DS3800HPIB1E1C - High-Performance Interface Board

DS3800HPIB1E1C - High-Performance Interface Board DS3800HPIB1E1C - High-Performance Interface Board

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DS3800HPIB1E1C - High-Performance Interface Board is available in stock which ships the same day.

DS3800HPIB1E1C - High-Performance Interface Board comes in UNUSED as well as REBUILT condition.

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SPECIFICATIONS:

Part No: DS3800HPIB1E1C
Manufacturer: General Electric
Series: Mark IV
Product Type: High-Performance Interface Board
Input Voltage Range: 0-5000V
Mounting Options: DIN Rail, Rack
Isolation Voltage: 2500V RMS
Power Requirements: 24V DC, 500 mA
Input Channels: 4, 8, 16 channels
Availability: In Stock
Weight: 0.02 lbs
Dimensions: 100mm x 160mm
Operating Temperature: -30°C to 65°C
Country of Origin: USA

FUNCTIONAL DESCRIPTION:

DS3800HPIB1E1C is a High-Performance Interface Board manufactured and designed by General Electric and is part of the Mark IV Series used in GE Speedtronic gas turbine control systems. This board excels in processing both analog and digital signals, facilitating high-speed data communication between the turbine control system and its various components. Its advanced circuitry allows for the efficient handling of complex signal-processing tasks, ensuring seamless integration with other system parts. The HPIB board is built to withstand the demanding conditions of industrial environments, providing reliable performance and maintaining system efficiency over time. By managing critical functions such as speed regulation, load control, and performance monitoring, the High-Performance Interface Board optimizes turbine operations, minimizes downtime, and ensures the smooth operation of power generation and industrial systems.

FUNCTIONS:

  • Signal Processing: The HPIB processes both analog and digital signals, converting and conditioning data from various sensors and inputs to ensure accurate and reliable information is used for turbine control.
  • Data Communication: It facilitates high-speed communication between the central control unit and other components of the turbine system. This ensures timely and efficient data exchange, which is crucial for real-time control and monitoring.
  • System Integration: The board integrates seamlessly with other components of the Mark IV system, coordinating various functions and ensuring that different parts of the control system operate in harmony.
  • Performance Monitoring: The HPIB assists in monitoring the turbine’s performance by analyzing data from sensors and providing feedback on operational conditions, which helps in maintaining optimal performance and diagnosing issues.
  • Control Functions: It supports the control of critical turbine functions, such as speed regulation and load management, by processing commands and relaying them to actuators and other control mechanisms.

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 High-Performance Interface Board?

The High-Performance Interface Board is a component used in GE's Mark IV Speedtronic control system. It is designed to handle high-speed data processing and communication, integrating various system components for effective turbine control and monitoring.

What are the primary functions of the High-Performance Interface Board?

It performs several key functions, including signal processing (handling both analog and digital signals), high-speed data communication, system integration, performance monitoring, and control of turbine functions such as speed regulation and load management.

What type of signals does the DS3800HPIB handle?

The board handles both analog and digital signals. It processes inputs from various sensors and converts them into data that can be used for controlling and monitoring turbine operations.