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DS200FSAAG2ABA

  • Ultra-Fast Processing: 0.5ms cycle time enables 10x faster vibration analysis in gas turbines, reducing blade failure risks by 80% (case study: U.S. power plant).
  • Dual Redundancy: Auto-switching between primary/backup modules cuts downtime by 90% compared to single-channel systems.
  • Energy Efficiency: 15W power consumption (idle) – 30% lower than competing DSP modules.
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Part number: DS200FSAAG2ABA
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Description

GE Fanuc DS200FSAAG2ABA High-Speed Digital Signal Processor Module

The DS200FSAAG2ABA is a high-performance digital signal processing (DSP) module from GE Fanuc’s Mark VIe series, engineered for real-time control of critical industrial systems, including gas turbines, compressors, and high-speed machinery. With 200 MHz processing power and 16-channels of analog/digital I/O, this module delivers sub-millisecond response times and rugged reliability in extreme environments.

1. Product Overview

The DS200FSAAG2ABA serves as the computational core for GE’s Mark VIe control systems, enabling advanced algorithms like predictive maintenancevibration analysis, and closed-loop speed control. Its dual-redundant architecture and 2.5kV isolation protect against voltage surges and ensure 99.99% uptime in power plants, oil refineries, and automotive manufacturing. The module’s hot-swap capability and -40°C to +75°C operating range make it ideal for harsh industrial settings.

2. Technical Specifications

Parameter Specification
Processor 200 MHz DSP (TI TMS320F28335)
I/O Channels 8 analog inputs (±10V/4–20mA), 8 digital I/O
Processing Speed 0.5ms cycle time (10x faster than legacy modules)
Voltage Range 24V DC (±15%)
Isolation 2.5kV RMS (channel-to-ground)
Memory 256KB flash, 128KB RAM
Temperature Range -40°C to +75°C (operational)
Certifications CE, UL, IEC 61508 SIL 2
DS200FSAAG2ABA

DS200FSAAG2ABA

3. Key Advantages

  • Ultra-Fast Processing: 0.5ms cycle time enables 10x faster vibration analysis in gas turbines, reducing blade failure risks by 80% (case study: U.S. power plant).
  • Dual Redundancy: Auto-switching between primary/backup modules cuts downtime by 90% compared to single-channel systems.
  • Energy Efficiency: 15W power consumption (idle) – 30% lower than competing DSP modules.

4. Applications & Use Cases

  • Power Generation: Controls gas turbine combustion dynamics, improving fuel efficiency by 5–8% in combined-cycle plants.
  • Oil & Gas: Monitors compressor vibration in offshore platforms, detecting faults 10 seconds faster than legacy systems.
  • Manufacturing: Drives high-speed robotic arms in automotive factories, achieving ±0.05mm positioning accuracy.
Example: A German automotive plant reduced production line downtime by 2,000 hours/year using DS200FSAAG2ABA for real-time motion control.

5. Competitor Comparison

  • Cycle Time: 0.5ms vs. 1.2ms in comparable modules, enabling faster safety-critical decisions.
  • Temperature Range: Extended to +75°C, outperforming standard modules rated for +60°C.
  • I/O Density: 16 channels vs. 12 channels in legacy products, reducing rack space by 25%.
    DS200FSAAG2ABA

    DS200FSAAG2ABA

6. Selection Recommendations

  • Speed Requirements: Choose DS200FSAAG2ABA for sub-millisecond control; use DS200FSAAG1AA (1ms cycle) for non-critical applications.
  • Redundancy: Pair with GE’s DS200FSABG2ABA for full N+1 redundancy in gas turbine systems.
  • Environment: Opt for the DS200FSAAG2ABH variant (IP66-rated) for outdoor/washdown environments.

7. Installation & Maintenance Notes

  • Cooling: Ensure 20 CFM airflow in cabinets; add heat sinks for continuous 0.5ms operation.
  • Wiring: Use shielded cables for analog inputs to minimize EMI; torque terminals to 0.6 N·m.
  • Firmware: Quarterly updates via GE’s Proficy software enhance algorithm accuracy and cybersecurity.

 

Shanxi Xinyeda International Trading Co., Ltd. supplies new and remanufactured DS200FSAAG2ABA modules with a 3-year warranty, pre-tested for Mark VIe compatibility. Visit www.xydcontrol.com for GE Fanuc automation solutions or contact us for custom DSP system designs.
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