Description
Key Parameters
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Channels: 4 isolated analog inputs
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Sensor Type: Pt100 (2-wire, 3-wire, or 4-wire – software-configurable per channel)
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Resolution: 16-bit ADC
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Accuracy: ±0.05°C (Pt100, 25°C); ±0.2°C over –40°C to +70°C
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Excitation Current: Software-selectable 0.1 mA, 0.5 mA, 1 mA (per channel)
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Lead Resistance Compensation: Automatic for 3-wire and 4-wire configurations
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Measurement Range: –200°C to +850°C
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Diagnostics: Open-circuit detection, short-circuit detection, over-range/under-range detection, per-channel LED status
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Isolation: 1500 V RMS (field-to-backplane); 500 V RMS between channels (per-channel isolation)
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Sampling Rate: Up to 50 Hz per channel (with 50/60 Hz noise rejection)
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Power: 24 V DC backplane power, ≤3 W
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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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Direct Pt100 connection – eliminates external transmitters; saves panel space and cost.
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Per-channel isolation – 500 V between channels; prevents ground loops and cross-channel interference.
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Automatic lead compensation – for 3-wire/4-wire RTDs, cancels lead resistance errors for accurate temperature readings.
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Software-configurable per channel – wire configuration and excitation current independently settable.
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Built-in linearization – provides direct temperature readout in °C or °F; no scaling required.
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Open/short detection – detects broken wires or sensor shorts instantly.
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Hot-swappable – replace without rack power-down.
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High accuracy – ±0.05°C for precise temperature control.
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Wide measurement range – –200°C to +850°C covers most industrial applications.
Applications
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HVAC systems – duct, return air, and chilled water temperature monitoring
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Pharmaceutical manufacturing – fermenter, reactor, and storage temperature control
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Food processing – oven, sterilization, and cold storage temperature profiling
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Power generation – bearing, winding, and cooling water temperature monitoring
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Chemical processing – reactor and pipeline temperature control
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Semiconductor manufacturing – precision chamber temperature monitoring
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Laboratory equipment – environmental chambers, incubators, and baths
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Water/wastewater – process temperature monitoring
Competitor Comparison
| Feature | DS3820P1MB | Standard AI + External Pt100 Transmitter | Competitor Pt100 Module |
|---|---|---|---|
| Channels | 4 | 1 per transmitter | 4 |
| Sensor Direct | Yes | No (requires transmitter) | Yes |
| Per-channel Isolation | Yes (500 V) | No | Group only |
| Lead Compensation | 3/4-wire auto | N/A | 3/4-wire auto |
| Configuration | Software per-channel | Hardware (jumpers) | Software per-channel |
| Accuracy | ±0.05°C | ±0.3°C (transmitter adds error) | ±0.1°C |
| Panel Space | Compact | Large | Compact |
| Cost per channel | Low | High (transmitter + AI module) | Mid |
The DS3820P1MB is the specialized Pt100 input module with per-channel isolation. Compared to using external transmitters with standard analog inputs, it saves significant panel space, reduces wiring, and lowers total installed cost (4 channels in one module vs. 4 separate transmitters + AI module). Against competitor Pt100 modules, the DS3820P1MB offers superior per-channel isolation and higher accuracy at a competitive price. For Pt100 temperature monitoring applications, the DS3820P1MB delivers the most comprehensive and cost-effective solution.
Selection Tips
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Choose DS3820P1MB when you need to measure Pt100 RTD sensors with high accuracy and per-channel isolation.
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Ideal for HVAC, pharmaceutical, food processing, power generation, and chemical applications.
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Verify the wire configuration (2-wire, 3-wire, or 4-wire) – software-configurable per channel.
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For 2-wire sensors, lead resistance adds error – use 3-wire or 4-wire for accurate measurements.
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Not suitable for Pt1000, Ni RTDs, or thermocouples – use dedicated modules.
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Ensure your PLC/DCS can handle the temperature data format from the DS3820P1MB.
Precautions
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Lead resistance: For 2-wire sensors, lead resistance directly adds error – use 3-wire or 4-wire for accurate measurements. The DS3820P1MB compensates for 3-wire/4-wire automatically.
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Excitation current: Higher currents (1 mA) produce self-heating errors in small Pt100 elements – use 0.1 mA or 0.5 mA for sensitive sensors.
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Wiring: Use shielded twisted-pair cables; ground shield at module end only. For 4-wire, use separate pairs for excitation and sense leads.
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Power sequencing: Apply backplane power before field power.
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Calibration: Perform periodic calibration using precision resistors to maintain accuracy.
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Spare: Keep one spare DS3820P1MB for critical Pt100 temperature loops – the specialized feature set may have longer lead times.

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