DS3800NGRA1L - Relay Output Board

DS3800NGRA1L - Relay Output Board DS3800NGRA1L - Relay Output Board

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DS3800NGRA1L - Relay Output Board is available in stock which ships the same day.

DS3800NGRA1L - Relay Output Board comes in UNUSED as well as REBUILT condition.

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SPECIFICATIONS:

Part No: DS3800NGRA1L
Manufacturer: General Electric
Series: Mark IV
Product Type: Relay Output Board
Input Voltage: 400V to 11kV AC
Power Requirements: 24V DC,
Output Range: 0-10 V, 4-20 mA
Input Voltage Frequency: 50Hz
Dimensions: 150 mm x 100 mm x 30 mm
Mounting: Standard mounting
Operating Temperature: -10°C to +50°C
Country of Origin: USA
Availability: In Stock

FUNCTIONAL DESCRIPTION:

DS3800NGRA1L is a Relay Output 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 is responsible for managing relay outputs that control various operational functions of the turbine, including starting, stopping, and adjusting performance parameters. The Relay Output Board ensures that the turbine operates efficiently and safely by providing precise control and coordination. Its accurate management of relay outputs is crucial for maintaining the turbine system's stability, reliability, and optimal performance. The Relay Output Board in the GE Speedtronic Mark IV turbine control system performs several critical functions for turbine operations.

  • Starting and Stopping: The board manages the relays responsible for initiating the turbine startup sequence and safely shutting down the turbine, ensuring these processes are carried out smoothly and efficiently.
  • Performance Adjustments: It controls relays that adjust various performance parameters of the turbine, such as fuel flow, temperature, and pressure, to maintain optimal operating conditions.
  • Safety Monitoring: The Relay Output Board is integral to safety systems, activating alarms and shutdown procedures in response to detected anomalies or faults, thereby protecting the turbine from potential damage.
  • Operational Coordination: By coordinating the activation and deactivation of different components, the board ensures synchronized operations within the turbine system, contributing to its overall stability and reliability.
  • Diagnostic Functions: The board can assist in diagnostic processes by providing status indications and feedback on relay conditions, helping operators identify and troubleshoot issues quickly.
  • Load Management: It manages the distribution of load and power within the turbine system, ensuring efficient and balanced operation to prevent overloading and optimize performance.

WOC has the largest stock of OEM replacement parts for GE Speedtronic 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 a Relay Output Board in a turbine control system?

The primary function of a Relay Output Board, such as the DS3800NGRA, is to manage relay outputs that control various operational functions of the turbine, including starting, stopping, and performance adjustments. It ensures precise control and coordination to maintain optimal turbine operations.

How does the Relay Output Board contribute to turbine safety?

The Relay Output Board plays a crucial role in turbine safety by activating alarms and initiating shutdown procedures in response to detected anomalies or faults. This helps protect the turbine from potential damage and ensures safe operation.

How does the Relay Output Board impact the overall performance of the turbine?

By managing critical operational functions and ensuring precise control, the Relay Output Board significantly impacts the overall performance of the turbine. It helps maintain optimal operating conditions, enhances reliability, and supports the longevity and success of turbine operations.