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  • GE DS200TCEAG1A EMERGENCY OVER SPEED BOARD
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  • GE DS200TCEAG1A EMERGENCY OVER SPEED BOARD

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

    GE DS200TCEAG1A EMERGENCY OVER SPEED BOARD

    • ¥22000.00
      ¥24520.00
      ¥22000.00
      ¥22000.00
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    Weight:2.500KG
    • Quantity:
    • (Inventory: 33)
Description

GE DS200TCEAG1A EMERGENCY OVER SPEED BOARD


GE DS200TCEAG1A EMERGENCY OVER SPEED BOARD

Part Number DS200TCEAG1A Manufacturer General Electric Country of Manufacture As Per GE Manufacturing Policy Series Mark V Function Module Availability In StockDS200TCEAG1A is an Emergency Overspeed Board and is part of the GE Speedtronic Mark V gas turbine control system. It features one microprocessor and many programmable read-only memory (PROM) modules that make up the GE Emergency Overspeed Board. 3 fuses, 30 jumpers, and 2 bayonet connections are also included. The firmware and operating instructions for the CPU are stored in PROM modules. 

You'll notice that the replacement board for the GE Emergency Overspeed Board isn't loaded with PROM modules. The PROM sockets are populated on the new board, but the PROM modules are not installed. You will find that moving the PROM modules is a simple task due to their ease of removal and installation. One advantage of using the same modules is that the replacement board will work with the same set of instructions and software when the drive is restarted. 

However, there are some rules and instructions to follow when working with the modules. The information held on the PROM modules can be damaged by static, rendering it useless for the CPU. You must take action to remove the static from the modules in order to avoid this problem. When working on the board or with the PROM modules, the quickest method to do this is to get a wrist strap and wear it. Both ends of the wrist strap must be correctly linked for the wrist strap to work. Wrap one end around your wrist or forearm. The wrist strap's opposite end has a clip that you can attach to a metal surface.

The IO module has the following main functions

Input Function

The IO module can receive input signals sent by external devices and convert them into digital or analogue signals for use by the computer system or control system. These input signals can come from a variety of sensors, such as temperature sensors, pressure sensors, photosensitive sensors and so on. By receiving and parsing these input signals, the system can monitor and control the external environment in real time.

Output Functions

The IO module is capable of converting the output signals generated by a computer system or control system into the form required by an external device. These output signals are typically used to control actuators such as motors, valves, lights, etc. By sending appropriate output signals to external devices, the system enables control and operation of the external environment.

Data Acquisition and Processing

The IO module is capable of acquiring data from external devices and transferring it to a computer system or control system for further processing. This enables the system to acquire environmental data, status information and user inputs in real time and make appropriate decisions or perform specific tasks based on these data.

Communication Interfaces

IO modules are usually equipped with different types of communication interfaces, such as serial interfaces (RS232, RS485), Ethernet interfaces, CAN bus interfaces, and so on. These interfaces enable IO modules to exchange data and communicate efficiently with computer systems or other external devices.

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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