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The GE IC697CMM711 Communication Coprocessor Module is a specialized communication component designed for the GE Fanuc Series 90-70 programmable logic controller platform. It provides communication-processing capabilities that allow the PLC control system to exchange information with compatible external devices, controllers, computers, and industrial networks.
In a modular industrial automation architecture, communication is essential for connecting the PLC with supervisory systems, operator interfaces, programming workstations, other controllers, and networked equipment. The IC697CMM711 is designed to support this communication layer while allowing the main PLC processor to concentrate on control logic and real-time automation tasks.
The module is installed as part of the Series 90-70 rack-based architecture and works together with the PLC CPU, power supply, I/O modules, communication cabling, and connected external systems.
The specified dimensions of the IC697CMM711 are approximately 233 × 41 × 175 mm, while the specified weight is approximately 0.51 kg.
As a communication coprocessor, the module should not be confused with a standard digital or analog I/O module. Its primary purpose is communication processing and system connectivity rather than direct control of field devices.
The IC697CMM711 can therefore be an important component in legacy Series 90-70 installations where reliable communication between PLC equipment and external automation systems is required.
| Parameter | Details |
|---|---|
| Manufacturer | GE Fanuc / GE |
| Product Family | Series 90-70 |
| Model | IC697CMM711 |
| Product Type | Communication Coprocessor Module |
| Module Function | PLC communication processing |
| System Architecture | Modular PLC |
| Compatible Platform | GE Fanuc Series 90-70 |
| Installation | Series 90-70 PLC Rack |
| Communication Function | Industrial system communication |
| Processing Role | Dedicated communication processing |
| CPU Interaction | Communication support for PLC system |
| Application | Industrial Automation and Control |
| Dimensions | 233 × 41 × 175 mm |
| Weight | 0.51 kg |
| I/O Function | Communication-oriented rather than field I/O |
| Network Integration | Compatible External Automation Systems |
| Typical Environment | Industrial Control Cabinet |
| Maintenance | Modular Module-Level Replacement |
| Typical Use | PLC-to-System Communication |
The main function of the IC697CMM711 is to provide dedicated communication-processing capability within a Series 90-70 PLC system.
A simplified communication architecture can be represented as:
PLC CPU → IC697CMM711 → Communication Network → External Device / Computer / Controller
The PLC CPU is responsible for executing the main application program.
The communication coprocessor handles communication-related processing according to the supported system configuration. This separation can reduce the communication-processing burden on the main controller and provide a dedicated interface for exchanging data with external equipment.
Depending on the application, communication data can be used for:
The communication module receives or transmits data through the appropriate communication interface and works with the PLC system to make the information available to the application.
This allows data generated by the PLC to be transferred to other systems while information from external devices can be made available to the control system.
The IC697CMM711 provides the communication layer between the Series 90-70 control system and external automation equipment.
A typical architecture can be represented as:
Field Devices → I/O Modules → PLC CPU → Communication Coprocessor → Supervisory / External Systems
The communication coprocessor can support data exchange between the PLC and external systems such as:
This architecture allows the PLC to operate as part of a larger automation environment rather than as an isolated controller.
For example, a PLC can control a production machine locally while simultaneously exchanging operating information with a supervisory computer.
The communication module therefore contributes to both system integration and operational visibility.
The IC697CMM711 can be used in manufacturing environments where PLC systems need to exchange information with other control or supervisory systems.
Applications may include:
Communication data can include machine status, production information, alarms, operating conditions, and control commands.
Process-control systems frequently require communication between local controllers and higher-level monitoring systems.
The IC697CMM711 can form part of a suitable Series 90-70 communication architecture for transferring process information between the PLC and external systems.
Industrial machines can use communication interfaces to exchange information with HMIs, engineering computers, production systems, or other controllers.
The communication coprocessor provides the necessary communication-processing role within the PLC architecture.
A PLC may need to communicate with supervisory computers that collect operational information or provide higher-level control functions.
The IC697CMM711 can support this type of system architecture when used with compatible communication hardware.
Industrial systems may collect information from multiple PLCs and transfer the information to a central monitoring or data-processing system.
Communication modules help create the required connection between local PLC controllers and centralized systems.
Machine manufacturers using Series 90-70 systems may incorporate communication modules to allow their equipment to exchange information with customer automation systems.
This can be useful for machine status monitoring, production data collection, and integration with plant-level systems.
Correct installation is essential because the IC697CMM711 functions as part of a larger communication architecture.
Before installation, engineers should verify:
Communication faults should be investigated at both the hardware and configuration levels.
A module may be physically installed correctly but still fail to communicate because of incorrect addressing, cable problems, incompatible configuration, or incorrect software settings.
The IC697CMM711 should be evaluated as one part of a complete industrial communication architecture.
A typical system can include:
Series 90-70 PLC → Communication Coprocessor → Network Interface → External Controller / Computer
The communication architecture can support the exchange of operational information between different levels of an automation system.
For example:
Field Level → PLC Control Level → Supervisory Level → Production Management Level
At the control level, the PLC processes field information and executes the control program.
The communication module provides the pathway for selected data to be exchanged with external systems.
This can improve system monitoring and allow production or process information to be centralized.
When integrating the module into an existing installation, engineers should maintain the original communication architecture whenever possible. Legacy PLC systems can contain established addressing, cabling, software, and supervisory configurations that must remain consistent.
When an IC697CMM711-based communication system experiences problems, troubleshooting should begin with the physical layer before moving to software configuration.
