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The GE IS215UCVEH2AF VME Control Card is an industrial control electronics assembly designed for integration into compatible GE automation and control systems. Based on a VME-style modular architecture, the IS215UCVEH2AF provides control and processing functionality within a backplane-based industrial system, allowing it to operate alongside other processor, I/O, communication, and interface boards.
VME-based control architectures are commonly organized around modular circuit boards installed into a shared backplane. This arrangement allows individual boards to perform dedicated functions while exchanging data through the system infrastructure. A control card can therefore serve as an important processing and coordination element within a larger industrial automation platform.
The GE IS215UCVEH2AF has listed dimensions of 340 × 160 × 20 mm and a weight of approximately 0.7 kg. Its elongated board format is suitable for modular industrial control equipment where VME-based hardware is used to combine multiple control and interface functions.
The exact processor resources, memory, communication interfaces, firmware requirements, and application functions of a VME control card can depend on the host system and board revision. Therefore, the complete board identification and associated system configuration should be verified before replacement or commissioning.
| Parameter | Specification |
|---|---|
| Manufacturer | General Electric (GE) |
| Model | IS215UCVEH2AF |
| Product Type | VME Control Card |
| Product Family | GE IS215 Series |
| Board Architecture | VME-Based Modular Control Architecture |
| Primary Function | Industrial control and processing |
| Application | Industrial Automation and Control |
| Dimensions | 340 × 160 × 20 mm |
| Weight | 0.7 kg |
| Installation | Compatible GE industrial control equipment |
| Mounting Architecture | Backplane-Based Modular System |
| Typical Role | Control / Processing Card |
The GE IS215UCVEH2AF is a VME Control Card intended for use within compatible GE industrial control equipment.
In a modular industrial control architecture, the controller or control card acts as a processing layer between field-level information and higher-level control functions. Signals collected by I/O modules can be transferred to the control system, where they are processed according to the configured application logic.
The controller can then coordinate output commands and communicate system information to other modules or supervisory equipment.
A simplified architecture can be represented as:
Field Devices → I/O Modules → VME Backplane → IS215UCVEH2AF → Control / Supervisory System
The actual architecture and data flow depend on the GE equipment in which the board is installed.
VME provides a modular backplane architecture in which multiple electronic boards can operate together within a common system.
Instead of placing all control functions on a single board, a modular architecture can distribute functions among different assemblies.
Typical system functions may include:
The IS215UCVEH2AF can participate in this architecture as a control card.
The modular approach can make industrial control systems easier to organize and maintain because individual hardware assemblies can be inspected or replaced independently when the system design permits.
The IS215UCVEH2AF provides control-processing functionality within its compatible GE system.
Input information received from associated modules can be evaluated by the control architecture according to configured system logic.
The resulting control information can then be communicated to other system components.
Industrial control systems continuously exchange information between controllers, I/O modules, communication boards, and supervisory equipment.
A VME control card participates in this data-exchange structure through the system backplane and associated interfaces.
A controller can coordinate multiple system functions simultaneously.
For example, process information may be collected through several I/O channels and transferred to the controller. The control logic can evaluate those values and determine whether an output command, alarm, or other system response is required.
Control systems also require monitoring of hardware and communication status.
Depending on the host platform, diagnostic information can help identify:
Exact diagnostic functions depend on the host system configuration.
The GE IS215UCVEH2AF can serve as a central control-processing component within a modular industrial automation architecture.
A representative control structure is:
Sensors → I/O → Control Card → Output / Actuator System
At the same time, the control card may exchange information with:
This architecture allows the controller to act as an intermediate processing layer between physical equipment and higher-level automation functions.
The IS215UCVEH2AF may be integrated into compatible GE industrial control applications where modular VME-based control hardware is required.
Power-generation systems use industrial controllers to coordinate complex equipment and monitor operating parameters.
A VME control card can form part of the electronic processing architecture responsible for system coordination and monitoring.
Turbine systems require continuous processing of operational information and coordination between sensors, I/O systems, and control functions.
The controller can participate in this processing architecture where supported by the host equipment.
Process plants use modular controllers to manage instrumentation, valves, pumps, motors, and other process equipment.
Industrial machinery may use modular control architectures to coordinate sensors, actuators, drives, and production equipment.
Controller cards can also participate in system-status monitoring, diagnostics, alarm handling, and communication with supervisory systems.
The IS215UCVEH2AF should be integrated as part of the complete GE control architecture.
A representative system may include:
| System Component | Typical Function |
|---|---|
| Field Sensors | Measure physical process variables |
| I/O Modules | Interface field signals |
| VME Backplane | Provides board-level interconnection |
| IS215UCVEH2AF | Control processing |
| Communication Boards | Transfer system data |
| Output Modules | Interface control commands |
| Operator Interface | Display operating information |
| Engineering System | Configuration and maintenance |
| Supervisory System | Higher-level monitoring |
The exact combination of components depends on the host equipment.
Before installing the control card, engineers should confirm the required board position, backplane compatibility, associated modules, and system configuration.
Before replacing an existing board, confirm:
The replacement should match the required IS215UCVEH2AF configuration.
The VME backplane and mating connector should be inspected before installation.
Check for:
A backplane fault can produce symptoms that resemble a controller-board failure.
Electronic control cards should be handled using appropriate electrostatic-discharge procedures.
