Product Introduction
The GE DS200LDCCH1AGA is a Drive Control LAN Communication Board designed for integration within GE Mark VI and Mark VIe control systems. This board provides high-speed, deterministic communication between distributed drive controllers and the central LAN network, ensuring reliable coordination of motor and process control systems.
With robust design and industrial-grade construction, the DS200LDCCH1AGA supports real-time data exchange, remote monitoring, and advanced control functions. Its compact footprint allows flexible installation in standard control cabinets while maintaining VME backplane compatibility.
Product Specifications
| Parameter | Specification |
|---|---|
| Product Series | GE DS200 / Mark VI |
| Model Number | DS200LDCCH1AGA |
| Component Type | Drive Control LAN Communication Board |
| Function | LAN interface for drive control systems |
| Supported Systems | Mark VI / Mark VIe Control Systems |
| Communication Type | Ethernet / LAN |
| Mounting Type | Rack-mounted / VME backplane |
| Operating Temperature Range | -20 °C to 55 °C |
| Storage Temperature Range | -40 °C to 85 °C |
| Relative Humidity Max | 95% RH |
| Dimensions | 230 × 180 × 50 mm |
| Weight | 0.9 kg |
Applications
• Distributed drive control, linking multiple motor drives to a central control system
• Real-time process automation, ensuring deterministic communication for critical operations
• Plant network integration, supporting Ethernet-based LAN architectures
• Remote monitoring and diagnostics, enabling predictive maintenance for drive systems
• Industrial automation, providing communication between field controllers and central systems
• Data acquisition for motor and process parameters, supporting system optimization
Advantages
• High-speed LAN communication, ensuring reliable and deterministic data exchange
• Compact and robust design, suitable for VME backplane or rack-mounted installation
• Seamless integration with GE Mark VI and Mark VIe control systems
• Supports remote monitoring, improving predictive maintenance and operational efficiency
• Reduces system downtime, enabling continuous and reliable operation of drive networks
• Simplified system architecture, minimizing wiring complexity and installation effort
Excellent PLC

