GE DS3820LT4A1B1A

¥999.00

The DS3820LT4A1B1A is a 4-channel analog input module designed for low-level thermocouple and millivolt (mV) signals with high-speed sampling (up to 500 Hz) and a fixed screw-type terminal configuration (1B1A suffix). It supports direct connection to standard thermocouple types (J, K, T, E, R, S, B, N) and low-level mV signals (±10 mV, ±20 mV, ±50 mV, ±100 mV). The DS3820LT4A1B1A features 24-bit resolutionbuilt-in cold-junction compensation (CJC) per channel, software-configurable sensor typeshigh input impedance (>10 MΩ), per-channel diagnostics (open-circuit detection, over/under-range), and high-speed sampling up to 500 Hz per channel. The fixed terminal configuration makes it a plug-and-play high-speed, high-precision temperature measurement solution for dynamic thermal monitoring applications.

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Description

Key Parameters

  • Channels: 4 differential analog inputs

  • Input Types: J, K, T, E, R, S, B, N thermocouples; ±10 mV, ±20 mV, ±50 mV, ±100 mV

  • Resolution: 24-bit ADC

  • Sampling Rate: Up to 500 Hz per channel (high-speed mode)

  • Cold-Junction Compensation: Built-in per channel with automatic compensation

  • Accuracy: ±0.04% of reading + ±0.4°C (K-type, 25°C); ±0.7°C over –40°C to +70°C

  • Input Impedance: >10 MΩ

  • Input Filtering: Software-selectable 10–100 Hz noise rejection (reduces speed when enabled)

  • Diagnostics: Open-circuit detection (burnout), over/under-range, CJC sensor fault, per-channel LED status

  • Isolation: 1500 V RMS (field-to-backplane); 500 V RMS between channels

  • Terminal Type: Fixed screw-type (per suffix “1B1A”)

  • Power: 24 V DC backplane power, ≤3.5 W

  • Operating Temperature: –40°C to +70°C


Advantages

  • Pre-configured – fixed screw-type terminal configuration; reduces setup time and engineering effort.

  • High-speed sampling (500 Hz) – captures fast-changing temperature transients; 5× faster than standard TC modules (100 Hz).

  • 24-bit resolution – high precision for demanding measurement applications.

  • Per-channel CJC – independent cold-junction compensation per channel for maximum accuracy.

  • Direct thermocouple connection – eliminates external transmitters; reduces cost and complexity.

  • Software configurable per channel – each channel independently set for thermocouple type or mV range.

  • Open-circuit detection (burnout) – automatically detects broken thermocouple wires.

  • Configurable noise rejection – selectable 10–100 Hz filtering; disable for maximum speed.

  • Hot-swappable – replace without rack power-down.

  • Wide sensor support – covers all common thermocouple types.


Applications

  • Engine testing – dynamic exhaust and component temperature monitoring in automotive and aerospace

  • Turbine monitoring – high-speed temperature profiling in power generation

  • Rapid thermal processing (RTP) – semiconductor wafer temperature control

  • Induction heating – fast-response temperature monitoring for heat treatment

  • Research & development – dynamic thermal analysis and transient studies

  • Combustion monitoring – flame and exhaust temperature measurement

  • Packaging machinery – high-speed sealing bar temperature monitoring


Competitor Comparison

Feature DS3820LT4A1B1A DS3820LLTA1A1A (24-bit, 100 Hz) Standard 16-bit TC Module (250 Hz)
Resolution 24-bit 24-bit 16-bit
Sampling Rate 500 Hz 100 Hz 250 Hz
Accuracy (K-type) ±0.04% + ±0.4°C ±0.03% + ±0.3°C ±0.05% + ±0.5°C
Per-channel CJC Yes Yes Yes
Noise Rejection 10–100 Hz selectable 10–100 Hz selectable Fixed 50/60 Hz
Configuration Fixed (suffix) Fixed (suffix) Software-configurable
Setup Time Instant Instant Moderate
Cost per channel Medium Medium Low

The DS3820LT4A1B1A is the fixed-configuration, high-speed variant (with 1B1A terminal layout) of the 24-bit TC input family, delivering 500 Hz sampling – 5× faster than the standard DS3820LLTA1A1A and 2× faster than standard 16-bit TC modules. While it sacrifices a small amount of accuracy (±0.04% vs ±0.03%) for speed, it remains highly precise for dynamic applications – all with plug-and-play simplicity. Compared to standard TC modules, the DS3820LT4A1B1A offers superior resolution (24-bit) and speed (500 Hz) at a competitive price. For applications requiring fast temperature transients, high precision, and minimal engineering effort, the DS3820LT4A1B1A is the best-in-class solution.


Selection Tips

  • Choose DS3820LT4A1B1A when you need high-speed thermocouple measurements (up to 500 Hz) with 24-bit precision and plug-and-play simplicity.

  • Ideal for engine testing, turbine monitoring, rapid thermal processing, and dynamic thermal analysis.

  • Verify the thermocouple type is supported – covers all common types.

  • Confirm the screw-type terminal configuration (1B1A) matches your panel wiring requirements.

  • For maximum speed (500 Hz), disable input filtering – enabling filtering reduces sampling rate.

  • Not suitable for RTD sensors – use the DS3820AIRA family for RTDs.

  • Ensure your PLC/DCS can handle the high data throughput from the DS3820LT4A1B1A at 500 Hz sampling.


Precautions

  • Sampling rate vs. filtering: Maximum 500 Hz achieved with filtering disabled. Enable filtering only if noise rejection is required – it will reduce the sampling rate.

  • CJC placement: Position the DS3820LT4A1B1A away from drafts and heat sources – CJC errors affect all channels.

  • Extension wires: Use the correct thermocouple extension wire – standard copper wire introduces errors.

  • Wiring: Use shielded twisted-pair cables; ground shield at module end only. High-speed sampling is more susceptible to noise – ensure proper shielding and separation from power cables.

  • Grounding: For grounded thermocouples, maintain single-point grounding to avoid ground loops.

  • Polarity: Double-check thermocouple polarity – reversed connections produce negative readings.

  • Data throughput: 500 Hz × 4 channels × 24-bit data requires significant communication bandwidth – ensure your PLC/DCS can process the data rate.

  • Power sequencing: Apply backplane power before field power.

  • Calibration: Perform periodic calibration using precision mV sources – high-speed operation may accelerate drift.

  • Spare: Keep one spare DS3820LT4A1B1A for critical high-speed loops – the fixed configuration is typically stocked for quick replacement, but high-speed 24-bit modules may have longer lead times.

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