Description
Key Parameters
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Channels: 8 digital inputs
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Input Voltage Range: 80–150 V AC/DC (nominal 120 V AC/DC)
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Input Current: 5–15 mA per channel
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Input Impedance: >10 kΩ
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Isolation: 1500 V RMS (channel-to-backplane); 500 V RMS between channels
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On-state Threshold: ≥70 V AC/DC
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Off-state Threshold: ≤30 V AC/DC
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Time-Stamping Resolution: 1 ms (per channel, absolute timestamp)
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Change-of-State (COS) Detection: Yes – captures every state transition with timestamp
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Diagnostics: Open-wire detection, short-circuit detection, per-channel LED status, blown-fuse indication
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Input Filtering: Software-selectable 0.5–50 ms debounce
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Event Buffer: 256 events per channel
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Power: 24 V DC backplane power, ≤3 W (plus external 120 V field supply)
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Operating Temperature: –40°C to +70°C
Advantages
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Wide-range AC/DC inputs – accepts 80–150 V AC or DC; eliminates separate modules for 120 V AC and 120 V DC.
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High-resolution time-stamping – 1 ms resolution per channel; essential for sequence-of-events (SOE) recording in high-voltage systems.
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Change-of-State (COS) detection – captures every state transition; reduces PLC CPU load by only reporting changes.
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Open-wire and short-circuit diagnostics – detects wiring faults (broken wires, sensor shorts) for proactive maintenance.
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Per-channel filtering – independently configurable 0.5–50 ms debounce; eliminates false triggers from contact bounce and noise.
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Event buffer – stores up to 256 events per channel; prevents data loss during communication bus congestion.
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Optical isolation – protects backplane from high-voltage transients and ground loops.
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Hot-swappable – replace without rack power-down.
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High channel density – 8 channels in a single slot; saves rack space.
Applications
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Power generation – sequence-of-events recording for turbine trips, breaker operations, and protection relay activation (120 V AC/DC)
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Substations – monitoring circuit breaker status, disconnect switches, and protective relay contacts with SOE
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Motor control centers (MCC) – critical alarm monitoring with time-stamped logs for 120 V AC control circuits
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Oil & gas pipelines – valve status monitoring with event history for leak detection
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Building automation – fire alarm and security system contact monitoring with event logging (120 V AC)
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Retrofit projects – replacing legacy 120 V AC relay-based SOE systems with PLC control
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Switchgear monitoring – breaker trip and alarm contact status with time-stamped event recording
Competitor Comparison
| Feature | DS3820DIMC | DS3820DIMA (24 V DC SOE) | Standard 120 V AC Input Module (no SOE) |
|---|---|---|---|
| Input Voltage | 80–150 V AC/DC | 24 V DC only | 120 V AC only |
| Time-Stamping | 1 ms resolution | 1 ms resolution | No |
| COS Detection | Yes | Yes | No |
| Event Buffer | 256 events/channel | 256 events/channel | None |
| Open-Wire Detection | Yes | Yes | No |
| Short-Circuit Detection | Yes | Yes | No |
| Channel Count | 8 | 8 | 8 |
The DS3820DIMC is the high-voltage SOE variant of the diagnostic input family. Compared to the 24 V DS3820DIMA, it offers the same diagnostic and time-stamping features but with wide-range 120 V AC/DC input capability – critical for power and substation applications where 120 V control circuits are standard. Against standard 120 V input modules without SOE, the DS3820DIMC adds full sequence-of-events recording and diagnostic capabilities, enabling root-cause analysis of trips and faults. For plants with 120 V control circuits requiring event logging, the DS3820DIMC delivers the most comprehensive solution.
Selection Tips
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Choose DS3820DIMC when you need sequence-of-events recording for 120 V AC/DC circuits – ideal for power generation, substations, and MCCs.
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Ideal for applications requiring root-cause analysis of trips, breaker operations, and protective relay activations.
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Verify the input voltage matches your field devices – the DS3820DIMC covers 80–150 V AC/DC.
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Consider the event buffer size – 256 events per channel is sufficient for most SOE applications.
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Not suitable for 24 V DC sensors – use the DS3820DIMA for low-voltage systems.
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Ensure your PLC/DCS can receive and process time-stamped data from the DS3820DIMC.
Precautions
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Time synchronization: Requires accurate time sync from the backplane (e.g., IRIG-B or network time protocol) – without sync, timestamps are relative only.
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Event buffer management: Upload events regularly to avoid buffer overflow – the module does not overwrite old events.
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Filtering: Longer filter settings (50 ms) improve noise immunity but delay event detection – match to your application requirements.
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Input wiring: Do not mix AC and DC field supplies on adjacent channels – while the DS3820DIMC supports both, mixed use may reduce noise immunity.
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Open-wire detection: Requires proper pull-up/pull-down resistors in the field wiring – verify your sensor wiring supports this feature.
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Power: Requires external 120 V field supply – do not exceed 150 V. The DS3820DIMC uses backplane power for logic only.
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Grounding: Maintain proper grounding to avoid ground loop errors that could affect time-stamping accuracy.
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Spare: Keep one spare DS3820DIMC for critical SOE applications – high-voltage SOE modules typically have longer lead times.

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