The GE IC697RCM711, also cataloged as the IC697RCM711 Redundancy Communications Module, operates as a dedicated hardware component for high-speed parallel bus synchronization and real-time failover execution within GE Fanuc CPU Redundancy System platforms.
| Parameter | Specification |
|---|---|
| Model | IC697RCM711 |
| Brand | GE Fanuc (General Electric) |
| Origin | USA |
| Weight | 2.10 lbs (0.95 kg) |
| Dimensions | Single-slot module for Series 90-70 racks |
| Operating Temp | 0 to 60 deg C |
| Power Consumption | 3.5 W (0.7 A at 5 VDC from backplane) |
| Number of Slots | 1 (Single Slot) |
| Serial Ports | 2 (1 port reserved/not used) |
| Local LED Indicators | 5 status LEDs |
| Interface Type | Parallel bus expansion interface |
| Redundancy Modes | Hot Standby, Enhanced Hot Standby |
| Manual Interface | Front-panel pushbutton for manual control transfer |
| Configuration | MS-DOS based programming software utility |
The hardware initiates a dedicated high-speed link that maps shared I/O data and locks timing parameters across the system backplane bus. This high-speed parallel bus expansion interface guarantees deterministic networks operation during runtime execution, forcing the secondary unit to trace the primary processor state variables cycle-by-cycle. State changes and synchronizing messages are continuously mirrored to maintain standby readiness without bus transmission jitter.
Q: What is the hardware switching latency when a primary CPU failure occurs?
A: In Hot Standby and Enhanced Hot Standby configurations, the module executes an automated real-time physical switch of control from the active primary unit to the backup secondary unit. This parallel bus transfer sequence eliminates execution delays, keeping process data lines synchronized.
Q: How does the front-panel manual switch affect system logic execution?
A: The physical pushbutton forces a manual transfer of control from the active unit to the backup unit. Pressing this switch bypasses automated internal fault logic, enabling offline maintenance on the former active rack while keeping the system process loop live via the synchronized partner rack.
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