QuickPanel View HMI Display Panel | GE Fanuc IC754VSF15CTD-FG
QuickPanel View HMI Display Panel | GE Fanuc IC754VSF15CTD-FG
QuickPanel View HMI Display Panel | GE Fanuc IC754VSF15CTD-FG
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QuickPanel View HMI Display Panel | GE Fanuc IC754VSF15CTD-FG

  • Manufacturer: GE Fanuc

  • Part Number: IC754VSF15CTD-FG

  • Condition:New with Original Package

  • Product Type: Human Machine Interfaces

  • Country of Origin: USA

  • Payment:T/T, Western Union

  • Shipping port: Xiamen

  • Warranty: 12 months

GE Fanuc IC754VSF15CTD-FG QuickPanel View HMI

The GE Fanuc IC754VSF15CTD-FG, also cataloged as the IC754VSF15CTD Operator HMI Panel, operates as a dedicated hardware component for process visualization and operator input within GE VersaMax platforms. The unit processes touch input through a 15-inch TFT LCD color display panel while receiving 24 VDC nominal supply voltage (18-30 VDC range). Onboard RS-232, RS-485, Ethernet, and USB interfaces execute direct serial and network communication protocols to stream system diagnostic data and process variables across local control networks.

Hardware Specifications

Parameter Specification
Model IC754VSF15CTD-FG
Brand GE Fanuc
Origin USA
Weight 0.45 kg
Dimensions 12.1 in x 9.6 in x 3.1 in
Operating Temp 0 deg C to +60 deg C
Power Consumption System-dependent (24 VDC nominal supply, 18-30 VDC range)
Display Type 15-inch TFT LCD color display with resistive touchscreen
Processor Embedded industrial processor
Memory Integrated memory for runtime application, data logging, and diagnostics
Storage Temp -20 deg C to +70 deg C
Relative Humidity 5-95% non-condensing
Communication Ports 1 x Ethernet, RS-232 serial, RS-485 serial, USB ports
Supported Protocols Modbus TCP/IP, EtherNet/IP
I/O Expansion Compatible with GE VersaMax digital and analog I/O modules
Certifications UL, CE, FCC

Backplane Bus Communication Velocity and Firmware Flash Compatibility

The GE Fanuc IC754VSF15CTD-FG leverages backplane bus communication velocity management to maintain real-time telemetry execution across EtherNet/IP and Modbus TCP/IP networks. The onboard embedded microprocessor executes runtime applications directly from internal memory, ensuring continuous firmware flash compatibility during high-density I/O polling cycles. By decoupling serial frame transmission latencies over RS-232 and RS-485 channels from panel screen refresh rates, the hardware sustains deterministic display updates while maintaining continuous communication synchronization with connected VersaMax PLC logic racks.

Frequently Asked Questions

Q: How does the IC754VSF15CTD-FG handle external power fluctuations during field operation?

A: The panel requires a nominal 24 VDC power supply but operates across an extended input voltage window of 18 VDC to 30 VDC. Internal power conditioning circuitry filters DC line ripple and transient noise within standard industrial limits.

Q: What network protocols and serial interfaces are supported for PLC integration?

A: The panel provides built-in Ethernet, RS-232, RS-485, and USB interfaces. The hardware supports Modbus TCP/IP, EtherNet/IP, and native GE Fanuc communication drivers for direct connectivity to VersaMax and broader controller architectures.

Q: What environmental boundaries must be maintained during panel mounting?

A: The panel operates within an ambient temperature range of 0 deg C to +60 deg C and relative humidity levels from 5% to 95% (non-condensing). The unit is designed strictly for indoor control cabinet installation unless mounted within an appropriately rated NEMA or IP protective outer enclosure.

Field Installation Guidelines

Installation personnel must execute the following mechanical and electrical procedures during cabinet integration:

  • Cut out the panel mounting aperture according to the 12.1 in x 9.6 in footprint specifications, ensuring surrounding gasket seal integrity to prevent air infiltration.
  • Secure the panel chassis using the supplied mounting clamps, tightening fasteners evenly to prevent frame warping or display distortion.
  • Connect the 24 VDC power supply wiring using stranded copper conductors with appropriate ferrule terminations, observing correct voltage polarity on the DC terminal block.
  • Ground the metal frame directly to the central cabinet earth bus bar using a short, low-impedance ground wire to shield internal processor components from electrostatic discharge.
  • Route RS-232/RS-485 serial cables and Ethernet lines through dedicated low-voltage wiring trays, separating them from high-voltage motor circuits to eliminate electromagnetic interference.
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