GE
PLC SYSTEM GE GE IS220UCSAH1A Mark VIe controller

GE IS220UCSAH1A Mark VIe controller

GE IS220UCSAH1A 

Mark VIe controller

PAMC Acoustic Monitor (processor)
PMVE Migration from Mark V Control (processor)



Condition: New & Original

Lead time : 3-7 days

Warranty : 12 monthes



  • item no.:

    GE IS220UCSAH1A
  • lead time:

    IN STOCK
  • product orgin:

    USA
  • brand:

    General Electric
  • shipping port:

    XIAMEN
  • payment:

    TT
  • market price:

    $9999
  • product details

GE IS220UCSAH1A 

Mark VIe controller

PAMC Acoustic Monitor (processor)
PMVE Migration from Mark V Control (processor)


SPECIFICATIONS:

Part Number: IS220UCSAH1A
Manufacturer: General Electric
Series: Mark VIe
Product Type: PAMC acoustic monitor (processor)
Software: ControlST V04.03.18C
Relative Humidity: 5% to 95%, non-condensing
Power Requirements +32 V dc to 18 V dc
Microprocessor: Freescale PC Power (Power KUICC II PRO 667 MHz)
Memory: 256 MB DDR SDRAM
Operating System: KNX Neutrino
Weight: 2 kg
Availability: In-Stock
Country of Manufacture: United States of America (USA)

FUNCTIONAL DESCRIPTION:

The IS220UCSAH1A is a machine-integrated module designed and manufactured by General Electric as part of the Mark VIe series of GE gas turbine control systems. The UCSA controller is a line of stand-alone computer products that use application code. The controller is embedded and communicates with the I/O via the I/O network (IONet). The I/O network is a special purpose Ethernet interface that supports only the I/O modules and controllers. The operating system (OS) is KNX Neutrino, a real-time operating system designed for high speed, high reliability and industrial use. The UCSA controller is available for use in many applications, including plant control and retrofits. However, it does not have enough processing power for some modern applications that are controlled by the software.

CONTENT:
*Storage and Authentication: The controller module is designed for use with the Mark VIe UCSA controller. It uses the hardware flash memory required. It is important to note that the controller is not IEC61508 safety certified, meaning it may not be suitable for applications with low safety requirements.

*Power Requirements: The module requires a power supply in the range of 18 V DC to 32 V DC. The variable input voltage, along with the standard 12.5 V supply voltage, allows for compatibility with a variety of power sources, making it flexible and adaptable.

*Temperature Tolerance: The controller features a high temperature tolerance, allowing it to operate effectively in a wide range of environmental conditions. It can operate effectively in temperatures ranging from 0 to 65 degrees Celsius. Additionally, it is designed without the need for a cooling fan, simplifying installation and maintenance while maintaining a good profile.

*Hazardous Environments: The controller module is suitable for use in hazardous environments and can comply with NFPA Class 1, Div. Application 2. This means it can be safely used in potentially explosive atmospheres, further extending the range of possible applications.

*Front Faceplate Connectors: The front faceplate of the controller module features a user-selectable set of connectors. It includes six female connectors, providing a simple and secure way to connect cables. In addition, a USB port is provided for easy data exchange and configuration. The front panel contains a series of LED indicators that provide useful information about the status and operation of the module.

*LED Indicators: The front LED indicators provide important insights into the controller. The Link/Activity LED indicators on the left side of the front panel provide real-time feedback regarding the network. In the middle of the front panel, a row of LED indicators are labeled Power, Boot, Online, Flash, DC (indicating how much power is being supplied) and Diag (diagnostic status). These LEDs make it easy to monitor the controller’s health and identify any problems.

*Ethernet Connector: Supports Ethernet networking via the connector. This feature allows integration with other control systems, such as the Mark VI, Mark VIe or EKS2100 joystick controllers. It also simplifies communication with the maintenance and operation station, enabling remote monitoring and control capabilities.


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