IC200MDL750K GE VersaMax 32 Point 24 VDC Output Module
Manufacturer: GE Fanuc
-
Part Number: IC200MDL750K
Condition:New with Original Package
Product Type: Digital Output Cards
-
Country of Origin: USA
Payment:T/T, Western Union
Shipping port: Xiamen
Warranty: 12 months
GE IC200MDL750K VersaMax Discrete Output Module
The GE Fanuc IC200MDL750K, also cataloged as the IC200MDL750 Discrete Output Module, operates as a dedicated hardware component for switching field actuators and loads within VersaMax I/O platforms. The module provides 32 sourcing-type channels arranged in two isolated groups of 16 points. Internal switching transistors source power from external 12/24 VDC field supplies directly to connected indicators, relays, and solenoids.
Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | IC200MDL750K |
| Brand | GE Fanuc / Emerson |
| Origin | USA |
| Weight | 0.31 kg |
| Dimensions | Standard VersaMax Module Form Factor |
| Operating Temp | 0 to 30 deg C |
| Power Consumption | 90 mA backplane current draw at 5 VDC |
| Output Density | 32 channels (2 groups of 16 points) |
| Nominal Output Voltage | 12/24 VDC |
| Operational Voltage Range | 10.2 to 30 VDC |
| Continuous Current | 0.5 A per point |
| Maximum Inrush Current | 2.0 A for 100 ms |
| On/Off Response Time | ON: 0.2 ms; OFF: 1.0 ms |
| Isolation | 250 VAC continuous group-to-group |
Backplane Bus Communication Velocity and Firmware Compatibility
Internal optical isolators separate backplane communication processing circuits from field-side voltage transients up to 1500 VAC for 1 minute. The module receives digital state frames from the primary rack controller, updating all 32 channel output transistors while maintaining deterministic bus communication velocity across adjacent expansion bases. Onboard logic circuits execute firmware flash compatibility checks upon backplane power initialization to verify module configuration parameters before enabling output driver stages.
Frequently Asked Questions
Q: Does the module contain internal current fuses to protect output transistors from field short circuits?
A: The module does not feature internal field fuses. System designers must install external fast-acting fuses or current-limiting devices on individual field output circuits to protect internal switching transistors against direct short circuits and overcurrent faults.
Q: How do inductive field loads affect the switching lifetime of the output channels?
A: Switching inductive devices such as magnetic solenoids or relay coils produces high-voltage flyback transients during OFF transitions. Technicians must install flyback diodes or RC suppression networks directly across inductive field loads to prevent degradation of internal sourcing transistors.
Q: Are individual channels isolated from one another within the same wiring group?
A: No point-to-point isolation exists between channels in the same 16-point group. All 16 points within a group share common DC power and reference ground connections, whereas galvanic isolation of 250 VAC continuous exists only between the two discrete channel groups and backplane logic circuits.
Field Installation Guidelines
Mount the module onto a compatible VersaMax carrier (IC200CHS series) fixed to a standard 35 mm DIN rail inside a protective industrial enclosure. Align the rear connector pins with the carrier backplane receptacle and press down firmly until the locking mechanism latches. Fasten field wiring to the carrier terminal block according to assigned channel numbers, ensuring dedicated DC supply connections for each 16-point group.
Separate DC output wiring runs from AC power lines, motor leads, and high-frequency inverter cabling within cabinet raceways. Maintain a minimum physical distance of 200 mm between low-voltage field output lines and heavy power conductors to reduce electromagnetic noise coupling. Before applying external 12/24 VDC field power, clamp all field wiring shields to the cabinet ground bus and confirm proper termination of frame ground connections.