GE Fanuc|DS200QTBAG1ABA| Analog Input Module
GE DS200QTBAG1ABA Analog Input Module
Description
GE DS200QTBAG1ABA is an analog input module for GE Mark V gas turbine control systems, providing isolated 4-20mA signal conditioning for process monitoring.
GE DS200QTBAG1ABA is an analog input module for GE Mark V gas turbine control systems, providing isolated 4-20mA signal conditioning for process monitoring.
Features
- Accepts 4-20mA current inputs
- Features 1500VAC isolation
- Includes power supply monitoring
- Supports standard industrial signal processing
Technical Specifications
- Input Range: 4-20mA
- Accuracy: ±0.5% full scale
- Isolation Voltage: 1500VAC
- Input Impedance: 250Ω
- Signal Conditioning: Linearized output
- Operating Temperature: -40°C to +70°C
- Power Supply: 24V DC, 200mA typical
- Connector Type: JB (4-20mA)
- Compatibility: GE Mark V I/O cores (R1/R2/R3)
- Output Resolution: 12-bit ADC
- Response Time: <5ms
GE Fanuc|DS200QTBAG1ABA| Analog Input Module
Current product
Current
Vendor:
GE Fanuc
GE Fanuc|DS200QTBAG1ABA| Analog Input Module
Regular price
$280.00
Sale price
$280.00
Regular price
$580.00
Options
Descriptions
GE DS200QTBAG1ABA Analog Input Module
Description
GE DS200QTBAG1ABA is an analog input module for GE Mark V gas turbine control systems, providing isolated 4-20mA signal conditioning for process monitoring.
GE DS200QTBAG1ABA is an analog input module for GE Mark V gas turbine control systems, providing isolated 4-20mA signal conditioning for process monitoring.
Features
- Accepts 4-20mA current inputs
- Features 1500VAC isolation
- Includes power supply monitoring
- Supports standard industrial signal processing
Technical Specifications
- Input Range: 4-20mA
- Accuracy: ±0.5% full scale
- Isolation Voltage: 1500VAC
- Input Impedance: 250Ω
- Signal Conditioning: Linearized output
- Operating Temperature: -40°C to +70°C
- Power Supply: 24V DC, 200mA typical
- Connector Type: JB (4-20mA)
- Compatibility: GE Mark V I/O cores (R1/R2/R3)
- Output Resolution: 12-bit ADC
- Response Time: <5ms
