GE DS200TCTGG1AEE Relay Board
| Company Information | ||||||||
| [email protected] | ||||||||
| Mobile | +8615305023276 | |||||||
| +8615305023276 | ||||||||
| 15305023276 | ||||||||
| Add to | Room 1004, No. 62 Xiangxiu Li, Siming District, Xiamen City, Fujian Province, China | |||||||
Technical Specifications
| Parameter | Specification |
|---|---|
| Model | DS200TCTGG1AEE |
| Brand | GE |
| Product Type | Relay Board / GT TMR/Simplex Trip Board |
| Product Series | Mark V |
| Functional Acronym | TCTG |
| Main Function | Turbine trip signal processing and protective relay control |
| Application | Gas turbine control and protection systems |
| Relay Configuration | PTR, ETR and synchronizing relay circuits |
| Plug-in Relays | 21 |
| 50-Pin Connectors | 3 × JLY, JLX, JLZ |
| 12-Pin Connectors | 2 × JN, JM |
| Hardware Jumper | J1 Emergency Overspeed Servo Clamp Enable |
| PTR Function | Primary turbine trip control |
| ETR Function | Emergency turbine trip control |
| Synchronizing Function | Generator breaker close control |
| Software Configuration | No software configuration on the board |
| PCB Coating | Normal coating |
| Functional Revision | A |
| Secondary Revision | E |
| Artwork Revision | E |
| Typical Installation | Mark V turbine control core |
| Dimensions | 210 × 150 × 35 mm |
| Weight | 0.8 kg |
FAQ
1. What is the GE DS200TCTGG1AEE used for?
The GE DS200TCTGG1AEE is a TCTG trip board used in the GE Mark V turbine control system. Its main purpose is to process turbine trip and protective control signals and operate the associated relay circuits. The board incorporates primary trip relays, emergency trip relays, synchronizing relays, and other protective relay functions. It interfaces with other Mark V boards and terminal circuits to provide the hardware-level signal paths required for turbine shutdown, generator breaker control, and protective functions. The actual signal assignment depends on the specific Mark V installation, so troubleshooting should always be performed against the applicable control logic and cabinet wiring rather than relying only on the board’s general function.
2. What types of relays are used on the DS200TCTGG1AEE?
The board uses several groups of relays for different turbine control functions. The primary trip relays are associated with normal protective trip logic, while the emergency trip relays provide an additional hardware-level protective path. The board also contains synchronizing relays used in generator breaker control and additional protective relay circuits associated with external hardwired trip functions. The emergency trip circuits receive signals from the corresponding control channels, while the primary trip circuits are associated with the control and communication-related trip logic. Because these relay groups perform different functions, identifying the specific relay and signal path is important when diagnosing an abnormal trip, failed output, or unexpected relay state.
3. What connectors are available on the DS200TCTGG1AEE?
The DS200TCTGG1AEE uses multiple connectors to exchange signals with other Mark V boards and terminal circuits. The JLX, JLY, and JLZ connectors are associated with the emergency trip signal paths and protective bus connections. The JN and JM connectors provide additional interfaces with terminal and field circuits, including breaker-related and hardwired trip signals. Other system connections may also be involved depending on the specific Mark V configuration. During maintenance, each cable should be clearly identified before removing the board. Incorrectly reconnecting one of these connectors can route a protection or control signal to the wrong circuit, potentially causing an incorrect control state or unwanted turbine trip.
4. What is the function of the J1 jumper on the DS200TCTGG1AEE?
The J1 jumper is associated with the Emergency Overspeed Servo Clamp Enable function. When used according to the appropriate maintenance procedure, it can apply 24 VDC to the servo outputs associated with the relevant servovalves. The jumper is therefore related to a specific turbine protection and servo control function rather than being a general configuration switch. Because changing the jumper state can affect a critical control circuit, it should only be operated according to the approved system documentation and maintenance procedure. Technicians should verify the turbine operating condition and applicable safety requirements before changing the jumper position.
5. What are common symptoms of a faulty DS200TCTGG1AEE?
Possible symptoms include unexpected turbine trip signals, failure of a required trip circuit, abnormal relay operation, generator breaker control problems, missing protective signals, or intermittent alarms. However, these symptoms do not necessarily mean that the DS200TCTGG1AEE itself is defective. Problems with upstream control boards, terminal boards, power supplies, field wiring, connectors, relay contacts, or external equipment can produce similar behavior. A proper diagnosis should identify the affected function first and then follow the complete signal path through the relevant connector, relay, and external circuit. If several unrelated functions fail at the same time, common power or signal paths should also be investigated.
6. How should the DS200TCTGG1AEE be tested when a turbine trip signal is abnormal?
Testing should begin by determining whether the Mark V control logic has generated the expected trip command. Once the source signal is confirmed, technicians can trace the signal through the corresponding connector and relay circuit and then verify the downstream field or terminal circuit. Relay contact behavior, connector condition, wiring continuity, and associated control signals should be checked as appropriate. For emergency or protective trip circuits, testing must be performed under an approved maintenance condition because forcing or interrupting a protection signal can have direct consequences for turbine operation. The objective is to identify whether the abnormality originates in the control logic, board relay circuit, interconnecting wiring, or external equipment before replacing the board.
7. Does the DS200TCTGG1AEE require software configuration?
The TCTG board itself does not normally require software configuration for its basic hardware relay functions. Its operation is primarily implemented through the board’s relay circuits, hardware connections, and associated Mark V control logic. This means that a replacement board must be installed with the correct hardware configuration and connected to the appropriate system interfaces. Even though the board does not contain a conventional software configuration process, the overall turbine control system still determines when specific trip and synchronizing signals are generated. After replacement, functional verification of the relevant control and protection circuits is therefore essential.
8. What precautions should be taken when replacing the DS200TCTGG1AEE?
Before replacing the DS200TCTGG1AEE, verify the complete part number and revision information and compare the replacement with the existing Mark V configuration. The control system should be placed in the appropriate maintenance state, with relevant power sources isolated according to site safety and lockout/tagout procedures. All connectors should be labeled and documented before removal, particularly the JLX, JLY, JLZ, JN, and JM connections. The J1 jumper position should also be recorded where applicable. Since the board participates in turbine trip and protective functions, technicians should avoid uncontrolled forcing or bypassing of safety circuits. After installation, all connectors and jumper settings should be checked carefully, followed by an approved functional test of the affected trip, synchronizing, and protective circuits before the turbine control system is returned to normal operation.
GE DS200TCTGG1AEE Relay Board is in stock. Please contact us for a quick quote and competitive pricing.
| Company Information | ||||||||
| [email protected] | ||||||||
| Mobile | +8615305023276 | |||||||
| +8615305023276 | ||||||||
| 13950166376 | ||||||||
| Add to | Room 1004, No. 62 Xiangxiu Li, Siming District, Xiamen City, Fujian Province, China | |||||||
Company Introduction
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