IS215UCVGM09A - Universal Control Variable Generator Module

IS215UCVGM09A - Universal Control Variable Generator Module IS215UCVGM09A - Universal Control Variable Generator Module

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SPECIFICATIONS:

Part Number: IS215UCVGM09A
Manufacturer: General Electric
Series: Mark VI
Microprocessor: Intel Celeron 650 MHz
Memory: 128 MB SDRAM
Operating system: QNX
Programming: Boolean
Product Type: Universal Control Variable Generator Module
Voltage Range: 14 to 32 V dc
Maximum Lead Resistance: 15 Ohm
Storage temperature: -40 to 80� C
Operating temperature: 0 to 70 C
Technology: Surface mount
Size: 16.2 cm high x 8.6 cm
Repair: 3-7 Day
Availability: In Stock
Weight: 2 lbs
Country of Origin: United States
Manual: GEh-6421l

FUNCTIONAL DESCRIPTION:

IS215UCVGM09A is a Universal Control Variable Generator Module manufactured and designed by General Electric as part of the Mark VI Series used in GE Speedtronic Control Systems. The UCVG is a compact single-slot board powered by an Intel Ultra Low Voltage Celeron 650 MHz processor, equipped with 128 MB of flash memory and 128 MB of SDRAM. It features two Ethernet ports (10BaseT/100BaseTX with RJ-45 connectors) for connectivity. The first Ethernet port connects to the UDH for configuration tasks and peer-to-peer communication. The second Ethernet port operates on a separate IP subnet, supporting Modbus or a dedicated EGD network. This port is configured using the toolbox software. On startup, the controller cross-checks the toolbox configuration with the existing hardware to ensure compatibility.

OPERATION:

The controller is programmed with application-specific software tailored for steam, gas, land-marine aero-derivative (LM), or balance of plant (BOP) systems. It is capable of processing up to 100,000 rungs or logic blocks per second, based on a typical mix of average-sized blocks. A clock interrupt feature enables synchronization with the VCMI communication board's clock, achieving an accuracy of �100 microseconds.

External data is exchanged with the control system database (CSDB) within the controller via the VME bus, facilitated by the VCMI communication board. This data includes process inputs and outputs from I/O boards in a simplex configuration. A TMR setup encompasses voted inputs from input boards, singular inputs from simplex boards, calculated outputs for hardware voting, and internal state values shared among controllers.

INSTALLATION:

A control module must include at least a controller and a VCMI. Three types of racks are available: the GE Fanuc integrator�s rack, and two sizes of Mark VI racks, detailed in the VCMI - Bus Master Controller section. The GE Fanuc rack, being more compact, is designed for stand-alone modules with only remote I/O. In contrast, the Mark VI racks, which are larger, support both local and remote I/O. Regardless of the rack type, a cooling fan is installed either above or below the controller. For stand-alone control modules using the GE Fanuc integrator�s rack, a VDSK board must provide fan power and identify the rack via an ID plug.

WOC has the largest stock of OEM Replacement Parts for GE Speedtronic Gas Turbine Control Systems. We can also repair your faulty boards and supply unused and rebuilt boards 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 parts and repairs, kindly contact our team by phone or email.

FREQUENTLY ASKED QUESTIONS:

How does it integrate with existing systems?

The module is designed to interface seamlessly with programmable logic controllers (PLCs), distributed control systems (DCS), and human-machine interfaces (HMIs) through standard communication protocols like Modbus, PROFIBUS, or Ethernet.

What are the main functions of the module?

The primary functions of a Universal Control Variable Generator Module include generating control signals, processing inputs for compatibility, and integrating feedback loops to maintain stability and accuracy in operations. Additionally, the module can be customized to meet the specific requirements of different control systems, ensuring seamless performance and adaptability in diverse environments.

How does it integrate with existing systems?

Integration with existing systems is straightforward, as the module supports standard communication protocols like Modbus, PROFIBUS, or Ethernet. It can seamlessly interface with programmable logic controllers (PLCs), distributed control systems (DCS), and human-machine interfaces (HMIs). This ensures smooth operation and enhanced connectivity in both legacy and modern setups.