• GE IS215UCVGH1AC VME Controller Single-Slot Board
  • GE IS215UCVGH1AC VME Controller Single-Slot Board
  • GE IS215UCVGH1AC VME Controller Single-Slot Board
  • GE IS215UCVGH1AC VME Controller Single-Slot Board
Product Overview The GE IS215UCVGH1AC VME Controller Single-Slot Board is a specialized industrial controller board designed for integration into compatible GE automation and control-system architecture……
GE IS215UCVGH1AC VME Controller Single-Slot Board
  • GE
  • IS215UCVGH1AC
  • VME Controller Single-Slot Board
  • USA
  • 178 x 20 x 159 mm
  • 0.45 kg
  • Xiamen, China
  • New & In Stock
  • T/T, PayPal, Western Union
  • 1 Year
  • 1-3 Working Days
  • DHL, UPS, TNT, FedEx and EMS.
  • 24-Hour Service
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GE IS215UCVGH1AC VME Controller Single-Slot Board

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We have a 10-year logistics and express cooperation agreement, so our products can be shipped to any place in the world.

GE IS215UCVGH1AC VME Controller Single-Slot Board

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Our products are imported in bulk from the place of origin. Because of the cooperative relationship, our products are all original and 100% new.

GE IS215UCVGH1AC VME Controller Single-Slot Board

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We provide 7*24 hours service to our customers. We will be there whenever you need us.

GE IS215UCVGH1AC VME Controller Single-Slot Board

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Product Overview

The GE IS215UCVGH1AC VME Controller Single-Slot Board is a specialized industrial controller board designed for integration into compatible GE automation and control-system architectures. As part of the GE IS215 family, the board provides controller-level processing within systems where reliable coordination between processing hardware, I/O assemblies, communication interfaces, and field equipment is required.

The VME controller architecture is commonly associated with modular industrial and embedded control systems in which multiple electronic boards operate together through a shared hardware platform. A single-slot controller can provide an important processing layer while allowing additional system boards to perform I/O, communication, interface, and application-specific functions.

The GE IS215UCVGH1AC has listed dimensions of 178 × 20 × 159 mm and a weight of approximately 0.45 kg. Its compact single-slot form factor makes it suitable for integration into compatible control-system chassis where board space and module positioning are important considerations.

The IS215UCVGH1AC should be installed only in a compatible GE control architecture. Exact processor characteristics, memory capacity, communication interfaces, firmware, electrical specifications, and supported application functions can depend on the host system and board revision and should be confirmed before installation.


Technical Specifications

Parameter Specification
Manufacturer General Electric (GE)
Model IS215UCVGH1AC
Product Type VME Controller Single-Slot Board
Product Family GE IS215 Series
Controller Architecture VME
Slot Configuration Single-Slot
Primary Function Controller and industrial processing
Application Industrial Automation and Control
Dimensions 178 × 20 × 159 mm
Weight 0.45 kg
Installation Compatible GE VME-based control equipment
System Role Controller / Processing Board
Typical Use Industrial Control, Automation, Monitoring and System Coordination

What Is the GE IS215UCVGH1AC?

The GE IS215UCVGH1AC is a VME Controller Single-Slot Board intended to operate within a compatible GE industrial control system.

Rather than functioning as an isolated electronic device, the controller board is normally part of a larger modular architecture. The board can provide the processing layer that coordinates information between I/O modules, interface hardware, communication assemblies, supervisory equipment, and industrial field devices.

A simplified control architecture can be represented as:

Field Devices → I/O Modules → VME Control Platform → IS215UCVGH1AC → Control Functions → Industrial Equipment

The actual signal flow and hardware arrangement depend on the specific GE system.

The single-slot configuration is also important when planning installation. The board is designed for its designated slot position, and the chassis, backplane, adjacent modules, connectors, and cooling arrangement should all be checked before installation.


Understanding the VME Controller Architecture

VME-based systems use a modular hardware architecture in which multiple boards can work together within a common chassis or backplane environment.

A typical arrangement may include:

  • Controller boards
  • I/O boards
  • Communication boards
  • Processor boards
  • Interface assemblies
  • Power-related modules
  • Application-specific boards
  • Backplane hardware

Within such an architecture, the IS215UCVGH1AC functions as a controller-level board.

The modular design allows different functions to be distributed across dedicated hardware. This can simplify system expansion, maintenance, troubleshooting, and replacement when compared with a system in which all functions are integrated into one physical assembly.


Single-Slot Design and Installation

The single-slot designation indicates that the IS215UCVGH1AC is intended to occupy one corresponding slot within compatible VME-based system hardware.

