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The Yokogawa SARM55, also cataloged as the ARM55C Mechanical Relay Board, operates as a dedicated hardware component for multi-channel discrete output execution within Yokogawa industrial control platforms. The solid-state interface assembly processes binary logic commands to route physical dry contact outputs over external switching circuits.
| Parameter | Specification |
|---|---|
| Model | SARM55 |
| Brand | Yokogawa |
| Origin | Japan |
| Weight | 2.2 kg |
| Dimensions | 482.6 mm x 132.5 mm (Standard 19 inch rack, 3U height profile) |
| Operating Temp | 0 to 50 deg C |
| Power Consumption | 24 VDC internal circuit power, Max. 0.65 A current draw |
| Contact Points | 32 point discrete output matrix |
| Contact Type | Form a (Normally Open) or Form b (Normally Closed) dry contacts |
| Maximum AC Load | 250 VAC at 2 A per point |
| Maximum DC Load | 30 VDC at 2 A | 125 VDC at 0.1 A per point |
| Minimum Loop Load | 5 VDC, 10 mA electrical threshold |
| Insulation Resistance | At least 10 MOhm (Evaluated at 500 VDC) |
| Withstanding Voltage | Field to Case: 2 kV | Power to Case: 500 V | Power to Field: 2 kV |
| Field Terminals | M4 screw connection layout |
| Module Compatibility | ADV551 (with ATD5A block) | ADV561 digital output cards |
| Signal Interconnects | AKB331 (32 point link) | AKB337 (64 point link) cables |
| Regulatory Standards | EMC Standards [CE Marking], [C-Tick Marking], [KC Marking] |
| Product Type | Digital I/O Cards |
Q: How does the minimum load requirement impact low-power signaling circuits?
A: The contacts require a minimum loop load of 5 V, 10 mA to function reliably. Attempting to switch electronic signals below this threshold can lead to intermittent continuity over time, as the loop lacks the electrical wetting energy necessary to pierce microscopic surface oxide layers that build up naturally on electromechanical contact surfaces.
Q: What structural behavior occurs if the internal 24 VDC logic power grid fails?
A: The internal logic circuits operate on a nominal 24 VDC rail with a maximum current draw of 0.65 A. If this internal control power supply is interrupted or drops below minimum operational thresholds, the electromagnetic coils de-energize immediately, reverting all 32 channels to their default unpowered safe states to guarantee predictable contact positions.

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