Configured for 12/24 VDC discrete switching in Series 90-30 PLC and PACSystem RX3i setups, the GE Fanuc IC693MDL754 (IC693MDL754 Digital Output Module) provides direct physical/electrical execution.
| Parameter | Specification |
|---|---|
| Model | IC693MDL754 |
| Brand | GE Fanuc Emerson |
| Origin | United States |
| Weight | 0.50 lbs (0.23 kg) |
| Dimensions | Single-slot Series 90-30 I/O form factor |
| Operating Temp | 0 to 60 deg C (32 to 140 deg F) |
| Power Consumption | 300 mA at 5 VDC (backplane bus) |
| Rated Output Voltage | 12 to 24 VDC (operates up to 30 VDC) |
| Output Points | 32 points (sourcing / positive logic) |
| Isolation Groups | 2 isolated groups (16 points per common) |
| Output Current | 0.75 A maximum per point |
| Steady-State Overcurrent Trip | 5 A per point typical |
| Inrush Current | 3 A without ESCP trip |
| Circuit Protection | Electronic Short-Circuit Protection (ESCP) per point |
| Hardware Configuration | Dual rear DIP switches |
| Fault Diagnostics | Overcurrent, short-circuit, loss of field power, ESCP failure, DIP switch mismatch |
The IC693MDL754 features firmware flash compatibility across Series 90-30 CPUs and PACSystems RX3i controllers. Its 32-point high-density output layout is logically mapped into two distinct isolated groups, optimizing field wiring efficiency while maintaining high backplane bus communication velocity. Onboard hardware diagnostic routines process Electronic Short-Circuit Protection (ESCP) events, missing field voltage, and hardware DIP switch setup mismatches, pushing fault interrupts to the primary CPU within a single scan cycle.
Q: What happens if an output point on the IC693MDL754 experiences a short circuit or overcurrent condition?
A: The onboard Electronic Short-Circuit Protection (ESCP) trips at a typical steady-state threshold of 5 A, isolating the affected output point and transmitting a diagnostic fault signal directly to the CPU.
Q: Are the rear DIP switch settings required to match the software configuration?
A: Yes. The dual DIP switches located on the back of the module must strictly match the software module configuration in the programming environment to prevent hardware configuration error fault alerts.
Q: What thermal derating restrictions apply when operating at higher DC field voltages?
A: No thermal derating is required when operating at 24 VDC up to 60 deg C. However, when operating at field voltages up to 30 VDC, output current must be derated for ambient operating temperatures exceeding 40 deg C (104 deg F).
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