GE IC200ALG620

¥999.00

GE IC200ALG620 is a 4‑channel RTD/resistance analog input module in GE Fanuc’s VersaMax series, dedicated to high‑precision temperature/resistance measurement in industrial process control and machinery monitoring systems. GE IC200ALG620 supports 3‑wire/4‑wire RTDs (platinum, copper, nickel, nickel‑iron) and direct resistance inputs (0‑500/0‑3000Ω), with 16‑bit resolution for stable, accurate data capture. GE IC200ALG620 integrates per‑channel diagnostics for open RTD, short circuits, over/under‑range, and wiring faults, with LED indicators for instant status monitoring. GE IC200ALG620 features automatic A/D calibration at power‑up and periodic re‑calibration, compensating for ambient temperature drift to maintain ±0.15% measurement accuracy. GE IC200ALG620 needs no external power—its backplane‑supplied excitation current powers RTDs, simplifying wiring and reducing system complexity. GE IC200ALG620’s 1500V AC field‑to‑frame isolation and 120dB common mode rejection ensure reliable operation in noisy industrial environments.

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Description

GE IC200ALG620 is a 4‑channel RTD/resistance analog input module in GE Fanuc’s VersaMax series, dedicated to high‑precision temperature/resistance measurement in industrial process control and machinery monitoring systems. GE IC200ALG620 supports 3‑wire/4‑wire RTDs (platinum, copper, nickel, nickel‑iron) and direct resistance inputs (0‑500/0‑3000Ω), with 16‑bit resolution for stable, accurate data capture. GE IC200ALG620 integrates per‑channel diagnostics for open RTD, short circuits, over/under‑range, and wiring faults, with LED indicators for instant status monitoring. GE IC200ALG620 features automatic A/D calibration at power‑up and periodic re‑calibration, compensating for ambient temperature drift to maintain ±0.15% measurement accuracy. GE IC200ALG620 needs no external power—its backplane‑supplied excitation current powers RTDs, simplifying wiring and reducing system complexity. GE IC200ALG620’s 1500V AC field‑to‑frame isolation and 120dB common mode rejection ensure reliable operation in noisy industrial environments.

Technical Parameters GE IC200ALG620

Parameter Value
Product Model GE IC200ALG620 (VersaMax 4‑Channel RTD/Resistance Analog Input Module)
Core Function RTD/resistance measurement, per‑channel diagnostics, auto‑calibration, backplane‑powered excitation
Input Channels 4 independent 3‑wire/4‑wire RTD/resistance channels
Compatible Sensors Platinum (25/100/1000Ω), copper (10/50/100Ω), nickel (100/120Ω), nickel‑iron (604Ω); 0‑500/0‑3000Ω direct resistance
Resolution 16 bits (15 bits + sign)
Accuracy (25°C) ±0.15% (RTD temperature/resistance measurement)
Update Rate 210ms/channel (60Hz); 230ms/channel (50Hz)
Isolation Field‑to‑frame: 1500V AC (1 min); Channel‑to‑channel: 50V DC
Backplane Power 5V DC (125mA max), 3.3V DC (125mA max)
Operating Temperature 0°C to 60°C
Lead Resistance Tolerance 5Ω per lead max
Indicators FLD PWR (field power), OK (green = normal, amber = fault)
Certifications UL, CE, industrial safety compliant

Advantages and Features GE IC200ALG620

  1. 4‑Channel Versatility: Supports multiple RTD types and direct resistance inputs for flexible measurement in diverse industrial applications.
  2. High Precision & Stability: 16‑bit resolution, ±0.15% accuracy, and auto‑calibration minimize drift and ensure consistent data quality.
  3. Built‑in Diagnostics: Per‑channel fault detection (open RTD, short, over/under‑range) reduces troubleshooting time and prevents unplanned downtime.
  4. Backplane‑Powered Simplicity: No external power needed—excitation current from the backplane streamlines installation and lowers costs.
  5. Robust Noise Immunity: 1500V AC isolation and 120dB common mode rejection resist electrical interference in harsh environments.
  6. Easy Integration: Seamless compatibility with VersaMax PLCs and backplanes for plug‑and‑play deployment and minimal configuration.

Application Cases

  1. Refinery Process Heating: A petroleum refinery used GE IC200ALG620 to monitor 4 platinum RTDs in a furnace tube‑skin temperature system. Its auto‑calibration maintained ±0.2°C accuracy across 200–500°C, cutting temperature‑related product defects by 35%.
  2. Steel Mill Rolling Mill: A steel plant deployed GE IC200ALG620 to measure bearing temperature via 3‑wire RTDs. The module’s open‑RTD diagnostics detected a faulty sensor lead 2 hours before failure, avoiding a 12‑hour production halt.
  3. Food & Beverage Pasteurization: A dairy plant integrated GE IC200ALG620 to monitor 4 nickel RTDs in a pasteurizer. Its 16‑bit resolution ensured consistent 72°C holding temperatures, meeting regulatory standards and reducing energy waste by 20%.

Comparison with Competitors

Parameter GE IC200ALG620 Siemens 6ES7 134-6GF00-0AA0 Rockwell 1794-IR8
Type VersaMax 4‑Channel RTD Module S7‑1200 RTD Input Module ControlLogix 8‑Channel RTD Module
Channels 4 4 8
Auto‑Calibration Built‑in (power‑up + periodic) Optional (extra software) Optional (module‑level)
Diagnostics Open RTD, short, over/under‑range, wiring fault Basic open/short Basic open/short
Isolation 1500V AC 500V AC 500V AC
External Power No (backplane‑powered excitation) Required Required
Key Edge Backplane‑powered, auto‑calibration, 1500V isolation Low‑cost S7‑1200 ecosystem High‑channel density

Selection Recommendations

  1. Choose GE IC200ALG620 for VersaMax PLC systems needing RTD/resistance measurement with auto‑calibration and minimal wiring.
  2. Prefer GE IC200ALG620 for critical temperature monitoring (refining, steel, food processing) requiring ±0.15% accuracy and per‑channel diagnostics.
  3. Select GE IC200ALG620 when 1500V AC isolation and strong noise immunity are needed in high‑interference industrial environments.
  4. Use GE IC200ALG620 for applications where no external power is available for RTD excitation to simplify system design.

Precautions

  1. Limit lead resistance to ≤5Ω per lead to avoid degrading GE IC200ALG620’s measurement accuracy.
  2. Use only 3‑wire/4‑wire RTDs as specified—2‑wire RTDs will cause significant errors in GE IC200ALG620 readings.
  3. Follow ESD protocols when handling GE IC200ALG620 to protect its sensitive analog circuits.
  4. Ensure backplane power (5V/3.3V) is stable to maintain GE IC200ALG620’s auto‑calibration and diagnostic functions.
  5. Check LED status and diagnostic data regularly to proactively address faults and extend GE IC200ALG620’s service life.

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