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Yokogawa SSB401-13 S1 Optical ESB Bus Repeater Module

Yokogawa SSB401-13 S1 Optical ESB Bus Repeater Module

The Yokogawa SSB401-13 S1 serves as the primary SSB401-13 Optical ESB Bus Repeater Module utilized to execute optical signal extension and bus isolation across distributed control system platforms.

Hardware Specifications

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SKU: SSB401-13 S1
Vendor: Yokogawa

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The Yokogawa SSB401-13 S1 serves as the primary SSB401-13 Optical ESB Bus Repeater Module utilized to execute optical signal extension and bus isolation across distributed control system platforms.

Hardware Specifications

Parameter Specification
Model SSB401-13 S1
Brand Yokogawa
Origin Japan
Weight 0.9 kg
Dimensions 5.1 cm x 20.3 cm x 14.6 cm
Operating Temp 0 deg C to 50 deg C
Power Consumption 5 VDC, 0.8 A max
Enclosure Type Rack-mountable module

Optical Communication and Bus Isolation Architecture

The module governs optical data transmission across extended node distances by converting electrical bus signals into optical pulses. System integrity depends on optical transceiver synchronization, ensuring that propagation delay remains within deterministic threshold limits across extended ESB bus loops. Galvanic isolation between local node backplanes and remote fiber-optic segments prevents ground loop propagation and electromagnetic interference common in heavy industrial process environments. Diagnostic monitoring registers optical link attenuation status and generates hardware interrupt signals upon detecting signal degradation or fiber-optic continuity loss.

Frequently Asked Questions

Q: What are the restrictions regarding hot-swapping the SSB401-13 S1 module?

A: Hot-swapping is restricted unless system power is explicitly cycled or node redundancy configuration permits active online replacement without triggering a controller fault state.

Q: How does the module handle fiber-optic link attenuation thresholds?

A: The internal optical receiver monitors signal strength continuously and flags an error state via backplane status registers if attenuation exceeds permissible link budget margins.

Field Installation Guidelines

Mount the module securely into the designated node rack slot, ensuring physical alignment with backplane connectors before engaging retention screws. Route fiber-optic cables with minimum bend radii exceeding manufacturer specifications to prevent micro-bending signal loss. Verify optical connector cleanliness using isopropyl alcohol wipes prior to mating patch cords. Terminate cable shielding and grounding drain wires directly to the designated industrial cabinet ground bar to maintain electromagnetic compatibility.