Description
Product Model: IC697CPM915
Product Brand: GE Fanuc / GE Automation
Product Series: Series 90-70 PLC CPUs
Product Features:
- 32 MHz 32-bit floating-point central processing unit for real-time control
- 1 MB battery-backed memory with reliable retention
- Designed for Series 90-70 PLC racks and compatible I/O modules
- RS-422/RS-485 serial communication for programming and diagnostics
Technical Specifications Table
| Specification | Details |
|---|---|
| Model | IC697CPM915 |
| Brand | GE Fanuc / GE Automation |
| Series | Series 90-70 PLC CPUs |
| Processor | 32 MHz, 32-Bit Floating-Point |
| Memory | 1 MB Battery-Backed RAM |
| Programming Port | RS-422/RS-485 Serial |
| Mounting Slot | Slot 1 (Single slot CPU) |
| I/O Capacity | Up to 12 K discrete points, up to 8 K analog points |
| Operating Temperature | 0°C to 60°C |
| Storage Temperature | -20°C to 85°C |
| Power Consumption | 2.8 A @ 5 V backplane |
| Status Indicators | Four LED system/CPU LEDs |
| Memory Retention (no power) | 6 months (battery) |
| Backplane Standard | VME C.1 |
- IC697CPM915
Product Role & System Fit
The IC697CPM915 CPU module sits at the core of GE Fanuc Series 90-70 programmable logic controller systems, acting as the execution engine that drives logic, interfaces with I/O, and manages communication across industrial automation networks. As a dedicated central processing module built for legacy PLC architectures, this CPU interprets ladder logic and control instructions while coordinating digital and analog signals from connected racks and modules.
Engineers rely on the IC697CPM915 in facilities where continuity of existing automation installations is paramount. It fits into slot 1 of compatible Series 90-70 racks such as CHS750, CHS782, CHS783, CHS790, and CHS791, serving as the central brain that orchestrates process control, data acquisition, and system sequencing.
This processor maintains program integrity and operational status even in extended downtime scenarios. A battery-backed memory design preserves critical data for up to six months without external power, enabling facilities to restart with minimal disruption after outages



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