Description
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BrandEATON
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ModelXVC-601-GTI-10-DPM
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Product NameXV300 Series Industrial HMI Operator Panel
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Dimensions312 mm × 242 mm × 56 mm
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Weight1.65 kg
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Place of OriginGermany
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HS Code8537101190
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Operating Temperature-10 °C to +60 °C
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Storage Temperature-20 °C to +70 °C
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Power Supply0.55 A
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Warranty12 month
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Statusnew brand
XVC-601-GTI-10-DPM (Eaton-Moeller XV-303 10-inch HMI Touch Panel) Technical Parameters
Power Supply Input
Operating power adopts standard 24 VDC DC power supply, with a rated working voltage range of 19.2 VDC to 28.8 VDC. The device is equipped with built-in reverse polarity protection to avoid hardware damage caused by wrong power wiring.
Signal Input
Touch Screen Input: Resistive touch screen, supporting manual operation, parameter modification and function triggering by on-site personnel.
Ethernet Port Input: Receives TCP/IP protocol data from PLC, industrial controllers and upper monitoring systems to realize real-time data acquisition.
Serial Port Input: Supports RS-232 and RS-485 serial signal input, compatible with mainstream industrial controller serial communication docking.
USB Host Input: Connects USB flash drives for project upload, download and data logging; supports external USB mouse and keyboard for auxiliary operation.
Note: This HMI panel has no physical hard-wired analog or discrete field signal input terminals.
Signal Output
Display Output: Equipped with 10-inch TFT color display, realizing real-time visualization of on-site process data, equipment operating status, parameter values and system alarm information.
Ethernet Communication Output: Sends manual operation commands, modified set values and touch trigger signals to connected automatic control equipment to realize human-machine interaction control.
Serial Port Output: Conducts data interaction and command transmission with PLC and field peripheral devices through RS-232/RS-485 serial protocols.
USB Output: Supports project data export, program backup and operation log output via external USB storage devices.
Audio Buzzer Output: Provides sound feedback for touch operations and sends buzzer alarm prompts for system faults and abnormal conditions.
Note: This device is a dedicated human-machine interaction panel, without physical digital output and analog output terminals for driving on-site actuators.
Power Consumption
Typical operating power consumption: 0.45A @ 24VDC, maximum power consumption: 11W.
Supported System, Protocol and Software
Applicable Control System: Fully compatible with Eaton XC series PLC, and supports docking with mainstream third-party PLC and motion control systems.
Supported Communication Protocols: Modbus-TCP, Modbus-RTU and Eaton dedicated XC communication protocol.
Supported Configuration Software: Eaton Galileo engineering software, used for HMI screen editing, program configuration, offline simulation and project downloading and debugging.
Applicable Scenarios & Equipment: Widely used in general factory automation, packaging machinery, material handling equipment and industrial on-site process monitoring stations.

XVC-601-GTI-10-DPM (Eaton-Moeller XV-303 HMI Touch Panel) Test Procedures
Pre-power-on Visual & Wiring Inspection
Inspect the HMI housing for cracks, scratches, damaged front-panel seals and deformed connectors. Check the 24 VDC power cable, Ethernet cable, RS-232/RS-485 serial cable and USB port connectors for intact appearance, no bent pins or corrosion. Confirm the PE protective earth terminal is securely connected with no short circuits between power terminals and the device housing, and no foreign conductive debris inside any port. Prepare a regulated 24 VDC DC power supply, a PC with Eaton Galileo engineering software installed, Ethernet cable, FAT32 USB flash drive and a test PLC that supports Modbus-TCP and Modbus-RTU protocols.
Power-on Test
Apply standard 24 VDC DC power within the rated range of 19.2-28.8 VDC. Observe the power-on self-diagnosis process: confirm the power LED indicator lights up normally, the screen backlight activates, and the boot logo displays steadily without black screen or cyclic reboot. Ensure no abnormal heating, smoke or abnormal noise occurs after power-on. Enter the system information interface to verify the correct device model, firmware version and hardware serial number.
Display & Touch-screen Function Test
Display Performance Test: Check the full screen for uniform color display, without flickering, vertical/horizontal stripes, bright spots or dark spots. Adjust screen brightness and contrast via the system menu to confirm normal functional response.
Resistive Touch Test: Execute the built-in touch calibration program. Tap all screen areas including four corners, edge zones and the central area to verify accurate touch positioning. Ensure no touch dead zones, response delay or touch offset deviation.
Buzzer Test: Perform screen touch operations to confirm the buzzer outputs normal audible feedback signals.
Communication Interface Test
Ethernet Port Test
Set the HMI static IP address to match the same network segment as the debugging PC and establish Ethernet connection. Download the test project to the HMI via Galileo software and confirm error-free project downloading. Connect the HMI to a Modbus-TCP compatible PLC, perform register read/write tests, and verify real-time and stable data refresh without communication timeout faults.
RS-232 / RS-485 Serial Port Test
Unify communication parameters including baud rate, parity bit and stop bit between the HMI and test controller. Conduct Modbus-RTU read/write functional tests to ensure stable serial data interaction without frame loss or intermittent communication faults.
USB Host Interface Test
Insert a FAT32-formatted USB flash drive to verify normal device recognition. Test project backup and project restore functions via USB storage. Connect external USB mouse and keyboard to confirm responsive cursor control and key input functions.
Project-Oriented Functional Test
Load the official on-site application project. Switch between all screen pages to ensure smooth page transition without system crash or lag. Test numeric input boxes by entering values within and beyond the limit range to verify effective upper and lower limit protection. Validate all virtual buttons, selection switches, pop-up alarm windows and prompt messages. Check alarm display, alarm confirmation and historical alarm query functions. Verify the data logging function can normally record operating data and export logs to USB storage devices.

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