Important inspection points include:
Verify that the rack and module are receiving the appropriate operating power.
Check that the module is correctly installed in the rack and that its connectors are properly engaged.
Inspect communication cables for:
Verify that the communication parameters match the connected equipment.
Check the PLC application and communication configuration for incorrect parameters or addressing.
Confirm that the connected computer, controller, HMI, or network device is operating correctly.
Use available PLC and communication diagnostics to identify whether the problem originates from the module, network, configuration, or external device.
A structured troubleshooting approach can prevent unnecessary replacement of functioning hardware.
The IC697CMM711 can operate within a larger Series 90-70 system using compatible components.
| Component | Function |
|---|---|
| Series 90-70 Rack | Provides module mounting and backplane connection |
| Series 90-70 Power Supply | Provides system power |
| Series 90-70 CPU | Executes PLC control logic |
| Digital Input Module | Receives discrete field signals |
| Digital Output Module | Controls discrete field equipment |
| Analog Input Module | Measures analog process signals |
| Analog Output Module | Provides analog control signals |
| Communication Coprocessor | Provides communication processing |
| Bus Controller | Connects compatible industrial networks |
| I/O Interface Module | Provides I/O system connectivity |
| Programming Workstation | PLC programming and configuration |
| HMI | Operator monitoring and control |
| Supervisory Computer | Higher-level system monitoring |
| Communication Cables | Transfers system data |
| Field Devices | Provides process information |
The exact combination of hardware should be determined according to the existing Series 90-70 architecture and communication requirements.
The following GE Series 90-70 components may be considered when evaluating communication and controller requirements.
| Model | Type | Key Feature | Typical Application |
|---|---|---|---|
| IC697CMM711 | Communication Coprocessor Module | Dedicated communication processing | PLC Communication |
| IC697BEM741 | FIP Bus Controller | FIP network control | Distributed Automation |
| IC697BEM742 | FIP Bus Controller | FIP communication | Industrial Networks |
| IC697BEM761 | I/O Interface Module | I/O network interfacing | Remote I/O Systems |
| IC697BEM763 | Driver Interface Module | Device interface functionality | Specialized Control |
| IC697BEM771 | Bus Controller | Industrial bus communication | PLC Network Systems |
| IC697CGR772 | Central Processing Unit | Central PLC processing | Series 90-70 Control |
| IC697CGR935 | Single-Slot Controller Module | Compact controller configuration | Space-Constrained Systems |
The IC697BEM741 and IC697BEM742 are suitable candidates to evaluate when the system requires FIP-related network control.
The IC697BEM771 can be considered for applications requiring compatible bus-controller functionality.
The IC697BEM761 is more focused on I/O interface functions, while the IC697BEM763 is intended for driver/interface applications.
The IC697CGR772 and IC697CGR935 are controller-oriented components and should not be regarded as direct replacements for the communication coprocessor.
When selecting a replacement, engineers should compare the required communication function, network architecture, CPU compatibility, software configuration, cabling, addressing, and system requirements.
The GE IC697CMM711 is a Communication Coprocessor Module designed for integration into compatible GE Fanuc Series 90-70 PLC systems.
Its primary function is to provide dedicated communication-processing capability for exchanging information between the PLC system and compatible external devices or automation systems.
No. The module is designed for communication processing. The primary PLC application logic is handled by the appropriate Series 90-70 CPU.
The specified dimensions are approximately 233 × 41 × 175 mm.
The specified weight is approximately 0.51 kg.
No. It is a communication-oriented module rather than a conventional digital or analog field I/O module.
Depending on the complete system configuration, the communication architecture can connect the PLC with compatible controllers, computers, operator interfaces, supervisory systems, and other automation equipment.
It can be used in manufacturing automation, machine control, process-control, data acquisition, supervisory control, and OEM systems based on compatible Series 90-70 architectures.
Communication between PLC systems may be possible when the communication architecture, interfaces, software, and connected devices are compatible.
No. The communication coprocessor is not a direct replacement for the PLC CPU. It provides communication-related functions within the broader PLC architecture.
Engineers should check module seating, rack power, communication cables, connectors, network configuration, addressing, PLC software configuration, connected equipment, and available diagnostic information.
The complete communication architecture should be reviewed, including the CPU, rack, communication interface, cables, network configuration, connected devices, software configuration, and required communication functions.
The GE IC697CMM711 Communication Coprocessor Module is a specialized communication component for compatible GE Fanuc Series 90-70 PLC systems. Its primary role is to provide communication-processing capability, allowing the PLC architecture to exchange information with external automation equipment and supervisory systems.
With specified dimensions of 233 × 41 × 175 mm and an approximate weight of 0.51 kg, the IC697CMM711 is designed for modular rack-based industrial control installations.
Communication functionality is an important part of modern and legacy automation architectures because PLC systems frequently need to exchange operating information with HMIs, supervisory computers, other controllers, engineering workstations, and industrial networks.
The IC697CMM711 can therefore play an important role in maintaining connectivity within Series 90-70 installations used for manufacturing automation, process control, machine control, data acquisition, and OEM equipment.
For maintenance and replacement projects, engineers should evaluate the complete communication architecture rather than selecting a replacement based only on physical dimensions. CPU compatibility, rack configuration, communication requirements, cables, addressing, software configuration, and connected equipment should all be verified.
When correctly integrated with compatible Series 90-70 hardware, the GE IC697CMM711 provides a dedicated communication-processing solution that can support reliable data exchange within industrial automation systems.