IS420UCSBH4A is a UCSB Controller Module manufactured by General Electric as part of the Mark VIe Series used in gas turbine control systems with a 1066 MHz Intel EP80579 microprocessor. The application code is executed by standalone computers called UCSB controllers. Through onboard 1/0 network (IONet) interfaces, the controller mounts in a panel and communicates with the I/O packs. Only Mark controls I/O modules and controllers are supported by the private, special-purpose Ethernet network known as IONet.

IS420UCSBH4A Technical Specifications
|
Series |
Mark VIe |
|
Processor Type |
1066 MHz EP80579 Intel |
|
Part Number |
IS420UCSBH4A |
|
Ambient Temperature Range |
-30 to + 65 °C |
|
Functional Abbreviation |
UCSB |
|
Controller Type |
LS2100e, EX2100e, and Mark VIe |
|
Classifications |
UL E207685 for Class I, Division 2, Groups A, B, C, and D |
About the IS420UCSBH4A
Controller IS420UCSBH4A is another UCSB controller produced by General Electric for the Mark VIe Turbine Control System Series. The Mark VIe Series that this IS420UCSBH4A printed circuit board product offering was manufactured for has specific applications in the control and management systems of popular and compatible gas, steam, and wid turbine automated drive assemblies. This IS420UCSBH4A device's greater Mark VIe Turbine Control System Series is additionally definable as one of the final-developed General Electric Mark product series to introduced their patented Speedtronic control system technology across a range of its different offerings, which greatly increases the overall market demand of the IS420UCSBH4A PCB overall. This IS420UCSBH4A device is not definable as a typical Mark VIe Series printed circuit board product offering; it is really a modular assembly as indicated by the initial series tag in the IS420UCSBH4A functional product number.
More product information
UCSB INSTALLATION:
A single module that installs directly to the sheet metal of the panel contains the controller. The dimensions for the module envelope and mounting are shown in the diagrams below. Every measurement is in inches. The UCSB must be attached to the panel as depicted, with the vertical airflow through the fins remaining unhindered.
UCSB SOFTWARE AND COMMUNICATION:
Software customized for the controller's use is installed. Rungs or blocks can be run by it. Without needing to restart, small changes to the control software can be done online. The clocks of the 1/O packs and controllers are synchronized to within 100 microseconds using the IEEE 1588 protocol via the R, S, and T IONets. Through the R, S, and T IONets, external data is sent to and received from the control system database in the controller. This comprises the 1/0 modules' process inputs and outputs.
Additionally, in a dual system, these are:
1. Data on initialization and internal state variables from the selected controller
2. Information on the synchronization and status of both controllers
This also covers the following in a triple modular redundant (TMR) system:
Information on synchronization from all three controllers, internal state values for voting, and status
Initialization data from the chosen controller
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What you concern
Original new General Electric IS420UCSBH4A is ready for shipment
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