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YOKOGAWA SSNB10D-425/CU2N Dual-Redundant ESB Bus Node Unit

YOKOGAWA SSNB10D-425/CU2N Dual-Redundant ESB Bus Node Unit

The YOKOGAWA SSNB10D-425/CU2N, also cataloged as the SSNB10D-425/CU2N ESB Bus Node Unit, operates as a dedicated hardware component for deterministic I/O communication and bus expansion within Yokogawa Centum VP/CS 3000...

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SKU: ESB SSNB10D-425/CU2N
Vendor: Yokogawa

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The YOKOGAWA SSNB10D-425/CU2N, also cataloged as the SSNB10D-425/CU2N ESB Bus Node Unit, operates as a dedicated hardware component for deterministic I/O communication and bus expansion within Yokogawa Centum VP/CS 3000 control platforms.

Hardware Specifications

Parameter Specification
Model SSNB10D-425/CU2N
Brand YOKOGAWA
Origin Japan
Weight 10 kg
Dimensions 482.6 mm x 221.5 mm x 150.6 mm
Operating Temp Standard industrial range
Power Consumption 120 W (AC) / 5.5 A (24 VDC)
I/O Capacity 8 modules
Mounting M5 screws (4 points)
Redundancy Dual power/ESB interface

Deterministic Network Connectivity

The SSNB10D-425/CU2N utilizes high-speed ESB (Extended Serial Bus) bus communication to facilitate deterministic data exchange between the field control station and remote I/O modules. The unit features dedicated ESB bus connector units (/CU2N) that enable seamless scaling of I/O density while maintaining strict synchronization across the bus backplane. This architecture supports high-velocity firmware flash compatibility for system updates, ensuring that communication latencies remain within the specified operational tolerances required for integrated process control and safety-related functions.

Frequently Asked Questions

Q: Does the dual-redundant power configuration require two independent power sources?

A: Yes, to achieve full power redundancy, the dual power modules must be connected to independent 100-240 VAC or 24 VDC sources to prevent single-point failures from disrupting bus communication.

Q: Can this node unit be hot-swapped during active system operation?

A: While the ESB interface modules are designed for high availability, the backplane-mounted node unit itself requires strict adherence to system-specific maintenance procedures and proper shut-down or bypass logic to prevent communication loss to the connected I/O.

Field Installation Guidelines

  • Mount the unit using four M5 screws to ensure structural stability within the standard 19-inch rack enclosure.
  • Ensure adequate ventilation spacing around the unit to prevent thermal accumulation, as the 120 W power consumption generates significant heat under full load.
  • Terminate ESB bus cables using the provided /CU2N connectors, ensuring the cables are properly shielded and grounded to avoid electromagnetic interference (EMI) on the backplane bus.
  • Verify that all 8 I/O module slots are properly seated and that the backplane connector pins are free from debris before power-up.
  • Check the dual power supply wiring to ensure polarity is correct for the 24 VDC configuration, or that the AC input matches the 100-240 VAC auto-ranging specification.