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: 24‑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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Excitation Power: 24 V DC (field‑supplied) – requires external 24 V DC supply for sensor excitation
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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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Sampling Rate: Up to 50 Hz per channel (with 50/60 Hz noise rejection)
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Diagnostics: Open‑circuit detection, short‑circuit detection, over‑range/under‑range, signal‑loss 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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Terminal Type: Spring‑clamp (tool‑free, vibration‑resistant) – per suffix “B”
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Power: 24 V DC backplane power, ≤3.5 W (plus external 24 V field supply for sensor excitation)
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Operating Temperature: –40°C to +70°C
Advantages
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Spring‑clamp terminals – tool‑free push‑in wiring; reduces installation time; highly resistant to vibration loosening – critical for transportation, marine, and heavy industrial applications.
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Standard 24 V DC operation – compatible with existing plant 24 V power infrastructure; no special line‑power requirements.
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Premium accuracy – ±0.05°C; high precision for demanding applications.
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24‑bit resolution – provides superior measurement fidelity.
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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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Enhanced diagnostics – includes signal‑loss detection for proactive maintenance.
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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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Wide measurement range – –200°C to +850°C covers most industrial applications.
Applications
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Transportation & rail – bearing and motor temperature monitoring with vibration‑resistant wiring
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Marine & offshore – engine room temperature monitoring with spring‑clamp terminals
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HVAC – 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
Competitor Comparison
| Feature | DS3820PSSB | DS3820PSLB1A (Line‑Powered Spring) | Standard Pt100 Module (16‑bit, 10 Hz, 24 V) |
|---|---|---|---|
| Channels | 4 | 4 | 4 |
| Resolution | 24‑bit | 24‑bit | 16‑bit |
| Accuracy | ±0.05°C | ±0.05°C | ±0.1°C |
| Max Sampling Rate | 50 Hz | 50 Hz | 10 Hz |
| Excitation Power | 24 V DC | Line‑powered (AC/DC) | 24 V DC |
| Terminal Type | Spring‑clamp | Spring‑clamp | Screw‑type |
| Vibration Resistance | High | High | Medium |
| Cable Length Capability | Standard | Excellent (line‑powered) | Limited |
| Cost | Mid | High | Low |
The DS3820PSSB is the standard 24 V spring‑clamp Pt100 input module – the most cost‑effective spring‑clamp option for general‑purpose Pt100 monitoring. Compared to the line‑powered DS3820PSLB1A, it requires an external 24 V field supply but offers a lower cost point and simpler integration into existing 24 V DC plants. Against standard screw‑terminal Pt100 modules, it adds vibration‑resistant wiring and superior diagnostics with minimal cost increase. For general‑purpose temperature monitoring in high‑vibration environments where 24 V infrastructure already exists, the DS3820PSSB delivers the most balanced and cost‑effective solution.
Selection Tips
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Choose DS3820PSSB for general‑purpose Pt100 temperature monitoring in high‑vibration environments where existing 24 V DC field power is available.
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Ideal for transportation, marine, HVAC, pharmaceutical, and food processing applications.
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Verify the wire configuration (2‑wire, 3‑wire, or 4‑wire) – software‑configurable per channel.
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Confirm spring‑clamp terminals accept your wire gauge (typically 0.2–2.5 mm² / 24–14 AWG) and consider using ferrules for stranded wire.
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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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If your sensors are located far from the control panel (>100 m), consider the line‑powered DS3820PSLB1A variant for superior long‑distance performance.
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Ensure your PLC/DCS can handle the data format from DS3820PSSB.
Precautions
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Wire preparation: Use only solid or stranded wire with proper ferrule termination – bare stranded wire may not make reliable contact in spring‑clamp terminals.
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Wire insertion: Insert wire fully into the spring‑clamp opening until it stops; pull gently to verify secure connection.
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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 DS3820PSSB 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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External 24 V supply: Ensure the field supply has sufficient capacity for the excitation current of all channels (up to 4 mA total at 1 mA per channel).
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Signal‑loss detection: Requires minimum sensor impedance – very low‑impedance sensors may not trigger detection.
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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 DS3820PSSB for critical temperature loops – the spring‑clamp variant may have longer lead times. Also stock replacement ferrules for spring‑clamp terminals.

A-B 1756-DNB
MOOG D136-001-007
A-B 2711-K5A8


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