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GE IS215VAMBH1A Acoustic Monitoring Board for Mark VI Turbine

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xName | GE IS215VAMBH1A Acoustic Monitoring Board | Product ID | IS215VAMBH1A |
---|---|---|---|
Series | Mark VI | Function | Discrete Output Pack |
Product Net Depth/Length | 330mm | Product Net Height | 200mm |
Product Net Width | 100mm | Product Net Weight | 2kg |
Warranty | 1year | ||
Highlight | GE Mark VI turbine acoustic board,turbine control monitoring board,GE IS215VAMBH1A acoustic sensor |
Attribute | Value |
---|---|
Name | GE IS215VAMBH1A Acoustic Monitoring Board |
Product ID | IS215VAMBH1A |
Series | Mark VI |
Function | Discrete Output pack |
Dimensions (L x W x H) | 330mm x 100mm x 200mm |
Weight | 2kg |
Warranty | 1 year |
The GE IS215VAMBH1A is an Acoustic Monitoring Card Assembly, a key component in GE's Mark VI turbine control series, designed to enable precise acoustic monitoring for Frame 6, 7, and 9 gas turbines.
This advanced monitoring solution integrates two TAMB boards, delivering 18 channels of signal conditioning and acoustic monitoring. It works with one or two TAMB terminal boards to capture and process acoustic signals critical for turbine health assessment.
- 18-Channel Monitoring: Provides comprehensive signal conditioning and acoustic monitoring for turbine health diagnostics.
- Advanced Signal Processing: High-impedance DC bias detects open connections with configurable bias options and buffered BNC outputs for clean signal transmission.
- Auto-Calibration: A/D compensation eliminates gain/offset errors through auto-calibration against a precision voltage reference.
- Flexible Gain Options: Four gain settings amplify low-level signals with firmware-adjusted net gain consistency.
- Diagnostic Indicators: Three status LEDs (RUN, FAIL, and diagnostic alarms) with configurable system limits for proactive fault detection.
- System Integration: Compatible with TAMB terminal boards and Mark VI Toolbox for configuration, supporting offline/online diagnostics with 40 ms frame rate updates.
- Robust Construction: Features Xilinx FPGAs, inductor coils, and nine 3-pin jumpers in a durable industrial design with backplane connectors for reliable operation in turbine environments.

