Brand: GE Description: RELAY TERM BOARD Condition: Brand New Certificate: COO TEST REPORT WARRANTY LETTER Warranty: 1 year Inventory Qty: 18 Payment Term: T/T Shipping Port: ShenZhen GE IS200TRLYH1BED is a relay output terminal board designed for the Mark VIe turbine control system, providing up to 12 plug-in magnetic relay outputs for controlling field devices such as valves, alarms and actuators.
Manufacture |
GE |
Model Number |
IS200TRLYH1BED |
Ordering Number |
IS200TRLYH1BED |
Catalog |
Mark VI |
Country Of Origin |
USA |
HS CODE |
8479909090 |
Dimension |
33cm*17.8cm*5.5cm |
Packing Dimension |
35cm*20cm*8cm |
Weight |
1.42kg |
Operating Parameters
Power Supply Voltage: 24 VDC input voltage.
Operating Temperature: -40°C to 85°C.
Relay Configuration: It accommodates up to 12 plug-in magnetic relays.
On-Board Suppression: The board features on-board suppression capabilities to protect against voltage spikes and transients, enhancing the durability and reliability of the relays.
Product Features
Relay based Signal Switching: The GE IS200TRLYH1BED is mostly used for relay - based signal switching. It is capable of receiving low - level control signals and switching high - power circuits via its relays. It is a basic control device that can be used for on - off control of motors, heaters or electrical devices in an industrial control system.
Circuit Protection: The GE IS200TRLYH1BED provides circuit protection functions as well. It uses metal oxide varistors for each transistor. These MOVs function like surge protectors. For any high-voltage transients or peaks in the electrical circuit, the MOVs can quickly deflect the excess current to the ground, thereby protecting sensitive electronic components on the board and those connected devices.
Termination and Connection: GE IS200TRLYH1BED is a termination board that provides for the connection of different electrical wires and components. GE IS200TRLYH1BED has 48 barrier terminals making it suitable for interfacing with many sensors, actuators and other control devices. The terminal blocks are well labeled to simplify the job of wiring to the correct locations in the system for the technician. Only this termination function, can simplify the overall wiring layout, minimize the wiring error probability, and enhance the maintainability of the system.
Signal Conditioning: Provides signal-conditioning so that relay outputs are as per precise specifications required by the connected devices.
Protection : Provides the on-board suppression to protect the relays from voltage spikes and transients, which improves system reliability.
Installation
Mounting: Secure the board inside a proper housing that will satisfy the environmental constraints of the application, providing proper ventilation and dust protection.
Wiring: Connect the relay outputs to the appropriate field devices, adhering to the specified wiring diagrams and torque specifications to ensure secure and reliable connections.
Configuration: You can set the jumpers for the related relay working and the power supply options.
Testing and Validation: Once the relay modules are installed, they will be the wires behind the PLC, control or expand complex control systems quickly and reliably.
Application range
Gas and Steam Turbine Control Systems: GE IS200TRLYH1BED Ensures the control of numerous field devices within rotating and turbine applications
Power Generation Facilities: With its potential applications in Power Generation Facilities, power plants' control systems are its core structure.
Industrial automation: Used in all kinds of automation applications where users need relay outputs to drive field devices.
Troubleshooting
This could be done by doing a visual inspection: Look for any obvious signs of damage,burnt components, loose connections, etc.
Wire Check: Make sure all wiring is connected properly and securely.
Relay Functionality: Using appropriate testers, ensure each relay operates as intended.
Jumper Setting Check: Confirm that the jumper settings match the operational specifications.
Environmental Monitoring: Keep the operating environment within the required temperature, humidity, and other factors as this can develop stress on the components.