This characteristic affects several practical installation considerations.

Chassis Position

The board should be installed in the correct slot according to the system configuration.

Backplane Connection

The board must correctly mate with the associated backplane or board-level interface.

Adjacent Module Clearance

Although the listed board dimensions are 178 × 20 × 159 mm, additional space may be required for connectors, cables, ventilation, and maintenance access.

Cooling

The controller should operate within the environmental conditions specified for the host system. Airflow around the board and neighboring assemblies should not be obstructed.

Service Access

Technicians should be able to remove and inspect the board without placing excessive mechanical stress on adjacent components.


Function and Working Principle

Controller-Level Processing

The primary role of a controller board is to provide the processing functions required by the industrial control application.

The controller receives information from the surrounding system and processes it according to the configured application.

Depending on the host architecture, this can involve:

  • Process measurements
  • Equipment status
  • Control commands
  • Sequence information
  • Alarm information
  • System diagnostics
  • Communication data
  • Interlock conditions

The exact functions depend on the installed control-system configuration.

System Coordination

Industrial automation equipment typically contains multiple modules that must operate together.

The IS215UCVGH1AC can provide a processing point through which system information is coordinated between different hardware layers.

This allows field-level information to become available to control logic while control commands can be passed toward output and interface hardware.

Control Application Processing

Controller hardware can execute configured functions used for equipment coordination and process management.

Depending on the application, these functions may include:

  • Equipment sequencing
  • Start and stop logic
  • Process monitoring
  • Interlocking
  • Alarm handling
  • Equipment coordination
  • Operating-state management
  • Control-system diagnostics

The board’s exact application capabilities should be confirmed against the associated GE system.


Role in Industrial Control Systems

The GE IS215UCVGH1AC VME Controller Single-Slot Board can act as an important processing element in a modular industrial control architecture.

A typical system-level sequence is:

Sensors and Field Devices

Signal Acquisition and I/O Hardware

VME Backplane / Control Hardware

IS215UCVGH1AC Controller

Configured Control Logic

Output and Interface Hardware

Industrial Equipment

The controller may also exchange information with supervisory systems and operator interfaces.

This allows operators to monitor process conditions, equipment states, alarms, and controller status through the broader control architecture.


Industrial Applications

Power Generation

Power-generation facilities depend on coordinated control of turbines, generators, auxiliary equipment, and supporting process systems.

A controller board can form part of the control architecture responsible for processing system information and coordinating equipment operation.

Turbine and Generator Control

Industrial turbine systems require coordinated monitoring and control of multiple equipment subsystems. VME-based controller hardware may operate alongside dedicated I/O, feedback, protection, and interface boards.

The exact application depends on the host GE control platform.

Process Automation

Process plants use controllers to coordinate pumps, valves, motors, sensors, and other process equipment.

The IS215UCVGH1AC can provide controller-level processing within an appropriate GE system architecture.

Manufacturing

Automated production equipment requires synchronized control of machines and process stages.

A modular controller can provide the processing layer required for coordinating these operations.

Utility Systems

Water treatment, pumping, compressed-air, HVAC, and other industrial utility systems can use modular controllers for equipment monitoring and automated control.

Distributed Control Applications

A modular controller architecture allows control functions to be distributed across multiple system assemblies, providing flexibility for complex automation installations.


System Integration

The IS215UCVGH1AC should be evaluated as part of the complete control system rather than as an independent board.

I/O Modules

I/O modules collect information from field sensors and transmit control signals to field devices.

Interface Boards

Interface boards can provide connections between the controller and other sections of the system.

Communication Hardware

Communication assemblies support information exchange between controllers, I/O equipment, operator stations, and other industrial devices.

Backplane

The VME backplane provides the physical and electrical infrastructure required for communication and board integration within the compatible chassis.

Power Hardware

The controller depends on the appropriate system power architecture provided by the host equipment.

Operator Interface

HMI and supervisory equipment can display process information, alarms, equipment status, and diagnostic information.


Installation Guidelines

Proper installation is important for maintaining controller reliability.

Verify the Exact Model

Before installation or replacement, verify:

  • IS215UCVGH1AC model number
  • Revision designation
  • Board markings
  • Slot configuration
  • Connector arrangement
  • Host-system compatibility
  • Existing installation position

Similar-looking GE boards should not automatically be considered interchangeable.

Confirm Single-Slot Compatibility

The board should be installed in a chassis designed to accept the appropriate VME controller configuration.

Confirm that the intended slot and backplane arrangement correspond to the system design.

