Brand: GE Description: Turbine Termination Board Condition: Brand New Certificate: COO TEST REPORT WARRANTY LETTER Warranty: 1 year Inventory Qty: 6 Payment Term: T/T Shipping Port: ShenZhen GE IS200TTURH1BCC is a turbine terminal board used in the Mark VIe control system. The board provides centralized signal termination and seamless integration with the turbine control system, enabling reliable control of external equipment.
Manufacture |
GE |
Model Number |
IS200TTURH1BCC |
Ordering Number |
IS200TTURH1BCC |
Catalog |
Mark VI |
Country Of Origin |
USA |
HS CODE |
8479909090 |
Dimension |
13.2cm*12.7cm*12.7cm |
Packing Dimension |
16cm*15cm*15cm |
Weight |
0.4kg |
Operation Parameters
Power Supply Voltage: 24 VDC to 125 VDC.
Operating Temperature: -30°C to +65°C.
Storage Temperature: -40°C to +85°C.
Humidity: Designed to withstand up to 95% non-condensing humidity.
Signal Types: It can process a variety of signals, including 4-20 mA, 0-10 V, and digital signals.
Product Features
Turbine Monitoring: One of the primary functions of the GE IS200TTURH1BCC is to monitor the turbine. It can gather data from different sensors mounted on the turbine. It offers real time insights into the operational condition of the turbine by regularly measuring these parameters.
Fault Detection and Alarm Generation: Advancedault detection algorithms are employed within the GE IS200TTURH1BCC. It will analyze the data that it's monitoring and compare it with threshold values. If any settings fall short of the normal range, it can promptly detect the fault and issue an alarm. Turbine warning alarms can then be transmitted to the control room, or other monitoring devices, enabling action to be taken immediately to avoid additional damage to the turbine.
Control and regulation: The GE IS200TTURH1BCC is also capable of performing control and regulation functions based upon the data that it monitors. It can issue control commands that reshape the performance of the turbine, like changing the amount of fuel fed, or altering the pitch of the blades. Maintenance should include regular micronic oil filter checks.
Installation
Mounting: The module shall be mounted in a DIN rail or panel-mounted enclosure allowing for proper ventilation and accessibility.
Wiring: Connect the input/output signals, power supply, and communication cables as per the wiring diagram provided in the user manual.
Configuration:ToolboxST is compatible with GE's GE-1234 series modules to configure various parameters, including signal type, range, control algorithms, and each channel's user-defined scaling.
Verify: After installation, carry out a functional test to confirm that the module is working correctly and able to communicate with the control system.
Application range
Power Generation: The GE IS200TTURH1BCC is used in power generation plants, be it a gas turbine, steam turbine, or hydro turbine power plant. By constantly monitoring turbine performance and taking corrective actions as necessary, it does aid in ensuring the safe and efficient operation of the turbines. It enables safe and reliable performance of electricity-generating turbines, making the electricity generation process stable and preventing unplanned breakdowns.
Oil and Gas: Industry Turbines are used for multiple applications in the oil and gas industry, including gas compression and generating power for offshore platforms. In harsh and demanding environments, the GE IS200TTURH1BCC isn't you to monitor and control these turbines. Construction companies use it in their operations for its ability to detect faults earlier, which is important in preventing expensive breakdowns and assuring the uninterrupted continuity of oil and gas production facilities.
Industrial Manufacturing: Turbines may be employed for power generation or for driving large - scale machinery in large scale industrial manufacturing processes. The GE IS200TTURH1BCC can be used to control and monitor these turbines, which helps keep the turbines functioning properly and prevents damage. This improves the efficiency of the manufacturing process and minimizes idle time due to turbine failures.
Troubleshooting
Power related Issues: If the module does not power on, make sure that the power supply lines are secured. Make sure that the power cable is inserted properly and inserting voltage is within its range. Check if the power circuit has any blown fuses. If the power supply is fine but the module does not get the power on again, it may be due to an internal power supply failure of the module, and the module must be repaired or replaced.
Communication Problems: Check the communication cables first if there are communication issues with other devices in the system, such as unable to connect, etc. or data transfer error. Check settings which include baud rate, device address and communication or protocol settings.