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  • GE IS200TRPAH1A Aeroderivative Turbine Primary Trip Terminal Board
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  • GE IS200TRPAH1A Aeroderivative Turbine Primary Trip Terminal Board

    110V-380V
    5W-130W
    1A-30A
    1 year
    30
    United States, France, Japan, Viet Nam, Australia, Russia, Germany, Italy, Arabia

    GE IS200TRPAH1A Aeroderivative Turbine Primary Trip Terminal Board

    • ¥33256.00
      ¥33652.00
      ¥33256.00
      ¥33256.00
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    Weight:5.100KG
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    • (Inventory: 31)
Description

GE IS200TRPAH1A Aeroderivative Turbine Primary Trip Terminal Board


GE IS200TRPAH1A Aeroderivative Turbine Primary Trip Terminal Board

Part Number IS200TRPAH1A Manufacturer General Electric Country of Manufacture As Per GE Manufacturing Policy Series Mark VI Function Module Availability In StockIS200TRPAH1A is an Aeroderivative Turbine Primary Trip Terminal Board manufactured and designed by General Electric as part of the Mark VIe Series used in GE distributed turbine control systems. The Mark VIe / VIeS control system uses the Aeroderivative Turbine Primary Trip TRPA1A and 2A terminal boards in conjunction with PTUR / YTUR I/O packs and TTUR terminal boards. The following are the inputs and outputs: To measure the turbine speed, twelve passive pulse rate devices our in each of the R, S, and T sections ense a toothed wheel. alternatively, six active pulse rate inputs. 

Two TMR-voted output contacts to the main breaker coil for the trip coil, either 24 V dc (H1A) or 125 V dc (H2A). Four voltage detection circuits for 24-125 V dc voltage for trip string monitoring. One 'Fail-safe' 24-125 V dc device ESTOP input is used to turn off the power to trip relays. INSTALLATION: The I/O terminal blocks TB1 are connected for TTL pulse rate pick-ups, voltage detection, E-Stop, and the breaker relay. TB2 is wired with passive pulse rate pick-up devices. Each block has 24 terminals that may accommodate wires up to #12 AWG and are secured with two screws. 

Each terminal block is followed by a shield termination strip connected to the chassis ground. Using the following table, the TRPA must be set up for the input connections at the specified speed. Jumpers JP1 and JP2 determine whether the pulse rate pickups from the R section are fanned out to the S and T PTURs or YTURs. OPERATION: The TRPA board is made to be used in two distinct ways. Three cables with DC-37 pin connectors on each end can be used to connect the TTUR terminal board to the TRPA terminal board when it is holding three PTUR or YTUR I/O packs. 

The TRPA offers four voltage sensors, ESTOP, and two contact-voted trip relay outputs in this mode of operation. The typical set of features listed for that board is offered by TTUR. The TRPA speed inputs should not be connected with this board configuration because they are inactive. Three I/O packs that are directly mounted to the TRPA board can also be utilized with it. This mode of operation enables a single terminal board primary trip solution since the speed inputs to TRPA become active routes into the I/O pack. CONFIGURATION: Jumpers JP1 and JP2 control the fanning of the four passive speed pickups in the R section to the PTURs or YTURs in the S and T sections. To fan the 4 R speed input to the other two TMR sections, place the jumper over the pin pairs.

SPECIFICATIONS:

Part Number: IS200TRPAH1A
Manufacturer: General Electric
Series: Mark VIe
Product Type: Aeroderivative Turbine Primary Trip Terminal Board
Number of inputs: 4
Number of outputs: 2
Board Size: 33.0 cm high x 17.8 cm
Operating Temperature: -30 to 65oC
Technology: Surface Mount
Repair: 3-7 Days
Weight: 2 lbs
Country of Origin: USA
Availability: In Stock
Manual: GEH-6721L

Instructions and warnings related to the operation of the product:

The following specifications must be strictly observed:

 The technical specifications and typical applications of the product system must be strictly observed.

 PERSONNEL TRAINING: Only trained personnel may install, operate, maintain or repair the product system. These personnel must be instructed on the

These personnel must be instructed and briefed on the conditions in the hazardous area.

 Unauthorised modifications: No modifications or structural changes may be made to the product system.

 Maintenance Responsibility: It must be ensured that the product system is used only under appropriate conditions and in a condition fully suitable for use.

 Working environment: The user must fulfil the specified environmental conditions:

Safety regulations

The following safety regulations must be fully observed when (maintenance) work is carried out on the product system:

1 Disconnect completely.

2 Secure to prevent reconnection.

3 Confirm that the installation has been completed.

4 Perform grounding and short-circuiting.


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