Inspect the Board

Before installation, inspect the controller for:

  • Physical damage
  • Bent connectors
  • Contamination
  • Corrosion
  • Overheating signs
  • Mechanical deformation
  • Loose components

Use ESD Protection

Appropriate electrostatic-discharge precautions should be followed when handling the board.

Check the Backplane

Inspect the associated backplane connector and slot for contamination, damage, or mechanical obstruction before installing the board.


Commissioning Procedure

After installation, a controlled commissioning procedure should be followed.

Step 1: Verify Mechanical Installation

Confirm that the board is correctly inserted into the designated slot and securely positioned.

Step 2: Check Connections

Verify that all applicable connectors and cables are correctly installed.

Step 3: Verify System Power

Confirm that the host control system is operating correctly and supplying the required power to the installed hardware.

Step 4: Confirm Controller Recognition

Check whether the control system recognizes the IS215UCVGH1AC correctly.

Step 5: Verify Communication

Confirm communication between the controller and associated I/O, interface, and supervisory hardware.

Step 6: Check Configuration

Verify that the controller configuration matches the intended application.

Step 7: Review Diagnostics

Check system and controller diagnostics for active alarms, warnings, or configuration problems.

Step 8: Perform Functional Testing

Test relevant control functions under controlled conditions before returning the equipment to normal operation.


Troubleshooting the IS215UCVGH1AC

Troubleshooting should consider the complete control architecture because a controller symptom can originate from associated hardware.

Controller Does Not Start

Possible causes include:

  • Incorrect board installation
  • Power-system problems
  • Backplane connection problems
  • Configuration errors
  • Host-system faults
  • Controller hardware failure

Start by checking power, slot position, connectors, and system diagnostics.

Controller Is Not Recognized

If the system does not recognize the board, inspect:

  • Board seating
  • VME slot
  • Backplane connector
  • System configuration
  • Board identification
  • Associated power conditions

A recognition problem does not necessarily mean that the controller itself is defective.

Communication Failure

Communication problems may result from:

  • Interface connections
  • Backplane problems
  • Configuration errors
  • Associated communication hardware
  • I/O module problems
  • Controller hardware issues

The entire communication path should be investigated.

Intermittent Operation

Intermittent behavior may be associated with:

  • Loose connections
  • Vibration
  • Thermal changes
  • Power instability
  • Communication interruptions
  • Aging electronic components

Trend monitoring and controlled testing can help isolate intermittent faults.


Preventive Maintenance

Regular maintenance can improve the reliability of the controller and the larger control system.

Inspect the Board

Look for contamination, corrosion, physical damage, or signs of abnormal heating.

Check Connectors

Inspect connectors for looseness, oxidation, contamination, or mechanical damage.

Maintain Cabinet Conditions

Control cabinets should be maintained in a clean and appropriately ventilated condition.

Verify Cooling

Ensure that airflow around the controller and adjacent boards remains unobstructed.

Monitor System Diagnostics

Regular diagnostic checks can identify communication or configuration problems before they become larger system failures.

Maintain Spare Hardware

For critical industrial systems, an appropriately identified spare IS215UCVGH1AC can reduce downtime when controller hardware requires replacement.


Replacement Considerations

When replacing the GE IS215UCVGH1AC, the complete part number and system compatibility should be verified.

Important identification information includes:

  • Full model number
  • Revision designation
  • Board markings
  • VME configuration
  • Single-slot arrangement
  • Connector layout
  • Host control platform
  • Associated hardware
  • System configuration

The listed physical dimensions are:

178 × 20 × 159 mm

The listed weight is:

0.45 kg

These specifications can be useful for spare-parts management, transportation, packaging, and cabinet planning.

However, physical dimensions alone should not be used to establish functional compatibility.


Physical Handling and Storage

The IS215UCVGH1AC weighs approximately 0.45 kg, making it relatively manageable during service operations. Nevertheless, proper electronic handling procedures should be followed.

The board should not be handled by forcing or pulling on connectors. Appropriate ESD protection should be used whenever the board is removed from its packaging or installed into the chassis.

For spare inventory, the board should be protected against:

  • Electrostatic discharge
  • Excessive humidity
  • Dust
  • Mechanical shock
  • Contamination
  • Extreme environmental conditions

Proper storage reduces the possibility of damage before commissioning.


Compatible System Components

The IS215UCVGH1AC may operate alongside several types of GE industrial control components.

Component Typical Function
IS215UCVGH1AC VME controller and processing
VME Backplane Board interconnection
GE I/O Modules Process signal acquisition and output
Interface Boards System and signal interfacing
Communication Modules Data exchange
Terminal Boards Field wiring and signal termination
Power Supply Hardware System power
HMI / Operator Station Monitoring and operator interaction
Engineering Workstation Configuration and maintenance
Industrial Network System-level communication

The actual component combination depends on the specific GE control architecture.


