IC200MDL330H GE Fanuc Discrete Output Module 120 VAC 16 Channel
Manufacturer: GE Fanuc
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Part Number: IC200MDL330H
Condition:New with Original Package
Product Type: Discrete Output Modules
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Country of Origin: USA
Payment:T/T, Western Union
Shipping port: Xiamen
Warranty: 12 months
GE Fanuc IC200MDL330H VersaMax Discrete Output Module
Configured for 120 VAC load switching in VersaMax platforms, the GE Fanuc IC200MDL330H (IC200MDL330 Discrete Output Module) provides direct physical/electrical execution.
Suffix Breakdown & Model Matrix
The IC200MDL330H functions as a fixed-configuration hardware assembly. The "H" suffix designates the specific hardware revision level, which incorporates standard environmental coating and structural hardening while maintaining physical and functional backward compatibility across the entire VersaMax backplane family.
Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | IC200MDL330H |
| Brand | GE Fanuc |
| Origin | Refer to device label |
| Weight | 0.64 lbs (0.31 kg) |
| Dimensions | 110 mm x 66.8 mm x 50 mm |
| Operating Temp | -40 deg C to +70 deg C |
| Power Consumption | 140 mA max at 5 VDC (Backplane) |
| Output Channels | 16 point-to-point isolated channels |
| Nominal Output Voltage | 120 VAC (Operating range: 85-132 VAC, 47-63 Hz) |
| Max Output Current | 0.5 A per channel (5 A inrush for 20 ms max) |
| Channel Isolation | 250 VAC continuous, 1500 VAC for 1 min |
| Response Time | Less than 0.5 AC cycle (ON/OFF) |
| Diagnostic LEDs | 16 channel status LEDs, 1 system OK LED |
Backplane Bus Communication Velocity & I/O Density Scaling
The module communicates with the VersaMax interface unit through high-speed serial backplane bus architecture, utilizing a maximum logic current draw of 140 mA at 5 VDC. Onboard snubber circuits alongside MOV suppression components absorb inductive switching transients directly at the point of action, thereby preserving signal integrity across the backplane bus. Furthermore, channel-to-channel galvanic isolation rated to 250 VAC continuous allows independent phase power routing without risk of cross-channel electrical noise or ground loops. Consequently, the 16-point high-density layout scales field-wiring capacity without requiring additional carrier slots or compromising backplane communication determinism.
Frequently Asked Questions
Q: What is the mandatory procedure for hot-swapping the module on an active VersaMax carrier?
A: You must ensure that field load power supplied to the 120 VAC output terminals is fully isolated prior to releasing the carrier retention levers, because removing the module under load exposes contact pins to arcing and degrades backplane power rails.
Q: How does the module handle high inrush currents caused by inductive field devices such as solenoids or large relays?
A: Integrated metal oxide varistors (MOVs) and internal RC snubber networks suppress voltage spikes, but total peak current must not exceed 5 A for more than 20 ms per channel to prevent permanent damage to the solid-state output triacs.
Field Installation Guidelines
Mount the underlying VersaMax carrier onto a standard 35 mm DIN rail or secure it directly to the enclosure panel using the provided mounting holes. Prior to snapping the module onto the carrier, inspect the field wiring terminal block for mechanical tightness and verify proper wire routing. Connect individual AC power source feeds to each isolated output loop while maintaining strict separation between field AC wiring and sensitive DC signal buses. Ground the enclosure chassis using a heavy-gauge copper conductor to ensure high-frequency transients absorbed by the onboard MOVs bypass the backplane control circuitry safely to earth ground.