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  • GE IS200TSVOH1B SERVO BOARD
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  • GE IS200TSVOH1B SERVO BOARD

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

    GE IS200TSVOH1B SERVO BOARD

    • ¥32566.00
      ¥32564.00
      ¥32566.00
      ¥32566.00
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    Weight:0.000KG
    • Quantity:
    • (Inventory: 33)
Description

GE IS200TSVOH1B SERVO BOARD


GE IS200TSVOH1B SERVO BOARD

Part Number IS200TSVOH1B Manufacturer General Electric Country of Manufacture As Per GE Manufacturing Policy Series Mark VI Function Module Availability In StockIS200TSVOH1B is a Servo Terminal Board developed by General Electric. It is a part of Mark VI turbine control system. The TSVO connects to two electro-hydraulic servo valves, which operate the steam/fuel valves. Linear variable differential transformers are used to measure valve position (LVDT). 

Two cables to the I/O processor (VSVO) use the J5 plug on the front of the VSVO and the VME rack's J3/4 connectors. The JR1 connector is used for Simplex signals, and the JR1, JS1, and JT1 connectors are used for TMR signals. JD1 and JD2 are plugs for an external trip from the protection module. IS200TSVOH1B Installation Sensors and servo valves are wired directly to the terminal board's two I/O terminal blocks. Each block is held together with two screws and has 24 terminals that accept wiring up to #12 AWG. To the left of each terminal block is a shield termination strip connected to chassis ground. External trip wiring is connected to JD1 or JD2. In TMR configuration, each servo output can have three coils. JP1-6 is used to jumper select each coil current. Operation The servo board has four channels: bi-directional servo current outputs, LVDT position feedback, LVDT excitation, and pulse rate flows inputs. The TSVO can excite and accept input from up to six LVDT valve position inputs. For each servo control loop, one, two, three, or four LVDTs are available. 

These signals come through TSVO and go directly to the VSVO board front at J5 if three inputs are used. In Simplex applications, each servo output channel can drive one or two coil servos, while in TMR applications, each servo output channel can drive two or three coil servos. The two-coil TMR applications are for 200# oil gear systems with two control modules driving one coil each and no servo coil interface on the third control module. 

With a maximum two-way cable resistance of 15 ohm, servo cable lengths of up to 300 meters (984 feet) are supported. Because servo coils come in a variety of shapes and sizes, a number of bidirectional current sources are jumper selectable. Characteristics Number of inputs TSVO 6 LVDT windings 2 pulse rate signals (total of 2 per VSVO) External trip signal Number of outputs 2 servo valves (total of 4 per VSVO board) 4 excitation sources for LVDTs 2 excitation sources for pulse rate transducers LVDT excitation output Frequency of 3.2 0.2 kHz Voltage of 7.00  0.14 V rms Fault detection Servo current out of limits or not responding Regulator feedback signal out of limits. Failed ID chip.

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.

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