8200-314 - Digital Driver Board

8200-314 - Digital Driver Board 8200-314 - Digital Driver Board

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8200-314 - Digital Driver Board is available in stock which ships the same day.

8200-314 - Digital Driver Board comes in UNUSED as well as REBUILT condition.

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SPECIFICATIONS:

Part Number: 8200-314
Manufacturer: Woodward
External Dimensions: 8.75W x 14.625D x 5.375H
Input Voltage Rating: 18-32VDC, 27.4A
Power Supply Input: (18 to 32) V (dc)
Signal to Actuator: 0 to 200 mA
Network Isolation: 0–60 Hz: 1000 Vrms
Power Consumption: 14 W
Output Voltage Rating: 24VDC, 16A
Availability: In Stock
Country of Origin: United States
Operating Temperature: 55°C
Weight: 9.11 lbs

FUNCTIONAL DESCRIPTION:

8200-314 is a Digital Driver Board manufactured and designed by Woodward used in Gas Turbine Control Systems. A digital driver board is a critical component in turbine control systems as it serves as the interface between the control system and the turbine's actuators. The board is responsible for receiving signals from the control system and translating them into commands that control the speed, power, and other parameters of the turbine. The digital driver board typically consists of a microprocessor, digital-to-analog converters (DACs), analog-to-digital converters (ADCs), and other electronic components that allow it to receive and process control signals. It also includes output drivers that convert digital signals into analog signals that can be used to control the turbine actuators.

FEATURES:

The digital driver board used in turbine control systems typically has several features that make it well-suited for this application. Some of these features include:

High-Speed Operation: The digital driver board can operate at very high speeds, allowing it to respond quickly to changes in the control signals and make adjustments to the turbine's operation in real time.

Programmability: The digital driver board can be easily programmed and configured to suit different turbine control applications, which provides flexibility in system design and reduces the time required for system development and testing.

Analog and Digital Signal Processing: The board typically includes analog-to-digital converters (ADCs) and digital-to-analog converters (DACs) that allow it to process both analog and digital signals, making it compatible with a wide range of control systems.

Fault Detection and Protection: The digital driver board may include features that detect faults in the system, such as overvoltage, undervoltage, or overcurrent conditions, and take protective measures to prevent damage to the turbine or other components.

WOC has the largest stock of Woodward Steam Turbine Control System Replacement Parts. We can also repair your faulty boards. WORLD OF CONTROLS can also supply unused and rebuilt 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 any parts and repairs, kindly get in touch with our team by phone or email.

FREQUENTLY ASKED QUESTIONS

What is the purpose of a digital driver board in a turbine control system?

The purpose of a digital driver board in a turbine control system is to receive signals from the control system and translate them into commands that control the speed, power, and other parameters of the turbine. The board serves as the interface between the control system and the turbine's actuators, allowing for precise control over the turbine's operation.

How does a digital driver board work?

A digital driver board typically consists of a microprocessor, digital-to-analog converters, analog-to-digital converters, and other electronic components that allow it to receive and process control signals. It also includes output drivers that convert digital signals into analog signals that can be used to control the turbine actuators.

How important is the digital driver board in a turbine control system?

The digital driver board is a critical component in a turbine control system, as it serves as the interface between the control system and the turbine's actuators. It plays a vital role in ensuring the safe and efficient operation of the turbine and can have a significant impact on the overall performance and reliability of the system.