IC3600SVSB1 - High-Speed Signal Validation Sensor Card

IC3600SVSB1 - High-Speed Signal Validation Sensor Card IC3600SVSB1 - High-Speed Signal Validation Sensor Card

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IC3600SVSB1 - High-Speed Signal Validation Sensor Card is available in stock which ships the same day.

IC3600SVSB1 - High-Speed Signal Validation Sensor Card comes in UNUSED as well as REBUILT condition.

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SPECIFICATIONS:

Part No: IC3600SVSB1
Manufacturer: General Electric
Product Type: High-Speed Signal Validation Sensor Card
Series: Mark II
Operating temperature: -40 to 70 ºC
Input DC voltage: +24V
Power Consumption: 10-30W
Input Signals: 0-24V
Power Supply Voltage: 24 V dc
Board Size: 2.8 cm high x 8.6 cm
Weight: 0.45 kg
Availability: In Stock
Country of Origin: USA

FUNCTIONAL DESCRIPTION:

IC3600SVSB1 is a High-Speed Signal Validation Sensor Card manufactured and designed by General Electric as part of the Mark II Series used in GE Speedtronic Control Systems. The sensor card functions as a Signal Validation and Status Board, essential for ensuring the integrity of sensor signals and facilitating their accurate processing within turbine control systems. By continuously monitoring inputs from various sensors, this board enhances the safety and efficiency of turbine operations, contributing significantly to overall performance and reliability. It features multiple input and output connections, enabling seamless integration with a wide range of sensors and system components.

FUNCTIONS:

  • Signal Validation: The primary function of the sensor card is to ensure the integrity and reliability of sensor signals. It continuously monitors the data received from various sensors, verifying that the signals are accurate and within acceptable parameters. This validation process helps prevent erroneous data from influencing the turbine control system, thereby minimizing the risk of malfunctions or unsafe operations.
  • Status Indication: The board provides real-time status updates for connected sensors, allowing operators to monitor the operational health of the turbine system continuously. Through visual indicators or communication with the control system, it alerts operators to any abnormal conditions or faults in the sensors, facilitating prompt attention to potential issues.
  • Data Processing: It is equipped to process incoming sensor signals efficiently. It can perform initial filtering and processing of data, ensuring that only valid and relevant information is forwarded to the main control system. This preprocessing helps optimize the performance of the turbine control system by reducing the computational load on the main processor.
  • Integration: This flexibility enables the board to adapt to different turbine configurations and sensor types, enhancing the overall functionality of the turbine control system. It can connect to temperature, pressure, vibration, and other sensors critical for monitoring turbine performance.

WOC has the largest stock of OEM replacement parts for GE Speedtronic Gas Turbine Control Systems. We can also repair your faulty boards and supply unused and rebuilt boards backed up with a warranty. Our team of experts is available round the clock to support your OEM needs. Our team of experts at WOC is happy to assist you with any of your automation requirements. For pricing and availability on parts and repairs, kindly contact our team by phone or email.

FREQUENTLY ASKED QUESTIONS:

What is the primary function of the Signal Validation and Status Board?

The board serves as a Signal Validation and Status Board, ensuring the integrity and accuracy of sensor signals in turbine control systems. It continuously monitors sensor inputs and verifies that they are within acceptable parameters.

How does the board contribute to turbine safety?

By validating sensor signals and providing real-time status updates, the board helps identify abnormal conditions or faults promptly, allowing operators to take corrective actions before issues escalate, thus enhancing turbine safety.

What types of sensors can the board interface with?

The board can interface with various sensors, including temperature, pressure, vibration, and other critical sensors used in turbine monitoring and control.