DS200IMCPG1A | General Electric Power Supply Interface Board
Product Description P/N: DS200CPCAG1ABB Description / Specifications Description The DS200CPCAG1ABB is a General Electric Mark V Contactor Pilot Board designed for turbine control systems. It controls and manages the operation of contactors, ensuring reliable switching and integration within the Mark V system. The board enhances system stability and performance by providing precise control over contactor functions. Technical Specifications Manufacturer GE General Electric Series Mark V Part Number DS200CPCAG1ABB Functional Description Contactor Pilot Card Functional Acronym CPCA PCB Coating Normal Coating FunctionalRevision 1A Artwork Revision B Additional Information * Turbine Control * Multi Input/Output * On-board RAM Information About DS200CPCAG1ABB
The DS200CPCAG1ABB is a Contactor Pilot Board designed by General Electric for the Mark V series, serving as a critical component in turbine control systems. Identified by part number DS200CPCAG1ABB, this board plays an essential role in managing contactor operations and providing control signals within industrial automation systems.
Under the functional acronym CPCA, the DS200CPCAG1ABB is engineered to handle multi-input and multi-output tasks, making it versatile for various control functions in turbine applications. This capability allows it to interface effectively with numerous input and output points, ensuring precise and reliable control of contactor systems. The board is coated with normal PCB coating, offering standard protection for the circuitry against environmental factors.
This ensures the module's durability and operational stability in typical industrial environments. It features on-board RAM, which supports efficient data handling and processing, contributing to the overall performance of the control system. The DS200CPCAG1ABB is developed with a functional revision of 1A and an artwork revision of B. These revisions indicate the initial functional design and updates to the circuit layout, reflecting enhancements and refinements in its design to meet operational requirements.
Designed specifically for turbine control, this Contactor Pilot Board integrates seamlessly into the Mark V series, enhancing the system's capability to manage contactors and related control functions effectively. Its robust construction and advanced features ensure reliable performance, making it a key component for achieving precise control and operational efficiency in turbine control applications. Manufacturer information General Electric (GE) is a multinational conglomerate founded in 1892, based in the United States. It operates in various industries, including aviation, healthcare, renewable energy, and power.
GE is known for its innovations in technology, manufacturing, and infrastructure solutions. IQElectro is not an authorized distributor. QElectro LLC (IQElectro) is NOT an Authorized Distributor or in any way affiliated with Rockwell Automation, Siemens, or any other Manufacturers. IQElectro is NOT an Authorized Dealer of this product. The product may be of older version, date codes, or design than that available from authorized dealers. As IQElectro is not an authorized dealer of this product, the Original Manufacturer's Warranty and Support DO NOT apply.IQElectro sells SURPLUS onlyand DOES NOT SELL SOFTWARE or FIRMWARE licenses For more detailed information, please refer to the full version of our disclaimer policy Disclaimer Policy.
The IO module has the following main functions
Input Function
The IO module can receive input signals sent by external devices and convert them into digital or analogue signals for use by the computer system or control system. These input signals can come from a variety of sensors, such as temperature sensors, pressure sensors, photosensitive sensors and so on. By receiving and parsing these input signals, the system can monitor and control the external environment in real time.
Output Functions
The IO module is capable of converting the output signals generated by a computer system or control system into the form required by an external device. These output signals are typically used to control actuators such as motors, valves, lights, etc. By sending appropriate output signals to external devices, the system enables control and operation of the external environment.
Data Acquisition and Processing
The IO module is capable of acquiring data from external devices and transferring it to a computer system or control system for further processing. This enables the system to acquire environmental data, status information and user inputs in real time and make appropriate decisions or perform specific tasks based on these data.
Communication Interfaces
IO modules are usually equipped with different types of communication interfaces, such as serial interfaces (RS232, RS485), Ethernet interfaces, CAN bus interfaces, and so on. These interfaces enable IO modules to exchange data and communicate efficiently with computer systems or other external devices.
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