GE Fanuc|DS200DMCBG1AJE|Discrete Contact Input Module
GE Fanuc DS200DMCBG1AJE Discrete Contact Input Module
Description
The GE Fanuc DS200DMCBG1AJE is a Discrete Contact Input (DCI) module specifically engineered for the Mark V gas turbine control system to monitor and process digital status signals from field devices.
The GE Fanuc DS200DMCBG1AJE is a Discrete Contact Input (DCI) module specifically engineered for the Mark V gas turbine control system to monitor and process digital status signals from field devices.
Features
- Accepts dry contact or voltage-free input signals from switches and relays
- Provides electrical isolation between field wiring and internal logic circuits
- Supports high-density input configurations for comprehensive system monitoring
- Integrates seamlessly into Triple Modular Redundancy (TMR) architectures
- Features robust noise immunity for operation in electrically noisy environments
Technical Specifications
- System Compatibility: Designed exclusively for GE Mark V Heavy Duty Gas Turbine Control Systems
- Input Channels: Typically provides 24 to 32 discrete input points per module
- Input Voltage Range: Operates with nominal 24V DC to 48V DC field signals
- Logic Threshold: Recognizes ON state at voltages above 15V DC and OFF state below 5V DC
- Input Current Draw: Approximately 5 mA to 10 mA per active channel at nominal voltage
- Isolation Voltage: Withstands up to 2500V AC rms isolation between channels and logic bus
- Response Time: Signal filtering and processing latency typically under 2 milliseconds
- Operating Temperature: Rated for continuous operation from -30°C to +65°C
- Power Consumption: Draws approximately 1.5 Watts from the 5V DC backplane supply
- Physical Form Factor: Standard 6U Eurocard dimensions fitting specific Mark V racks
- Weight: Net weight approximately 0.8 kg including connector hardware
- Humidity Rating: Functions reliably in up to 95% relative humidity non-condensing
GE Fanuc|DS200DMCBG1AJE|Discrete Contact Input Module
Current product
Current
Vendor:
GE Fanuc
GE Fanuc|DS200DMCBG1AJE|Discrete Contact Input Module
Regular price
$200.00
Sale price
$200.00
Regular price
$390.00
Options
Descriptions
GE Fanuc DS200DMCBG1AJE Discrete Contact Input Module
Description
The GE Fanuc DS200DMCBG1AJE is a Discrete Contact Input (DCI) module specifically engineered for the Mark V gas turbine control system to monitor and process digital status signals from field devices.
The GE Fanuc DS200DMCBG1AJE is a Discrete Contact Input (DCI) module specifically engineered for the Mark V gas turbine control system to monitor and process digital status signals from field devices.
Features
- Accepts dry contact or voltage-free input signals from switches and relays
- Provides electrical isolation between field wiring and internal logic circuits
- Supports high-density input configurations for comprehensive system monitoring
- Integrates seamlessly into Triple Modular Redundancy (TMR) architectures
- Features robust noise immunity for operation in electrically noisy environments
Technical Specifications
- System Compatibility: Designed exclusively for GE Mark V Heavy Duty Gas Turbine Control Systems
- Input Channels: Typically provides 24 to 32 discrete input points per module
- Input Voltage Range: Operates with nominal 24V DC to 48V DC field signals
- Logic Threshold: Recognizes ON state at voltages above 15V DC and OFF state below 5V DC
- Input Current Draw: Approximately 5 mA to 10 mA per active channel at nominal voltage
- Isolation Voltage: Withstands up to 2500V AC rms isolation between channels and logic bus
- Response Time: Signal filtering and processing latency typically under 2 milliseconds
- Operating Temperature: Rated for continuous operation from -30°C to +65°C
- Power Consumption: Draws approximately 1.5 Watts from the 5V DC backplane supply
- Physical Form Factor: Standard 6U Eurocard dimensions fitting specific Mark V racks
- Weight: Net weight approximately 0.8 kg including connector hardware
- Humidity Rating: Functions reliably in up to 95% relative humidity non-condensing
