack Mountable) |
| -2 | Dual-redundant power supply with node expansion license |
| 225 | 220 to 240 V AC power supply |
| /CU2T | Connector Unit with Terminator for ESB Bus |
| Parameter | Specification |
|---|---|
| Model | SNB10D-225/CU2T |
| Brand | YOKOGAWA |
| Origin | Japan |
| Weight | 5.9 kg |
| Dimensions | 482.6 mm x 221.5 mm x 205 mm |
| Operating Temp | -20 deg C to 70 deg C |
| Power Consumption | 230 VA |
| Safety Level | SIL3 (IEC 61508) |
The SNB10D-225/CU2T facilitates fail-safe state execution within safety-critical control loops. The unit architecture employs triple modular redundancy (TMR) 2oo3 principles at the system level to ensure that no single-point hardware failure results in an unsafe process condition. Galvanic isolation is maintained across all I/O interfaces to protect the safety controller from transient surges and ground-induced potential differences. By enforcing strict separation between safety-critical logic and process control networks, the node ensures that the safety interlock functions remain deterministic and independent, satisfying the rigorous diagnostic coverage requirements mandated by SIL3 certification.
Q: Can the SNB10D-225/CU2T be configured for non-redundant power input?
A: The hardware is specifically engineered with a dual-redundant power supply architecture. While it may operate with a single source, optimal safety and availability metrics are predicated on dual-fed power inputs to prevent shutdowns during a primary power failure.
Q: What are the primary diagnostic limitations when using the ESB bus terminator?
A: The /CU2T connector unit provides passive termination to maintain bus impedance. If the ESB bus exhibits reflection errors or cyclic redundancy check (CRC) faults, verify the termination jumper settings and physical cable integrity before inspecting the node backplane.
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