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DS3800HCIC

CARD
Product DESCRIPTION
Part Number
DS3800HCIC
Manufacturer
General Electric
Country of Manufacture
As Per GE Manufacturing Policy
Series
Mark VI/VIe
Function
Module
Availability
In Stock
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TECHNICAL SPECIFICATIONS FOR GE - DS3800HCIC

DS3800HCIC is a Dual Communication Controller Board manufactured and designed by General Electric as part of the Mark IV Series used in GE Speedtronic Gas Turbine Control Systems. A Dual Communication Controller Board is a type of circuit board that is designed to provide two separate channels for communication between different devices or systems. The board typically includes multiple communication interfaces, such as UART, SPI, I2C, CAN, Ethernet, and wireless interfaces, to enable communication with various types of devices. The main purpose of a Dual Communication Controller Board is to enable seamless communication between different devices in a system. For example, it can be used in a robotics project where the board can be used to communicate with various sensors and control units. It can also be used in industrial automation applications where it can be used to control and communicate with different machines and devices.

FEATURES:

The specific features of a Dual Communication Controller Board can vary depending on the manufacturer and the intended use case, but some common features that you might find on such a board include:

Multiple Communication Interfaces: A Dual Communication Controller Board typically includes multiple communication interfaces, such as UART, SPI, I2C, CAN, Ethernet, and wireless interfaces, to enable communication with various types of devices.

High-Speed Data Transfer: The board may support high-speed data transfer rates to enable fast and efficient communication between devices.

Programmability: Many Dual Communication Controller Boards are programmable, allowing developers to customize the board's behavior and communication protocols to suit their specific needs.

Multiple Voltage Levels: The board may support multiple voltage levels to accommodate the different voltage requirements of different devices.

Compatibility: The board may be compatible with various operating systems and programming languages, making it easier to integrate into existing systems and software.

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