Engineering Best Practices

Verify Hardware Identification

Always verify the complete IS215UCVGH1AC model designation and revision before installation.

Document the Existing Configuration

Before removing an installed controller, record its slot position, associated connections, and relevant system configuration.

Check the Backplane

Because the board is designed for VME-based integration, the condition of the corresponding backplane and connector is important.

Diagnose the Entire System

Controller faults can be caused by power, communication, I/O, configuration, or backplane problems. Avoid replacing the controller without checking associated hardware.

Protect Against ESD

Use appropriate anti-static procedures during handling and installation.

Perform Controlled Commissioning

Verify recognition, communication, diagnostics, and application functions before placing the system into normal operation.


Recommended Related GE Models

GE Model Product Type General Role
IS215UCVEM01A UCVE Controller Module Controller and system processing
IS215UCVEM10A UCVE Controller Module Controller and processing
IS215UCVEH2AF VME Control Card Control-system processing
IS215UCVDH7A Dual-Slot Controller Board Industrial control processing
IS215UCCAM03 Compact PCI Processor Board Controller and processing
IS215REBFH1B I/O Expansion Board I/O expansion
IS215PMVPH1A I/O Module Industrial signal interface

These are related GE control-system assemblies and should not be considered direct replacements for the IS215UCVGH1AC without verifying the complete system configuration, board revision, interface requirements, and application.


Key Advantages

Single-Slot Controller Format

The IS215UCVGH1AC is designed as a single-slot VME controller board, allowing it to integrate into compatible modular control-system chassis.

Compact Physical Design

With listed dimensions of 178 × 20 × 159 mm, the board provides a compact controller format for appropriate VME-based equipment.

Controller-Level Processing

The board provides a processing layer capable of coordinating information within the larger industrial control architecture.

Modular System Integration

Its VME-based design allows controller functions to coexist with dedicated I/O, communication, and interface hardware.

Serviceable Industrial Architecture

The modular board format can simplify maintenance and replacement when the associated control-system architecture is properly documented and supported.


Technical FAQs

What is the GE IS215UCVGH1AC?

The GE IS215UCVGH1AC is a VME Controller Single-Slot Board designed for integration into compatible GE industrial control systems.

What is the primary function of the IS215UCVGH1AC?

The board provides controller-level processing and system coordination within a compatible VME-based GE control architecture.

What are the dimensions of the IS215UCVGH1AC?

The listed dimensions are 178 × 20 × 159 mm.

What is the weight of the IS215UCVGH1AC?

The listed weight is approximately 0.45 kg.

What does single-slot mean?

Single-slot means that the controller is designed to occupy one designated slot within compatible VME-based chassis hardware.

Is the IS215UCVGH1AC a standalone PLC?

It is more accurately described as a VME controller board intended to operate as part of a compatible GE industrial control architecture rather than as a conventional standalone PLC.

What can cause an IS215UCVGH1AC fault?

Potential causes include power problems, backplane issues, incorrect configuration, communication faults, connector problems, environmental conditions, associated hardware faults, or controller hardware failure.

Can another GE IS215 controller replace the IS215UCVGH1AC?

A different GE controller should not be assumed to be interchangeable. The complete model number, revision, VME configuration, interfaces, firmware requirements, and host-system compatibility should be verified.

What should be checked after installing the board?

The system should be checked for correct mechanical installation, power, controller recognition, communication, configuration, diagnostics, and application functionality before returning to normal operation.


Conclusion

The GE IS215UCVGH1AC VME Controller Single-Slot Board is a specialized controller assembly designed for compatible GE modular industrial control systems. Its VME-based architecture allows the controller to operate alongside I/O, communication, interface, and other processing hardware within a coordinated automation platform.

With listed dimensions of 178 × 20 × 159 mm and a weight of 0.45 kg, the IS215UCVGH1AC provides a compact single-slot controller format suitable for appropriate industrial control chassis.

Reliable operation depends on correct board identification, proper VME slot and backplane installation, stable system power, appropriate configuration, reliable communication, and suitable environmental conditions. During maintenance or replacement, the complete GE IS215UCVGH1AC model and associated system requirements should be verified before installation.

For industrial automation maintenance, spare-parts management, and control-system service, careful identification, ESD-safe handling, systematic troubleshooting, and controlled commissioning can help maintain dependable operation of equipment using the GE IS215UCVGH1AC VME Controller Single-Slot Board.



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