GE HWA143-TDM-PMC-V20 high-performance Ethernet communication interface module, designed specifically for distributed control system (DCS) and PLC environments. It supports multi protocol data exchange and network management, achieving seamless connection between PLC, HMI, SCADA systems, and third-party devices. It is suitable for real-time data transmission and cross system collaborative control in the industrial field.

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Description

Product Name
GE HWA143-TDM-PMC-V20 Ethernet Communication Module
Core Functions & Technical Specifications
Functionality
This module is a high-performance Ethernet communication interface module from GE’s industrial automation series, designed for Distributed Control Systems (DCS) and PLC environments. It supports multi-protocol data interaction and network management, enabling seamless connectivity between PLCs, HMIs, SCADA systems, and third-party devices. It is suitable for real-time data transmission and cross-system collaborative control in industrial fields.
Technical Specifications (English)
Parameter Description
Communication Protocols Modbus TCP, S5-compatible communication, Profibus-DP, Ethernet/IP
Interface Types 1×RJ45 Ethernet port (10/100 Mbps), 1×RS-485 (Modbus RTU)
Data Transfer Rate Up to 100 Mbps (Ethernet), up to 115.2 kbps (RS-485)
Power Supply 24V DC (±15%), power consumption ≤2W
Operating Temperature -20°C ~ +70°C
Storage Temperature -40°C ~ +85°C
Protection Class IP65 (dust and water protection)
Dimensions 120 mm × 80 mm × 40 mm
Weight 0.3 kg
Certifications CE, UL 508, RoHS compliant


Key Features
Multi-Protocol Compatibility: Supports mainstream industrial protocols (Modbus TCP, Ethernet/IP, etc.), compatible with GE PACSystems, Siemens, AB, and other multi-brand devices.
High-Reliability Design: IP65 protection class, redundant power input, and Ethernet ports for harsh industrial environments.
User-Friendly Configuration Tools: Web-based visual configuration interface with drag-and-drop data mapping to reduce debugging complexity.
Real-Time Diagnostics: LED status indicators for power, communication, and network status, with integrated fault logging.
Application Scenarios
Industrial Automation:
Networking of production line equipment (e.g., CNC machines, robot workstations)
Distributed I/O collaborative control for conveyor systems
Process Control:
Monitoring and remote adjustment of pump valves in water treatment plants
Pressure/temperature data acquisition for petroleum refining units
Energy Management:
MPPT control and fault alarm for photovoltaic power plant inverters
Load distribution and circuit breaker status monitoring in microgrids
Power Systems:
Real-time transmission of combustion parameters for gas turbines
Vibration data acquisition and analysis for steam turbines

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