Brand: GE Description: Discrete Terminal Board Condition: Brand New Certificate: COO TEST REPORT WARRANTY LETTER Warranty: 1 year Inventory Qty: 5 Payment Term: T/T Shipping Port: ShenZhen GE IS200TDBTH2ACD is a discrete input/output (I/O) terminal board used in the GE Speedtronic Mark VI turbine control system. It acts as an interface between the control system and field devices, processing discrete digital signals to monitor and control turbine operation.
Manufacture |
GE |
Model Number |
IS200TDBTH2ACD |
Ordering Number |
IS200TDBTH2ACD |
Catalog |
Mark VI |
Country Of Origin |
USA |
HS CODE |
8479909090 |
Dimension |
40cm*20cm*8cm |
Packing Dimension |
42cm*22cm*10cm |
Weight |
1.2kg |
Nominal power supply: 24 VDC
Inputs: Processes discrete digital inputs (binary signals such as on/off signals) from field devices such as switches, sensors, or relays.
Outputs: GE IS200TDBTH2ACD processes discrete digital outputs, which are used to control field devices such as actuators, relays, and other binary devices based on signals from the control system.
Operating temperature: -40°C to +70°C
Reverse polarity protection: Ensures safe operation of the module even if wiring is incorrect (reverse polarity).
Short circuit protection: Provides short circuit protection to prevent damage to the module and connected field devices.
Signal conditioning: Processes and conditions signals from field devices to ensure they are in the correct form that the control system can accurately interpret.
Product Features
Data aggregation and distribution: serves as a hub for aggregating data from numerous sensors and sources. GE IS200TDBTH2ACD sorts and separates relevant data and delivers to necessary elements. For instance, it may share temperature, pressure, and vibration information surrounding a machine with the control system for additional consideration.
Control Signal Relay: Gathers control signals coming from a higher-level controller and relays them faithfully to actuators. This enables accurate control of motors, valves and similar mechanical components to maintain industrial processes.
Self-diagnosis capabilities: Ongoing checks of its own health. GE IS200TDBTH2ACD tests for internal failures, such as circuit shorts or bad components. This process can also throw up an error code in case a problem arises and can even notify the maintenance team.
Signal isolation: Offers electrical isolation between the control system and the field devices, safeguarding sensitive components from voltage spikes and other forms of electrical interference.
Installation
Installation: could be accomplished by mounting the GE IS200TDBTH2ACD module in a 19-inch rack or in a control panel, using screws and nuts to keep the GE IS200TDBTH2ACD in place, and also connect the system terminal blocks, so the terminal blocks are not to put mechanical stress on the internal components.
Power: Use the supplied 24 VDC power input terminals to the module.
Wiring Field Devices:Connect wires from the field devices to their input and output terminals according to the wiring schematic, observing polarity where applicable and ensuring good connection.
Configuration: The module settings specific to the connected field devices and the control system.
Testing: After installation and before installing the control system, check that communication with the module is functioning correctly and the attached field devices are right working.
Application range
Turbine Control: An essential aspect of turbine control that ensures accurate monitoring and control of turbine operations.
Oil and Gas: Connects control systems and field devices in oil and gas operations to ensure that everything runs smoothly and safely.
Chemical Processing: GE IS200TDBTH2ACD In chemical plants to monitor and control key processes like temperature, pressure, and flow.
Troubleshooting
No Communication: Check the connections to confirm that all wiring is properly connected and secure.
Power: Verify that the 24 VDC power supply is functional and supplying the correct voltage.
The signal from the device is not being transferred: Check signal integrity, ensure you're using diagnostic tools to verify the transmission of the signals.
Check for interference:Ensure there is no interference by checking for proper shielding and distance from sources of electrical noise.
Overheating: Overheating Make sure that enough ventilation is provided, and that the environment of the installation allows for enough airflow and cooling.
Monitor operating temperature: Use temperature sensors to ensure the module is operating within the specified temperature range.