Description
Key Parameters
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Channels: 8 digital outputs (sourcing – positive switching)
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Output Voltage: 24 V DC nominal (18–32 V DC)
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Output Current: 0.5 A per channel (continuous), 2 A peak (short duration)
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Total Current: 4 A per module (all channels combined)
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Isolation: 1500 V RMS (field-to-backplane); 500 V RMS between channels (optically isolated per channel)
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Protection: Per-channel electronic overcurrent protection (auto-restart after fault clears), short-circuit protection, thermal protection
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Diagnostics: Open-wire detection, short-circuit detection, per-channel LED status, over-temperature alarm
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Fail-Safe States: Software-configurable per channel (hold last state, go to ON, go to OFF) on communication loss
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Power: 24 V DC backplane power, ≤2.5 W (logic); external 24 V field supply required for outputs
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Operating Temperature: –40°C to +70°C
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Terminals: Screw-type (suffix-dependent)
Advantages
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Per-channel optical isolation – 500 V isolation between channels; prevents cross-talk and ground-loop issues when driving loads on different power supplies or phases.
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Electronic short-circuit protection – per-channel auto-restart protection eliminates external fuses; reduces downtime.
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Open-wire detection – detects broken output wiring or disconnected loads for proactive maintenance.
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Per-channel diagnostics – each output provides feedback on status (ON/OFF, short-circuit, open-wire, over-temperature) via the backplane.
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Software-configurable fail-safe – define output behavior (hold, ON, OFF) on communication loss for safe system shutdown.
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High channel density – 8 isolated outputs in a single slot; saves rack space.
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LED status indicators – per-channel visual indication for quick troubleshooting.
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Hot-swappable – replace without rack power-down.
Applications
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Solenoid control with mixed power sources – actuating valves powered from different 24 V supplies or in floating ground systems
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Relay control in distributed panels – driving interposing relays on different power distribution buses
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Motor control centers (MCC) – start/stop commands for motors with isolated control circuits
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Alarm annunciation – horns, beacons, and visual alarms on different ground references
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Packaging machinery – output control for actuators with separate power zones
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Building automation – lighting and HVAC damper control on different phases
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Offshore & marine – driving loads with potential ground potential differences
Competitor Comparison
| Feature | DS3820EOMA | DS3820EMMA (Standard Protected Output) | Competitor Isolated Output Module |
|---|---|---|---|
| Channel Isolation | 500 V RMS | Group (backplane only) | 500 V RMS |
| Protection | Electronic (auto-restart) | Electronic (auto-restart) | Electronic (auto-restart) |
| Open-Wire Detection | Yes | Yes | Optional |
| Short-Circuit Detection | Yes | Yes | Yes |
| Fail-Safe Configuration | Software (per channel) | Software (per channel) | Software (per channel) |
| Diagnostic Feedback | Full (backplane) | Full (backplane) | Basic |
| Cost | Mid-high | Mid | High |
The DS3820EOMA is the isolated-channel variant of the protected output family. Compared to the standard DS3820EMMA, it adds per-channel optical isolation (500 V) – critical for applications with mixed power supplies, floating grounds, or potential ground potential differences. Against competitor isolated output modules, the DS3820EOMA offers superior diagnostics (open-wire detection) and per-channel fail-safe configuration at a lower cost. For systems with distributed power sources or ground loops, the DS3820EOMA ensures reliable operation without cross-talk or ground-loop interference.
Selection Tips
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Choose DS3820EOMA when your loads are powered from different 24 V supplies or when ground potential differences exist between channels.
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Ideal for applications with floating grounds, distributed panels, or mixed power zones.
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Verify the output current requirement – provides 0.5 A per channel; use external relays for higher loads.
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Consider the fail-safe behavior – configure each channel for the safe state on communication loss.
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Not suitable for AC loads – use dedicated AC output modules.
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Ensure your PLC/DCS can read and process diagnostic data from the DS3820EOMA.
Precautions
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Isolated grounds: Do not tie the isolated commons of different channels together – this defeats the isolation and can create ground loops. The DS3820EOMA maintains 500 V isolation between channels only when commons are kept separate.
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Output current: Do not exceed 0.5 A per channel continuously. The auto-restart protection trips on overload – repeated trips may reduce lifespan.
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Inductive loads: Use external flyback diodes or surge suppressors for inductive loads (solenoids, relays) to prevent back-EMF damage.
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Wiring: Use appropriately sized wiring for 0.5 A output current. Keep output wiring separate from sensitive input signals.
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Power: Requires external 24 V field supply for outputs – ensure supply capacity for total current demand (up to 4 A per module).
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Fail-safe testing: Test fail-safe behavior during commissioning – confirm outputs go to the desired state on communication loss.
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Open-wire detection: Requires a minimum load current – very high-impedance loads may not trigger open-wire detection.
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Spare: Keep one spare DS3820EOMA for critical isolated output applications – the per-channel isolation may have longer lead times.

SCHNEIDER SM-100/50/030/P1/45/S1/B0
MVI56-MCMˮ ͷ


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