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The GE IS215VCMIH2CB is a VME communications card used within the GE Mark VI turbine control system. It provides communication functions between the VME-based control hardware and associated system components, supporting the exchange of control, status, and system information within the turbine control architecture.
As part of a Mark VI VME-based system, the communications card operates at the control-system communication layer rather than directly interfacing with individual field sensors. It helps establish the data path between processing hardware, I/O-related equipment, and other components that depend on coordinated control-system communication.
The card is relevant to turbine control cabinets where multiple control functions must exchange information with consistent timing and defined interfaces. During maintenance, communication faults should be considered separately from field signal problems because a healthy sensor or I/O channel can still appear unavailable if the associated communication path is interrupted.
| Parameter | Specification |
|---|---|
| Manufacturer | GE |
| Model | IS215VCMIH2CB |
| Product Family | Mark VI |
| Product Type | VME Communications Card |
| Hardware Platform | VME |
| Primary Function | Control-system communication |
| Application | GE Mark VI turbine control system |
| Installation | VME-based industrial control cabinet |
| Dimensions | 330 × 100 × 150 mm |
| Weight | 0.55 kg |
The IS215VCMIH2CB operates as a communications interface within the Mark VI VME control architecture. It exchanges data between connected control-system components through the VME-based hardware environment and the associated communication interfaces.
A simplified architecture can be represented as:
Mark VI I/O / Control Hardware → IS215VCMIH2CB → VME Control Network / Associated System Components
The card does not make the turbine control decision by itself. Instead, it provides the communication path required for different parts of the control system to exchange information. Control processors can use this exchanged data for sequencing, monitoring, coordination, and other turbine control functions.
During troubleshooting, communication status should be evaluated independently from the actual condition of field devices. A communication interruption can prevent otherwise healthy I/O or control hardware from exchanging data correctly.
The IS215VCMIH2CB belongs to the communication layer of the Mark VI VME-based control architecture. It supports information exchange among control-system components so that acquired signals and control commands can move between the appropriate processing and I/O functions.
| System Element | Function |
|---|---|
| Field Sensors and Switches | Provide turbine operating, protection, and process information |
| Mark VI I/O Hardware | Acquires field signals and provides control outputs |
| IS215VCMIH2CB Communications Card | Supports communication between VME-based control-system components |
| Mark VI Control Processor | Executes control logic, sequencing, and supervisory functions |
| VME Backplane | Provides the internal hardware communication path between installed VME cards |
| Turbine Auxiliary Systems | Supply operating information and respond to control commands |
The communications card therefore serves as an intermediate control-system interface rather than a direct field termination device.
| Application | Typical Use |
|---|---|
| Gas Turbine Control | Supports communication within Mark VI turbine control cabinets |
| Steam Turbine Control | Provides communication functions within VME-based turbine control architectures |
| Turbine I/O Coordination | Supports exchange of information between control processors and I/O-related hardware |
| Turbine Protection Systems | Participates in the communication path supporting coordinated protection functions |
| Generator Control | Supports control-system data exchange associated with turbine-generator systems |
| Power Generation Plants | Used in Mark VI-based turbine control installations |
| Turbomachinery Systems | Supports communication between different parts of the control architecture |
| Maintenance and Retrofit Projects | Provides replacement hardware for service of existing Mark VI VME systems |
For troubleshooting, first determine whether the problem is isolated to one communication path or affects multiple VME control functions. A broad communication failure can point toward the card, backplane, common power, or network infrastructure, while a single unavailable signal may originate elsewhere in the I/O chain.
| Component | Function |
|---|---|
| GE Mark VI Control Processor | Executes turbine control logic and sequencing |
| Mark VI I/O Boards | Acquire field signals and generate control outputs |
| VME Backplane | Provides internal communication and power connections for VME cards |
| VME Communication Hardware | Supports data exchange between control-system components |
| Field Interface Hardware | Connects sensors, switches, and actuators to the control system |
| Turbine Auxiliary Systems | Provide operating status and respond to control commands |
| Mark VI Engineering / Diagnostic Tools | Support configuration, monitoring, and troubleshooting |
| Model / Product Family | Product Type | Typical Application |
|---|---|---|
| GE IS215VCMIH2CB | Mark VI VME Communications Card | Control-system communication within Mark VI VME architecture |
| GE Mark VI | Turbine Control System | Gas and steam turbine control |
| GE Mark VI VME Boards | VME Control Hardware | Processing, communication, and I/O functions |
| GE Mark VI I/O Modules | Turbine Control I/O Hardware | Field signal acquisition and output control |
| GE Mark VI Control Processor | Turbine Control Processor | Control logic, sequencing, and system coordination |
The IS215VCMIH2CB is a VME communications card used within the GE Mark VI turbine control architecture. Its function is to support communication and data exchange between associated control-system components.
No. Unlike a terminal board that directly terminates field wiring, the IS215VCMIH2CB operates within the VME-based control hardware and provides communication functions between control-system components.
Inspect the communications card, VME backplane connections, associated communication interfaces, common power, and related system infrastructure. Multiple simultaneous communication failures should be investigated as a common-system issue before replacing individual field devices.
The control system should be handled under approved maintenance and isolation procedures. Use ESD protection, verify the exact board model and slot position, inspect the VME connector and backplane, and perform communication and functional checks after installation.