Avoid unnecessary contact with exposed electronic components and connector contacts.
The listed dimensions of the IS215UCVEH2AF are 340 × 160 × 20 mm.
The installation location should provide sufficient clearance for insertion, removal, ventilation, and maintenance access.
After installation, the control card should be commissioned systematically.
Verify that the IS215UCVEH2AF is correctly seated in the intended VME system position.
Check the board-to-backplane connection and any associated interface connections.
Apply system power according to the approved commissioning procedure.
Check available status indicators and system diagnostics.
Confirm communication between the control card and associated I/O or communication modules.
Confirm that the control system recognizes the installed card and that the required configuration is available.
Perform controlled functional testing before returning the equipment to normal operation.
Troubleshooting should consider the controller, backplane, power system, connected modules, and application configuration as a complete system.
Possible causes include:
Check power and physical connections before replacing the control card.
If the controller cannot communicate correctly with other modules, inspect:
The communication problem may originate outside the controller itself.
Possible causes include:
Environmental and mechanical conditions should be checked before replacing the board.
A replacement control card may require the appropriate system configuration or compatible software environment.
A physically similar board may not operate correctly if its revision or system configuration does not match the application.
Regular maintenance can help improve control-system reliability.
Look for:
The backplane should be checked for contamination, connector damage, and other physical problems.
Adequate airflow should be maintained around the control card and surrounding electronic assemblies.
Repeated communication or hardware warnings should be investigated rather than ignored.
Record the board model, revision, installation position, and system configuration to simplify future maintenance.
When sourcing a replacement for the GE IS215UCVEH2AF VME Control Card, the complete identification should be verified.
Important details include:
The listed physical dimensions are 340 × 160 × 20 mm, and the listed weight is 0.7 kg.
These dimensions and weight are useful for spare-parts inventory, cabinet planning, transportation, and replacement logistics.
Physical dimensions alone should not be used to determine electrical or functional compatibility.
The GE IS215UCVEH2AF has listed dimensions of:
340 × 160 × 20 mm
Its listed weight is:
0.7 kg
The elongated board format is suitable for modular industrial control equipment using a backplane-based architecture.
During handling and storage, the control card should be protected against:
ESD-safe packaging should be used for long-term storage and transportation.
A VME control card can form part of a larger industrial control platform containing several categories of electronic hardware.
Potential associated components include:
The exact compatible hardware depends on the host GE control architecture.
Always confirm IS215UCVEH2AF and its revision rather than relying on a general description such as “VME control card.”
Before removing the original card, document its slot position, revision information, associated modules, and relevant system configuration.
Electronic boards should be handled using appropriate ESD-safe procedures.
When replacing a controller, inspect the mating backplane rather than assuming the board is the only possible source of failure.
Keep the cabinet clean and maintain appropriate temperature and airflow conditions.
After replacement, verify system startup, communication, diagnostics, and control functions before returning the equipment to normal service.
| GE Model | Product Type | General Role |
|---|---|---|
| IS215UCVEH2AF | VME Control Card | Industrial control processing |
| IS215UCCAM03 | Compact PCI Processor Board | Control processing |
| IS215UCCCM04A | Compact PCI Controller Board | Controller and system processing |
| IS215UCVDH7A | Dual-Slot Controller Board | Modular control processing |
| IS215ACLEH1BC | Application Control Layer Module | Application-level control |
| IS215ACLAH1AD | Application Control Layer Module | Control-system processing |
| IS215REBFH1B | I/O Expansion Board | I/O system expansion |
These boards represent related GE industrial control hardware, but they should not be treated as direct substitutes without confirming the host platform, revision, backplane requirements, and system configuration.
The GE IS215UCVEH2AF provides several characteristics relevant to modular industrial control applications:
The GE IS215UCVEH2AF is a VME Control Card designed for integration into compatible GE industrial automation and control systems.
Its primary role is to provide control and processing functionality within a compatible modular, backplane-based industrial control system.
The listed dimensions are 340 × 160 × 20 mm.
The listed weight is approximately 0.7 kg.
VME is a modular backplane-based architecture that allows multiple electronic boards to operate together within an industrial or embedded control system.
Not automatically. Compatibility depends on the board function, revision, backplane requirements, system configuration, and host equipment.
Technicians should verify the complete model number, revision, slot position, backplane, associated modules, software configuration, and system requirements.
Potential causes include poor board seating, damaged backplane contacts, power problems, configuration errors, communication faults, or problems with another connected module.
Maintenance should include board and connector inspection, backplane inspection, cabinet environmental control, diagnostic monitoring, and proper ESD handling.
The GE IS215UCVEH2AF VME Control Card is a modular industrial control assembly designed to provide control and processing functionality within compatible GE automation systems. Its VME-based architecture allows it to operate as part of a backplane-based control platform alongside I/O, communication, processing, and interface boards.
With listed dimensions of 340 × 160 × 20 mm and a weight of 0.7 kg, the IS215UCVEH2AF provides a compact modular solution for industrial control applications requiring structured board-level integration.
For installation, maintenance, or replacement, the complete GE IS215UCVEH2AF identification should be verified together with its revision, host system, VME slot requirements, backplane configuration, and associated control hardware. Proper ESD handling, secure installation, environmental management, and systematic commissioning can help support reliable operation of the control card and the overall industrial automation system.