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: ±0.03°C (Pt100, 25°C); ±0.12°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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EMC/Noise Rejection: Enhanced CMRR > 120 dB, built‑in 50/60 Hz digital filtering
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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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Sampling Rate: Up to 50 Hz per channel (with noise rejection filtering enabled)
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Terminal Type: Spring‑clamp (tool‑free, vibration‑resistant) – per suffix “B1C1B”
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Power: 24 V DC backplane power, ≤4 W
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Operating Temperature: –40°C to +70°C
Advantages
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Pre‑configured – fixed terminal configuration; reduces setup time and engineering effort.
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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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Enhanced noise immunity – CMRR > 120 dB and advanced digital filtering; ideal for installations near VFDs, inverters, and high‑power switching equipment.
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Premium accuracy – ±0.03°C; the highest precision Pt100 module in the family.
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24‑bit resolution – provides superior measurement fidelity for demanding applications.
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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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VFD‑controlled motor systems – bearing and winding temperature monitoring near variable frequency drives
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Transportation & rail – traction motor temperature monitoring with vibration‑resistant wiring and EMI immunity
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Marine & offshore – engine room temperature monitoring with spring‑clamp terminals in high‑EMI environments
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Steel mills & foundries – temperature monitoring near high‑power equipment
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Power generation – turbine bearing and generator temperature monitoring in substation environments
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Semiconductor manufacturing – precision chamber temperature control with high noise immunity
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Metrology & calibration labs – high‑precision temperature measurement and sensor verification
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Research & development – experimental thermal analysis in high‑EMI labs
Competitor Comparison
| Feature | DS3820PSCB1C1B | DS3820PSCB1A1A (Different Terminal Layout) | Standard Pt100 Module (16‑bit) |
|---|---|---|---|
| Channels | 4 | 4 | 4 |
| Resolution | 24‑bit | 24‑bit | 16‑bit |
| Accuracy | ±0.03°C | ±0.03°C | ±0.05°C |
| Noise Rejection (CMRR) | >120 dB | >120 dB | >90 dB |
| Diagnostics | Enhanced (signal‑loss) | Enhanced | Basic |
| Per‑channel Isolation | Yes (500 V) | Yes (500 V) | Group only |
| Terminal Type | Spring‑clamp | Spring‑clamp | Screw‑type |
| Configuration | Fixed (suffix) | Fixed (suffix) | Software‑configurable |
| Setup Time | Instant | Instant | Moderate |
| Cost | High | High | Low |
The DS3820PSCB1C1B is the fixed‑configuration, EMI‑optimized, premium spring‑clamp Pt100 input module with ±0.03°C accuracy. Compared to the DS3820PSCB1A1A (same core performance), it offers an alternative terminal layout (1C1B) to suit specific panel wiring preferences. Against standard Pt100 modules, it provides superior resolution (24‑bit vs. 16‑bit), enhanced diagnostics, EMI resilience, and vibration‑resistant spring‑clamp wiring – all with zero configuration effort. For demanding Pt100 applications requiring both the highest accuracy and the highest noise immunity in high‑vibration environments, the DS3820PSCB1C1B delivers the best‑in‑class, deployment‑ready solution.
Selection Tips
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Choose DS3820PSCB1C1B when you need maximum precision (±0.03°C) for Pt100 temperature measurement with vibration‑resistant spring‑clamp wiring, superior EMI noise immunity, and plug‑and‑play simplicity.
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Ideal for VFD‑heavy installations, substations, steel mills, transportation, marine, and heavy industrial applications where electrical noise is a significant concern.
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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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Confirm the terminal configuration (1C1B) matches your panel wiring requirements.
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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 24‑bit data resolution from the DS3820PSCB1C1B.
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 DS3820PSCB1C1B 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. Enhanced EMI protection requires proper grounding to achieve >120 dB CMRR.
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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 ±0.03°C accuracy – the DS3820PSCB1C1B requires regular verification to maintain specification.
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Spare: Keep one spare DS3820PSCB1C1B for critical high‑precision loops – the fixed configuration is typically stocked for quick replacement. Also stock replacement ferrules for spring‑clamp terminals.

rexroth CSB01.1N-PB-ENS-NNN-NN-S-NN-FW ά
TRICON 4000103-510


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