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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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 200 Hz per channel (high‑speed mode; filtering disabled)
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EMC/Noise Rejection: Enhanced CMRR > 120 dB, built‑in 50/60 Hz digital filtering (reduces speed when enabled)
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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: Screw‑type – per suffix “B”
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Power: 24 V DC backplane power, ≤4.5 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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Fast sampling (200 Hz) – captures rapid temperature changes; ideal for dynamic processes, engine testing, and thermal transient analysis.
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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 – ±0.05°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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VFD‑controlled motor systems – bearing and winding temperature monitoring near variable frequency drives with fast response
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Engine testing – rapid exhaust and component temperature monitoring in automotive and aerospace
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Turbine monitoring – high‑speed temperature profiling in power generation near high‑EMI equipment
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Induction heating – fast‑response temperature monitoring for heat treatment
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Steel mills & foundries – dynamic temperature monitoring near high‑power equipment
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Rapid thermal processing (RTP) – semiconductor wafer temperature control with fast transients
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Research & development – dynamic thermal analysis in high‑EMI labs
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Packaging machinery – high‑speed sealing bar temperature monitoring
Competitor Comparison
| Feature | DS3820PSFC1B | DS3820PSFC (Configurable Fast/EMI‑hardened) | Standard Pt100 Module (16‑bit, 10 Hz) |
|---|---|---|---|
| Channels | 4 | 4 | 4 |
| Resolution | 24‑bit | 24‑bit | 16‑bit |
| Accuracy | ±0.05°C | ±0.05°C | ±0.1°C |
| Max Sampling Rate | 200 Hz | 200 Hz | 10 Hz |
| 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 | Screw‑type | Screw‑type | Screw‑type |
| Configuration | Fixed (suffix) | Software‑configurable | Software‑configurable |
| Setup Time | Instant | Moderate | Moderate |
| Cost | High | High | Low |
The DS3820PSFC1B is the fixed‑configuration, fast‑sampling, EMI‑hardened Pt100 input module with 200 Hz per channel and CMRR > 120 dB. Compared to the configurable DS3820PSFC, it offers plug‑and‑play simplicity while maintaining the same fast sampling, high precision, and superior noise immunity. Against standard Pt100 modules (10 Hz, 16‑bit), it offers superior speed (20× faster), resolution (24‑bit), diagnostics, and EMI resilience – all with zero configuration effort. For applications requiring fast temperature transient capture, high precision, high noise immunity, and minimal engineering effort, the DS3820PSFC1B delivers the best‑in‑class, deployment‑ready solution.
Selection Tips
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Choose DS3820PSFC1B when you need fast temperature measurement (up to 200 Hz) with high precision (±0.05°C), superior EMI noise immunity, and plug‑and‑play simplicity.
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Ideal for VFD‑heavy installations, engine testing, turbine monitoring, induction heating, RTP, and steel mill applications.
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For maximum speed (200 Hz), disable input filtering – enabling 50/60 Hz rejection reduces sampling rate.
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Verify the wire configuration (2‑wire, 3‑wire, or 4‑wire) – software‑configurable per channel.
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Confirm the terminal configuration (1B) 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 the data throughput from DS3820PSFC1B at 200 Hz.
Precautions
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Sampling rate vs. filtering: Maximum 200 Hz achieved with filtering disabled. Enable filtering only if noise rejection is required – it will reduce the sampling rate.
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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 DS3820PSFC1B 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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Data throughput: 200 Hz × 4 channels × 24‑bit data requires significant communication bandwidth – ensure your PLC/DCS can process the data rate.
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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 – high‑speed operation may accelerate drift.
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Spare: Keep one spare DS3820PSFC1B for critical high‑speed loops – the fixed configuration is typically stocked for quick replacement.

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