Configured for Specific Technical Task in System/Network Name, the YOKOGAWA ANB10D-426/CU2N/NDEL (ANB10D ESB Bus Node Unit) provides direct physical/electrical execution. The hardware establishes deterministic communication links between high-density input/output sub-modules and the central Field Control Unit over a synchronized bus architecture. Engineered with a dual-redundant power topology, this rack-mounted node facilitates real-time data serialization and multi-channel hardware distribution across the local network backplane.
| Code Component | Type | Technical Assignment |
|---|---|---|
| ANB10D | Base Model | Node Unit for Dual-Resistant ESB Bus |
| -4 | Suffix | Dual-redundant power supply configuration |
| 2 | Suffix | 220 V AC to 240 V AC power input rating |
| 6 | Suffix | ISA Standard G3 conformal coating, extended temperature (-20 to 70 deg C), non-explosion proof |
| /CU2N | Option | Connector Unit for ESB Bus (2 pieces, Part No. S9562FA, non-terminated variant) |
| /NDEL | Option | Embedded Software License for Node Expansion functionality |
| Parameter | Specification |
|---|---|
| Model | ANB10D-426/CU2N/NDEL |
| Brand | Yokogawa |
| Origin | Japan |
| Weight | 2 kg (Shipping weight) / 10 kg (Gross operational assembly weight) |
| Dimensions | Standard 19-inch rack-mount footprint |
| Operating Temp | -20 to +70 deg C |
| Power Consumption | 230 VA (Apparent power), 120 W (Active power) |
| Supply Voltage | Dual-redundant 220 to 240 V AC, 50/60 Hz |
| Interface Topology | Dual-redundant synchronous ESB bus lines |
| Backplane Capacity | Maximum 8 FIO modules per individual node structure |
| Expansion Capacity | Scalable up to 13 units per AFV30/AFV40 Field Control Unit |
| Environmental Code | ISA G3 class conformal coating for atmospheric protection |
The unit leverages direct backplane bus communication velocity parameters to process parallel data packets from connected input/output cards without processing latency. Channel-to-channel isolation matrices insulate the internal digital translation pathways from external loop spikes, keeping the system logic common independent of field terminal noise. The integrated /CU2N connector block serves intermediate loop connection configurations, enabling continuous signal pass-through along the dual-redundant synchronous bus without terminating the physical transmission line network.
Q: How does the internal power system respond if one of the dual-redundant 220 V AC utility lines suffers a total voltage collapse?
A: The internal power architecture initiates an automatic failover sequence executed within 2 microseconds. The parallel online supply module assumes the full current load without causing interruption to the active backplane data processing or dropping the ESB bus synchronization.
Q: Can the /CU2N connector unit assembly be placed at the physical end of the ESB bus line chain?
A: No. The /CU2N is a non-terminated connector design intended strictly for intermediate node pass-through configurations. Terminal positions at the end of the bus chain require the installation of a dedicated terminated type block (CU2T) to avoid signal reflection errors.
Q: Is this specific model variation rated for mounting within Class 1 Division 2 hazardous areas?
A: No. The -426 suffix designation denotes a non-explosion protected hardware profile. The module must be installed in a non-hazardous control room environment or within an appropriately purged and pressurized industrial enclosure.
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