Description
The parameters, specifications, dimensions, weight, series, features and functions of GE DS200TBQBG1ACB module are as follows:
Parameters and specifications:
Model: DS200TBQBG1ACB is an LST TMR reheat card manufactured and designed by GE for the Mark V series of steam turbine control systems.
Frequency: 13.560MHz.
Transmission power: 500w.
Reflected power (at power) : <3w.
Load current: 10ARMS.
Load voltage: 4000VRMS.
Transmission efficiency: >90%.
Load impedance: 50Ω.
Size and weight:
Size: There are two versions, one is 430mm(D)x220mm(W)x130mm(H), the other is 20.4×22.2×3.7cm. This may be due to differences in product versions or different measurement methods.
Weight: 5kg.
Series:
The DS200 series is one of a range of industrial automation and control products offered by GE.
Features:
Installation and connection: It has the characteristics of convenient installation, and supports a variety of programming languages and development environments, which is easy for users to configure and program.
Function and application: Suitable for chemical industry, paper making, power generation, oil, natural gas and other fields. At the same time, it is part of the protection core and the main trip circuit, including at least two sets of main trip relays and three sets of emergency trip relays, which are used to ensure the stable operation of the system and the safe trip in case of failure.
Power and communication: with AC power input, and support air cooling mode heat dissipation. In addition, it may also have communication interfaces and communication protocols with external devices to enable remote monitoring and data exchange.
Functions:
As a key component in industrial automation and control system, DS200TBQBG1ACB module is responsible for signal processing, conversion and control logic realization. It receives the input signal from the sensor, performs the necessary processing, and outputs the control signal to the actuator, thus achieving precise control of the industrial process.
The module plays an important role in the turbine control system, ensuring the stable operation of the system and the timely response in case of failure. By monitoring critical parameters and implementing necessary control strategies, it helps prevent equipment damage, reduce downtime, and increase productivity.
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